Environmental Pollutant Identification and Control Collaborative Innovation Platform

Date:2024-11-12 Source:Administrative Committee of Huairou Science City
I. Basic Information
  Project Subject: Research Center for Eco-Environmental Sciences Chinese Academy of Sciences
  Category: Science and Education Infrastructure of the 13th Five-Year Plan of the Chinese Academy of Sciences
  Location: East Area of Huairou Science City
  Area: 26.23 mu
  Building area: 24999 m2
Total investment: 204.65 million yuan
  Subject orientation: Earth System Science

50e78b1a46814fb0b087d974f543b267

Real-life View of Collaborative Innovation Platform for Identification and Control of Environmental Pollutants
  II. Main Contents
Project introduction: The Collaborative Innovation Platform for Identification and Control of Environmental Pollutants is an innovative platform that integrates the identification and control of pollutants in multiple environmental media such as water bodies, soil, atmosphere, and ecosystems.
This platform focuses on the Beijing-Tianjin-Hebei region and employs long-term monitoring in the region and cities to obtain information such as changing patterns and distribution characteristics of pollutants. By employing a comprehensive analysis and toxicity evaluation of risk pollutants, this platform elucidates the composition and toxicological properties of pollutants. Through comprehensive environmental simulation, this platform investigates the internal mechanisms of the transfer and transport of environmental pollutants, develops and demonstrates environmental engineering and ecological engineering technologies for the control and treatment of pollutants, and proposes decisions that are conducive to the comprehensive treatment of regional environmental pollution.
In light of the current regional pollution situation in China, and in particular the urgent need to comprehensively control the combined pollution in the Beijing-Tianjin-Hebei region, this platform is focused on providing a theoretical basis for scientific problems and methodologies for the identification of environmental pollutants in multiple media, as well as addressing technical challenges such as instrument development. This platform addresses the control technology of environmental pollutants in multiple media, showcases the demonstration of environmental and ecological engineering governance, and achieves comprehensive remediation and control of regional combined pollution.
By capitalizing on the interdisciplinary expertise of the Research Centre for Eco-Environmental Sciences, this platform is positioned to become a global leader in eco-environmental research and innovation.
The project plans to build four parts: an environmental pollutant identification sub-platform, an comprehensive environmental process simulation sub-platform, an environmental pollutant control sub-platform, and a support sub-platform.