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[利用生物强化堆肥技术修复石油污染土壤]

[Remediation of Petroleum-Contaminated Soil Using a Bioaugmented Compost Technique].

作者信息

Wu Man-Li, Chen Kai-Li, Ye Xi-Qiong, Qi Yan-Yun, Xu Hui-Ning, Wang Zhuo, Xue Peng-Fei, Zhu Chang-Lin

机构信息

Key Laboratory of Northwest Water Resources, Environment and Ecology, Ministry of Education, School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

出版信息

Huan Jing Ke Xue. 2017 Oct 8;38(10):4412-4419. doi: 10.13227/j.hjkx.201702056.

Abstract

Bioaugmented compost was created by inoculating petroleum-degrading bacteria into mature compost. The petroleum hydrocarbon degradation efficiencies were investigated by applying this enhanced compost to petroleum-contaminated soil under low temperatures. The results showed that the degrading bacteria can be enriched in the mature compost. After 30 d of remediation, the removal efficiency of TPH, alkanes, and PAHs in the soil was 27.0%, 19.6%, and 10.0%, compared to natural attenuation (CK), which was 4.5%, 9.5%, and 2.3%, respectively. In response to remediation, the relative abundance of Proteobacteria and Actinobacteria phyla decreased from 53.4% and 25.9% to 48.9% and 14.1%, respectively, and Bacteroidetes phylum increased from 5.0% to 24.5%. At the genus level, the relative abundance of and increased from 0.02% and 3.4% to 15.2% and 4.6%, respectively. The results indicated that the bioaugmented compost may efficiently facilitate and speed up the bioremediation of petroleum-contaminated soil under low-temperature conditions. Soil microbial diversity and structure of microbial communities are sensitive to the remediation.

摘要

通过将石油降解细菌接种到成熟堆肥中制备了生物强化堆肥。通过将这种强化堆肥应用于低温下受石油污染的土壤,研究了石油烃的降解效率。结果表明,降解细菌可在成熟堆肥中富集。修复30天后,土壤中总石油烃(TPH)、烷烃和多环芳烃(PAHs)的去除效率分别为27.0%、19.6%和10.0%,而自然衰减(对照)分别为4.5%、9.5%和2.3%。作为对修复的响应,变形菌门和放线菌门的相对丰度分别从53.4%和25.9%降至48.9%和14.1%,拟杆菌门从5.0%增至24.5%。在属水平上,[具体属名1]和[具体属名2]的相对丰度分别从0.02%和3.4%增至15.2%和4.6%。结果表明,生物强化堆肥可有效促进和加速低温条件下石油污染土壤的生物修复。土壤微生物多样性和微生物群落结构对修复敏感。

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