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首页> 外文期刊>RSC Advances >Biotreatment of simulated tannery wastewater containing Reactive Black 5, aniline and CrVI using a biochar packed bioreactor
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Biotreatment of simulated tannery wastewater containing Reactive Black 5, aniline and CrVI using a biochar packed bioreactor

机译:使用生物炭填充的生物反应器对含活性黑5,苯胺和六价铬的模拟制革废水进行生物处理

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Azo dyes and hexavalent chromium (CrVI) are common pollutants in wastewater generated by the leather processing industry. This study was designed to develop a treatment strategy that can simultaneously remove azo dyes, their byproducts and CrVI using a biochar packed bioreactor. Various feedstock materials were evaluated, after which, biochar produced from pyrolysis of corn cobs at 400 degrees C was selected as a packing material for the reactor, based on its large surface area (1275 m(2) g(-1)), microporosity (2-5 mm), and ability to support microbial biofilm formation. In the bioreactor experiments, simulated tannery wastewater containing 100 mg L-1 Reactive Black-5 azo dye and 10-100 mg L-1 aniline (byproduct of azo dye) was treated in the presence and absence of CrVI using the bacterium Pseudomonas putida strain KI. The results showed complete biodegradation of Reactive Black 5 (100 mg L-1) within 5 h. Strain KI could also reduce 100 mg L-1 dye and 10 mg L-1 CrVI simultaneously in 24 h in a 2 L continuous packed bed bioreactor. Complete biodegradation of aniline (byproduct of Reactive Black 5) in the bioreactor was obtained within 24 h in the absence of CrVI, whereas degradation was decreased to 84% in the presence of CrVI. LC-MS analysis confirmed the biodegradation of Reactive Black 5 and aniline. This study clearly illustrates the feasibility of using bacterial strains having multifaceted functions for the biological treatment of tannery wastewater in bioreactors containing pyrolyzed carbon (biochar) as a support matrix for the bacterial cells.
机译:偶氮染料和六价铬(CrVI)是皮革加工业产生的废水中的常见污染物。这项研究旨在开发一种处理策略,该策略可以使用生物炭填充的生物反应器同时去除偶氮染料,其副产物和CrVI。评估了各种原料,然后基于其大表面积(1275 m(2)g(-1)),微孔率,选择了在400摄氏度下玉米芯热解产生的生物炭作为反应器的包装材料(2-5毫米),并具有支持微生物生物膜形成的能力。在生物反应器实验中,使用恶臭假单胞菌菌株在有或无CrVI的条件下处理含有100 mg L-1反应性Black-5偶氮染料和10-100 mg L-1苯胺(偶氮染料的副产物)的模拟制革废水。气结果显示,活性黑5(100 mg L-1)在5小时内完全生物降解。在2 L连续填充床生物反应器中,KI菌株还可以在24小时内同时还原100 mg L-1染料和10 mg L-1 CrVI。在不存在CrVI的情况下,生物反应器中苯胺(反应性黑5的副产品)在24小时内即可完全降解,而在存在CrVI的情况下,降解率降至84%。 LC-MS分析证实了活性黑5和苯胺的生物降解。这项研究清楚地说明了使用具有多方面功能的细菌菌株在含热解碳(生物炭)作为细菌细胞支持基质的生物反应器中对制革废水进行生物处理的可行性。

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