Auteur: Henk Tennekes

  • Henk Tennekes urges Canada’s Pest Management Regulatory Agency to conduct a comprehensive review of the environmental impact of neonicotinoid insecticides

    Henk Tennekes urges Canada’s Pest Management Regulatory Agency to conduct a comprehensive review of the environmental impact of neonicotinoid insecticides

    I understand that Canada’s Pest Management Regulatory Agency recently announced that it “has determined that current agricultural practices related to the use of neonicotinoid-treated corn and soybean seed are affecting the environment due to impacts on bees and other pollinators” (based on findings in Ontario and Quebec). They are applied as seed dressings on wheat and canola on the prairies, and that PMRA is providing an opportunity for public comment. I would like to urge PMRA to conduct a serious, more comprehensive review of the environmental impact of neonicotinoid insecticides. My reasoning is as follows. Insects are quietly but rapidly disappearing. The great American biologist, E O Wilson, said insects were world-rulers, because they play a central role in maintaining ecosystems and the whole web of life. The recent alarms in Europe and America about the fate of the honey bee – colonies have been crashing in increasing numbers – have started to open people’s eyes to insects’ importance in a more general way. But it is only the beginning of an understanding, and much more is needed if we are to take the action necessary to preserve our populations of insects and other invertebrates, the creatures without backbones which make up the majority of animal life, including snails, worms and spiders (spiders being arachnids, not insects).

    I understand that Canada’s Pest Management Regulatory Agency recently announced that it “has determined that current agricultural practices related to the use of neonicotinoid-treated corn and soybean seed are affecting the environment due to impacts on bees and other pollinators” (based on findings in Ontario and Quebec). They are applied as seed dressings on wheat and canola on the prairies, and that PMRA is providing an opportunity for public comment. I would like to urge PMRA to conduct a serious, more comprehensive review of the environmental impact of neonicotinoid insecticides. My reasoning is as follows. Insects are quietly but rapidly disappearing. The great American biologist, E O Wilson, said insects were world-rulers, because they play a central role in maintaining ecosystems and the whole web of life. The recent alarms in Europe and America about the fate of the honey bee – colonies have been crashing in increasing numbers – have started to open people’s eyes to insects’ importance in a more general way. But it is only the beginning of an understanding, and much more is needed if we are to take the action necessary to preserve our populations of insects and other invertebrates, the creatures without backbones which make up the majority of animal life, including snails, worms and spiders (spiders being arachnids, not insects).

    Chemicals have become a weapon in man’s arsenal against crop-destroying insects and weeds. Fifty million tons of toxins are applied annually to soil and crops in America alone. What these poisons are doing to the entire web of life—and to personal health—began to be known some 40 to 50 years ago. Fifty years ago the scientist Rachel Carson issued a warning, in her epic book Silent Spring, about the dangers of pesticides to birds, insect life, wildlife, the soil, the environment and human health. If we continued to spray a rain of poison indiscriminately over our farms, our wildlife and our environment, she warned, we will end up with a poisoned world in which birds no longer sing. Rachel Carson is considered to be the founder of the environment movement.

    She drew attention, for the first time, to the fact that pesticides can degrade the soil, contaminate waterways, kill harmless and beneficial insects and wildlife, and disrupt our eco-systems. She was the first person, too, to warn of the dangers of systemic pesticides that permeate all the tissues of a plant and make them poisonous. The world of systemic insecticides, she warned, is a weird world surpassing the imaginings of the brothers Grimm—it is a world where the enchanted forest of the fairly tales becomes a poisonous forest in which an insect that chews a leaf or sucks the sap of a plant is doomed.’ When her book was published, chemical companies launched a vicious, personal attack on her and ridiculed her claims, and as a result, her warnings were largely ignored, and more and more powerful sprays are being used around the world. Today 5 billion pounds of pesticide are poured onto the planet every year, and it’s almost impossible to find any place on earth where pesticide residues are not detectable. And almost every human being on earth is subject to contact with chemicals from the moment of conception until their death. And now, today, as you read these words, we are in the middle of that forecasted disaster—and are witnesses of an ever-expanding crisis!

    I mention all this to provide some historical context for the debate that is raging today about the safety of another class of pesticides called Neonicotinoids, and their effect on honeybees and other pollinators and beneficial insects. Neonicotinoids came onto the market in the early nineties, and quickly became the most widely used insecticide in the world. Over the past couple of years 150 scientific studies on the effects of neonicotinoids on bees have been published, and many of these confirm that they are extremely toxic to bees, even in tiny sub lethal doses, and have other harmful effects on bee colonies, including losses in the number of queens, a significant increase in the number of bees that fail to return from food foraging trips, and impairment of their memory, grooming behaviour and ability to navigate.

    I am the author of a book entitled ‘the Systemic Insecticides, a Disaster in the Making,’ in which I argue that so many insects that are vital to our survival are being wiped out as a result of the extensive soil and water contamination by neonicotinoid pesticides that we are witnessing ‘an ecological collapse before our eyes.’ I point out that most bird and insect species are already struggling to survive, and have declined by around 65-70% in the past half century, in some countries. Further declines in insects and birds as a result of our continuing widespread use of neonicotinoid pesticides, will create an ecological disaster, I predict. Graham White, an environmental author who keeps bees in Scotland, shares my concern. “We are witnessing an ecological collapse in all the wildlife that used to live in fields, hedgerows, ponds and streams. All the common species we knew as children are being wiped out from the face of the countryside. Canadian wildlife biologist Neil Dawe says he wouldn’t be surprised if the generation after him witnesses the extinction of humanity. All around him, even in a place as beautiful as the Little Qualicum River estuary, his office for 30 years as a biologist for the Canadian Wildlife Service, he sees the unravelling of “the web of life.” “It’s a veritable desert here.” The loss to the food web is a loss to the web of life, he says, and people are a huge part of that web.

