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电凝聚预处理湿法纺丝腈纶废水以提高其可生物降解性。

Electrocoagulation pretreatment of wet-spun acrylic fibers manufacturing wastewater to improve its biodegradability.

机构信息

Environmental Protection Institute of Light Industry, Beijing Academy of Science and Technology, Beijing 100089, PR China.

Environmental Protection Institute of Light Industry, Beijing Academy of Science and Technology, Beijing 100089, PR China.

出版信息

J Hazard Mater. 2014 Jun 15;274:465-72. doi: 10.1016/j.jhazmat.2014.04.033. Epub 2014 Apr 24.

DOI:10.1016/j.jhazmat.2014.04.033
PMID:24813666
Abstract

The electrocoagulation (EC) process was used to pretreat wastewater from the manufacture of wet-spun acrylic fibers, and the effects of varying the operating parameters, including the electrode area/wastewater volume (A/V) ratio, current density, interelectrode distance and pH, on the EC treatment process were investigated. About 44% of the total organic carbon was removed using the optimal conditions in a 100 min procedure. The optimal conditions were a current density of 35.7 mA cm(-2), an A/V ratio of 0.28 cm(-1), a pH of 5, and an interelectrode distance of 0.8 cm. The biodegradability of the contaminants in the treated water was improved by the EC treatment (using the optimal conditions), increasing the five-day biological oxygen demand/chemical oxygen demand ratio to 0.35, which could improve the effectiveness of subsequent biological treatments. The improvement in the biodegradability of the contaminants in the wastewater was attributed to the removal and degradation of aromatic organic compounds, straight-chain paraffins, and other organic compounds, which we identified using gas chromatography-mass spectrometry and Fourier transform infrared spectroscopy. The EC process was proven to be an effective alternative pretreatment for wastewater from the manufacture of wet-spun acrylic fibers, prior to biological treatments.

摘要

电凝聚(EC)工艺被用于预处理湿法纺丝腈纶纤维生产过程中的废水,考察了改变操作参数,包括电极面积/废水体积(A/V)比、电流密度、电极间距和 pH 值,对 EC 处理过程的影响。在 100 分钟的过程中,使用最佳条件可去除约 44%的总有机碳。最佳条件为电流密度 35.7 mA cm(-2)、A/V 比 0.28 cm(-1)、pH 值 5 和电极间距 0.8 cm。通过 EC 处理(使用最佳条件)提高了处理水中污染物的可生物降解性,将五日生化需氧量/化学需氧量比值提高到 0.35,这可以提高后续生物处理的效果。污染物在废水中的可生物降解性的提高归因于芳香族有机化合物、直链石蜡和其他有机化合物的去除和降解,我们使用气相色谱-质谱联用仪和傅里叶变换红外光谱仪对这些化合物进行了鉴定。EC 工艺被证明是一种有效的预处理方法,可用于湿法纺丝腈纶纤维生产废水,然后进行生物处理。

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