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Characterization of persistent colors and decolorization of effluent from biologically treated cellulosic ethanol production wastewater

机译:生物处理的纤维素乙醇生产废水中持续颜色和脱色的特征

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The high chroma of cellulosic ethanol production wastewater poses a serious environmental concern; however, color-causing compounds are still not fully clear. The characteristics of the color compounds and decolorization of biologically treated effluent by electro-catalytic oxidation were investigated in this study. Excitation-emission matrix (EEM), fourier transform infrared spectrometer (FTIR), UV-Vis spectra, and ultrafiltration (UF) fractionation were used to analyze color compounds. High chroma of wastewater largely comes from humic materials, which exhibited great fluorescence proportion (67.1 %) in the biologically treated effluent. Additionally, the color compounds were mainly distributed in the molecular weight fractions with 3-10 and 10-30 kDa, which contributed 53.5 and 34.6 % of the wastewater color, respectively. Further decolorization of biologically treated effluent by electro-catalytic oxidation was investigated, and 98.3 % of color removal accompanied with 97.3 % reduction of humic acid-like matter was achieved after 180 min. The results presented herein will facilitate the development of a well decolorization for cellulosic ethanol production wastewater and better understanding of the biological fermentation.
机译:纤维素乙醇生产废水的高色谱构成了严重的环境问题;然而,颜色的化合物仍然没有完全清楚。在本研究中研究了通过电催化氧化研究了通过电催化氧化的生物处理流出物的颜色化合物和脱色的特征。激发发射矩阵(EEM),傅里叶变换红外光谱仪(FTIR),UV-Vis光谱和超滤(UF)分级用于分析颜色化合物。废水的高色度大部分来自腐殖质材料,在生物处理的流出物中表现出很大的荧光比例(67.1%)。另外,颜色化合物主要分布在3-10和10-30kDa的分子量级分中,其分别贡献了53.5和34.6%的废水颜色。研究了通过电催化氧化进行生物处理的流出物的进一步脱色,并在180分钟后求助于伴随97.3%的腐殖酸状物质的颜色去除。本文提出的结果将促进纤维素乙醇生产废水的良好脱色的发展,并更好地了解生物发酵。

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