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无机离子聚合及其对材料和生物医学的变革 被引量:1
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作者 方威风 颜禄淼 +1 位作者 刘昭明 唐睿康 《中国科学:技术科学》 EI CSCD 北大核心 2023年第10期1625-1638,共14页
无机物由于其不同于有机高分子的合成方式,限制了其在诸多工程材料方面的应用.通过借鉴高分子化学中的封端策略,制备了系列类似高分子单体的无机离子寡聚体,实现其可控的聚合与交联,称为“无机离子聚合”.无机离子聚合实现了“像制备高... 无机物由于其不同于有机高分子的合成方式,限制了其在诸多工程材料方面的应用.通过借鉴高分子化学中的封端策略,制备了系列类似高分子单体的无机离子寡聚体,实现其可控的聚合与交联,称为“无机离子聚合”.无机离子聚合实现了“像制备高分子一样制备无机物”,发展出无机可塑制备新方法及有机-无机共聚物、仿生有机-无机复合结构材料和柔性矿物塑料等新型工程材料.基于无机离子聚合及新型工程材料研发的基础,进一步发展出生物硬组织的修复新方法,包括牙釉质的再生、牙本质与骨的仿生再修复.无机离子聚合与交联反应体系的提出实现了无机化学合成的基础理论突破,衍生出新型工程材料以及生物医学研究体系的创新,将为医工交叉领域的新突破提供助力. 展开更多
关键词 无机离子聚合 无机离子寡聚体 仿生制备 力学材料 硬组织修复
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Turning Industrial Residues into Resources: An Environmental Impact Assessment of Goethite Valorization 被引量:3
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作者 Andrea Di Maria Karel Van Acker 《Engineering》 2018年第3期421-429,共9页
Goethite is a metals-rich residue that occurs during zinc production. The feasibility of metal recovery from goethite has been demonstrated, but is not economically viable on an industrial scale. Therefore, goethite i... Goethite is a metals-rich residue that occurs during zinc production. The feasibility of metal recovery from goethite has been demonstrated, but is not economically viable on an industrial scale. Therefore, goethite is landfilled with considerable economic costs and environmental risks. The goal of this study is to evaluate the environmental performance of a new valorization strategy for goethite residues from zinc production, with the aims of: ① recovering the valuable zinc contained in the goethite and ② avoiding the landfilling of goethite by producing a clean byproduct. The presented goethite valoriza- tion strategy consists of a sequence of two processes: ① plasma fuming and ② inorganic polymerization of the fumed slag. Plasma fuming recovers the valuable metals by fuming the goethite. The metals-flee fumed slag undergoes a process of inorganic polymerization to form inorganic polymers, that can be used as a novel building material, as an alternative to ordinary Portland cement (OPC)-based concrete. Life- cycle assessment (LCA) is used to compare the environmental performance of the inorganic polymer with the environmental performances of equivalent OPC-based concrete. The LCA results show the tradeoff between the environmental burdens of the fuming process and inorganic polymerization versus the environmental benefits of metal recovery, OPC concrete substitution, and the avoidance of goethite land- filling. The goethite-based inorganic polymers production shows better performances in several environ- mental impact categories, thanks to the avoided landfilling of goethite. However, in other environmental impact categories, such as global warming, the goethite valorization is strongly affected by the high-energy requirements of the plasma-fuming process, which represent the environmental hotspots of the proposed goethite recycling scheme. The key elements toward the sustainability of goethite valorization have been identified, and include the use of a clean electric mix, more effective control of the fumed gas emissions, and a reduced use of fumed slag through increased efficiency of the inorganic polymerization process. 展开更多
关键词 Goethite recycling Slag plasma fuming Inorganic polymerization Life cycle assessment
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