    A central question confronting scientists investigating the causes of bee decline is the impact of the low concentrations of neonics now widespread in the environment that honey bees are likely to encounter. A new review paper by Francisco Sanchez-Bayo and myself in the journal Toxicology (Volume 309, July 5, 2013, pages 39–51, attached) suggests that very low concentrations of neonics can have devastating effects on bees and—here’s the most important part—that conventional risk assessment approaches can miss or underestimate those effects.

    According to the paper, neonics are in a group of chemicals, called time-dependent chemicals, whose toxic effects build up during long exposure times. The paper suggests that time-dependent phenomena occur when an insecticide binds very tightly or irreversibly to critical receptors in the target organism. Given a long enough exposure, even very low levels of time-dependent chemicals can kill. Standard toxicity tests, which focus on the concentration of toxins for relatively short time periods, do not pick up time-dependent effects because they fail to expose target organisms to very low concentrations of a toxin over long enough periods of time.

    We use imidacloprid as a test case to demonstrate how standard risk assessment protocols can miss the harmful effects low levels of the chemicals can have on honey bees. The paper assessed the impact of imidacloprid on honey bees by determining the time it took for 50 percent of the bees to die (t50) when exposed for varying time intervals to low doses of the chemical. It then related the exposure data to the pesticide concentrations typically found as plant residues under field conditions and calculated that 50 percent of worker bees would die within seven to ten days if they fed on a such a field. By contrast, we assert that standard risk assessments suggest field concentrations of imidacloprid pose no risks at all to honey bees. We propose a new risk assessment protocol based on t50s to evaluate the effects of time-dependent chemicals and recommend that going forward regulatory agencies employ such protocols to assess the harmful effects of neonics. Regulators should consider these recommendations. Pollinators are too important to agriculture and other ecosystems, and neonics too widely used, for regulators to be ignorant of the threats low levels of these pesticides pose.

    I summarize my deep concerns: “The article reviews a paradigm shift in the science of toxicology. The dose : response characteristics of neonicotinoid insecticides turn out to be identical to those of genotoxic carcinogens, which are the most dangerous substances we know. Such poisons can have detrimental effects at any concentration level. Current pesticide risk assessment procedures are flawed and have failed to protect the environment. Traditional approaches that consider toxic effects at fixed exposure times are unable to allow extrapolation from measured endpoints to effects that may occur at other times of exposure. Time-to-effect approaches that provide information on the doses and exposure times needed to produce toxic effects on tested organisms are required for prediction of toxic effects for any combination of concentration and time in the environment.”

    Katherine E. Gibbs et al. ( Diversity and Distributions (2009) 15: 242–253) statistically compared areas in Canada where imperiled species currently occur, versus areas where they have been lost. Using multiple regressions, they related the numbers of species that had suffered range reductions in an ecoregion to variables that represent present habitat loss, pesticide use and human population density. They found high losses of imperiled species in regions with high proportions of agricultural land cover. However, losses of imperiled species were significantly more strongly related to the proportion of the region treated with agricultural pesticides. The relationship between species losses and area treated with pesticides remained significant after controlling for area in agriculture. Their results are consistent with the hypothesis that agricultural pesticide use has contributed significantly to the decline of imperiled species in Canada. Habitat conversion per se may be a less important cause of species declines than how that converted habitat is used.

    Many groups of organisms found in agricultural areas are experiencing catastrophic declines, including: birds (e.g., Nebel, S. et al. 2010. Declines of aerial insectivores in North America follow a geographic gradient. Avian Conserv. Ecol. 5(2): 1. [online]); bats (e.g., Wickramasinghe, L.P. et al. 2004. Abundance and species richness of nocturnal insects on organic and conventional farms: effects of agricultural intensification on bat foraging. Conserv. Biol. 18: 1283–1292); amphibians (e.g., Blaustein, A.R. 2011. The complexity of amphibian population declines: understanding the role of cofactors in driving amphibian losses. Ann. N. Y. Acad. Sci. 1223: 108-119); bumblebees (e.g., Cameron, S.A. et al. 2011. Patterns of widespread decline in North American bumble bees. Proc. Nat. Acad. Sci. 108(2): 662-667); butterflies (e.g., Van Dyck, H. et al. 2009. Declines in common, widespread butterflies in a landscape under intense human use. Conserv. Biol. 23(4): 957-965); moths (e.g., Conrad, K.F. et al. 2006. Rapid declines of common, widespread British moths provide evidence of an insect biodiversity crisis. Biol. Conserv. 132(3): 271-291); and carabid beetles (Brooks, D. R. et al. 2012. Large carabid beetle declines in a United Kingdom monitoring network increases evidence for a widespread loss in insect biodiversity. J. Appl. Ecol. 49(5): 1009-1019). Exposure to neonicotinoid insecticides is likely to be contributing to these declines, and exposure to these chemicals may be interacting with other negative pressures on biodiversity in agricultural areas.

    A huge proportion of Canada’s bird species are in serious decline. Overall, there’s been a 12 per cent drop in bird populations since 1970, says the 36-page report, entitled The State of Canada’s Birds 2012. Forty-four per cent of Canada’s 460-plus species have fallen in number, 66 of them so dramatically they are considered endangered. At the top of the list of most endangered birds is the spotted owl Strix occidentalis, whose numbers have dropped to a mere “handful”, and the great sage grouse Centrocercus urophasianus, with fewer than 100 males, down from thousands 20 years ago. Populations of grassland birds, such as meadowlarks and bobolinks Dolichonyx oryzivorus, have fallen by 45 per cent since 1970; some species that thrive in the long grasses of the Prairies or the farms of Eastern Canada are vulnerable, with numbers that have dropped by 90 per cent. Birds known as aerial insectivores — basically such species as barn swallows Hirundo rustica, chimney swifts Chaetura pelagica and flycatchers that snatch insects on the wing — are still relatively common, but have seen an overall descent in numbers of 64 per cent. I suggest that neonicotinoid insecticides are contributing to these declines.

