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3D printing of poly(ethyleneimine)-functionalized Mg-Al mixed metal oxide monoliths for direct air capture of CO_(2)
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作者 Qingyang Shao Zhuozhen Gan +4 位作者 Bingyao Ge Xuyi Liu chunping chen Dermot O’Hare Xuancan Zhu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第9期491-500,共10页
Direct air capture(DAC)of CO_(2)plays an indispensable role in achieving carbon-neutral goals as one of the key negative emission technologies.Since large air flows are required to capture the ultradilute CO_(2)from t... Direct air capture(DAC)of CO_(2)plays an indispensable role in achieving carbon-neutral goals as one of the key negative emission technologies.Since large air flows are required to capture the ultradilute CO_(2)from the air,lab-synthesized adsorbents in powder form may cause unacceptable gas pressure drops and poor heat and mass transfer efficiencies.A structured adsorbent is essential for the implementation of gas-solid contactors for cost-and energy-efficient DAC systems.In this study,efficient adsorbent poly(ethyleneimine)(PEI)-functionalized Mg-Al-CO_(3)layered double hydroxide(LDH)-derived mixed metal oxides(MMOs)are three-dimensional(3D)printed into monoliths for the first time with more than 90%adsorbent loadings.The printing process has been optimized by initially printing the LDH powder into monoliths followed by calcination into MMO monoliths.This structure exhibits a 32.7%higher specific surface area and a 46.1%higher pore volume,as compared to the direct printing of the MMO powder into a monolith.After impregnation of PEI,the monolith demonstrates a large adsorption capacity(1.82 mmol/g)and fast kinetics(0.7 mmol/g/h)using a CO_(2)feed gas at 400 ppm at 25℃,one of the highest values among the shaped DAC adsorbents.Smearing of the amino-polymers during the post-printing process affects the diffusion of CO_(2),resulting in slower adsorption kinetics of pre-impregnation monoliths compared to post-impregnation monoliths.The optimal PEI/MeOH ratio for the post-impregnation solution prevents pores clogging that would affect both adsorption capacity and kinetics. 展开更多
关键词 3D printing Mixed metal oxides Amine functionalization Structured adsorbent Direct air capture
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匈牙利高等教育数字化转型:动因、行动与启示 被引量:2
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作者 陈春平 何子耕 徐冰娜 《中国教育信息化》 2023年第12期59-66,共8页
为紧跟欧盟高等教育数字化转型步伐、全面提升国家数字化整体水平和破解高等教育机构办学困境,匈牙利先后发布《高等教育中期战略行动计划(2016—2020年)》《国家数字战略(2021—2030年)》等一系列政策文件,提出实施更具针对性的高等教... 为紧跟欧盟高等教育数字化转型步伐、全面提升国家数字化整体水平和破解高等教育机构办学困境,匈牙利先后发布《高等教育中期战略行动计划(2016—2020年)》《国家数字战略(2021—2030年)》等一系列政策文件,提出实施更具针对性的高等教育数字化转型关键行动,包括擘画高等教育数字化蓝图、夯实数字化基础设施、探索高等教育教学科研数字化等。尽管匈牙利高等教育数字化转型取得了一定成效,但也面临着监管机制缺乏、激励体系薄弱等制度性问题。我国正处于高等教育数字化转型初步探索阶段,探讨匈牙利高等教育数字化转型的实施路径与启示,具有一定的参考意义。有鉴于此,提出以下几点建议:一是进一步强化政府力量主导高等教育数字化发展;二是持续加强高等教育数字化基础建设;三是加速推进高等教育教学数字化转型。 展开更多
关键词 高等教育 数字化转型 数字技术 数字化教学 匈牙利
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