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Enhanced biological treatment of avermectin fermentation wastewater combined with physiochemical pretreatment

机译:阿维菌素发酵废水的强化生物处理结合物化预处理

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This paper aimed at the development of enhanced biological treatment process for the avermectin fermentation wastewater (AFW) after the UASB treatment by combining the physicochemical pretreatment and biological treatment approaches. After the pretreatment of the UASB-treated water using coagulation, the pretreated wastewater was subsequently flowed into a rCAA (reactor with repeatedly coupling of aerobes and anaerobes using macroporous carriers) system for further pollutant degradation and excess sludge reduction. By the chemical coagulation, COD, total N and total P in the UASB-treated water could be eliminated to 550-650 mg/L, 130-160 mg/L, 1 mg/L, respectively, and the dark color of the water was reduced to a low level. The toxicity experiment indicated that AFW had serious inhibition to the microbes in rCAA. The Bio-log and OUR test showed that the residual chemicals after the biological treatment showed low microbial degradability, which would be the key affecting factor for reducing the COD further in AFW.
机译:本文旨在通过结合物理化学预处理和生物处理方法,开发经过UASB处理的阿维菌素发酵废水(AFW)的增强生物处理工艺。在使用混凝剂对UASB处理过的水进行预处理之后,预处理后的废水随后流入rCAA(使用大孔载体将需氧菌和厌氧菌反复偶联的反应器)系统中,以进一步降解污染物并减少过多的污泥。通过化学混凝,UASB处理过的水中的COD,总氮和总P可以分别消除到550-650 mg / L,130-160 mg / L,1 mg / L和深色。降低到较低的水平。毒性实验表明,AFW对rCAA中的微生物具有严重的抑制作用。 Bio-log和OUR测试表明,经过生物处理后的残留化学物质显示出较低的微生物降解性,这可能是进一步降低AFW中COD的关键影响因素。

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