    Yours sincerely

    Dr. H. A. (Henk) Tennekes
    Consultant in Toxicology
    Experimental Toxicology Services (ETS) Nederland BV
    Frankensteeg 4
    7201KN Zutphen, The Netherlands
    www.toxicology.nl
    www.disasterinthemaking.com
    www.farmlandbirds.net
    Tel. +31 575545500

  • Three organophosphate insecticides were significantly associated with aggressive prostate cancer in the Agricultural Health Study (1993–2007)

    Three organophosphate insecticides were significantly associated with aggressive prostate cancer in the Agricultural Health Study (1993–2007)

    Because pesticides may operate through different mechanisms, the authors studied the risk of prostate cancer associated with specific pesticides in the Agricultural Health Study (1993–2007). With 1,962 incident cases, including 919 aggressive prostate cancers among 54,412 applicators, this is the largest study to date. Rate ratios and 95% confidence intervals were calculated by using Poisson regression to evaluate lifetime use of 48 pesticides and prostate cancer incidence. Three organophosphate insecticides were significantly associated with aggressive prostate cancer: fonofos (rate ratio (RR) for the highest quartile of exposure (Q4) vs. nonexposed = 1.63, 95% confidence interval (CI): 1.22, 2.17; Ptrend < 0.001); malathion (RR for Q4 vs. nonexposed = 1.43, 95% CI: 1.08, 1.88; Ptrend = 0.04); and terbufos (RR for Q4 vs. nonexposed = 1.29, 95% CI: 1.02, 1.64; Ptrend = 0.03). The organochlorine insecticide aldrin was also associated with increased risk of aggressive prostate cancer (RR for Q4 vs. nonexposed = 1.49, 95% CI: 1.03, 2.18; Ptrend = 0.02). This analysis has overcome several limitations of previous studies with the inclusion of a large number of cases with relevant exposure and detailed information on use of specific pesticides at 2 points in time. Furthermore, this is the first time specific pesticides are implicated as risk factors for aggressive prostate cancer. Because pesticides may operate through different mechanisms, the authors studied the risk of prostate cancer associated with specific pesticides in the Agricultural Health Study (1993–2007). With 1,962 incident cases, including 919 aggressive prostate cancers among 54,412 applicators, this is the largest study to date. Rate ratios and 95% confidence intervals were calculated by using Poisson regression to evaluate lifetime use of 48 pesticides and prostate cancer incidence. Three organophosphate insecticides were significantly associated with aggressive prostate cancer: fonofos (rate ratio (RR) for the highest quartile of exposure (Q4) vs. nonexposed = 1.63, 95% confidence interval (CI): 1.22, 2.17; Ptrend < 0.001); malathion (RR for Q4 vs. nonexposed = 1.43, 95% CI: 1.08, 1.88; Ptrend = 0.04); and terbufos (RR for Q4 vs. nonexposed = 1.29, 95% CI: 1.02, 1.64; Ptrend = 0.03). The organochlorine insecticide aldrin was also associated with increased risk of aggressive prostate cancer (RR for Q4 vs. nonexposed = 1.49, 95% CI: 1.03, 2.18; Ptrend = 0.02). This analysis has overcome several limitations of previous studies with the inclusion of a large number of cases with relevant exposure and detailed information on use of specific pesticides at 2 points in time. Furthermore, this is the first time specific pesticides are implicated as risk factors for aggressive prostate cancer.
    Source:
    Stella Koutros et al.
    American Journal of Epidemiology, Volume 177, Issue 1, p. 59-74.
    http://aje.oxfordjournals.org/content/177/1/59.short

  • GMO foods are anything but ‘safe’ – Pigs fed on the common diet of GM corn and GM soy have suffered digestive and reproductive disorders

    GMO foods are anything but ‘safe’ – Pigs fed on the common diet of GM corn and GM soy have suffered digestive and reproductive disorders

    As UK officials tout GMO foods as ‘safe’ compared to organic crops, results of a long-term, peer-reviewed study conducted by a group of scientists led by Dr Judy Carman of the Institute of Health and Environmental Research in Australia has been released – and it proves that GMO are anything but ‘safe.’ Livestock in the UK and around the world have been fed GMO for over two decades, since the USDA authorized the commercial sale of GMO soy and corn to feed not only animals, but human beings in 1996. Much of the meat raised on these GMO crop are sent overseas, to countries like the UK, elsewhere in Europe, and even to cattle-abundant nations like Australia. This most recent study proves that a more sober examination of the long term effects of GMO on our environment and health should be demanded of corporations like Monsanto, even as other evidence mounts that GMO crops are unhealthy, especially considering that nations trying to remove GMO from their food supply are still being devastated by its ill-effects.

    As UK officials tout GMO foods as ‘safe’ compared to organic crops, results of a long-term, peer-reviewed study conducted by a group of scientists led by Dr Judy Carman of the Institute of Health and Environmental Research in Australia has been released – and it proves that GMO are anything but ‘safe.’ Livestock in the UK and around the world have been fed GMO for over two decades, since the USDA authorized the commercial sale of GMO soy and corn to feed not only animals, but human beings in 1996. Much of the meat raised on these GMO crop are sent overseas, to countries like the UK, elsewhere in Europe, and even to cattle-abundant nations like Australia. This most recent study proves that a more sober examination of the long term effects of GMO on our environment and health should be demanded of corporations like Monsanto, even as other evidence mounts that GMO crops are unhealthy, especially considering that nations trying to remove GMO from their food supply are still being devastated by its ill-effects.

