College of Chemical and Biological Engineering, Key Laboratory of Biomass Chemical Engineering of Ministry of Education, Zhejiang University, Hangzhou, 310027, China.
Polytechnic Institute, Zhejiang University, Hangzhou, 310015, China.
Environ Sci Pollut Res Int. 2021 Sep;28(34):47562-47573. doi: 10.1007/s11356-021-13942-2. Epub 2021 Apr 24.
In this work, bioremediation was applied with sinusoidal alternating current (AC) electric fields to remove petroleum hydrocarbon (TPH) for soil remediation. Applying AC electric field with bioremediation (AC+BIO) could efficiently remove 31.6% of the TPH in 21 days, much faster than that in the BIO only system (13.7%) and AC only system (5.5%). When the operation time extended to 119 days, the AC+BIO system could remove 73.3% of the TPH. Applying AC electric field (20-200 V/m) could maintain the soil pH at neutral, superior to the direct current electric field. The maximum difference between soil temperature and the room temperature was 1.9 °C in the AC (50 V/m) +BIO system. The effects of AC voltage gradient (20-200 V/m) on the microorganisms and TPH degradation efficiency by AC+BIO were investigated, and the optimized AC voltage gradient was assessed as 50 V/m for lab-scale experiments. The microbial community structures in the BIO and AC+BIO systems were compared. Although Pseudomonas was the dominant species, Firmicutes became more abundant in the AC+BIO system than the BIO system, indicating their adaptive capacity to the stress of the AC electric field. Real petroleum-contaminated soil was used as a reaction matrix to evaluate the performance of AC+BIO in the field. The initial current density was about 0.2 mA/cm, voltage gradient was about 20 V/m, and the average TPH degradation rate was 8.1 μg/g per day. This study provided insights and fundamental supports for the applications of AC+BIO to treat petroleum-polluted soils.
在这项工作中,采用正弦交流(AC)电场进行生物修复,以去除石油烃(TPH)进行土壤修复。在 21 天内,施加交流电电场与生物修复(AC+BIO)可有效地去除 31.6%的 TPH,比仅生物修复(BIO)系统(13.7%)和仅交流电(AC)系统(5.5%)快得多。当操作时间延长至 119 天时,AC+BIO 系统可去除 73.3%的 TPH。施加交流电电场(20-200 V/m)可将土壤 pH 维持在中性,优于直流电电场。在 AC(50 V/m)+BIO 系统中,土壤温度与室温之间的最大温差为 1.9°C。研究了交流电电压梯度(20-200 V/m)对 AC+BIO 中微生物和 TPH 降解效率的影响,并评估了优化的交流电电压梯度为 50 V/m,适用于实验室规模的实验。比较了 BIO 和 AC+BIO 系统中的微生物群落结构。尽管假单胞菌是优势物种,但厚壁菌门在 AC+BIO 系统中的丰度高于 BIO 系统,表明它们对交流电电场的应激具有适应性。使用真实的含石油污染土壤作为反应基质,评估了 AC+BIO 在现场的性能。初始电流密度约为 0.2 mA/cm,电压梯度约为 20 V/m,平均 TPH 降解率为每天 8.1 μg/g。本研究为交流电电场与生物修复联用处理石油污染土壤提供了见解和基础支持。