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Gradient nanoporous phenolics as substrates for high-flux nanofiltration membranes by layer-by-layer assembly of polyelectrolytes 被引量:4
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作者 Yazhi Yang Qianqian Lan Yong Wang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第1期114-121,共8页
Thin film composite(TFC) membranes represent a highly promising platform for efficient nanofiltration(NF)processes. However, the improvement in permeance is impeded by the substrates with low permeances. Herein,highly... Thin film composite(TFC) membranes represent a highly promising platform for efficient nanofiltration(NF)processes. However, the improvement in permeance is impeded by the substrates with low permeances. Herein,highly permeable gradient phenolic membranes with tight selectivity are used as substrates to prepare TFC membranes with high permeances by the layer-by-layer assembly method. The negatively charged phenolic substrates are alternately assembled with polycation polyethylenimine(PEI) and polyanion poly(acrylic acid)(PAA)as a result of electrostatic interactions, forming thin and compact PEI/PAA layers tightly attached to the substrate surface. Benefiting from the high permeances and tight surface pores of the gradient nanoporous structures of the substrates, the produced PEI/PAA membranes exhibit a permeance up to 506 L? m-2?h-1?MPa-1, which is ~2–10 times higher than that of other membranes with similar rejections. The PEI/PAA membranes are capable of retaining N 96.1% of negatively charged dyes following the mechanism of electrostatic repulsion. We demonstrate that the membranes can also separate positively and neutrally charged dyes from water via other mechanisms.This work opens a new avenue for the design and preparation of high-flux NF membranes, which is also applicable to enhance the permeance of other TFC membranes. 展开更多
关键词 NANOFILTRATION membrane POLYELECTROLYTE Layer-by-layer assembly high permeance GRADIENT PHENOLIC
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Beta/碳纳米复合分子筛膜的制备 被引量:2
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作者 周志辉 邵国林 +2 位作者 杨建华 常利峰 王金渠 《过程工程学报》 EI CAS CSCD 北大核心 2007年第2期404-408,共5页
利用浸渍提拉方法,在平均孔径500 nm的管状α-Al_2O_3陶瓷管载体上成功制备了无缺陷的Beta/碳纳米复合分子筛膜.通过室温下单组分气体渗透实验,发现当Beta分子筛在聚糠醇/丙酮溶液中的含量逐渐加大时,复合膜的气体分离因数略有增加,同... 利用浸渍提拉方法,在平均孔径500 nm的管状α-Al_2O_3陶瓷管载体上成功制备了无缺陷的Beta/碳纳米复合分子筛膜.通过室温下单组分气体渗透实验,发现当Beta分子筛在聚糠醇/丙酮溶液中的含量逐渐加大时,复合膜的气体分离因数略有增加,同时气体渗透通量明显加大.经优化后氢气渗透通量比纯碳膜增加了一个数量级,说明Beta分子筛起到了加快气体渗透通量的作用.由SEM照片可以发现,随着Beta分子筛含量的增加,制备的纳米复合膜的厚度由平均14μm减少到7μm左右,从而减少了气体渗透的阻力.结合实验数据,探讨了沸石分子筛/碳复合膜气体渗透路径. 展开更多
关键词 Beta分子筛 碳分子筛 纳米复合膜 高渗透通量
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碳化硅纤维膜的制备及其含尘气体过滤性能
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作者 李冬燕 周晨沛 韩亚茹 《膜科学与技术》 CAS CSCD 北大核心 2023年第6期53-60,共8页
碳化硅陶瓷膜凭借其耐高温、耐腐蚀等优异性能广泛应用于含尘气体处理过程中,但是以碳化硅颗粒为原料制备的陶瓷膜孔隙率低,从而导致其气体渗透率偏小.而陶瓷纤维膜具有高孔隙率及透气性.本研究采用碳化硅纤维制备膜层,通过考察烧结温... 碳化硅陶瓷膜凭借其耐高温、耐腐蚀等优异性能广泛应用于含尘气体处理过程中,但是以碳化硅颗粒为原料制备的陶瓷膜孔隙率低,从而导致其气体渗透率偏小.而陶瓷纤维膜具有高孔隙率及透气性.本研究采用碳化硅纤维制备膜层,通过考察烧结温度、纤维含量、喷涂次数对膜性能的影响,最终在1150℃下制得无缺陷的碳化硅纤维膜,该膜平均孔径为7.0μm,气体渗透率为448 m3/(m^(2)·h·kPa).此外,该膜对PM0.3的截留率高于99.9%,过滤压降低于0.57 kPa,且具有良好的膜基结合力. 展开更多
关键词 碳化硅纤维膜 高气通量 含尘气体 过滤
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