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    化學氧化強化生物堆修復石油汙染土壤研究

    Study on Chemical Oxidation Enhanced Microbial Remediation of Petroleum Contaminated Soil

    • 摘要: 生物修復技術是一種成本較低且環境友好的可持續發展修復技術,但是其所需的修復時間較長💅。采用化學氧化強化生物堆修復石油汙染土壤的方法探究其修復效果並采用BIOLOG ECO板和高通量測序技術探明微生物群落的響應機製。結果表明,通過240 d的生物堆修復🤹🏿‍♀️,生物修復(NP)和氧化劑強化生物修復(NP_O)處理使土壤中總石油烴從30649 mg·g–1分別下降至5889 mg·g–1和2351 mg·g–1👨‍👨‍👧,化學氧化強化生物修復後的土壤石油烴濃度低於國家風險管製值(GB 36600—2018)。BIOLOG ECO微孔分析和高通量測序結果進一步表明,氧化劑處理的土壤中微生物活性迅速恢復,且化學氧化強化生物修復處理中具有石油烴降解潛力的菌屬Microbacterium🚎、Paracoccus👎🏻、Pseudomonas、Stenotrophomonas和Porticoccaceae_C1.B045是該處理的主要細菌標記物。

       

      Abstract: Bioremediation technology is a low-cost and environment-friendly sustainable remediation technology, but it requires a longer time to repair. In this study, the method of chemical oxidation-enhanced bioreactor remediation of petroleum-contaminated soil was used to explore its remediation effect. Furthermore, BIOLOG ECO board and high-throughput sequencing technology were used to explore the response mechanism of microbial communities. The results showed that after 240 days of biological remediation, bioremediation (NP) and oxidant-enhanced bioremediation (NP_O) treatments reduced the total petroleum hydrocarbons in the soil from 30649 mg·g–1 to 5889 mg·g–1 and 2351 mg·g–1, respectively. The concentration of petroleum hydrocarbons in the soil after oxidation-enhanced bioremediation is lower than that of the national risk control value (GB 36600—2018). The results of BIOLOG ECO micropore analysis and high-throughput sequencing further showed that the microbial activity in the soil treated with oxidants was quickly restored. Genus Microbacterium, Paracoccus, Pseudomonas, Stenotrophomonas, and Porticoccaceae_C1. B045 were the potential bacterial marker for petroleum hydrocarbon degradation in the chemical oxidation-enhanced bioremediation treatment.

       

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