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首页> 外文期刊>Applied and environmental soil science >Biodegradation of Aged Residues of Atrazine and Alachlor in a Mix-Load Site Soil by Fungal Enzymes
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Biodegradation of Aged Residues of Atrazine and Alachlor in a Mix-Load Site Soil by Fungal Enzymes

机译:混合酶降解混合负载土壤中阿特拉津和甲草胺的陈旧残留

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摘要

Soils from bulk pesticide mixing and loading (mix-load) sites are often contaminated with a complex mixture of pesticides, herbicides, and other organic compounds used in pesticide formulations that limits the success of remediation efforts. Therefore, there is a need to find remediation strategies that can successfully clean up these mix-load site soils. This paper examined the degradation of atrazine (2-chloro-4-ethylamino-6-isopropylamino-S-triazine; AT) and alachlor (2-chloro-2′,6′-diethyl-N-[methoxymethyl]-acetanilide) in contaminated mix-load site soil utilizing an extracellular fungal enzyme solution derived from the white rot fungus,Phanerochaete chrysosporium, grown in a packed bed bioreactor. Thirty-two percent of AT and 54% of AL were transformed in the biometers. The pseudo first-order rate constant for AT and AL biodegradation was 0.0882 d−1and 0.2504 d−1, respectively. The half-life (t1/2) for AT and AL was 8.0 and 3.0 days, respectively. Compared to AT, the initial disappearance of AL proceeded at a faster rate and resulted in a greater amount of AL transformed. Based on the netCo2evolved from the biometers, about 4% of the AT and AL initially present in the soil was completely mineralized.
机译:来自大量农药混合和装载(混合装载)地点的土壤经常被农药配方中使用的农药,除草剂和其他有机化合物的复杂混合物污染,这限制了补救工作的成功。因此,需要找到可以成功清除这些混合负荷场地土壤的修复策略。本文研究了阿特拉津(2-氯-4-乙基氨基-6-异丙基氨基-S-三嗪; AT)和甲草胺(2-氯-2',6'-二乙基-N- [甲氧基甲基]-乙酰苯胺)的降解利用在填充床生物反应器中生长的白腐真菌(Phanerochaete chrysosporium)衍生的细胞外真菌酶溶液污染了混合负荷土壤。在生物测定仪中转化了32%的AT和54%的AL。 AT和AL生物降解的假一级速率常数分别为0.0882 d-1和0.2504 d-1。 AT和AL的半衰期(t1 / 2)分别为8.0天和3.0天。与AT相比,AL的初始消失以更快的速度进行,并导致大量的AL转化。根据从生物计量仪演变而来的netCo2,最初存在于土壤中的AT和AL中约有4%被完全矿化。

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