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微波催化剂MgFe_2O_4-Fe_2O_3微波催化氧化降解结晶紫废水 被引量:7
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作者 高令飞 蒋尊芳 +2 位作者 周继承 殷诚 尹静雅 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2015年第12期74-79,共6页
提出一种新型的、无需添加氧化剂处理结晶紫废水的方法.通过共沉淀晶化法制备微波催化剂MgFe_2O_4-Fe_2O_3,在微波辐照下降解结晶紫废水,考察了催化剂用量、微波功率、辐照时间对结晶紫去除率的影响.结果表明:在一定条件下,去除率随着... 提出一种新型的、无需添加氧化剂处理结晶紫废水的方法.通过共沉淀晶化法制备微波催化剂MgFe_2O_4-Fe_2O_3,在微波辐照下降解结晶紫废水,考察了催化剂用量、微波功率、辐照时间对结晶紫去除率的影响.结果表明:在一定条件下,去除率随着催化剂用量的增加、微波功率的增大、微波辐照时间的延长而增加.当微波功率为800 W,辐照时间5min,催化剂用量1g/L时,处理200mg/L的结晶紫废水,去除率可达99.3%.本文还对微波催化氧化机理进行了探究,通过添加不同氧化基团清除剂的实验发现,氧化基团清除剂的添加降低了结晶紫的去除率,并提出了该反应的微观机理:微波催化剂吸收电磁波发生光电效应,产生电子和空穴对,与水等作用产生·OH,·OH再氧化降解废水中的有机物. 展开更多
关键词 微波催化 微波催化剂 MgFe2O4-Fe2O3 羟基自由基(·OH) 结晶紫废水
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Robust microwave catalytic decomposition of H_(2)S into H_(2) and S at low temperature over Mo_(2)C@CeO_(2) catalysts
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作者 SUN Hongyang CHEN Jun +2 位作者 TU Cong ZHOU Jicheng XU Wentao 《燃料化学学报(中英文)》 北大核心 2025年第9期1399-1415,I0027,I0028,共19页
The new technology of direct decomposition of H_(2)S into high value-added H_(2) and S,as an alternative to the Claus process in industry,is an ideal route that can not only deal with toxic and abundant H_(2)S waste g... The new technology of direct decomposition of H_(2)S into high value-added H_(2) and S,as an alternative to the Claus process in industry,is an ideal route that can not only deal with toxic and abundant H_(2)S waste gas but also recover clean energy H_(2),which has significant socio-economic and ecological advantages.However,the highly effective decomposition of H_(2)S at low temperatures is still a great challenge,because of the stringent thermodynamic equilibrium constraints(only 20% even at high temperature of 1010℃).Conventional microwave catalysts exhibit unsatisfactory performance at low temperatures(below 600℃).Herein,Mo_(2)C@CeO_(2) catalysts with a core-shell structure were successfully developed for robust microwave catalytic decomposition of H_(2)S at low temperatures.Two carbon precursors,para-phenylenediamine(Mo_(2)C-p)and meta-phenylenediamine(Mo_(2)C-m),were employed to tailor Mo_(2)C configurations.Remarkably,the H_(2)S conversion of Mo_(2)C-p@CeO_(2) catalyst at a low temperature of 550℃ is as high as 92.1%,which is much higher than the H_(2)S equilibrium conversion under the conventional thermal conditions(2.6% at 550℃).To our knowledge,this represents the most active catalyst for microwave catalytic decomposition of H_(2)S at low temperature of 550℃.Notably,Mo_(2)C-p demonstrated superior intrinsic activity(84%)compared to Mo_(2)C-m(6.4%),with XPS analysis revealing that its enhanced performance stems from a higher concentration of Mo_(2+)active sites.This work presents a substitute approach for the efficient utilization of H_(2)S waste gas and opens up a novel avenue for the rational design of microwave catalysts for microwave catalytic reaction at low-temperature. 展开更多
关键词 direct decomposition of H_(2)S microwave catalysis low temperature microwave selective catalytic effect Mo_(x)C@CeO_(2) H_(2)production
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硫化氢分解制取氢和单质硫研究进展 被引量:5
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作者 彭仁杰 周继承 +1 位作者 罗羽裳 胡晓宁 《天然气化工—C1化学与化工》 CAS CSCD 北大核心 2015年第1期89-94,共6页
综述了硫化氢分解制氢和硫技术的研究进展,包括反应原理,高温热分解法、催化热分解法、超绝热分解法、电化学法、微波分解法、等离子体法和光催化分解法等硫化氢分解制氢和硫技术,并比较和分析了各技术的优缺点,展望了的未来发展趋势。
关键词 硫化氢 分解 制氢
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