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Effects of salinity, DOM and metals on the fate and microbial toxicology of propetamphos formulations in river and estuarine sediment

机译:盐度,DOM和金属对河口和河口沉积物中丙酸杆菌制剂的命运和微生物毒理学的影响

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摘要

Toxicity studies tend to use pure pesticides with single organisms. However, natural systems are complex and biological communities diverse. The organophosphate pesticide propetamphos (PPT) has been found exceeding regulatory limits (100 ng IT1) in rivers. We address whether solution properties affect the fate of Analar (Analar-PPT) or industrial PPT (PPT-Ind) propetamphos formulations and whether propetamphos and metal toxicant effects are additive, antagonistic or synergistic? The sorption, desorption, bio-degradation and microbial toxicology of Analar-PPT and PPT-Ind were investigated in Conwy River and estuary sediment. Results showed elevated salinity enhanced PPT sorption, while higher salinities increased PPT-Ind retention. Higher dissolved organic matter (DOM) and low salinity slowed Analar-PPT biodegradation (1.9 × 10-3h~1). Analar-PPT and PPT-Ind biodegradation was further reduced by low salinity, high DOM and dissolved Zn and Pb (6.3 × 10-4h-1,1000htvi for Analar-PPT; 7.5 × 10-4 h-1, 924 h t for PPT-Ind). Toxicity effects of PPT, Zn and Pb in equitoxic ratio were higher for PPT-Ind (4.7 ug PPT-Ind g-1; 581 μgZng-1; 395μgPbg-1) than for Analar-PPT (34.6 μg PPT g-1; 312ugZng"'; 212ugPbg~') whilst a toxicant ratio 1:100:10 suggested small quantities of Analar-PPT (ECio-0.06μgg-1) affected microbial communities. The combined toxicity effect was more than additive. Thus, industrial formulations and pollutant mixtures should be considered when assessing environmental toxicity.
机译:毒性研究倾向于使用具有单一生物的纯农药。然而,自然系统是复杂的,生物群落是多样的。在河流中发现有机磷杀虫剂丙二醇酯(PPT)超过了法规限制(100 ng IT1)。我们要解决的是溶液性质是否会影响Analar(Analar-PPT)或工业PPT(PPT-Ind)丙二醇制剂的命运,以及丙戊醇和金属毒物的作用是累加,拮抗还是协同作用?在康威河和河口沉积物中研究了Analar-PPT和PPT-Ind的吸附,解吸,生物降解和微生物毒理学。结果表明,盐度升高会增强PPT的吸附,而盐度越高则会提高PPT-Ind的保留率。较高的溶解有机质(DOM)和低盐度减慢了Analar-PPT的生物降解(1.9×10-3h〜1)。低盐度,高DOM和溶解的Zn和Pb(Analar-PPT为6.3×10-4h-1,1000htvi; PPT为7.5×10-4 h-1,924 ht)进一步降低了Analar-PPT和PPT-Ind的生物降解。 -Ind)。对于PPT-Ind(4.7 ug PPT-Ind g-1; 581μgZng-1;395μgPbg-1),PPT,Zn和Pb等毒性比的毒性作用要比对Analar-PPT(34.6μgPPT g-1; 312ugZng)高“”; 212ugPbg〜'),而毒物比例为1:100:10则表明少量的Analar-PPT(ECio-0.06μgg-1)对微生物群落产生了影响。综合毒性作用不仅仅具有累加性。因此,工业配方和污染物评估环境毒性时应考虑混合。

著录项

  • 来源
    《Chemosphere》 |2011年第8期|p.1117-1123|共7页
  • 作者单位

    School of Chemistry, Bangor University, Gwynedd. LL57 2UW, UK;

    School of Chemistry, Bangor University, Gwynedd. LL57 2UW, UK;

    Environment Centre Wales, Bangor University, Gwynedd, LL57 2UW, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pesticide estuary toxicity organophosphate propetamphos;

    机译:农药河口毒性有机磷酸盐;

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