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作 者:初广文[1] 邹海魁[1] 曾晓飞[1] 王洁欣[1] 陈建峰[1] CHU GuangWen;ZOU HaiKui;ZENG XiaoFei;WANG JieXin;CHEN JianFeng(Research Center of the Ministry of Education for High Gravity Engineering and Technology,College of Chemical Engineering,Beijing University of Chemical Technology,Beijing 100029,China)
机构地区:[1]北京化工大学化学工程学院教育部超重力工程研究中心,北京100029
出 处:《北京化工大学学报(自然科学版)》2018年第5期33-39,共7页Journal of Beijing University of Chemical Technology(Natural Science Edition)
基 金:国家自然科学基金(21436001)
摘 要:面向国家节能减排和产业转型升级的重大需求,围绕超重力反应强化新方向,以"新理论-新装备-新技术-工业应用"为主线,经过近30年的系统创新研究,开创了超重力反应工程新学科方向,发明了超重力强化反应结晶、多相反应及反应分离等系列新工艺,取得了国际原创性的成果。在新材料、化工、海洋工程、环保等流程工业领域成功实现了大规模工业应用,产生了显著的节能、减排、高品质化和增产成效。Our research on high-gravity reaction intensification is focused on the great national demand for energy saving,emission reduction and industrial restructuring and upgrading. Systematic innovation has been achieved following the route of "new theory-new equipment-new technology-industrial application". A new discipline named high-gravity reaction engineering has been developed after nearly 30 years of effort. A series of new high-gravity technologies,including reactive crystallization,multiphase reaction,and reactive separation have been invented.Some of these have been recognized as the first examples of their type in the world. Large-scale industrial applications have been successfully achieved in the areas of new materials,chemical industry,ocean engineering,environmental protection and other industrial fields,and have resulted in significant improvements in energy consumption,emission reduction,product quality and productivity.
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