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Mechanisms and pathways of aniline elimination from aquatic environments.

机译:从水生环境中消除苯胺的机制和途径。

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摘要

The fate of aniline, a representative of arylamine pollutants derived from the manufacture of dyes, coal liquefaction, and pesticide degradation, was comprehensively evaluated by use of unpolluted and polluted pond water as model environments. Evaporation plus autoxidation proved to be minor elimination mechanisms, removing ca. 1% of the added aniline per day. Instantaneous binding to humic components of a 0.1% sewage sludge inoculum removed 4%. Biodegradation of aniline in pond water was accelerated by the sewage sludge inoculum. A substantial portion of the degraded aniline carbon was mineralized to CO2 within a 1-week period, and microbial biomass was formed as a result of aniline utilization. Biodegradation was clearly the most significant removal mechanism of polluting aniline from pond water. A gas chromatographic-mass spectrometric analysis of biodegradation intermediates revealed that the major pathway of aniline biodegradation in pond water involved oxidative deamination to catechol, which was further metabolized through cis,cis-muconic, beta-ketoadipic, levulinic, and succinic acid intermediates to CO2. Minor biodegradation pathways involved reversible acylation to acetanilide and formanilide, whereas N-oxidation resulted in small amounts of oligomeric condensation products.
机译:通过使用未污染和污染的池塘水作为模型环境,对苯胺的命运进行了全面评估,苯胺是染料制造,煤液化和农药降解产生的芳基胺污染物的代表。蒸发加自动氧化被证明是次要的消除机制,可以去除约10%的杂质。每天添加苯胺的1%。瞬时结合到0.1%污水污泥接种物中的腐殖质成分,去除了4%。污水污泥接种物促进了池塘水中苯胺的生物降解。在1周内,大部分降解的苯胺碳矿化为CO2,并且由于苯胺利用而形成了微生物生物量。生物降解显然是从池塘水中去除苯胺污染的最重要机制。气相色谱-质谱法对生物降解中间体的分析表明,池塘水中苯胺生物降解的主要途径涉及氧化脱氨为邻苯二酚,后者通过顺式,顺式-粘康酸,β-酮己二酸,乙酰丙酸和琥珀酸中间体进一步代谢为二氧化碳。较小的生物降解途径涉及可逆的酰化为乙酰苯胺和甲酰苯胺,而N氧化导致少量的低聚缩合产物。

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