    A loophole in the European labeling laws insinuated on the EU Commission due to lobbying pressure from the giant US grain cartel—Bunge, ADM, Cargill have allowed huge exports of US-made GMO food into Europe. Under the current laws, anything over .9 percent GMO is required to be labeled.

    In this particular study, pigs and cows fed on the rather common diet of GMO corn and soy have suffered digestive and reproductive disorders. This is of particular importance since the human digestive tract is very similar to that of pigs.

    Carman explains, “At a commercial piggery in the US, we took 168 just-weaned pigs and fed them a typical diet for the piggery, containing soy and corn, for 22.7 weeks (over 5 months) until the pigs were slaughtered at their usual slaughter age. Half of the pigs were fed widely-used varieties of GM soy and GM corn (the GM-fed group) for this whole period, and the other half of the pigs were fed an equivalent non-GM diet (the control group). The GM diet contained three GM genes and therefore three GM proteins. One protein made the plant resistant to a herbicide, and two proteins were insecticides.”

    In short, this mixture of GMO foods led to a toxic mix in the digestive tract of the animals, leading to a reduced ability for GMO-fed pigs to reproduce. The pigs were studied from conception until slaughter (the first long term study of its kind) and all were all affected adversely. Female pigs were found to have the following possible pathologies, measured through careful analysis and post-mortem examination:

    · Endometrial hyperplasia

    · Carcinoma

    · Endometritis

    · Endometriosis

    · Adenomyosis

    · Inflammation

    · Thickening of the myometrium

    · Larger presence of polyps

    · Further, the uteri of the GMO-fed pigs were fluid filled compared to the pigs who weren’t fed a GMO diet.

    · The uteri of the pigs who consumed GMO food were 25% larger than non-GMO fed pigs.

    · Inflammation of the stomach and small intestine

    · Stomach ulcers

    · Stomach inflammation

    · Thinning of intestinal walls

    · Increase in hemorrhaging bowels (this causes the pigs to bleed to death from the bowels).

    Among these horrendous findings, scientists also noted that none of these types of results have been reported in the biochemistry tests performed by Monsanto or other companies in the GM industry.

    The derisory politics behind the GMO subject are perpetuated through the UK Minster’s praise of genetically altered foods. He has even said, in the face of these findings, that GMO offers, “most wonderful opportunities to improve human health.” With scientific evidence like this provided by scientists who aren’t funded by Monsanto and GMO corporations, the world has an opportunity to see just how malevolent these institutions are, who develop and disseminate these altered, health-killing crops.

    References:

    http://worldtruth.tv/alarming-new-study-of-monsanto-feed-on-pigs/

    http://www.bangmfood.org/stealth-gmos

    http://www.iher.org.au/content.php?pageID=3
    Source: Nation of Change, 27 JUne 2013
    http://www.nationofchange.org/first-long-term-study-released-pigs-cattle-who-eat-gmo-soy-and-corn-offers-frightening-results-13723

  • De toxicologie van isocyanaten – de giframp van Bhopal (3 december 1984)

    De toxicologie van isocyanaten – de giframp van Bhopal (3 december 1984)

    De bestrijdingsmiddelenfabriek van het Amerikaanse bedrijf Union Carbide was in 1969 in de stad Bhopal gebouwd en was zo’n tien jaar later uitgebreid voor de productie van het insecticide carbaryl. Methyl-isocyanaat (MIC) is een halffabricaat voor de productie van carbaryl. In de nacht van 3 december kwam door onbekende omstandigheden water in de opslagtanks met MIC terecht. Hierdoor ontstond een chemische reactie waarbij de druk enorm opliep. De veiligheidskleppen van de opslagtanks gingen normaal open, waardoor een grote hoeveelheid zeer giftig gas vrijkwam. Normaliter zou dat zijn opgevangen door zogenaamde gaswassers, een filter waarbij door middel van een vloeistof giftige stoffen uit (industriële) lucht- of afgasstroom wordt geneutraliseerd, maar vanwege reparaties waren deze niet in werking. Het bleek slechts één van de veiligheidsprocedures die niet waren gevolgd. Zo ontbraken afsluitplaten, waardoor er water in de opslagtanks terechtkwam, werkte de koelinstallatie niet en ontbrak eveneens de fakkelinstallatie waarmee het vrijkomende gas verbrand had kunnen worden. Kort na middernacht constateerde een medewerker een plotselinge stijging van de temperatuur en druk in één van de opslagtanks. De man dacht echter dat de wrakke apparatuur weer eens nukken had en ging eerst een kopje thee drinken. Zo’n twee uur later gingen de interne alarmen af.

    De bestrijdingsmiddelenfabriek van het Amerikaanse bedrijf Union Carbide was in 1969 in de stad Bhopal gebouwd en was zo’n tien jaar later uitgebreid voor de productie van het insecticide carbaryl. Methyl-isocyanaat (MIC) is een halffabricaat voor de productie van carbaryl. In de nacht van 3 december kwam door onbekende omstandigheden water in de opslagtanks met MIC terecht. Hierdoor ontstond een chemische reactie waarbij de druk enorm opliep. De veiligheidskleppen van de opslagtanks gingen normaal open, waardoor een grote hoeveelheid zeer giftig gas vrijkwam. Normaliter zou dat zijn opgevangen door zogenaamde gaswassers, een filter waarbij door middel van een vloeistof giftige stoffen uit (industriële) lucht- of afgasstroom wordt geneutraliseerd, maar vanwege reparaties waren deze niet in werking. Het bleek slechts één van de veiligheidsprocedures die niet waren gevolgd. Zo ontbraken afsluitplaten, waardoor er water in de opslagtanks terechtkwam, werkte de koelinstallatie niet en ontbrak eveneens de fakkelinstallatie waarmee het vrijkomende gas verbrand had kunnen worden. Kort na middernacht constateerde een medewerker een plotselinge stijging van de temperatuur en druk in één van de opslagtanks. De man dacht echter dat de wrakke apparatuur weer eens nukken had en ging eerst een kopje thee drinken. Zo’n twee uur later gingen de interne alarmen af.

