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湿式空气氧化预处理沼气发酵液:从颜色、毒性降低和沼气生成方面考察预处理效率。

Wet air oxidation pretreatment of biomethanated distillery effluent: mapping pretreatment efficiency in terms color, toxicity reduction and biogas generation.

机构信息

CSIR - National Environmental Engineering Research Institute, Nehru Marg, Nagpur, Maharashtra, India.

CSIR - Central Food Technological Research Institute, Mysore, Karnataka, India.

出版信息

Bioresour Technol. 2014 Apr;158:135-40. doi: 10.1016/j.biortech.2014.01.106. Epub 2014 Feb 4.

Abstract

The effluents from molasses-based distilleries after biomethanation are beset with problems of intensified dark brown color, high residual COD, low biodegradability index (BOD/COD ratio <0.2) and toxicity issues for possible land application as a potential fertilizer. Wet air oxidation (WAO) pretreatment of biomethanated distillery effluent resulted in substantial enhancement in the biodegradability index (BI) (up to 0.8). WAO pretreated effluent on anaerobic digestion indicated favorable biogas generation with methane content up to 64% along with concomitant COD reduction up to 54.75%. The HPLC analysis indicated that the pretreatment facilitated degradation of major color containing compounds-namely melanoidins, up to 97.8%. The pretreated effluent with enhanced biodegradability along with substantially reduced color also indicated positive effect on seed germination (up to 100%), implying toxicity reduction of the effluent post WAO pretreatment.

摘要

经生物甲烷化后的糖蜜基蒸馏厂废水存在颜色加深为深棕色、残余 COD 高、可生物降解性指数低(BOD/COD 比<0.2)以及毒性等问题,限制了其作为潜在肥料进行土地应用。湿式空气氧化(WAO)预处理生物甲烷化蒸馏厂废水可显著提高可生物降解性指数(BI)(高达 0.8)。WAO 预处理后的废水进行厌氧消化表明可产生有利的沼气,甲烷含量高达 64%,同时 COD 减少高达 54.75%。HPLC 分析表明,预处理有利于降解主要的含色化合物,即类黑素,高达 97.8%。具有增强的可生物降解性和显著降低的颜色的预处理废水也对种子发芽(高达 100%)有积极影响,表明 WAO 预处理后废水的毒性降低。

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