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腐殖酸分子结构对电-Fenton性能的影响探究
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Effects of the Molecular Structure of Humic Acid on the Catalytic Performance of Electro-Fenton
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    采用超滤分级得到不同分子量的腐殖酸组分,并通过傅里叶红外、紫外可见、三维荧光光谱等表征其分子结构的差异. 用基于Pd/Fe3O4纳米催化剂的新型电芬顿技术去除不同分子量的腐殖酸与Cr(VI)形成的复合污染物. 研究表明,随着腐殖酸分子量的增大,其矿化效果越好,HA5(87.6%)> HA4(79.0%)> HA3(76.8%)> HA2(70.0%)> HA1(62.9%),且短时间内高分子量腐殖酸有较好的去除. 这归因于高分子量腐殖酸表面的阴离子与Pd/Fe3O4发生静电吸附. 此外,苯环取代度更高、共轭结构更多的高分子腐殖酸优先被原位生成的·OH氧化为多羟基化中间体,进而氧化开环,最终矿化为CO2和H2O. 而在TOC相同条件下,低分子量腐殖酸中短链羧酸占比较高,其与·OH的反应活性低,矿化速率慢. 总铬的去除同样遵循HA5(91.8%)> HA4(88.2%)> HA3(85.9%)> HA2(85.4%)>HA1(85.1%)的顺序,因为高分子量腐殖酸中含有更多能与Cr发生络合作用的活性位点,可在电解体系中协同去除Cr. 本研究表明了腐殖酸分子结构对金属纳米颗粒协同电化学氧化性能和与重金属相互作用的影响,为揭示腐殖酸与Cr(VI)复合污染物的环境行为及其有效去除提供重要参考.

    Abstract:

    Humic acids (HAs) with different molecular weights were obtained by ultrafiltration method,and their molecular structures were respectively characterized by FTIR,UV-vis and Fluorescence spectra. A novel electro-Fenton process based on Pd/Fe3O4 nanocatalyst was applied for the effective and simultaneous removal of HAs and Cr(VI). The results showed that a better mineralization efficiency of HAs was achieved with the increase of their molecular weights,following a descending trend of HA5(87.6%) > HA4(79.0%) > HA3(76.8%) > HA2(70.0%) > HA1(62.9%). The HAs with high molecular weights was found to exhibit higher removal efficiency,which was attributed to the electrostatic interaction between the negatively charged HAs molecules and the Pd/Fe3O4 nanoparticles. Moreover,the HAs with high molecular weights that possess more conjugated structures and more substituted groups on the benzene rings were readily attacked by the reactive species ·OH,underwent ring-opening reactions till completely mineralized into CO2,whereas the HAs with low molecular weights that have high percentage of carboxylic acids were less active to react with ·OH,resulting in a weak TOC removal efficiency. Meanwhile,the removal of total Cr followed the same decreasing trend of HA5(91.8%) > HA4(88.2%) > HA3(85.9%) > HA2(85.4%) > HA(85.1%),for the HAs with high molecular weights could provide more complexation sites to chromium species,contributing to the removal of Cr(VI) in the developed electrochemical system. In this work,we show that the molecular structures of HAs have effects on the catalytic performance of Pd/Fe3O4 nanoparticles-promoted electrochemical process for the removal of TOC and Cr(VI).

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黄彬彬,尹含双,曹兴凯.腐殖酸分子结构对电-Fenton性能的影响探究[J].湖南大学学报:自然科学版,2020,47(4):125~131

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  • 在线发布日期: 2020-04-23
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