硅基高分散钴氧化物活化亚硫酸盐降解有机污染物的效能
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X703.1

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中国博士后科学基金(2019M653340);国家级大学生创新创业训练计划(201910611104);重庆市技术创新与应用示范专项重点研发项目(cstc2018jszx-zdyfxmX0002)


Effect of highly dispersed cobalt oxides based silicon activate sulfite to degrade organic compounds
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    摘要:

    近年来,基于硫酸根自由基(SO4·-)的高级氧化技术(SR-AOPs)迅速发展,高效稳定地产生SO4·-自由基的催化剂及相关机制成为新的研究重点。采用氨水改性吸附焙烧法制备非均相硅基高分散钴氧化物(CoNSi)催化剂,用于活化工业副产物亚硫酸盐(S(IV)),进而以废治污降解污染物。分别研究了不同pH值、不同CoNSi和亚硫酸钠(Na2SO3)投加量、不同橙黄Ⅱ(AO7)浓度以及氧气对底物降解效能的影响,分析了亚硫酸盐浓度和AO7浓度对AO7降解反应初始速率的影响。结果表明:当反应pH值为9.0,CoNSi和Na2SO3投加量分别为0.25 g/L和1.0 mM,AO7浓度为7 mg/L,氧气存在的条件下,AO7的降解率可达到79.4%。此外,序批实验证明了CoNSi活化亚硫酸盐的稳定性,自由基抑制实验证明了SO4·-自由基是降解AO7的主要活性物种。

    Abstract:

    In recent years, advanced oxidation technology (SR-AOPs) based on sulfate radical (SO4·-) is developing rapidly.The catalysts and related mechanisms for the stable and efficient generation of SO4·- have been focused by researcher.In this work, the heterogeneous silicon-based highly dispersed cobalt oxide (CoNSi) was synthesized through ammonia modified adsorption roasting method.Moreover, CoNSi was used to activate the industrial by-product sulfite (S(IV)) to achieve the purpose of “waste control by waste”.The effect of pH value, CoNSi and sodium sulfite (Na2SO3) dosages, AO7 concentration, and oxygen on the degradation of AO7 was investigated separately.Furthermore, the effect of sulfite concentration and AO7 concentration on the initial rate of AO7 degradation reaction was analyzed.The results indicated that the degradation efficiency of AO7 in aerobic environment could reach 79.4% under the conditions of initial pH of 9.0, CoNSi of 0.25 g/L, Na2SO3 of 1.0 mM and AO7 of 7 mg/L.Moreover, the stability of CoNSi activated sulfites was demonstrated by sequencing experiments.Radical trapping experiments elucidated that SO4·- is the main active species in this system.

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郑怀礼,肖伟龙,黄文璇,丁魏,李关侠,胡超.硅基高分散钴氧化物活化亚硫酸盐降解有机污染物的效能[J].土木与环境工程学报(中英文),2020,42(2):188-194. Zheng Huaili, Xiao Weilong, Huang Wenxuan, Ding Wei, Li Guanxia, Hu Chao. Effect of highly dispersed cobalt oxides based silicon activate sulfite to degrade organic compounds[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2020,42(2):188-194.10.11835/j. issn.2096-6717.2019.177

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  • 收稿日期:2019-09-22
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  • 在线发布日期: 2020-04-28
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