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Co-metabolic Degradation Of Bensulfuron-methyl In Laboratory Conditions

机译:实验室条件下苯磺隆的协同代谢降解

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The present study deals with the degradation of bensulfuron-methyl by microorganisms cultured with different sources of carbon, nitrogen and phosphorus. Addition of carbon source accelerated the degradation of bensulfuron-methyl under co-metabolism process. Sodium lactate was the best carbon source for the degradation of bensulfuron-methyl, compared to other carbon sources studied, and the degradation ratio of bensulfuron-methyl reached 79.5%, whereas only 34.6 and 29.7% were removed in the presence of glucose and sucrose, respectively. Supplement of nitrogen source also enhanced degradation of bensulfuron-methyl. However, no significant differences were observed in the loss of bensulfuron-methyl between organic nitrogen and inorganic source. Phosphate buffer was supplemented into the media to maintain neutral conditions for the advantage of the strain growth since increase in pH value was observed. An orthogonal array design was applied to arrange main factors singled out for investigating the influence of factor and interaction between them on the degradation of bensulfuron-methyl. Statistical analysis showed that the concentration of sodium lactate, bensulfuron-methyl and inoculum size were the main effects, and the interaction of sodium lactate and bensulfuron-methyl was of statistical significance.
机译:本研究研究了用不同碳,氮和磷源培养的微生物对苯磺隆的降解作用。在共代谢过程中,碳源的加入加速了苄嘧磺隆的降解。与其他研究的碳源相比,乳酸钠是降解苄嘧磺隆的最佳碳源,苄嘧磺隆的降解率达到79.5%,而在存在葡萄糖和蔗糖的情况下,仅去除了34.6和29.7%,分别。补充氮源还增强了苄嘧磺隆的降解。然而,在有机氮和无机源之间苯磺隆甲基的损失没有观察到显着差异。将磷酸盐缓冲液添加到培养基中,以保持中性条件,有利于菌株生长,因为观察到pH值增加。应用正交阵列设计来排列主要因素,以研究因素及其之间的相互作用对苯磺隆甲基降解的影响。统计分析表明,乳酸钠的浓度,苄嘧磺隆和接种物的大小是主要的影响因素,乳酸钠与苄嘧磺隆的相互作用具有统计学意义。

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