Advances and challenges in electrocatalysis for reactive capture of CO2WU Zhongzhi, LIU Jingyi, WANG Rujie, WANG Lidong1-12
Evaluation of environmental and economic benefits of CO2 utilization technologies and their future development trendsYANG Gang, WANG Chenxi, LUO Chunlin, GUO Zeyu, LIU Min, ZHANG Honglei, XU Mengxia, WU Tao13-22
Analysis on the literature review and development frontier of"carbon lock-in"research based on bibliometricsWEN Quan, SHAO Shipian, LIU Ning, ZHAO Qingyue, ZHOU Wenjun23-34
Carbon sequestration by microalgae to reduce carbon emission and strengthening strategyWANG Yi, CHEN Danqing, MAO Weiwei, LI Pengcheng, SONG Chunfeng35-42
Recent progress of membrane-based CO2 capture from biogas and flue gasYIN Dengguo, ZHOU Zhibin, WEI Jing, MA Yulei, QIN Zikang, DENG Min, WU Yuanming, DU Wentao, DAI Zhongde43-51
Research and application progress of carbon capture technology in the iron and steel industryYANG Yang, LI Yiren, LIU Juan, ZHU Tingyu, TIAN Jinglei, XU Wenqing52-64
Analysis and prospects of air pollution control techniques in the iron and steel industryWANG Lanying65-73
Recent progress on catalysts for low-concentration coal mine gas oxidationWU Jinwei, ZHANG Mingkang, YE Chengyin, RUI Zebao74-82
Effect of non-metallic P doping on electrocatalytic CO2 reduction performance of In2O3 catalystCHENG Qin, DENG Bangwei, DONG Fan83-90
Mechanism of CO2 capture into isophorone diamine-water binary solid-liquid biphasic absorbentLONG Qinghai, WANG Chen, GONG Juanjuan, CHENG Siyi, LYU Bihong, ZHOU Zuoming, JING Guohua91-99