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Jie Fu Zhen Xu Qing-Shan Li Song Chen Shu-Qing An Qing-Fu Zeng Hai-Liang Zhu 《环境科学学报(英文版)》2010,22(4):512-518
A comparative study of treatment of simulated wastewater containing Reactive Red 195 using zero-valent iron/activated
carbon (ZVI/AC), microwave discharge electrodeless lamp/sodium hypochlorite (MDEL/NaClO) and the combination of ZVI/ACMDEL/
NaClO was conducted. The preliminary results showed the two steps method of ZVI/AC-MDEL/NaClO had much higher
degradation e ciency than both single steps. The final color removal percentage was nearly up to 100% and the chemical oxygen
demand reduction percentage was up to approximately 82%. The e ects of operational parameters, including initial pH value of
simulated wastewater, ZVI/AC ratio and particle size of ZVI were also investigated. In addition, from the discussion of synergistic
e ect between ZVI/AC and MEDL/NaClO, we found that in the ZVI/AC-MEDL/NaClO process, ZVI/AC could break the azo bond
firstly and then MEDL/NaClO degraded the aromatic amine products e ectively. Reversing the order would reduce the degradation
e ciency. 相似文献
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微波强化铁碳-双氧水体系处理填埋场渗滤液膜滤浓缩液研究 总被引:2,自引:2,他引:2
为了探讨微波(MW)/铁碳(Fe-C)/H_2O_2类芬顿反应对填埋场渗滤液膜滤浓缩液(简称"渗滤液浓缩液")中难降解有机物,系统研究了双氧水投量、Fe-C投量、初始pH值、微波输出功率和反应时间对浓缩液中有机污染物的去除规律,通过类比实验研究了MW/Fe-C/H_2O_2体系的反应协同作用;此外,采用紫外-可见和三维荧光光谱表征了浓缩液中溶解性有机物的分子结构变化;最后,利用SEM-EDS和XRD等表征对反应前后的Fe-C材料的催化机理进行了解析.结果表明,在双氧水投量为10 mL·L~(-1),Fe-C投量0.8 g·L~(-1),初始pH值为3,微波输出功率为450 W,反应时间为12 min时,其COD、腐殖质和色度的去除率达到了70.06%、94.61%和98.86%.与此同时,控制实验表明MW/Fe-C/H_2O_2具有较强的协同作用,且对有机物的降解效果远好于其他体系.经过MW/Fe-C/H_2O_2体系处理后,浓缩液中溶解性有机物的芳香性程度和腐殖质缩合度逐渐降低,并且腐殖质等大分子难降解有机物大幅去除,可生化性(BOD/COD值)也大幅提升.一方面,Fe-C材料包含了多种铁基氧化物等活性物质可与H_2O_2形成非均相芬顿反应;另一方面,在酸性条件下铁缓释淋滤产生的铁离子会与H_2O_2形成芬顿反应.并且,微波辐射作用可一定程度上强化上述过程,从而加速了有机物的去除.因此,MW/Fe-C/H_2O_2体系能够快速高效的对渗滤液浓缩液进行预处理,研究为高浓度有机废水的处理提供了借鉴. 相似文献