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固化微生物膜—植被渗滤法处理生活污水的研究
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作者 李欢 梁贺升 +3 位作者 吴琳 卢少曼 冯万国 黄日英 《广东化工》 CAS 2011年第10期91-92,81,共3页
利用废陶瓷固化微生物膜与植被渗滤联合系统,对模拟生活污水进行处理,分别研究其对CODCr、总氮、总磷的去除率,将其与单独使用固化微生物膜处理模拟生活污水比较,研究结果表明,将固化微生物膜—植被渗滤系统联合使用时,相当于二级处理... 利用废陶瓷固化微生物膜与植被渗滤联合系统,对模拟生活污水进行处理,分别研究其对CODCr、总氮、总磷的去除率,将其与单独使用固化微生物膜处理模拟生活污水比较,研究结果表明,将固化微生物膜—植被渗滤系统联合使用时,相当于二级处理模拟废水,经微生物利用部分污染物后,随后排放的水经植被渗滤系统,滞留其中且被植物吸收利用,使得CODCr、总磷、总氮去除率明显优于单独使用固化微生物膜的去除率。这对处理农村生活废水有一定帮助,有效减少水体富营养化。 展开更多
关键词 固化生物 植被土壤渗滤 生活污水 污水处理
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聚丙烯腈纤维的非纺织用途 被引量:1
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作者 朱谱新 姚永毅 《四川纺织科技》 CAS 2003年第3期7-10,共4页
介绍了聚丙烯腈纤维在生物医学、高吸水树脂、离子交换树脂、污染控制、抗菌消臭、固体高聚物电解质及过滤与分离等方面的应用 。
关键词 聚丙烯腈纤维 非纺织布 应用 单分子 生物固化膜 化学改性纤维 聚合物电解质
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Integrated 3D bioprinting-based geometry-control strategy for fabricating corneal substitutes 被引量:7
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作者 Bin ZHANG Qian XUEU +8 位作者 Han-yi HU Meng-fei YU Lei GAO Yi-chen LUO Yang LI Jin-tao LI Liang MA Yu-feng YAO Hua-yong YANG 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2019年第12期945-959,共15页
Background:The shortage of donor corneas is a severe global issue,and hence the development of corneal alternatives is imperative and urgent.Although attempts to produce artificial cornea substitutes by tissue enginee... Background:The shortage of donor corneas is a severe global issue,and hence the development of corneal alternatives is imperative and urgent.Although attempts to produce artificial cornea substitutes by tissue engineering have made some positive progress,many problems remain that hamper their clinical application worldwide.For example,the curvature of tissue-engineered cornea substitutes cannot be designed to fit the bulbus oculi of patients.Objective:To overcome these limitations,in this paper,we present a novel integrated three-dimensional(3 D) bioprintingbased cornea substitute fabrication strategy to realize design,customized fabrication,and evaluation of multi-layer hollow structures with complicated surfaces.Methods:The key rationale for this method is to combine digital light processing(DLP) and extrusion bioprinting into an integrated 3 D cornea bioprinting system.A designable and personalized corneal substitute was designed based on mathematical modelling and a computer tomography scan of a natural cornea.The printed corneal substitute was evaluated based on biomechanical analysis,weight,structural integrity,and fit.Results:The results revealed that the fabrication of high water content and highly transparent curved films with geometric features designed according to the natural human cornea can be achieved using a rapid,simple,and low-cost manufacturing process with a high repetition rate and quality.Conclusions:This study demonstrated the feasibility of customized design,analysis,and fabrication of a corneal substitute.The programmability of this method opens up the possibility of producing substitutes for other cornea-like shell structures with different scale and geometry features,such as the glomerulus,atrium,and oophoron. 展开更多
关键词 3D bioprinting Corneal alternative Digital light processing(DLP) EXTRUSION Geometry-control
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