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Experimental Investigation on the Performance of[APMIm][NTf_(2)]for Capturing CO_(2)from Flue Gas of the Cement Kiln Tail 被引量:2
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作者 PAN Lisheng SHI Weixiu +1 位作者 LI Bing WEI Xiaolin 《Journal of Thermal Science》 SCIE EI CAS CSCD 2021年第5期1780-1788,共9页
Facing the global warming trend,humanity has been paying more and more attention to the Carbon Capture,Utilization and Storage.Large amounts of CO_(2)is emitted with burning fossil fuel as well as by some special indu... Facing the global warming trend,humanity has been paying more and more attention to the Carbon Capture,Utilization and Storage.Large amounts of CO_(2)is emitted with burning fossil fuel as well as by some special industrial processes like the decomposition of calcium carbonate in a cement plant.The cement industry contributes about 7%of the total worldwide CO_(2)emissions and the CO_(2)concentration of flue gas of the cement kiln tail even exceeds 30%.Ionic liquid is considered to be an effective and potential material to capture CO_(2).In order to investigate the performance of ionic liquids for capturing CO_(2)from flue gas of the cement kiln tail,an experiment system was established and an ionic liquid,[APMIm][NTf_(2)](1-aminopropyl-3-imidazolium bis(trifluoromethylsulfonyl)imine),was tested using pure CO_(2)and simulated gas.The results showed that both physical and chemical absorption play roles while physical absorption dominates in the absorption process.Both the absorption capacity and rate decrease with raising the operating temperature.In the experiment with pure CO_(2),the absorption capacity is 0.296molCO_(2)⋅molIL−1 at 30℃ and 0.067molCO_(2)⋅molIL−1 at 70℃.Meanwhile,the ionic liquid can be regenerated for recycling without obvious changes of the absorption capacity.When the ionic liquid is used for flue gas of the cement kiln tail rather than pure CO_(2),a sharp decrease of the absorption capacity and rate was observed obviously.The absorption capacity at 30℃ dropped even to 0.038molCO_(2)⋅mol_(IL)^(−1),12.8%of that for pure CO_(2).Additionally,a natural desorption of CO_(2)from the ionic liquid was observed and affected the experimental results of the absorption capacity and the absorption-desorption rate to some extent. 展开更多
关键词 ionic liquid CO_(2)absorption Carbon Capture Utilization and Storage(CCUS) flue gas of the cement kiln tail
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水泥窑尾系统烟气SCR脱硝工艺优化方法 被引量:3
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作者 臧剑波 《中国水泥》 CAS 2022年第6期63-67,共5页
为提高SCR脱硝工艺脱除水泥窑尾系统烟气中硝的效率,提出水泥窑尾系统烟气SCR脱硝工艺优化方法。根据水泥窑尾系统烟气SCR脱硝工艺脱硝过程中,SCR系统出入口NOx浓度变化,判断水泥窑尾系统烟气SCR脱硝工艺受供氨量、烟气温度、烟气流速... 为提高SCR脱硝工艺脱除水泥窑尾系统烟气中硝的效率,提出水泥窑尾系统烟气SCR脱硝工艺优化方法。根据水泥窑尾系统烟气SCR脱硝工艺脱硝过程中,SCR系统出入口NOx浓度变化,判断水泥窑尾系统烟气SCR脱硝工艺受供氨量、烟气温度、烟气流速、催化剂性能的影响。基于此,针对SCR脱硝工艺中SCR系统的反应器结构导流板和喷氨格栅两部分进行优化。应用试验结果:此次研究方法优化后的SCR脱硝工艺平均供氨流量在90~100Nm^(3)/h之间,SCR反应器入口NOx浓度在900~800mg/Nm^(3)之间,SCR出口NOx浓度在50~40mg/Nm^(3)之间,经脱硝效率公式计算,优化后的SCR脱硝工艺脱硝效率较未优化的SCR脱硝工艺脱硝效率最大值提高3.75%~5.56%。 展开更多
关键词 水泥窑尾系统 烟气 SCR 脱硝工艺 工艺优化
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水泥窑尾系统烟气SCR脱硝工艺优化方法 被引量:1
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作者 臧剑波 《水泥工程》 CAS 2021年第6期9-12,20,共5页
为了提高SCR脱硝效率,以水泥窑尾系统为研究对象,提出烟气SCR脱硝工艺优化方法。依据SCR脱硝工艺脱硝方式,选择的V_(2)O_(5)-TiO_(2)成分催化剂,从脱硝控制、反应机理、反应物扩散三个方面,确定水泥窑尾系统烟气SCR脱硝工艺脱硝的反应原... 为了提高SCR脱硝效率,以水泥窑尾系统为研究对象,提出烟气SCR脱硝工艺优化方法。依据SCR脱硝工艺脱硝方式,选择的V_(2)O_(5)-TiO_(2)成分催化剂,从脱硝控制、反应机理、反应物扩散三个方面,确定水泥窑尾系统烟气SCR脱硝工艺脱硝的反应原理;计算SCR脱硝工艺脱硝的效率,结合SCR脱硝工艺反应原理,提取SCR脱硝工艺中影响SCR脱硝工艺脱硝效率的烟气温度和流速、氨氮供应量、催化剂性能等因素;采用最小二乘支持向量机,设定优化函数,优化SCR脱硝工艺的烟气温度和流速、氨氮供应量、催化剂性能。设定SCR脱硝工艺试验参数值,应用试验结果:平均供氨流量在设定值范围±0.3 m^(3)/h上下波动,SCR反应器入口NO_(x)浓度,在设定值的上0.4 mg/m^(3)、下0.3 mg/m^(3)范围内波动,SCR出口NO_(x)浓度在设定值上下R0.5 mg/m^(3)波动,对于脱硝过程控制能力高,经脱硝效率计算公式计算,优化后的SCR脱硝工艺脱硝效率提高了3.75%。 展开更多
关键词 水泥 窑尾系统 烟气 SCR 脱硝工艺 工艺优化
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