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化学氧化强化石油烃污染土壤生物修复过程中微生物群落的演替及其协同效应。

Succession of microbial communities and synergetic effects during bioremediation of petroleum hydrocarbon-contaminated soil enhanced by chemical oxidation.

机构信息

Shaanxi Province Institute of Microbiology, Xi'an, Shaanxi 710043, China.

College of Natural Resources and Environment, Northwest A & Forestry University, Yangling, Shaanxi 712100, China.

出版信息

J Hazard Mater. 2021 May 15;410:124869. doi: 10.1016/j.jhazmat.2020.124869. Epub 2020 Dec 30.

DOI:10.1016/j.jhazmat.2020.124869
PMID:33422735
Abstract

Biotechnologies integrated with chemical techniques are promising in treating the soils contaminated by petroleum hydrocarbons. Experiments by applying the degrading consortium and the modified Fenton (MF) with the chelator sodium citrate simultaneously were carried out to investigate the effects of the MF reagents on the degradation of total petroleum hydrocarbons (TPHs), changes in enzyme activities and the succession of microbial communities at the 0, 20, 100 and 500 mmol/kg hydrogen peroxide concentration levels. The ratio between hydrogen peroxide, ferrous sulfate and sodium citrate in the MF reagents was 100:1:1. The results indicated that the degradation of TPHs conformed to first-order kinetics and MF treatments increased the total removal rates of TPHs (4.73-24.26%) and activated dehydrogenase and polyphenol oxidase activities. A shift in microbial communities from Proteobacteria to Bacteroidetes was observed during the enhanced bioremediation, and the predominant genus shifted from Pseudomonas with an average relative abundance (ARAs) of 76.61% at the beginning to Sphingobacterium with ARAs of 52.06% at the later stage. The MF reagents at the proper level could simplify the relationship among the community populations, alleviate their competition and strengthen their associations, which would optimize the removal efficiency.

摘要

生物技术与化学技术相结合,在处理受石油烃污染的土壤方面具有广阔的应用前景。本研究采用降解菌协同改性过硫酸盐(MF)与络合剂柠檬酸钠同步修复技术,考察了不同浓度(0、20、100、500mmol/kg)过氧氢条件下 MF 试剂对总石油烃(TPH)降解效果、酶活性变化及微生物群落演替的影响,MF 试剂中过氧化氢、硫酸亚铁和柠檬酸钠的比例为 100:1:1。结果表明,TPH 的降解符合一级动力学方程,MF 处理提高了 TPH 的总去除率(4.73%-24.26%),并激活了脱氢酶和多酚氧化酶的活性。在强化生物修复过程中,微生物群落从变形菌门向拟杆菌门转移,优势属从初始平均相对丰度(ARAs)为 76.61%的假单胞菌转变为后期 ARAs 为 52.06%的鞘氨醇杆菌。适当浓度的 MF 试剂可以简化群落种群之间的关系,减轻它们之间的竞争并加强它们之间的联系,从而优化去除效率。

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