陆诗建 , 王风 , 刘玲 , 等 . 烟道气CO 2 捕集用醇胺溶液降解研究进展 [J ] . 低碳化学与化工 , 2024 , 49 ( 7 ): 13 - 22 .
LU S J , WANG F , LIU L , et al . Research progress on degradation of alcohol amine solution for CO 2 capture in flue gas [J ] . Low-Carbon Chemistry and Chemical Engineering , 2024 , 49 ( 7 ): 13 - 22 .
TANG H T , ZHANG S , CHEN W Y . Assessing representative CCUS layouts for China’s power sector toward carbon neutrality [J ] . Environmental Science & Technology , 2021 , 55 : 11225 - 11235 .
BAKER R W , FREEMAN B , KNIEP J , et al . CO 2 capture from cement plants and steel mills using membranes [J ] . Industrial & Engineering Chemistry Research , 2018 , 57 : 15963 - 15970 .
CHEN S Y , LIU J F , ZHANG Q , et al . A critical review on deployment planning and risk analysis of carbon capture, utilization, and storage (CCUS) toward carbon neutrality [J ] . Renewable and Sustainable Energy Reviews , 2022 , 167 : 112537 .
HU G P , SMITH K H , LIU L , et al . Reaction kinetics and mechanism between histidine and carbon dioxide [J ] . Chemical Engineering Journal , 2017 , 307 : 56 - 62 .
谢和平 , 刘涛 , 吴一凡 , 等 . CO 2 的能源化利用技术进展与展望 [J ] . 工程科学与技术 , 2022 , 54 ( 1 ): 145 - 156 .
XIE H P , LIU T , WU Y F , et al . Progress and prospect of CO 2 energy utilization technology [J ] . Advanced Engineering Sciences , 2022 , 54 ( 1 ): 145 - 156 .
MIAO Y H , HE Z J , ZHU X C , et al . Operating temperatures affect direct air capture of CO 2 in polyamine-loaded mesoporous silica [J ] . Chemical Engineering Journal , 2021 , 426 : 131875 .
申长俊 , 陆诗建 , 刘玲 , 等 . 船舶尾气净化技术研究进展 [J ] . 低碳化学与化工 , 2024 , 49 ( 4 ): 98 - 106 .
SHEN C J , LU S J , LIU L , et al . Research progress of ship exhaust purification technology [J ] . Low-Carbon Chemistry and Chemical Engineering , 2024 , 49 ( 4 ): 98 - 106 .
STENZEL F , GREVE P , LUCHT W , et al . Irrigation of biomass plantations may globally increase water stress more than climate change [J ] . Nature Communications , 2021 , 12 ( 1 ): 1512 .
WEI N , LI X C , LIU S N , et al . A strategic framework for commercialization of carbon capture, geological utilization, and storage technology in China [J ] . International Journal of Greenhouse Gas Control , 2021 , 110 : 103420 .
HUANG R T , WU H , YANG L J . Study on the ammonia emission characteristics in an ammonia-based WFGD system [J ] . Chemical Engineering Journal , 2020 , 379 : 122257 .
WEI N , JIAO Z S , ELLETT K , et al . Decarbonizing the coal-fired power sector in China via carbon capture, geological utilization, and storage technology [J ] . Environmental Science and Technology , 2021 , 55 ( 19 ): 13164 - 13173 .
YANG L , LV H D , JIANG D L , et al . Whether CCS technologies will exacerbate the water crisis in China?―A full life-cycle analysis [J ] . Renewable and Sustainable Energy Reviews , 2020 , 134 : 110374 .
陆诗建 , 祝文举 , 刘玲 , 等 . 胺吸收剂逃逸引发的大气气相反应进展 [J ] . 化工进展 , 2024 , 43 ( 11 ): 6397 - 6411 .
LU S J , ZHU W J , LIU L , et al . Advances in atmospheric gas-phase reactions initiated by amine absorbent escape [J ] . Chemical Industry and Engineering Progress , 2024 , 43 ( 11 ): 6397 - 6411 .
JAYAWEERA I , JAYAWEERA P , ELMORE R , et al . Update on mixed-salt technology development for CO 2 capture from post-combustion power stations [J ] . Energy Procedia , 2014 , 63 : 640 - 650 .
YANG L , WEI N , LV H D , et al . Optimal deployment for carbon capture enables more than half of China’s coal-fired power plant to achieve low-carbon transformation [J ] . Science , 2022 , 25 ( 12 ): 105664 .
