Where does 1080 poison go in water?
1080 poison is currently being spread across New Zealand’s wildlands, in taxpayer-funded operations aimed at pest mammals. One of the extremely dangerous properties of 1080 is a marked ability to spread in water.
1080 poison is currently being spread across New Zealand’s wildlands, in taxpayer-funded operations aimed at pest mammals. One of the extremely dangerous properties of 1080 is a marked ability to spread in water.
1 August 2019
Mr Mike Slater
Deputy Director-General (Operations)
Department of Conservation
Conservation House
P.O. Box 10420
Wellington 6143
Dear Mr Slater
Re: Poisoning of Arthurs Pass National Park
You have given consent for the business “Vector Control Services” to aerially poison Arthurs Pass National Park, including places that have not been poisoned before, primarily to control rats in order to protect kakariki.
Your department’s most recent monitoring indicates that according to its own target, no poisoning is necessary.
Furthermore the consent application (supplied by OIA request 20/06/19) gave you no substance upon which to base your decision. It failed to reference any of its claims of benefit. It also failed to discuss relevant risks and unknowns (e.g. 1080 persistence in cold water) and known adverse effects such as sub-lethal damage (e.g. birth defects, reproductive damage). It ignores many relevant details regarding the ecology of the area and responses to aerial poisoning.
Because of these deficiencies, your consent breaches the Hazardous Substances and New Organisms Act 1986 (in at least Sections 5, 6, 7 and 95A (Part 3)).
Details:
Please will you confirm that you have received this letter and have considered the topics raised? I trust that given the demonstrable lack of reason, thought or legality that underlie the poisoning operation it will be cancelled and the deadly bait will be disposed of as safely as possible.
Yours sincerely

Dr Jo Pollard (BSc (Hons), PhD)
References:
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Beausoliel, N., Fisher, P., Warburton, B., Mellor, D., 2010. How humane are our pest control tools? (09-11326). MAF Biosecurity New Zealand Technical Paper no: 2011/01. 149 pp.
Bond, A., Diamond, J., 1992. Population estimates of Kea in Arthur’s Pass National Park. Notornis 39: 151-160.
Brown, K., Elliott, G., Innes, J. & Kemp, J., 2015. Ship rat, stoat and possum control on mainland New Zealand. An overview of techniques, successes and challenges. Department of Conservation report. 40 pp.
DoC, 2002a. Rare Bits 44, April 2002
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Eason, C., Miller, A., Ogilvie, S., Fairweather, A., 2011. An updated review of the toxicology and ecotoxicology of sodium fluoroacetate (1080) in relation to its use as a pest control tool in New Zealand. New Zealand Journal of Ecology 35(1): 1-20.
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(Mus musculus). Department of Conservation DOC Research & Dev Series 305-308 Feb-March.
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Kemp, J., Cunninghame, F., Barrett, B., Makan, T., Fraser, J., Mosen, C., 2015, unpublished. Effect of an aerial 1080 operation on the productivity of the kea (Nestor notabilis) in a West Coast rimu forest. Department of Conservation report. 15 pp.
Kemp, J.R., Mosen, C.C., Elliott, G.P., Hunter, C.M., 2018. Effects of the aerial application of 1080 to control pest mammals on kea reproductive success. New Zealand Journal of Ecology 42: 158-168.
King, C. & Murphy, E., 2005. Stoat. Pp. 204-221. In. C.M. King (Ed). The Handbook of New Zealand Mammals (2nd Edition). Oxford University Press, Melbourne.
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https://www.theguardian.com/science/2016/sep/20/man-v-rat-war-could-the-long-war-soon-be-over
Nilsson, S.G., 1984. The evolution of nest-site selection among hole-nesting birds: The importance of nest predation and competition. Ornis Scandinavica 15: 167-175.
Northcott, G., Jensen, D., Ying, L., & Fisher, P., 2014. Degradation rate of sodium fluoroacetate in three New Zealand soils. Environmental Toxicology and Chemistry 33: 1048-1058.
O’Donnell, C.F.J. & Hoare, J.M., 2012. Quantifying the benefits of long-term integrated pest control for forest bird populations in a New Zealand temperate rainforest. New Zealand Journal of Ecology 36: 131-140.
Pollard. J.C., 2016. Aerial 1080 poisoning in New Zealand: Reasons for concern.
https://www.researchgate.net/publication/308712508_Aerial_1080_poisoning_in_New_Ze aland_Reasons_for_concern 17 pp.
Pollard, J.C., 2017. Response to the Department of Conservation’s reply to “Aerial 1080 poisoning in New Zealand: reasons for concern”. 17 pp.
Pollard, J.C. 2019. https://1080science.co.nz/science-against-1080/
Ruscoe, W., Murphy, E., 2005. Pp 204-221. In King, C.M. (Ed.). The Handbook of New Zealand Mammals (2nd Edition). Oxford University Press, Melbourne. 610 pp.
Ruscoe, W.A., Ramsey, D.S.L., Pech, R.P., Sweetapple, P.J., Yockney, I., Barron, M.C., Perry, M., Nugent, G., Carran, R., Warne, R., Brausch, C. & Duncan, R.P., 2011. Unexpected consequences of control: Competitive vs. predator release in a four-species assemblage of invasive mammals. Ecology Letters 14: 1035-1042.
Roy, E.A., 2016. New Zealand kea, the world’s only alpine parrot, faces extinction
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Ruscoe, W.A., Ramsey, D.S.L., Pech, R.P., Sweetapple, P.J., Yockney, I., Barron, M.C., Perry, M., Nugent, G., Carran, R., Warne, R., Brausch, C., Duncan, R.P. 2011. Unexpected consequences of control: Competitive vs. predator release in a four-species assemblage of invasive mammals. Ecology Letters 14: 1035-1042.
Smith, D., Jamieson, I.G., 2003. Movement, diet, and relative abundance of stoats in an alpine habitat. New Zealand Department of Conservation Science Internal Series 107, 16 pp.
Veltman, C.M., Westbrooke, I.M., Powlesland, R.G. & Greene, T.C., 2014. A principles-based decision tree for future investigations of native New Zealand birds during aerial 1080 operations. New Zealand Journal of Ecology 38: 103-109.
Whiting-O’Keefe, Q.E., Whiting O’Keefe, P.M., 2007. Aerial Monofluoroacetate in New Zealand’s Forests. An appraisal of the scientific evidence. http://1080science.co.nz/wp-content/uploads/2016/06/Whiting-Okeefe-2.pdf 88 pp.
You have given consent for the business “Vector Control Services” to aerially poison Arthurs Pass National Park, including places that have not been poisoned before, primarily to control rats in order to protect kakariki.
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