    Het giftige gas spoot inmiddels al met kracht uit de tanks. De omwonenden van de fabriek hadden geen idee wat er aan de hand was. Wel kregen veel mensen last van hun ogen en hadden vooral ouderen en kinderen last van ademnood.

    De fabrieksleiding had het ondertussen alleen maar druk met het sussen van de gemoederen. Het zou om een ongevaarlijke stof gaan en ze hadden alles onder controle. Het zou twee uren duren voordat werknemers van een naburig bedrijf er in slaagden om handmatig de tanks af te sluiten. Er was op dat moment al een wolk van zo’n 30 ton giftig gas ontsnapt, er was bijna geen wind en het was koel. Het waren deze klimatologische omstandigheden, die het mogelijk maakten dat de zware, trage en laag over de grond slepende gaswolk geruisloos en moordend door de slapende stad kon trekken. Het was in de ochtenduren van 3 december toen de paniek pas goed toesloeg. Ooggetuige Aziza Sultan: “Om ongeveer half één die nacht werd ik wakker omdat mijn baby lag te hoesten. In het duister zag ik dat er een soort van witte wolk in mijn kamer hing. Ik hoorde buiten mensen schreeuwen. ‘Rennen, rennen’. Toen begon ik te hoesten. Bij elke ademhaling voelde het alsof ik vuur inhaleerde. Mijn ogen voelden alsof ze in de brand stonden.” Mensen probeerden naar de ziekenhuizen van de stad te gaan, de straten lagen bezaaid met stervende mensen en dieren, anderen probeerden verblind zo goed als mogelijk een vluchtweg te vinden uit het rampgebied. Zowel het academische als het Hamidia-ziekenhuis lagen echter ten zuiden van de fabriek en dat was precies de richting waarin ook de gifwolk zich bewoog. Omdat er geen rampen- of evacuatieplan bestond dacht men er al helemaal niet aan om te checken wat de windrichting was. Hierdoor werden vele slachtoffers vele uren blootgesteld aan de giftige gaswolk wat de omvang van de ramp alleen nog maar zou vergroten. De gifwolk zou in korte tijd aan meer dan 2500 mensen het leven kosten, in de daaropvolgende drie dagen zouden nog eens 10.000 mensen sterven. Nog eens 150.000 tot 600.000 mensen zouden gezondheidsproblemen oplopen, waarvan minstens 20.000 in een later stadium nog zouden overlijden. Union Carbide had ondertussen een leger aan topadvocaten ingeschakeld en liet weten dat het incident te wijten was aan sabotage die was gepleegd door Sikh-terroristen. Later stelden ze die mening bij en was men er bij Union Carbide van overtuigd dat het ongeluk had plaatsgevonden vanwege ‘een zeldzame combinatie van ongewone gebeurtenissen’.

    Volgens experts was er geen methyl-isocyanaat uit de fabriek ontsnapt maar fosgeen, een nevenproduct dat in de Eerste Wereldoorlog als strijdgas werd gebruikt. Honderden vrouwen in Bhopal kampten met ernstige lichamelijke problemen, variërend van spontane miskramen en gedwongen zwangerschapsonderbrekingen tot zware bloedingen. Tot vele jaren na de ramp zouden veel mensen last blijven houden van oogklachten, oververmoeidheid, ademnood, lichtblindheid en allerlei psychologische kwalen.

    In 1999 werden bij Bhopal grondwatermetingen gedaan die een zeer verontrustend beeld gaven. In het grondwater bleek tussen de 20.000 en 6 miljoen keer zoveel kwik als dat men verwacht had. Ook trof men meerdere gifstoffen aan in het grondwater, die kanker, hersenbeschadigingen en geboortedefecten kunnen veroorzaken, zoals het giftige oplosmiddel trichloorethyleen. In de moedermelk van vrouwen die ten tijde van de ramp kinderen zoogden werd trichloorbenzeen, dichloormethaan, chloroform, lood en kwik aangetroffen.
    Op 14 februari 1989 werd er een schikking getroffen tussen Union Carbide en de aanklagers. Union Carbide moest 470 miljoen dollar schadevergoeding betalen. In 2004 bleek dat zo’n 330 miljoen dollar nooit bij de overlevenden van de ramp terecht was gekomen. Als gevolg klaagde het Indiase hooggerechtshof de regering aan en eiste dat het geld uit het schadefonds aan de slachtoffers en families van de slachtoffers uit werd betaald. De Indiase onderneming van Union Carbide werd verkocht aan een lokale batterijenfabriek. Union Carbide zou in 2001 overgenomen worden door Dow Chemical Company.
    Er was slechts één schrale troost voor de mensen destijds. Door de enorme giframp waren alle malariamuggen zo goed als uitgeroeid in de regio. Er waren echter ook niet meer zoveel mensen die malaria konden oplopen.
    Bron:
    FOK Nieuws, 1 december 2013
    http://frontpage.fok.nl/nieuws/628232/1/1/100/fok-toen-de-giframp-van-bhopal.html

  • B.C. butterfly and plant identified as endangered by national body of scientists

    B.C. butterfly and plant identified as endangered by national body of scientists

    A butterfly at risk from pesticides and a plant potentially targeted by collectors are B.C.’s newest endangered species, according to an annual assessment by the Committee on the Status of Endangered Wildlife in Canada (COSEWIC). The Oregon branded skipper (Hesperia colorado oregonia) inhabits sparsely vegetated at-risk Garry Oak and coastal sandspit ecosystems and is found in only four of 16 fragmented sites totalling less than 16 square kilometres. It is threatened by the application of Btk pesticide used to control the invasive gypsy moth and by the encroachment of vegetation in open habitats. Also endangered is Tweedy’s Lewisia, a showy perennial plant that exists in two small sub-populations and has undergone a decline of up to 30 per cent in recent years.

