兼性厌氧活性分子触发对BTEX生物修复活性的调节

Chang Hd
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引用次数: 0

摘要

BTEX(苯、甲苯、乙苯、二甲苯)广泛存在于燃料和涂装过程中,如工业金属涂装。由于其挥发性,它很容易散发,并且通过芳香性难以分解。这些蒸汽被吸入并缓慢腐蚀肺组织的脂质膜。因此苯及其衍生物被评价为更具有诱变性和致癌性。石油的泄漏和对土壤和地下水的破坏引起了公众对健康方面的关注。因此,开发高效的污染物转化技术,以立即处理其毒性或启动修复过程至关重要。本研究从生物固定b膜菌群中筛选了几个活性分离株。试验了电子分子的补充对BTEX修复效果的影响,并对兼性厌氧状态的培养现状进行了分析。重点是发现从厨余堆肥中洗脱的腐植酸中富集出高活性的联合体,添加400 mg/L BTEX化合物近一年。在31.2 μM底物浓度下,用不同碳源作为电子给体对活性分离物进行了比较。在添加腐植酸和糖蜜为基础碳源后,比较了3 - 3> 3 - 1> 2 - 6菌株的修复活性。作为二级分析,修复效果表现为:甲醇>葡萄糖>吲哚乙酸>吲哚e,表明电动势可能受接枝碳链、接枝碳长度、还原剂如亚铁离子在介质中的影响,也受游离苯甲酸化合物相互作用的影响,动态地引导了电流方向对从腐植酸或糖蜜中产生的通量的影响,总体而言,腐植酸一般较少转化,认为在其他反应中只支持电子中介。而糖蜜,大分子,与葡萄糖和甲醇表现出还原能力。然而,它引起非盖子电子通量转化为芳香,但竞争性地转换为氧化呼吸。导致共代谢无效。本文论证了接枝芳香烃和可溶性腐植酸的治疗效果显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modulation of BTEX Bio - Remedial Activity by Molecular Triggering from Facultative Anaerobic Activity
BTEX (Benzene, Toluene, Ethylbenzene, Xylene) is widely reside in fuel and painting process, such as industrial metal painting. Due to their volatile character, it is easily emitted and recalcitrant in disintegration through aromatic property. These vapor inhaled and slow corruption the lipid membrane of the lungs tissue. Benzene and derivatives are thus more mutagenic and carcinogenic evaluated. The leakage of oil and spoil the soil and groundwater which arouse publi c concern about health respect. Therefore, it is crucial to develop high - efficiency of pollutant transformation, with aims to instant treatment of their toxicity or start remediation process. This study had screened several active isolates from bio - fixed b iofilms consortia were carried. The investigation concerns the supplement of electronic molecules for the remediation effect of BTEX were tried and the cultivation status of facultative anaerobic state were addressed. In highlight of finding with high acti vity consortium was enriched from humic acid eluted from compost of kitchen waste, add additional 400 mg/L BTEX compound over almost one year. Active isolate were compared by using different carbon source as electron donors with 31.2 μM substrate concentra tion. After the basal carbon source as humic acid and molasses was extra added and compared, remedial activity of the strain with 3 - 3> 3 - 1> 2 - 6 were compared. As a second level analysis, the remedial effects shown: methanol>glucose>indole acetic acid>indol e, indicated that the electromotive force might influenced by the grafting carbon chain, the length of carbon grafting, the influence of reducer as ferrous ions in medium, also the free benzoic compound interacted, dynamic directing the direction of electr on flux from humic acid or molasses, overall, humic acid, generally less conversion, believed only support electron mediation in other reaction. While molasses, macromolecular and exhibits a reducing power with glucose and methanol. However, it causes inva lid electronic flux into aromatic conversion but competitively switch to oxidative respiration. Resulted an invalid co - metabolism. The significant of remedial effect by grafting aromatics and soluble humic acid were demonstrated in this report.
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