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The Role of Natural Organic Matter (Humic Substances) on Adsorption of Pesticides Possessing Endocrine Disruptor Activity

机译:天然有机物(腐殖质)对具有内分泌破坏运动活性的农药吸附的作用

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In this paper an overview is provided of adsorption processes of representative persistent organic pollutants (POPs), in particular atrazine, alachlor and cis- and trans-chlordane pesticides with endocrine disruptor activity, by humic acids (HAs), the most abundant and chemically and biochemically active fractions of humified natural organic matter in soil. Endocrine disruptor compounds (EDCs) are hormone-like substances able to alter, i.e., disrupt, the normal endocrine functions in animals and humans. The estrogenic risk of EDCs is generally related to their distribution and speciation in the various soil phases, in which adsorption processes play a very important role. Adsorption kinetics of atrazine and adsorption isotherms of atrazine, alachlor and cis- and trans-chlordane onto HA samples isolated from various soil sets were determined using a batch equilibrium method and the HPLC technique with various detectors. Adsorption of atrazine onto HAs occurs rapidly within the first 4 h of contact. Experimental adsorption data were best fitted in a linear isotherm or a nonlinear, L-shaped Freundlich isotherm for atrazine, a linear isotherm for alachlor, and a nonlinear, S-shaped isotherm for cis- and trans-chlordane. Thus, no limiting adsorption is observed for any pesticide adsorbate onto any HA sorbent examined over the concentration range tested. In general, the adsorption capacity of HAs for chlordane is much larger than that for atrazine and alachlor, which are adsorbed at almost the same extent by HAs. The carboxylic and phenolic hydroxyl group content, the organic free radical concentration, and the aromaticity and humification degrees appear to be the most important chemical properties of HAs affecting atrazine adsorption, whereas it is not clear which compositional, structural and functional features of HAs may affect adsorption of alachlor and chlordane.
机译:在本文中,提供了代表持续有机污染物(POPS),特别是阿特拉津,阿拉代和联氯烷农药的吸附过程,通过腐殖酸(具有),最丰富和化学和土壤中有趣的天然有机物的生物化活性分数。内分泌破坏剂化合物(EDC)是能够改变的激素样物质,即破坏动物和人类的正常内分泌功能。 EDCs的雌激素风险通常与它们的分布和形态有关,在各种土壤阶段,吸附过程发挥着非常重要的作用。使用批量平衡方法和具有各种探测器的HPLC技术测定阿特拉嗪,甲醛和CIS-和转氯烷的阿特拉嗪,甲醛和CIS-和转氯烷的吸附动力学与各种土壤组中分离的HA样品进行测定。阿特拉嗪的吸附在接触的前4小时内快速发生。实验吸附数据最适合于线性等温线或非线性,L形的弗氏润松等温线,用于阿尔拉嗪,用于甲醛的线性等温线,以及用于CIS-和反式氯烷的非线性S形等温线。因此,对于吸附在测试的任何HA吸附剂上的任何农药吸附到测试的任何HA吸附剂上,没有观察到限制吸附。通常,对氯烷的吸附能力远大于阿尔扎嗪和阿尔拉菊的吸附能力,其在几乎相同的程度上被吸附。羧酸和酚羟基含量,有机自由基浓度,芳香性和湿度似乎是影响尿嘧啶吸附的最重要的化学性质,而则不清楚哪种组成,结构和功能特征可能会影响Alachlor和Chlordane的吸附。

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