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改进Elsorb深度烟气脱硫技术的模拟和优化 被引量:1
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作者 马玉龙 吴益昆 +3 位作者 高扬 杜乔昆 杨吉祥 胡晓萍 《化学反应工程与工艺》 CAS CSCD 北大核心 2018年第6期481-488,共8页
燃煤电厂排放的SO2是我国大气污染物的主要来源,随着排放法规日益严格,亟需先进的烟气脱硫技术实现超低排放。针对某厂2.16×109 Nm3/a的含硫烟气,采用改进后的Elsorb深度脱硫技术,建立了工业烟气深度脱硫工艺,并采用Aspen Plus软... 燃煤电厂排放的SO2是我国大气污染物的主要来源,随着排放法规日益严格,亟需先进的烟气脱硫技术实现超低排放。针对某厂2.16×109 Nm3/a的含硫烟气,采用改进后的Elsorb深度脱硫技术,建立了工业烟气深度脱硫工艺,并采用Aspen Plus软件进行了全流程模拟设计和优化。在建模过程中分析了吸收机理,选择了合适的物性和模型方法;分析优化了吸收液组成和工艺操作参数;并引入换热网络、热泵蒸发等节能技术实现节能减排。模拟结果表明:采用该脱硫技术和节能方案,废气中的SO2含量降至2.47 mg/Nm3,脱硫率达到99.92%,单位标准体积废气处理能耗(标煤)低至6.46′10-4 kgce/(Nm^3),并可得到3 900 t/a SO2气体(摩尔分率98.6%)和4 280 t/a的SO2水溶液(摩尔分率10%),可进一步资源化利用。 展开更多
关键词 二氧化硫 烟气 深度脱硫 工艺模拟
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Bio-derived N-doped porous carbon as sulfur hosts for high performance lithium sulfur batteries 被引量:3
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作者 LIU Yan-yan YAN Li-jing +9 位作者 ZENG Xian-qing LI Ze-heng ZHOU Shu-dong DU Qiao-kun MENG Xiang-juan ZENG Xiao-min LING Min SUN Ming-hao QIAN Chao LIANG Cheng-du 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1426-1434,共9页
Shuttle effect,poor conductivity and large volume expansion are the main factors that hinder the practical application of sulfur cathodes.Currently,rational structure designing of carbon-based sulfur hosts is the most... Shuttle effect,poor conductivity and large volume expansion are the main factors that hinder the practical application of sulfur cathodes.Currently,rational structure designing of carbon-based sulfur hosts is the most effective strategy to address the above issues.However,the preparation process of carbon-based sulfur hosts is usually complex and costly.Therefore,it is necessary to develop an efficient and cost-effective method to fabricate carbon hosts for high-performance sulfur cathodes.Herein,we reported the fabrication of a bio-derived nitrogen doped porous carbon materials(BNPC)via a molten-salt method for high performance sulfur cathodes.The long-range-ordered honeycomb structure of BNPC is favorable for the trapping of polysulfide(PS)species and accommodates the volumetric variation of sulfur during cycling,while the high graphitization degree of BNPC favors the redox kinetics of sulfur cathodes.Moreover,the nitrogen doping content not only enhances the electrical conductivity of BNPC,but also provides ample anchoring sites for the immobilization of PS,which plays a key role in suppressing the shuttle effect.As a result,the S@BNPC cathode exhibits a high initial specific capacity of 1189.4 mA·h/g at 0.2C.After 300 cycles,S@BNPC still maintains a capacity of 703.2 mA·h/g which corresponds to a fading rate of 0.13%per cycle after the second cycle.This work offers vast opportunities for the large-scale application of high performance carbon-based sulfur hosts. 展开更多
关键词 lithium sulfur batteries high graphitization nitrogen doping sulfur hosts shuttle effect
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Silane coupling agent treated copper foil as a current collector for silicon anode 被引量:1
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作者 MENG Xiang-juan ZENG Xiao-min +8 位作者 JIANG Wei LI Si-yuan DU Qiao-kun JI Ze-kai ZHU Wei-wei LIU Chuang LIANG Cheng-du LING Min YAN Li-jing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第11期3620-3629,共10页
Since the volume variation of silicon particles during cycling,the binding spots between Cu current collector and silicon anode raised to be one of the critical binding problems.In this work,an amino-modified Cu curre... Since the volume variation of silicon particles during cycling,the binding spots between Cu current collector and silicon anode raised to be one of the critical binding problems.In this work,an amino-modified Cu current collector(Cu^(*))is fabricated to tackle this issue.The amino groups on Cu^(*)surface increase its hydrophilicity,which is conducive to the curing process of aqueous slurry on its surface.Meanwhile,these amino groups can form abundant amide bonds with carboxyl groups from the adopted polyacrylic acid(PAA)binder.The combined action composed of the covalent bond and mechanical interlocking could reduce the contact loss inside the electrode.However,high concentration silane coupling agent treatment will weaken the surface roughness of Cu^(*)and weaken mechanical interlocking.What is more,the insulation of silane coupling agent reduces the conductivity of Cu and increases the impedance of battery.Considering the effect of silane coupling agent comprehensively,electrochemical performance of Cu^(*)-0.05%is best. 展开更多
关键词 lithium ion batteries silicon anodes Cu foils surface modification
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