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Mixed dye wastewater treatment in a bioelectrochemical system-centered process

机译:一种生物电化学系统中心过程中的混合染料废水处理

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摘要

The feasibility of mixed dye wastewater treatment was evaluated with a novel integrated bioprocess that consisted of a hybrid anaerobic reactor (HAR) with a built-in bioelectrochemical system, an aerobic biofilm reactor (ABFR) and a denitrification reactor (DR). The position of the DR significantly affected chemical oxygen demand (COD) and colority in effluent, and placing the DR after the ABFR improved effluent quality probably due to minimization of the undesired autoxidation of aromatic amine in dye wastewater. The optimal integrated process of HAR + ABFR + DR efficiently treated mixed dye wastewater, and concentrations of COD and TN were decreased down to 75 +/- 18 mg/L and 12.91 +/- 0.31 mg/L, respectively, along with colority 48 +/- 4 times. Total phosphorus reduced to below 0.5 mg/L with coagulation using poly aluminum chloride, and the effluent quality fully ma the discharge standard. This comprehensive study suggests the feasibility of the BES based process for practical application to mixed dye wastewater treatment.
机译:用新型的集成生物过程评价混合染料废水处理的可行性,该生物组成具有杂交厌氧反应器(HAR),其具有内置生物电化学系统,一种有氧生物膜反应器(ABFR)和反硝化反应器(DR)。 DR的位置显着影响流出物中的化学需氧量(COD)和色度,并在ABFR改善污水质量之后将DR放置在染料废水中的芳族胺的不期望的自动氧化,使得DR改善污水质量。 HAR + ABFR + DR有效处理的混合染料废水的最佳综合过程,以及COD和TN的浓度分别降至75 +/-18mg / L和12.91 +/- 0.31 mg / L以及色度48 +/- 4次。总磷在氯化铝的凝结下减少至0.5mg / L,凝结质量充分MA排出标准。该综合研究表明,基于BES的实际应用对混合染料废水处理的可行性。

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