    A butterfly at risk from pesticides and a plant potentially targeted by collectors are B.C.’s newest endangered species, according to an annual assessment by the Committee on the Status of Endangered Wildlife in Canada (COSEWIC). The Oregon branded skipper (Hesperia colorado oregonia) inhabits sparsely vegetated at-risk Garry Oak and coastal sandspit ecosystems and is found in only four of 16 fragmented sites totalling less than 16 square kilometres. It is threatened by the application of Btk pesticide used to control the invasive gypsy moth and by the encroachment of vegetation in open habitats. Also endangered is Tweedy’s Lewisia, a showy perennial plant that exists in two small sub-populations and has undergone a decline of up to 30 per cent in recent years.

    COSEWIC also gave a threatened status to Audouin’s night-stalking tiger beetle, which is restricted to a narrow strip of coastal lowland around Boundary Bay and Greater Victoria. Major threats include habitat loss through agricultural and urban development, vegetation succession in open habitats, disturbance from recreational activities, and, in the longer term, sea level rise. The flightless beetle is known to occur in fewer than 10 known sites, and the discovery of more populations is unlikely.

    The western waterfan is also considered a species of special concern. The lichen, known to occur in only five sites in B.C., grows at or below water level in clear, permanent, unshaded alpine or subalpine streams. Habitat loss is likely to result from temperature increases caused by climate change. Also, increasing drought will transform permanent watercourses into ephemeral streams.

    Meanwhile, the status of wood bison has been downgraded to special concern from threatened due to growing numbers, which are thought to total up to about 7,100 mature animals. The Rocky Mountain tailed frog is downgraded to threatened from endangered due to increased protection in the Flathead River.

    COSEWIC is a national body of scientists which makes recommendations to the federal government for listing of wildlife for legal protection and recovery under the Species At Risk Act. COSEWIC recommendations are based on science and both community and traditional aboriginal knowledge but do not account for political, social or economic factors.

    Source: The Vancouver Sun, 2 December 2013
    http://www.vancouversun.com/technology/butterfly+plant+identified+endangered+national+body+scientists/9237450/story.html

  • The northern bald ibis is currently considered Critically Endangered

    The northern bald ibis is currently considered Critically Endangered

    The northern bald ibis (Geronticus eremita), also called the hermit ibis or waldrapp, is a migratory bird. The Northern Bald Ibis likes to eat grasshoppers, ants, and other insects. They also eat frogs and snails. Once, the bald ibis lived in the Middle East, northern Africa and southern and central Europe, but due to hunting, loss of habitat and pesticide-use, the birds disappeared from most of these areas and is currently considered Critically Endangered. It became extinct in Europe 300 years ago; the bird is almost gone in Syria, with only a single individual recorded at the country’s lone breeding site in 2013; and the only stronghold left is a small population of around 500 birds in Morocco.

    The northern bald ibis (Geronticus eremita), also called the hermit ibis or waldrapp, is a migratory bird. The Northern Bald Ibis likes to eat grasshoppers, ants, and other insects. They also eat frogs and snails. Once, the bald ibis lived in the Middle East, northern Africa and southern and central Europe, but due to hunting, loss of habitat and pesticide-use, the birds disappeared from most of these areas and is currently considered Critically Endangered. It became extinct in Europe 300 years ago; the bird is almost gone in Syria, with only a single individual recorded at the country’s lone breeding site in 2013; and the only stronghold left is a small population of around 500 birds in Morocco.

    But now, a team of scientists from Austria is working to reestablish a self-sustaining, migratory population of bald ibis in Europe. In 2002 Johannes Fritz, who had been a doctoral student in biology at the Konrad Lorenz Research Station in Austria, came up with the idea of taking northern bald ibises from zoos and imprinting them, in effect becoming their foster parent to teach them a new migratory route to Italy. After more than ten years of research and feasibility planning, the Austrian Waldrappteam, together with partners from Germany and Italy (the Parco Natura Viva Garda Zoological Park) received funding from the European Union for a Life+ Project to be held from 2014 to 2019. The aim of the project is to create a European population of at least 120 ibises that migrate autonomously from Germany to Italy.

    Experiments conducted in the 1990s demonstrated that ibises raised in the zoos retain their migration instincts, but have no sense of which direction to fly. Because of this, Johannes Fritz decided to teach the ibises to migrate via a road to a World Wildlife Fund (WWF) Oasis in the Tuscan town of Orbetello.