KHAKHARIA P , BRACHERT L , MERTENS J , et al . Understanding aerosol based emissions in a post combustion CO 2 capture process: Parameter testing and mechanisms [J ] . International Journal of Greenhouse Gas Control , 2015 , 34 : 63 - 74 .
ZHANG L Y , SONG Y F , SHI J L , et al . Frontiers of CO 2 capture and utilization (CCU) towards carbon neutrality [J ] . Advances in Atmospheric Sciences , 2022 , 39 : 1252 - 1270 .
许毛 , 张贤 , 樊静丽 , 等 . 我国煤制氢与CCUS技术集成应用的现状、机遇与挑战 [J ] . 矿业科学学报 , 2021 , 6 ( 6 ): 659 - 666 .
XU M , ZHANG X , FAN J L , et al . Status quo, opportunities and challenges of integrated application of coal-to-hydrogen and CCUS technology in China [J ] . Journal of Mining Science and Technology , 2021 , 6 ( 6 ): 659 - 666 .
ZHANG W W , DAI C Y , LUO X M , et al . Policy incentives in carbon capture utilization and storage (CCUS) investment based on real options analysis [J ] . Clean Technologies and Environmental Policy , 2021 , 23 : 1311 - 1326 .
LI L C , CONWAY W , BURNS R , et al . Investigation of metal ion additives on the suppression of ammonia loss and CO 2 absorption kinetics of aqueous ammonia-based CO 2 capture [J ] . International Journal of Greenhouse Gas Control , 2017 , 56 : 165 - 172 .
王宁 , 陆诗建 , 刘玲 , 等 . 胺吸收体系中CO 2 催化解吸再生技术的研究进展 [J ] . 化工进展 , 2025 , 44 ( 1 ): 445 - 464 .
WANG N , LU S J , LIU L , et al . Research progress of catalytic regeneration for energy-efficient CO 2 capture in amine absorption system [J ] . Chemical Industry and Engineering Progress , 2025 , 44 ( 1 ): 445 - 464 .
LIANG Z W , FU K Y , IDEM R , et al . Review on current advances, future challenges and consideration issues for post-combustion CO 2 capture using amine-based absorbents [J ] . Chinese Journal of Chemical Engineering , 2016 , 24 : 278 - 288 .
BACHU S . Review of CO 2 storage efficiency in deep saline aquifers [J ] . International Journal of Greenhouse Gas Control , 2015 , 40 : 188 - 202 .
方梦祥 , 狄闻韬 , 易宁彤 , 等 . CO 2 化学吸收系统污染物排放与控制研究进展 [J ] . 洁净煤技术 , 2021 , 27 ( 2 ): 8 - 16 .
FANG M X , DI W T , YI N T , et al . Research progress on pollutant emission and control from CO 2 chemical absorption system [J ] . Clean Coal Technology , 2021 , 27 ( 2 ): 8 - 16 .
梅杰琼 , 陆诗建 , 任雪峰 , 等 . CO 2 间接矿化工业固废制备多晶型碳酸钙研究进展 [J ] . 洁净煤技术 , 2024 , 30 ( 3 ): 59 - 71 .
MEI J Q , LU S J , REN X F , et al . Preparation of various crystal forms of calcium carbonate from industrial solid waste by CO 2 i n direct mineralization [J ] . Clean Coal Technology , 2024 , 30 ( 3 ): 59 - 71 .
LUO Q L , ZHOU Q L , FENG B , et al . A combined experimental and computational study on the shuttle mechanism of piperazine for the enhanced CO 2 absorption in aqueous piperazine blends [J ] . Industrial & Engineering Chemistry Research , 2022 , 61 : 1301 - 1312 .
CAI B F , LI Q , LIU G Z , et al . Environmental concern-based site screening of carbon dioxide geological storage in China [J ] . Scientific Reports , 2017 , 7 ( 1 ): 7598 .
樊静丽 , 李佳 , 晏水平 , 等 . 我国生物质能-碳捕集与封存技术应用潜力分析 [J ] . 热力发电 , 2021 , 50 ( 1 ): 7 - 17 .
FAN J L , LI J , YAN S P , et al . Application potential analysis for bioenergy carbon capture and storage technology in China [J ] . Thermal Power Generation , 2021 , 50 ( 1 ): 7 - 17 .
FULK S M . Measuring and modeling aerosols in carbon dioxide capture by aqueous amines [D ] . Austin : The University of Texas at Austin , 2016 .
SCHABER K . Aerosol formation in absorption processes [J ] . Chemical Engineering Science , 1995 , 50 ( 8 ): 1347 - 1360 .
