Bioengineering and Environmental Centre (BEEC), CSIR-Indian Institute of Chemical Technology, Hyderabad 500 607, India.
Bioresour Technol. 2012 Apr;110:517-25. doi: 10.1016/j.biortech.2012.01.128. Epub 2012 Jan 31.
Remediation of real-field petroleum sludge was studied under self-induced electrogenic microenvironment with the function of variable organic loads (OLs) in bio-electrochemical treatment (BET) systems. Operation under various OLs documented marked influence on both electrogenic activity and remediation efficiency. Both total petroleum hydrocarbons (TPH) and its aromatic fraction documented higher removal with OL4 operation followed by OL3, OL2, OL1 and control. Self-induced biopotential and associated multiple bio-electrocatalytic reactions during BET operation facilitated biotransformation of higher ring aromatics (5-6) to lower ring aromatic (2-3) compounds. Asphaltenes and NSO fractions showed negligible removal during BET operation. Higher electrogenic activity was recorded at OL1 (343mV; 53.11mW/m(2), 100Ω) compared to other three OLs operation. Bioaugmentation to anodic microflora with anaerobic culture documented enhanced electrogenic activity at OL4 operation. Voltammetric profiles, Tafel analysis and VFA generation were in agreement with the observed power generation and degradation efficiency.
在具有可变有机负荷 (OL) 功能的自生电微生物环境下,研究了现场石油污泥的修复。在不同 OL 条件下运行,对电发生活性和修复效率都有明显影响。OL4 操作后,总石油烃 (TPH) 和其芳烃部分的去除率更高,其次是 OL3、OL2、OL1 和对照。在 BET 运行过程中,自生生物电势和相关的多种生物电催化反应促进了较高环芳烃(5-6)向较低环芳烃(2-3)化合物的生物转化。在 BET 运行过程中,沥青质和 NSO 馏分的去除率可忽略不计。与其他三个 OL 操作相比,OL1(343mV;53.11mW/m(2),100Ω)的电发生活性更高。用厌氧培养物对阳极微生物进行生物增强,在 OL4 操作时记录到增强的电发生活性。伏安曲线、塔菲尔分析和 VFA 生成与观察到的发电和降解效率一致。