    Read more at http://news.mongabay.com/2013/1202-leonardo-northern-ibis.html#FBlecxr60jmlcwZ9.99
    http://www.konicaminolta.com/kids/endangered_animals/library/sky/northern-bald-ibis.html

  • Argentijns stadje verzet zich fors tegen komst van Monsanto

    Argentijns stadje verzet zich fors tegen komst van Monsanto

    Monsanto, een van de belangrijkste producenten van genetisch gemodificeerde zaden (ggo-zaden) ter wereld, bouwt een fabriek in Malvinas Argentinas, een stadje van 15.000 inwoners in de provincie Córdoba. Het moet een van de grootste Monsanto-fabrieken voor maïszaaigoed worden. De fabriek zou in maart volgend jaar operationeel moeten worden maar de werken werden in oktober stilgelegd. De inwoners van het stadje protesteren fel tegen de komst van Monsanto, sinds 18 september houden ze de bouwplaats bezet door middel van vijf kampen. Bij het gerecht dienden ze verschillende klachten in. Vorige donderdag probeerde de constructeur de blokkade te breken en meerdere vrachtwagens naar binnen te loodsen. Daarbij vielen meer dan twintig gewonden. Zaterdag kwamen er militairen aan te pas om de vrachtwagens opnieuw naar buiten te krijgen.

    Monsanto, een van de belangrijkste producenten van genetisch gemodificeerde zaden (ggo-zaden) ter wereld, bouwt een fabriek in Malvinas Argentinas, een stadje van 15.000 inwoners in de provincie Córdoba. Het moet een van de grootste Monsanto-fabrieken voor maïszaaigoed worden. De fabriek zou in maart volgend jaar operationeel moeten worden maar de werken werden in oktober stilgelegd. De inwoners van het stadje protesteren fel tegen de komst van Monsanto, sinds 18 september houden ze de bouwplaats bezet door middel van vijf kampen. Bij het gerecht dienden ze verschillende klachten in. Vorige donderdag probeerde de constructeur de blokkade te breken en meerdere vrachtwagens naar binnen te loodsen. Daarbij vielen meer dan twintig gewonden. Zaterdag kwamen er militairen aan te pas om de vrachtwagens opnieuw naar buiten te krijgen.

    De bezetters zijn grotendeels vrouwen. Ze weigeren zichzelf milieuactivisten te noemen. In Malvinas Argentinas kent iedereen wel iemand met ademhalingsproblemen of allergieën. Die doen zich voor wanneer de landbouwvelden van Córdoba, een van de grootste producenten van transgene soja in het land, met Roundup worden besproeid, een glyfosaat-herbicide van Monsanto. Artsen melden een toenemend aantal gevallen van misvormingen bij baby’s en kanker. De bevolking onderging dat lange tijd lijdzaam – tot de komst van Monsanto.

    “Mijn zoon is al ziek, en als Monsanto komt gaat het nog erger worden”, zegt María Torres, een van de bezetters. Haar dertienjarige zoon lijdt aan sinusitis en neusbloedingen. “Bij veel mensen in Malvinas zie je dezelfde symptomen.”

    Volgens het Universitair Netwerk voor Milieu en Gezondheid worden in Argentinië bijna 22 miljoen hectare transgene gewassen besproeid, vooral soja en maïs. Het gaat om velden in twaalf provincies. In de bewuste zones wonen twaalf miljoen mensen.

    Ook Eli Leiria protesteert tegen de komst van Monsanto. Ze lijdt aan gewichtsverlies. De dokters vonden glyfosaat in haar bloed. “Het is alsof er een tornado door mijn lichaam gegaan is, zeggen ze.”

    Er bestaan geen officiële ziekte- en cijfers om na te gaan of er een verband is met het herbicide, zegt Raúl Montenegro, bioloog van de Nationale Universiteit van Córdoba en voorzitter van de Stichting voor Milieubescherming (en in 2004 laureaat van de Right Livelihood Award, een alternatieve Nobelprijs).

    Er bestaan in het land ook geen adequate controles op de aanwezigheid van herbiciden in het bloed en in waterreservoirs. Dat maakt van Argentinië, en ook van Brazilië, een paradijs voor bedrijven als Monsanto, zegt Montenegro.

    De overheid baseert zich bij de goedkeuring van het gebruik van transgene zaden en herbiciden “vooral op de technische gegevens van de bedrijven zelf.”

    Volgens Montenegro hebben de milieudiensten van Córdoba de bouw van de nieuwe fabriek goedgekeurd zonder voorafgaande analyse door een onafhankelijke commissie.

    Volgens een document van het Universitair Netwerk zullen de maïszaden in de fabriek van Malvinas Argentinas onder meer clothianidine bevatten, een insecticide dat in de Europese Unie verboden is.
    Bron: De Morgen, 2 december 2013
    http://www.demorgen.be/dm/nl/5397/Milieu/article/detail/1750763/2013/12/02/Argentijns-stadje-verzet-zich-fors-tegen-komst-van-Monsanto.dhtml

  • Preliminary aquatic risk assessment of imidacloprid after application in an experimental rice plot

    Preliminary aquatic risk assessment of imidacloprid after application in an experimental rice plot

    Imidacloprid was applied as Confidor® 200 SC at the recommended field dose of 100 g a.i./ha to a Portuguese rice plot. Subsequently, fate of the test compound in water and potential effects of water samples on a battery of test species were determined. As compared to the first-tier predicted environmental concentrations (PECs) calculated using MED-Rice (around 30 µg/L depending on the scenario used) and US-EPA (78 µg/L) simulations, the actual peak concentration measured in the paddy water (52 µg/L) was higher and lower, respectively. As was anticipated based on 50% effect concentrations (EC50 values) for Daphnia magna published in the open literature and that calculated in the present study (48 h-EC50 immobility=84 mg/L), no effects were observed of field water samples on daphnids. The sediment-dwelling ostracod Heterocypris incongruens, however, appeared relatively sensitive towards imidacloprid (6 d-EC50 growth inhibition=0.01–0.015 mg/L) and a slight effect was indeed noted in field samples taken the first week after application. Species sensitivity distributions based on published EC50 and NOEC values also revealed that other species are likely to be affected at the peak and time-weighted average imidacloprid concentrations, respectively. By applying the relative tolerance approach (i.e. by dividing the EC50 value of a certain species with that of Daphnia magna), ostracods appear to contain the most sensitive taxa to imidacloprid, followed by EPT (Ephemeroptera, Plecoptera and Trichoptera) taxa.

