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摘要:高能环境继2017年凭借“填埋场地下水系统污染防控与强化修复关键技术及应用”项目获国家科技进步二等奖之后,再次以“固废填埋场气液致灾原位测控技术与装备”项目荣膺国家技术发明奖二等奖,问鼎国家级最高奖项。国家科技奖是中国科技领域的顶级荣誉,获奖项目代表..
高能环境继2017年凭借“填埋场地下水系统污染防控与强化修复关键技术及应用”项目获国家科技进步二等奖之后,再次以“固废填埋场气液致灾原位测控技术与装备”项目荣膺国家技术发明奖二等奖,问鼎国家级最高奖项。国家科技奖是中国科技领域的顶级荣誉,获奖项目代表着重大技术突破与创新,对于推动行业进步、促进经济社会发展具有深远影响。 高能环境六里屯填埋场风险防控项目创造了柔性垂直防渗54米的全球最大膜体安装深度的纪录 此次获奖技术是由高能环境与中国科学院武汉岩土力学研究所、江苏省环境科学研究院等单位开展全方位合作,打通创新驱动“最后一公里”。历时20年系统化研究,发明了填埋场气液致灾测控新装备、新方法、新材料与新技术,解决了国家重大战略需求中的多项关键技术瓶颈难题,实现了填埋场气液渗漏致灾的精准探测、高效导排、长效阻控,使我国固废填埋处置技术水平进入国际领先行列。 After winning the second Prize of the National Science and Technology Progress Award in 2017 with the project of "Key Technologies and Applications of Pollution Prevention and Control of groundwater System in Landfill", the High Energy Environment won the second prize of the National Technological Invention Award again with the project of "In-situ Measurement and control Technology and Equipment of gas-liquid disaster caused by Solid waste landfill" and won the highest national award. The National Science and Technology Award is the top honor in the field of science and technology in China, and the winning projects represent major technological breakthroughs and innovations, which have a far-reaching impact on promoting industrial progress and promoting economic and social development. The High Energy Environment Liulitun Landfill Risk Control project set a record for the world's largest membrane installation depth with a flexible vertical impermeability of 54 meters The award-winning technology is a comprehensive cooperation between High Energy Environment and Wuhan Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Jiangsu Academy of Environmental Sciences and other units to open up the innovation-driven "last mile". It has lasted 20 years of systematic research, and invented new equipment, new methods, new materials and new technologies for measurement and control of gas-liquid disaster in landfill sites, solved a number of key technical bottlenecks in major national strategic needs, and realized accurate detection, efficient drainage and long-term resistance and control of disaster caused by gas-liquid leakage in landfill sites, making China's landfill waste disposal technology level enter the international leading ranks. |