Anaerobic enrichment of Bacillus alkylbenzene remedial consortia from waste biomass melanoid sources

IF 1.6 Q4 ENVIRONMENTAL SCIENCES AIMS Environmental Science Pub Date : 2021-01-01 DOI:10.3934/environsci.2021022
Hsiao-Dao Chang, XiuYou Wan, Hsiao-Chen Huang, Yi-Su Chen, Chao-Ying Chen
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Abstract

Bioremediation of alkylbenzenes, including toluene, ethylbenzene and xylenes, was performed using fermentable aromatic sources and electron mediators by Bacillus cereus 301 in a limited oxygen state. The fermentation of small fermentable aromatic melanoids from cow manure as soluble humus hydrolysates or sugarcane molasses as saccharine, glucose and limited basal medium was compared. Thus, an evaluation model of exponential decline against a control was incorporated for interpretation of remedial data. The significance of the present strategy for constructing multivariant effects of electron donors could be objectively judged by pattern comparison with the short-term data analyzed. Thus, grafted aromatics as methyl- or ethylbenzene require much more microbial reaction time, even with mixed aromatic donors or stronger electron donors such as methanol in the original reduced medium, as indicated in the scatter chart. However, completion of the remedial time was needed by the kinetic simulation, and even low, smooth data were expressed. Among the exponential decay curves indicated, the carbon sources in the mix were favorably expressed. The smooth pattern indicated that fermentations with glucose and molasses showed lower remedial activity than melanoids or the indole series. The vigor increase was better for melanoid carbon in the initial fermentation of 24 h, while molasses increased later at 72 h and was more quenched by amending indole acetic acid (IAA) or indole expression. The molecular interaction of the electron mediator indole acetic acid in most trials indicated a quenched effect on toluene and ethylbenzene degradation, even when mixed with the original reducing medium, but expressed better with molasses in both kinetic simulations and growth effects. Thus, combining electron mediators such as IAA for Bacillus may offer a new degradation route for the metabolite alkylbenzene, which is worth further exploration for environmental aromatic waste remediation and combined restoration strategies.
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废生物质类黑素源对烷基苯芽孢杆菌的厌氧富集
研究了蜡样芽孢杆菌301在限氧条件下,利用可发酵芳香源和电子介质对甲苯、乙苯和二甲苯等烷基苯进行生物修复。比较了牛粪作为可溶性腐殖质水解物或甘蔗糖蜜作为糖精、葡萄糖和有限基础培养基的发酵过程。因此,对控制指数下降的评价模型被纳入解释补救数据。通过与所分析的短期数据进行模式比较,可以客观地判断本策略对构建电子给体多变效应的意义。因此,如散点图所示,甲基苯或乙苯等接枝芳烃需要更长的微生物反应时间,即使在原始还原介质中混合芳香给体或更强的电子给体(如甲醇)。然而,动力学模拟需要完成补救时间,甚至表达了低,平滑的数据。在指数衰减曲线中,混合物中的碳源得到了良好的表达。光滑的模式表明,与类黑素或吲哚系列相比,葡萄糖和糖蜜发酵的治疗活性较低。类黑素碳在发酵初期24 h活力增强较好,而糖蜜则在发酵72 h后活力增加,并通过吲哚乙酸或吲哚表达的修饰得到更多的淬灭作用。在大多数实验中,电子介质吲哚乙酸的分子相互作用表明,即使与原始还原介质混合,对甲苯和乙苯的降解也有淬灭作用,但在动力学模拟和生长效应中,与糖蜜混合表现得更好。因此,结合IAA等电子介质对芽孢杆菌可能为代谢物烷基苯的降解提供了一条新的途径,在环境芳香族废弃物的修复和联合修复策略方面值得进一步探索。
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来源期刊
AIMS Environmental Science
AIMS Environmental Science ENVIRONMENTAL SCIENCES-
CiteScore
2.90
自引率
0.00%
发文量
31
审稿时长
5 weeks
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