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张艺欣
副教授
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张艺欣,博士,副教授,研究生导师。入选福建省高层次人才、厦门市高层次留学人员、泉州市高层次人才,山东省高等学校优秀青年创新团队、泉州市高层次人才创新团队核心成员,福建省土木建筑行业协会专家。主要从事海洋工程耐久性与新材料修复、超高性能水泥基复合材料设计等方向的研究。现主持国家自然科学基金、福建省自然科学基金等科研项目,并参与国家重点研发计划项目、国家自然科学基金面上项目,以第一/通讯作者在领域知名期刊发表SCI/EI收录论文30余篇,多篇入选ESI热点/高被引论文,拥有国家发明专利10余项,h-index为18,部分研究成果已实现技术转让与转化。

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教育经历

  • 2018.11-2019.12,美国俄亥俄州立大学,结构工程,国家公派联合培养博士生

  • 2014.09-2020.07,西安建筑科技大学,结构工程,博士

  • 2009.09-2013.07,西安建筑科技大学,土木工程,学士

更多科研成果请参考:

 



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Sustainable Reusing Marble Powder and Granite Powder in Cement-Based Materials: A Review

发布时间:2024-02-20
点击次数:

发表刊物:
ACS Sustainable Chemistry & Engineering (JCR Q1, TOP, 封面论文)
摘要:
Marble powder (MP) and granite powder (GP) are disposed of primarily through landfilling, which leads to severe environmental issues. The utilization of stone powder in cement-based materials offers a scalable disposal method. This paper begins by presenting the two powders’ basic physicochemical and micromorphological characteristics. Then the effects and mechanisms of MP and GP on the hydration process and microstructure of the concrete are examined. Moreover, the influences of different substitution methods, water-cement ratio, and other factors on the macro properties of concrete incorporating stone powder are comprehensively summarized, bridging the gap between the microscopic changes induced by the addition of stone powder and the macroscopic differences observed in experiments. The current state of relevant technical standards is analyzed. Leveraging previous research results, we used machine learning techniques to optimize the mixture ratio of stone powder concrete with the aim of achieving a comprehensive life cycle performance index. The results reveal that by fully exploiting the fineness and composition characteristics of MP and GP, along with employing a suitable mix design, stone powders exhibit filling and nucleation effects that accelerate cement hydration, refine the pore structure, and enhance the workability, mechanical properties, and durability of concrete. Following the proposed optimization of the concrete mixture ratio, substituting 16% of cement can maintain the standard strength of 50 MPa while reducing the carbon footprint by 108.8 kg CO2e/m3 as well as saving the cost of 284.8 yuan/m3. This Review is expected to promote further applications of waste stone powder in cement-based materials to achieve sustainable development.
是否译文:
发表时间:
2024-02-19
收录刊物:
SCI
发布期刊链接:
http://pubs-acs-org-s.w.hqu.edu.cn:8118/toc/ascecg/12/7