摘要
由于土地利用、环境、CO_(2)捕集的能耗、碳矿化与大气捕集的高昂费用,人们对BECCS技术的认知还不够深入。总结了BECCS与生物质热解的耦合机制,旨在将生物质能与CO_(2)捕获、埋存相结合,达到“零碳”的目标,为降低环境污染,寻求一条能实现“负排放”目标的可持续发展的新途径。
Due to the high cost of land use,environment,energy consumption of CO_(2) capture,carbon mineralization and atmospheric capture,people's understanding of BECCS technology is not deep enough.In this paper,the coupling mechanism between BECCS and biomass pyrolysis was summarized,aiming at combining biomass energy with CO_(2) capture and storage to achieve the goal of"zero carbon"and seeking a new way of sustainable development to achieve the goal of"negative emission"in order to reduce environmental pollution.
作者
肖语晨
孟芮同
潘颢丹
杨勇
闫玉麟
胡志勇
XIAO Yuchen;MENG Ruitong;PAN Haodan;YANG Yong;YAN Yulin;HU Zhiyong(Liaoning Petrochemical University,Fushun Liaoning 113001,China;Fushun Mining Group Co.,Ltd.Shale Refinery,Fushun Liaoning 113115,China)
出处
《辽宁化工》
2025年第2期209-213,共5页
Liaoning Chemical Industry
基金
大学生创新创业训练计划项目(项目编号:S202210148061)
2023辽宁省教育厅高校基本科研项目。
关键词
碳捕获和储存
协同作用
生物燃料裂化技术
二氧化碳负排放
Carbon capture and storage
Synergy
Biofuel cracking technology
Negative carbon dioxide emission