ZHANG Y , KANG J L , FULK S , et al . Modeling amine aerosol growth at realistic pilot plant conditions [J ] . Energy Procedia , 2017 , 114 : 1045 - 1060 .
WANG T , HOU C L , GE K , et al . Spontaneous cooling absorption of CO 2 by a polymeric ionic liquid for direct air capture [J ] . Journal of Physical Chemistry Letters , 2017 , 8 ( 17 ): 3986 - 3990 .
KNUDSEN J N , BADE O M , ANHEDEN M , et al . Novel concept for emission control in post combustion capture [J ] . Energy Procedia , 2013 , 37 : 1804 - 1813 .
DENG H , BIELICKI J M , OPPENHEIMER M . Leakage risks of geologic CO 2 storage and the impacts on the global energy system and climate change mitigation [J ] . Climatic Change , 2017 , 144 ( 2 ): 151 - 163 .
MERTENS J , ANDERLOHR C , ROGIERS P , et al . A wet electrostatic precipitator (WESP) as countermeasure to mist formation in amine based carbon capture [J ] . International Journal of Greenhouse Gas Control , 2014 , 31 : 175 - 181 .
MERTENS J , BRUNS R , SCHALLERT B , et al . Effect of a gas-gas-heater on H 2 SO 4 aerosol formation: Implications for mist formation in amine based carbon capture [J ] . International Journal of Greenhouse Gas Control , 2015 , 39 : 470 - 477 .
DA SILVA E F , KOLDERUP H , GOETHEER E , et al . Emission studies from a CO 2 capture pilot plant [J ] . Energy Procedia , 2013 , 37 : 778 - 783 .
YU H , QI G , WANG S , et al . Results from trialling aqueous ammonia-based post-combustion capture in a pilot plant at Munmorah power station: Gas purity and solid precipitation in the stripper [J ] . International Journal of Greenhouse Gas Control , 2012 , 10 : 15 - 25 .
KHAKHARIA P , HUIZINGA A , JURADO L C , et al . Acid wash scrubbing as a countermeasure for ammonia emissions from a post-combustion CO 2 capture plant [J ] . Industrial & Engineering Chemistry Research , 2014 , 53 ( 33 ): 195 - 204 .
张娟娟 , 陆诗建 , 刘玲 , 等 . CO 2 驱采及输送防腐 [J ] . 现代化工 , 2024 , 44 ( 5 ): 66 - 69 .
ZHANG J J , LU S J , LIU L , et al . CO 2 flooding and transportation anticorrosion [J ] . Modern Chemical Industry , 2024 , 44 ( 5 ): 66 - 69 .
MANI F , PERUZZINI M , BARZAGLI F . The role of zinc(II) in the absorption-desorption of CO 2 by aqueous NH 3 , a potentially cost-effective method for CO 2 capture and recycling [J ] . ChemSusChem , 2008 , 1 ( 3 ): 228 - 235 .
NIU Z Q , GUO Y C , ZENG Q , et al . Experimental studies and rate-based process simulations of CO 2 absorption with aqueous ammonia solutions [J ] . Industrial & Engineering Chemistry Research , 2012 , 51 ( 14 ): 9 - 19 .
DING H , ZHENG H R , LIANG X , et al . Getting ready for carbon capture and storage in the iron and steel sector in China: Assessing the value of capture readiness [J ] . Journal of Cleaner Production , 2019 , 244 : 118953 .
SUN L L , DOU H G , LI Z P , et al . Assessment of CO 2 storage potential and carbon capture, utilization and storage prospect in China [J ] . Journal of the Energy Institute , 2018 , 91 ( 6 ): 970 - 977 .
BONALUMI D , GIUFFRIDA A . Investigations of an air-blown integrated gasification combined cycle fired with high-sulphur coal with post-combustion carbon capture by aqueous ammonia [J ] . Energy , 2016 , 117 : 43 - 49 .
GAL E . Use of SO 2 from flue gas for acid wash of ammonia : US 7867322 [P ] . 2011-11-01 .
张贤 , 李阳 , 马乔 , 等 . 我国碳捕集利用与封存技术发展研究 [J ] . 中国工程科学 , 2021 , 23 ( 6 ): 70 - 80 .
ZHANG X , LI Y , MA Q , et al . Development of carbon capture, utilization and storage technology in China [J ] . Engineering Science , 2021 , 23 ( 6 ): 70 - 80 .
韩永嘉 , 王树立 , 张鹏宇 , 等 . CO 2 分离捕集技术的现状与进展 [J ] . 天然气工业 , 2009 , 29 ( 12 ): 79 - 82 .
