
个人简况:
徐东,男,2022年毕业于北京科技大学,获环境科学与工程博士学位,现供职于生态环境部南京环境科学研究所固体废物污染防治技术中心,主要研究方向为多源固体废物协同制备绿色低碳胶凝材料、固废再生利用产品环境风险评估、重金属污染控制技术。主持/参与国家重点研发计划子课题、中央级公益性科研院所基本科研业务费专项、环保公益项目等5项,国内外核心期刊发表论文20 余篇,其中含 SCI 论文12 篇, 授权发明专利3项。作为主要完成人完成危险废物鉴别项目、危废应急处置方案、非正规固体废物堆场综合整治及环境损害评估工作近10余项。
近年承担科研项目情况:
1、国家重点研发计划子课题:钢铁尘泥与有机固废协同利用污染控制技术及标准(2022YFC3901405)(骨干,2022-2025);
2、中央级公益性科研院所基本科研业务费专项:钢铁冶金渣与化工渣耦合制备固废基胶凝材料关键技术及减碳效果评估(主持,2023-2025);
3、南京所“碳达峰 碳中和”研究专项:含碳化赤泥全固废胶凝材料强度演变及固碳机理研究(主持,2023-2025);
近期代表论著:
1. Effects of steel slag on the properties and microstructure of magnesium oxysulfate cement prepared by magnesium desulfurization byproducts. Journal of Materials Research and Technology, 2024. 30: 3200-3212.(通讯作者)
2. Performance optimization and carbon reduction effect of solid waste-based cementitious materials from iron and steel metallurgical slags and ammonia-soda residue[J]. Chemical Engineering Journal Advances, 2024,17:100584.(第一作者)
3. The Impact of Fly Ash on the Properties of Cementitious Materials Based on Slag-Steel Slag-Gypsum Solid Waste[J]. Materials, 2024,17(19):4696.(通讯作者)
4. Study on Effects of Refining Slag on Properties and Hydration of Cemented Solid Waste-Based Backfill[J]. Materials, 2022,15(23):8338.(通讯作者)
5. Ammonia-soda residue and metallurgical slags from iron and steel industries as cementitious materials for clinker-free concretes[J]. Journal of Cleaner Production, 2021,307:127262.(第一作者)
6. Characterization and Hydration Mechanism of Ammonia Soda Residue and Portland Cement Composite Cementitious Material[J]. Materials, 2021,14(17):4794.(第一作者)
7. 碱渣复合胶凝材料制备无熟料混凝土[J].哈尔滨工业大学学报,2020,52(08):151-160.(第一作者)
8. Influence of steel slag to granulated blast furnace slag ratio on the chloride binding and penetration of metallurgical slag-based binder[J]. Construction and Building Materials, 2024,431:136571.(第二作者)
9. Application of molten iron desulfurization slag to replace steel slag as an alkaline component in solid waste-based cementitious materials[J]. Journal of Cleaner Production, 2022,377:134353.(第二作者)
10. Study on the Solidification Mechanism of Cr in Ettringite and Friedel’s Salt[J]. Metals, 2022,12(10):1697.(第二作者)
联系方式:
Email: xudong@nies.org