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Bioremediation of Single and Mixture of Pesticide-Contaminated Soils by Mixed Pesticide-Enriched Cultures

机译:混合农药富集培养对单一农药和混合农药污染土壤的生物修复

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摘要

In the present study, degradation efficiencies for individual as well as mixed pesticide in different Indian soils, by mixed pesticide-enriched cultures, were evaluated under submerged and unsaturated conditions, Lindane (L), methyl parathion (MP), carbofuran (C), and a mixture of L, MP, and C were used in the study. For all the various conditions considered, methyl parathion degradation was the maximum and lindane degradation was the minimum. The degradation kinetics of the pesticides in sandy, clayey, compost, and red soils by various microbial isolates were studied. It was observed that adsorption was maximum and degradation of pesticides was minimum in compost soil. The degradation efficiencies of pesticides in liquid phase associated with soil sediment were less than those under the normal liquid phase conditions as leaching of pesticides from soil phase was continuous. Pesticide degradation was more in submerged soils compared to that in unsaturated soils. The degradation by-products of individual and mixed pesticides in liquid, unsaturated, and submerged soils were identified. Different metabolites were produced under submerged and unsaturated conditions.
机译:在本研究中,在淹没和不饱和条件,林丹(L),甲基对硫磷(MP),呋喃丹(C),在研究中使用了L,MP和C的混合物。对于所有考虑的各种条件,甲基对硫磷降解最大,林丹降解最小。研究了各种微生物分离物在沙,黏土,堆肥和红壤中农药的降解动力学。观察到堆肥土壤中吸附最大,农药降解最小。由于农药从土壤相中的浸出是连续的,因此与土壤沉积物相关的液相中农药的降解效率要低于正常液相条件下的降解效率。与非饱和土壤相比,淹没土壤中的农药降解更多。可以确定在液体,不饱和土壤和淹没土壤中单个和混合农药的降解副产物。在淹没和不饱和条件下会产生不同的代谢产物。

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