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Bioaugmentation treatment of PV wafer manufacturing wastewater by microbial culture

机译:微生物培养生物强化处理光伏晶片生产废水。

摘要

The wastewater of silicon photovoltaic (PV) battery manufacturing contained polyethylene glycol (PEG) and detergents, which possessed the characteristics of high content of organics and low bioavailability, and then resulted in high treatment costs. To address the difficulties of existing treatment facilities in stably meeting discharge standards, eight tons of microbial culture (consisting of Bacillus sp. and Rhodococcus sp.) were added into the aerobic treatment unit. Subsequently, the effectiveness of the microbial culture in small-scale biological wastewater treatment was evaluated, and the operating conditions for engineering applications were optimized. The application study showed that the average chemical oxygen demand (COD) removal efficiency reached 95.0% when the pH value was 7, the gas-water ratio was 28: 1, the reflux ratio was 50%, which indicated an increase of 51.2% contrasting with the situation without bioaugmentation. The volume load of the treatment facilities after augmentation increased by 127.9% and could tolerate the COD shock load reached 2,340 mg.L-1. At last, the effluence met the class I standard of the Integrated Wastewater Discharge Standard (GB8978-1996).
机译:硅光伏电池制造废水中含有聚乙二醇(PEG)和去污剂,它们具有有机物含量高,生物利用度低的特点,处理成本高。为了解决现有处理设备难以稳定达到排放标准的困难,在需氧处理装置中添加了八吨微生物培养物(由芽孢杆菌属和红球菌属组成)。随后,评估了微生物培养在小规模生物废水处理中的有效性,并优化了工程应用的操作条件。应用研究表明,当pH值为7时,平均化学需氧量(COD)去除效率达到95.0%,气水比为28:1,回流比为50%,与之相比增加了51.2%。没有生物增强的情况。扩容后处理设施的体积负荷增加了127.9%,可以承受的COD冲击负荷达到2,340 mg.L-1。最后,废水达到了《综合废水排放标准》(GB8978-1996)的一级标准。

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