    Imidacloprid was applied as Confidor® 200 SC at the recommended field dose of 100 g a.i./ha to a Portuguese rice plot. Subsequently, fate of the test compound in water and potential effects of water samples on a battery of test species were determined. As compared to the first-tier predicted environmental concentrations (PECs) calculated using MED-Rice (around 30 µg/L depending on the scenario used) and US-EPA (78 µg/L) simulations, the actual peak concentration measured in the paddy water (52 µg/L) was higher and lower, respectively. As was anticipated based on 50% effect concentrations (EC50 values) for Daphnia magna published in the open literature and that calculated in the present study (48 h-EC50 immobility=84 mg/L), no effects were observed of field water samples on daphnids. The sediment-dwelling ostracod Heterocypris incongruens, however, appeared relatively sensitive towards imidacloprid (6 d-EC50 growth inhibition=0.01–0.015 mg/L) and a slight effect was indeed noted in field samples taken the first week after application. Species sensitivity distributions based on published EC50 and NOEC values also revealed that other species are likely to be affected at the peak and time-weighted average imidacloprid concentrations, respectively. By applying the relative tolerance approach (i.e. by dividing the EC50 value of a certain species with that of Daphnia magna), ostracods appear to contain the most sensitive taxa to imidacloprid, followed by EPT (Ephemeroptera, Plecoptera and Trichoptera) taxa.

    Source:
    Michiel A. Daam, Ana C. Santos Pereira, Emília Silva, Lia Caetano, Maria José Cerejeira. Ecotoxicology and Environmental Safety Volume 97, 1 November 2013, Pages 78–85

  • EU restrictions on the use of neonicotinoid pesticides represent a unique opportunity to introduce safer agro-ecological approaches to pest management

    EU restrictions on the use of neonicotinoid pesticides represent a unique opportunity to introduce safer agro-ecological approaches to pest management

    Many of the arguments deployed in opposition to these restrictions were misleading, and based upon flawed research, much of it funded by neonicotinoid manufacturers themselves. The two principal arguments against restricting neonicotinoids were that yields would suffer, and that farmers would resort to older, even more harmful chemicals. However, evidence from Italy, where neonicotinoids have been banned from use on maize since 2008, suggests the opposite. Moreover, the EU precautionary approach on neonicotinoids represents a potential turning point for acting more widely to replace highly hazardous chemical pesticides with effective and sustainable alternatives. To achieve this, collaborative effort is needed on the part of governments, industry, civil society organisations, retailers and others. The PAN UK welcomes the EU temporary suspension of three neonicotinoid pesticides as a step in the right direction in protecting bees. We believe that this presents a unique opportunity to introduce safer, ecologically informed methods of pest management. The experience in Italy has shown that is not an unrealistic aspiration. Moreover, the EU restrictions also present the possibility of a turning point more generally on the use of highly hazardous toxic pesticides, in favour of non-chemical and IPM pest control methods. What is needed now is the political will of governments around the world to take action to promote these alternatives.

    Many of the arguments deployed in opposition to these restrictions were misleading, and based upon flawed research, much of it funded by neonicotinoid manufacturers themselves. The two principal arguments against restricting neonicotinoids were that yields would suffer, and that farmers would resort to older, even more harmful chemicals. However, evidence from Italy, where neonicotinoids have been banned from use on maize since 2008, suggests the opposite. Moreover, the EU precautionary approach on neonicotinoids represents a potential turning point for acting more widely to replace highly hazardous chemical pesticides with effective and sustainable alternatives. To achieve this, collaborative effort is needed on the part of governments, industry, civil society organisations, retailers and others. The PAN UK welcomes the EU temporary suspension of three neonicotinoid pesticides as a step in the right direction in protecting bees. We believe that this presents a unique opportunity to introduce safer, ecologically informed methods of pest management. The experience in Italy has shown that is not an unrealistic aspiration. Moreover, the EU restrictions also present the possibility of a turning point more generally on the use of highly hazardous toxic pesticides, in favour of non-chemical and IPM pest control methods. What is needed now is the political will of governments around the world to take action to promote these alternatives.

    Source:
    Mole, Nick; Williamson, Stephanie; Lievens, Paul; Tyrell, Keith. Neonicotinoid Restrictions Present a Unique Opportunity to Introduce Safer Agro-Ecological Approaches to Pest Management. Outlooks on Pest Management, Volume 24, Number 4, August 2013 , pp. 156-159(4)

  • Persistence study of Imidacloprid in different soils under laboratory conditions

    Persistence study of Imidacloprid in different soils under laboratory conditions

    Persistence of imidacloprid was studied under laboratory conditions in four types of soil viz.sandy loam, clay, red and black soils following treatment at 1.0, 2.0 and 4.0 μg/g fortification levels. The imidacloprid residue in the soil samples were measured by validated analytical method. The dissipation of imidacloprid was found to be faster in black soil followed by sandy loam, clay and red soil with half life value of 50.10, 42.74 and 45.69 days, respectively.

    Persistence of imidacloprid was studied under laboratory conditions in four types of soil viz.sandy loam, clay, red and black soils following treatment at 1.0, 2.0 and 4.0 μg/g fortification levels. The imidacloprid residue in the soil samples were measured by validated analytical method. The dissipation of imidacloprid was found to be faster in black soil followed by sandy loam, clay and red soil with half life value of 50.10, 42.74 and 45.69 days, respectively.

    Source:
    Prakash Samnani et al. International Journal of Environmental Sciences Volume 4 No.2 2013, pp. 151-57