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磁改性羊粪衍生ZVI-生物炭的制备及其活化过一硫酸盐降解AO7特性研究 被引量:4
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作者 黄雯 张雪萍 +2 位作者 张建强 唐亚鑫 骆泽 《环境科学学报》 CAS CSCD 北大核心 2022年第7期196-208,共13页
以羊粪为原料,制备磁改性羊粪衍生ZVI-生物炭复合材料(SMF_(800)),通过BET、SEM、XRD、N2吸附-脱附等温线等对其表面形貌及晶体结构进行表征,并采用序批实验考查活化剂和过一硫酸盐(PMS)投加量、温度、溶液初始pH、无机阴离子等因素对AO... 以羊粪为原料,制备磁改性羊粪衍生ZVI-生物炭复合材料(SMF_(800)),通过BET、SEM、XRD、N2吸附-脱附等温线等对其表面形貌及晶体结构进行表征,并采用序批实验考查活化剂和过一硫酸盐(PMS)投加量、温度、溶液初始pH、无机阴离子等因素对AO7降解效率影响.结果表明,SMF_(800)拥有高度石墨化及多孔结构,在最佳条件下(PMS=0.8 g·L^(-1)、SMF_(800)=0.5 g·L^(-1)、AO7=20 mg·L^(-1)、T=25℃),40 min内AO7能被完全降解,在弱酸条件下有利于脱色,且活化剂经过3次循环使用后仍具有良好的活化效率.猝灭实验和XPS测试结果表明,自由基(SO_(4)^(-)∙、·OH、O_(2)^(-)·)和非自由基途径((1)^O_(2))协同作用于AO7的降解,其中以Fe^(0)还原PMS产生SO_(4)^(-)∙的自由基途径占主导地位,以Fe^(0)诱导碳电子、生物炭表面含氧官能团(C-OH和COOH)激活PMS产生(1)^O_(2)为辅,而SMF_(800)石墨化及大量的sp^(2)-C结构为电子转移提供良好的场所.综上,本研究设计制备了一种新型的生物炭基ZVI活化剂,以期为有机废水高效、低成本的处理方法提供新的技术支撑,同时也为粪源资源化利用提供新的途径. 展开更多
关键词 过一硫酸盐 酸性橙 ZVI 生物炭 自由基途径 非自由基途径
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Degradation of neonicotinoids with different molecular structures in heterogeneous peroxymonosulfate activation system through different oxidation pathways
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作者 Ruonan Guo Heng Zhang +3 位作者 Changsheng Guo Ningqing Lv Beidou Xi Jian Xu 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第9期331-339,共9页
The elimination of neonicotinoids(NEOs)from water has been a research priority due to their threats to human health and ecosystems.In this study,we established the heterogeneous peroxymonosulfate(PMS)activation system... The elimination of neonicotinoids(NEOs)from water has been a research priority due to their threats to human health and ecosystems.In this study,we established the heterogeneous peroxymonosulfate(PMS)activation system using manganese catalyst(Mn NC)and cobalt catalyst(Co NC)to trigger the nonradical oxidation and synergistic oxidation pathway,respectively to remove NEOs.The results showed that the nonradical oxidation system exhibited superior NEOs degradation capability.The composition of organic pollutants in wastewater significantly impacted subsequent degradation processes.The charge distribution and reaction sites of various NEOs were analyzed using density functional theory(DFT)calculations,and it demonstrated the electron distribution and activity of NEOs were significantly influenced by the type and number of substituents.Nitro group(–NO_(2))and cyanide group(–C≡N)were identified as strong electron-withdrawing groups and prone to be attacked by negatively charged radicals.The transformation of NEOs was analyzed,and result showed that the C and N sites adjacent to the nitro group and cyanide group were more susceptible to oxidation attacks.S and N atoms,which possess strong electronegativity and high electron cloud density,were identified as key active sites in the degradation pathway.The outcomes of this study provide valuable guidance for the oriented regulation of oxidation pathways towards efficient removal of NEOs in water. 展开更多
关键词 Fenton-like processes Molecular structure NEONICOTINOIDS nonradical oxidation Degradation pathway
