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Biodegradation Of Mixed Pesticides By Mixed Pesticide Enriched Cultures

机译:混合农药富集培养物对混合农药的生物降解

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This paper discusses the degradation kinetics of mixed (lindane, methyl parathion and carbofuran) pesticides by mixed pesticide enriched cultures (MEC) under various environmental conditions. The bacterial strains isolated from the mixed microbial consortium were identified as Pseudomonas aeruginosa (MTCC 9236), Bacillus sp. (MTCC 9235) and Chryseobacterium joostei (MTCC 9237). Batch studies were conducted to estimate the biokinetic parameters like the maximum specific growth rate (μ_(max)), Yield Coefficient (Y_T), half saturation concentration (K_s) and inhibition concentration (Ki) for individual and mixed pesticide enriched cultures. The cultures enriched in a particular pollutant always showed high growth rate and low inhibition in that particular pollutant compared to MEC. After seven weeks of incubation, mixed pesticide enriched cultures were able to degrade 72% lindane, 95% carbofuran and 100% of methyl parathion in facultative co-metabolic conditions. In aerobic systems, degradation efficiencies of lindane methyl parathion and carbofuran were increased by the addition of 2g L~(-1) of dextrose. Though many metabolic compounds of mixed pesticides were observed at different time intervals, none of the metabolites were persistent. Based on the observed metabolites, a degradation pathway was postulated for different pesticides under various environmental conditions.
机译:本文讨论了混合农药富集培养物(MEC)在各种环境条件下对混合农药(林丹,甲基对硫磷和呋喃丹)的降解动力学。从混合微生物菌群中分离出的细菌菌株被鉴定为铜绿假单胞菌(MTCC 9236),芽孢杆菌。 (MTCC 9235)和Chryseobacterium joostei(MTCC 9237)。进行批处理研究以估计生物动力学参数,例如最大和特定比农药混合培养物的最大比生长率(μ_(max)),产率系数(Y_T),半饱和浓度(K_s)和抑制浓度(Ki)。与MEC相比,富含特定污染物的培养物始终显示出较高的生长速率和对该特定污染物的低抑制性。孵育7周后,混合农药富集培养物在兼性代谢代谢条件下能够降解72%的林丹,95%的呋喃丹和100%的甲基对硫磷。在有氧系统中,加入2g L〜(-1)葡萄糖可提高林丹甲基对硫磷和呋喃丹的降解效率。尽管在不同的时间间隔观察到许多混合农药的代谢化合物,但没有一种代谢物具有持久性。根据观察到的代谢物,推测在各种环境条件下不同农药的降解途径。

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