HAN Y J , WANG S L , ZHANG P Y , et al . Current status and progress of CO 2 separation and capture technology [J ] . Natural Gas Industry , 2009 , 29 ( 12 ): 79 - 82 .
MERTENS J , ANDERLOHR C , ROGIERS P , et al . A wet electrostatic precipitator (WESP) as countermeasure to mist formation in amine based carbon capture [J ] . International Journal of Greenhouse Gas Control , 2014 , 31 : 175 - 181 .
MA S C , SONG H H , ZANG B , et al . Experimental study on additives inhibiting ammonia escape in carbon capture process using ammonia method [J ] . Chemical Engineering Research and Design , 2013 , 91 ( 12 ): 2775 - 2781 .
MOSER P , SCHMIDT S , STAHL K , et al . Demonstrating emission reduction-results from the post-combustion capture pilot plant at niederaussem [J ] . Energy Procedia , 2014 , 63 : 902 - 910 .
KAMIJO T , KAJIYA Y , ENDO T , et al . SO 3 impact on amine emission and emission reduction technology [J ] . Energy Procedia , 2013 , 37 : 1793 - 1796 .
KNUDSEN J N , BADE O M , ANHEDEN M , et al . Novel concept for emission control in post combustion capture [J ] . Energy Procedia , 2013 , 37 : 1804 - 1813 .
KHAKHARIA P , KVAMSDAL H M , DA SILVA E F , et al . Field study of a brownian demister unit to reduce aerosol based emission from a post combustion CO 2 capture plant [J ] . International Journal of Greenhouse Gas Control , 2014 , 28 : 57 - 64 .
DU Y , YUAN Y , ROCHELLE G T . Volatility of amines for CO 2 capture [J ] . International Journal of Greenhouse Gas Control , 2017 , 58 : 1 - 9 .
EDWARDS R , CELIA M A . Infrastructure to enable deployment of carbon capture, utilization, and storage in the United States [J ] . Proceedings of the National Academy of Sciences , 2018 , 115 : 201806504 .
陆诗建 , 张娟娟 , 杨菲 , 等 . 化学吸收法胺液逃逸控制技术研究进展 [J ] . 化工进展 , 2024 , 43 ( 8 ): 4562 - 4570 .
LU S J , ZHANG J J , YANG F , et al . Research progress of amine escape control technology by chemical absorption method [J ] . Chemical Industry and Engineering Progress , 2024 , 43 ( 8 ): 4562 - 4570 .
NGUYEN T , HILIARD M , ROCHELLE G . Volatility of aqueous amines in CO 2 capture [J ] . International Journal of Greenhouse Gas Control , 2011 , 4 : 707 - 715 .
EIKELAND P , SKJAERSETH J B . The politics of low-carbon innovation: Implementing the European Union’s strategic energy technology plan [J ] . Energy Research & Social Science , 2021 , 76 : 102043 .
陆诗建 , 张娟娟 , 杨菲 , 等 . CO 2 管道输送技术进展与未来发展浅析 [J ] . 南京大学学报(自然科学) , 2022 , 58 ( 6 ): 944 - 952 .
LU S J , ZHANG J J , YANG F , et al . Progress and future development trend of CO 2 pipeline transportation technology [J ] . Journal of Nanjing University (Natural Sciences) , 2022 , 58 ( 6 ): 944 - 952 .
YANG J T , GAO H Y , HU G X , et al . Novel process of removal of sulfur dioxide by aqueous ammonia-fulvic acid solution with ammonia escape inhibition [J ] . Energy & Fuels , 2016 , 30 : 3205 - 3218 .
HU B Y , ZHAI H B . The cost of carbon capture and storage for coal-fired power plants in China [J ] . International Journal of Greenhouse Gas Control , 2017 , 65 : 23 - 31 .
HUANG Y , YI Q , KANG J X , et al . Investigation and optimization analysis on deployment of China coal chemical industry under carbon emission constraints [J ] . Applied Energy , 2019 , 254 : 113684 .
MAJEED H , SVENDSEN H F . Effect of water wash on mist and aerosol formation in absorption column [J ] . Chemical Engineering Journal , 2018 , 333 : 636 - 648 .
KARIMI M , HILLESTAD M , SVENDSEN H F . Investigation of intercooling effect in CO 2 capture energy consumption [J ] . Energy Procedia , 2011 , 4 : 1601 - 1607 .
MAJEED H , SVENDSEN H F . Characterization of aerosol emissions from CO 2 capture plants treating various power plant and industrial flue gases [J ] . International Journal of Greenhouse Gas Control , 2018 , 74 : 282 - 295 .