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铜基生物炭活化过硫酸钠处理废水中EDTA-Cu 被引量:2
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作者 程帅龙 林亲铁 +2 位作者 肖荣波 罗昊昱 傅恒奕 《环境工程学报》 CAS CSCD 北大核心 2020年第12期3298-3307,共10页
为实现废水中EDTA-Cu的快速破络和去除,以铜基生物炭(CuO@BC)为催化材料活化过硫酸钠(PS),探究了EDTA-Cu、TOC和铜的去除效率及影响因素,初步揭示了催化机理。结果表明,CuO@BC-PS体系能够在60 min时有效去除97.1%的EDTA-Cu和69.6%的TOC... 为实现废水中EDTA-Cu的快速破络和去除,以铜基生物炭(CuO@BC)为催化材料活化过硫酸钠(PS),探究了EDTA-Cu、TOC和铜的去除效率及影响因素,初步揭示了催化机理。结果表明,CuO@BC-PS体系能够在60 min时有效去除97.1%的EDTA-Cu和69.6%的TOC,并且通过沉淀去除62.2%的铜。氧化铜(CuO)是提高复合材料催化作用的关键因素,降解反应体系中自由基作用不大,非自由基途径活化PS是降解EDTA-Cu的主要原因。以上研究结果可为络合态重金属污染废水的高级氧化处理提供参考。 展开更多
关键词 铜基生物炭(CuO@BC) 过硫酸钠(PS) EDTA-Cu 破络 非自由基途径
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Coupling of sulfur and boron in carbonaceous material to strengthen persulfate activation for antibiotic degradation:Active sites,mechanism,and toxicity assessment
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作者 Feng Ye Wei Sun +3 位作者 Kangfeng Pang Wenchao Yang Mengjie Pu Qichun Zhang 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第5期292-301,共10页
Carbon-mediated persulfate advanced oxidation processes(PS-AOPs)are appealing in contaminant remediation.For the first time,S,B-co-doped carbon-based persulfate activators were synthesized through direct carbonization... Carbon-mediated persulfate advanced oxidation processes(PS-AOPs)are appealing in contaminant remediation.For the first time,S,B-co-doped carbon-based persulfate activators were synthesized through direct carbonization of sodium lignosulfonate and boric acid.By degrading sulfamethoxazole(SMX),CSB-750 obtained 98.7%removal and 81.4%mineralization within 30 min.In comparison with solo S or B doping,S and B co-doped carbon showed the coupling effect for enhanced catalysis.The rate constant(kobs)of 0.1679 min^(-1)was 22.38-and 279.83-fold higher than those of CS-750(0.0075 min^(-1))and CB-750(0.0006 min^(-1)),respectively.The degradation was efficient at strong acidic and weak basic conditions(pH 3-9).Substantial inhibition effect was presented at strong basic condition(pH 10.95)and in presence of CO_(3)^(2-).The CO_(3)^(2-)-caused inhibition was the combined result of the cooperation of pH and quenching O_(2)^(·-).Thiophene sulfur,BC_(3),BC_(2)O,and structural defects were identified as the active sites for PS activation.Radical and nonradical pathways were both involved in the CSB-750/PS/SMX system,where^(1)O_(2)dominated the degradation,SO_(4)^(·-),·OH and direct electron transfer played the subordinate role,and O_(2)^(·-)served as a precursor for the formation of partial^(1)O_(2).The toxicity of degradation system,the effect of real water matrix,and the reusability of carbocatalysts were comprehensively analyzed.Nine possible degradation pathways were proposed.This work focuses on the catalytic performance improvement through the coupling effect of S,B co-doping,and develops an advanced heteroatom doping system to fabricate carbonaceous persulfate activators. 展开更多
关键词 S B-co-doped carbons Advanced oxidation process nonradical pathway Coupling effect
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