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Ultrafiltration and microfiltration membranes in latex purification by diafiltration with suction

机译:通过抽滤进行乳胶纯化的超滤和微滤膜

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Operation conditions of diafiltration with suction in purification of poly(glycidyl) methacrylate latex from sodium tetraborate and emulsifier were studied in a batch process using ultrafiltration blend polysulfone/poly(vinylpyrrolidone) and microfiltration Synpor~R membranes. Intensity of permeate suction was controlled by changing the pumping rate at fixed cross-sections of the inlet tubes in both the retentate and permeate lines. An optimum value of flow rate was determined for each membrane type to ensure the best purification efficiency. Operating at this flow rate prevented not only undesirable dilution of the latex with osmotic water but also ensured the highest membrane permeability to solutes without cake formation on the membrane surface. It was shown that 92% degree oflatex purification could be obtained by 8-h suction diafiltration with Synpor membrane having the pore entrance sizes close to nanoparticle dimensions. The possibility of complete purification of GMA nanoparticles from impurities using the hybrid membrane process combining dialysis followed by suction diafiltration with microporous membranes, and ultrafiltration with an appropriate membrane is discussed.
机译:采用超滤共聚砜/聚乙烯吡咯烷酮和微滤Synpor〜R膜,通过分批工艺研究了抽滤渗滤液从四硼酸钠和乳化剂中纯化聚甲基丙烯酸缩水甘油酯乳胶的操作条件。通过改变滞留物和渗透物管线中入口管固定横截面的泵送速率来控制渗透物抽吸强度。确定每种膜类型的最佳流速,以确保最佳纯化效率。以该流速操作不仅防止了乳胶被渗透水稀释,而且确保了膜对溶质的最高膜渗透性,而在膜表面上没有形成饼。结果表明,采用孔径接近纳米颗粒尺寸的Synpor膜进行8 h抽滤,可以达到92%的乳胶纯度。讨论了使用混合膜工艺结合透析,然后用微孔膜进行抽滤,再用合适的膜进行超滤,从杂质中完全纯化GMA纳米颗粒的可能性。

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