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人工合成骨修复材料的临床应用及展望 被引量:9
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作者 王子瑞 朱金亮 +6 位作者 何志敏 宋天喜 崔孟龙 崔云 胡艳丽 胡刚 仇志烨 《生物骨科材料与临床研究》 CAS 2021年第4期8-17,共10页
人工合成骨修复材料是最近一百余年间随着医学、材料学、生命科学等多学科领域的创新融合而建立起来,并处于知识和理论体系不断完善、技术和产品快速发展和变革之中的一门新兴交叉学科领域。与术中取自体骨、同种异体骨、异种骨等临床... 人工合成骨修复材料是最近一百余年间随着医学、材料学、生命科学等多学科领域的创新融合而建立起来,并处于知识和理论体系不断完善、技术和产品快速发展和变革之中的一门新兴交叉学科领域。与术中取自体骨、同种异体骨、异种骨等临床传统且较常用的植骨方式和材料相比,人工合成骨修复材料具有来源广泛、理化性质可调、免疫排异和疾病传播风险低等显著优势,材料的生物相容性、仿生特性、骨传导性、骨诱导性也在不断得到改进并接近天然骨,逐渐成为临床植骨手术应用中的主要选择之一。本篇综述从我国临床植骨的实际需求展开分析,对骨修复材料的发展特点和我国的相关产品及临床使用现状进行了综述,对人工合成骨修复材料的分类和性能特点进行了详细说明,对几种典型人工合成骨修复材料在多个医疗领域的临床应用做了详细介绍,并对人工合成骨修复材料的未来技术发展路径做出了归纳和展望。 展开更多
关键词 骨修复材料 人工合成 临床需求 发展特点 临床应用 技术发展路径
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Separation and Purification of Glufosinate Through Combination of an Electrodialysis Membrane and a Macroporous Adsorption Resin
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作者 cui menglong DU Xiaohua 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2019年第4期647-653,共7页
Glufosinate is a nonselective organophosphorus herbicide with low toxicity and high efficiency that is widely used in forestry, agriculture and other industries. In the process of manufacturing glufosinate, large amou... Glufosinate is a nonselective organophosphorus herbicide with low toxicity and high efficiency that is widely used in forestry, agriculture and other industries. In the process of manufacturing glufosinate, large amounts of ammonium chloride and coloured organic impurities are generated. Because of its high solubility in water, separation of glufosinate from inorganic salts is extremely difficult. Hence, a co-separation method combining an electrodialysis membrane and a macroporous adsorption resin was developed to obtain glufosinate with higlier purity. For the electrodialysis process, a glufosinate reaction solution was placed in a dilute chamber and desalinated. The concentration of inorganic salts in the resultant glufosinate aqueous solution was only 0.99 g/L under the optimal conditions of an operating voltage and a volume ratio of 9 V and 1:1, respectively. For the macroporous resin adsorption/desorption process, the sample solution treated by electrodialysis was pumped into the resin-filled column, which was eluted to obtain the eluent when the adsorption reached equilibrium. Consequently, nearly all the coloured organic impurities were removed under the optimal conditions, in which the resin type, pH value, flow rate, glufosinate concentration, temperature, ratio of ethanol and volume of eluent were LX-300C,3,0.5 mL·cm^2·min^-1,20 mg/mL,25℃, 50% and 400 mL, respectively. After the electrodialysis and adsorption/desorption process, the purity of the glufosinate was increased to 95.14%, and its recovery rate was as high as 98%. The advantages of this process included its ease of operation, environmental friendliness and low cost, which provided strong potential for its use in industrial applications. 展开更多
关键词 ELECTRODIALYSIS MEMBRANE GLUFOSINATE MACROPOROUS adsorption RESIN PURIFICATION
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