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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bio-electrochemical remediation of real field petroleum sludge as an electron donor with simultaneous power generation facilitates biotransformation of PAH: Effect of substrate concentration
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Bio-electrochemical remediation of real field petroleum sludge as an electron donor with simultaneous power generation facilitates biotransformation of PAH: Effect of substrate concentration

机译:实时石油污泥作为电子供体的生物电化学修复,同时发电,可促进PAH的生物转化:底物浓度的影响

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摘要

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.
机译:在生物电化学处理(BET)系统中,在具有可变有机负荷(OL)的功能的自感应电致微环境下,研究了对实地石油污泥的修复。在各种OL下的操作记录了对电活性和修复效率的显着影响。石油总烃(TPH)及其芳烃馏分均显示,采用OL4操作,随后依次为OL3,OL2,OL1和对照,去除率更高。在BET操作过程中,自感应生物势和相关的多个生物电催化反应促进了高环芳族化合物(5-6)向低环芳族化合物(2-3)化合物的生物转化。 BET操作期间,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,在OL1(343mV; 53.11mW / m〜2,100Ω)处记录到更高的电活性。厌氧培养对阳极菌群的生物增强作用表明在OL4操作时增强了电活性。伏安曲线,Tafel分析和VFA产生与观察到的发电和降解效率一致。

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