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Bioavailability of an organophosphorus pesticide, fenamiphos, sorbed on an organo clay

机译:吸附在有机粘土上的有机磷杀虫剂fenamiphos的生物利用度

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Hydrolysis of an insecticideematicide, fenamiphos [ethyl-3-methyl-4-(methylthio)phenyl-(1-methylethyl)phosphoramidate], immobilized through sorption by cetyltrimethylammonium-exchanged montmorillonite (CTMA-clay) by a soil bacterium, Brevibacterium sp., was examined. X-ray diffraction analysis, infrared spectra, and a negative electrophoretic mobility strongly indicated that fenamiphos was intercalated within the bacterially inaccessible interlayer spaces of CTMA-clay. The bacterium hydrolyzed, within 24 h, 82% of the fenamiphos sorbed by the CTMA-clay complex. There was a concomitant accumulation of hydrolysis product, fenamiphos phenol, in nearly stoichiometric amounts. During the same period, in abiotic (uninoculated) controls, 4.6% of the sorbed insecticide was released into the aqueous phase as compared to 6.0% of the sorbed fenamiphos in another abiotic control where activated carbon, a sink for desorbed fenamiphos, was present. Thus, within 24 h, the bacterium hydrolyzed 77% more fenamiphos sorbed by organo clay than the amounts desorbed in abiotic controls. Such rapid degradation of an intercalated pesticide by a bacterium has not been reported before. Evidence indicated that extracellular enzymes produced by the bacterium rapidly hydrolyzed the nondesorbable fenamiphos, even when the enzyme itself was sorbed. Fenamiphos strongly sorbed to an organo clay appears to be readily available for exceptionally rapid degradation by the bacterium. [References: 25]
机译:水解杀虫剂/杀线虫剂fenamiphos [乙基-3-甲基-4-(甲硫基)苯基-(1-甲基乙基)氨基磷酸酯],通过土壤细菌Brevibacterium sp。的十六烷基三甲基铵交换蒙脱石(CTMA-粘土)的吸附固定化。,进行了检查。 X射线衍射分析,红外光谱和负电泳迁移率强烈表明,fenamiphos插在CTMA黏土的细菌难以进入的夹层空间内。细菌在24小时内水解了CTMA-粘土复合物吸附的fenamiphos的82%。伴随着几乎化学计量的水解产物苯甲磷酚的积累。在同一时期,在非生物(未接种)对照中,4.6%的吸附杀虫剂释放到水相中,而在另一种非生物对照中,存在活性炭(用于解吸的非那磷的吸收剂),吸附的杀虫剂为6.0%。因此,在24小时内,细菌水解的有机黏土比非生物对照中解吸的磷酰胺磷多77%。以前没有报道过细菌对插层农药的这种快速降解。有证据表明,即使该酶本身已被吸附,该细菌产生的细胞外酶也迅速水解了不可解吸的苯胺磷。强烈吸附在有机粘土上的苯丙胺磷似乎很容易被细菌迅速分解。 [参考:25]

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