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首页> 外文期刊>Journal of Membrane Science >STUDY OF MEMBRANE COMPACTION AND ITS INFLUENCE ON ULTRAFILTRATION WATER PERMEABILITY
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STUDY OF MEMBRANE COMPACTION AND ITS INFLUENCE ON ULTRAFILTRATION WATER PERMEABILITY

机译:膜的组成及其对超滤水渗透性的影响

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In order to find the pressure dependence of water permeability for some flat-sheet ultrafiltration membranes, wet and dry membranes have been precompressed mechanically without allowing any water flux to pass through at pressures between 0 and 0.6 MPa. Thereafter, water at a fixed transmembrane pressure has been filtered and the flux as a function of compaction has been measured. For comparison, membranes have also been compressed hydrostatically, that is with water passing constantly through the membranes at different pressures. At corresponding pressures, the mechanical treatment lowered the flux much more than did the hydrostatic treatment. Cellulose acetate membranes displayed more elastic than viscous behaviour, polysulfone membranes the contrary. The flux was never restored after compaction, and the flux reduction increased with increasing precompression pressure. The glass transition temperature did not seem to have any influence on the compressibility in the present temperature range, but the porosity and the membrane structure were important. The membranes' thickness change could be correlated to the applied pressure as Delta l similar to Delta P-0.8, a relation typical for porous materials. [References: 11]
机译:为了找到某些平板式超滤膜透水率的压力依赖性,已对干膜和湿膜进行了机械预压缩,不允许任何水流量在0至0.6 MPa的压力下通过。此后,已过滤固定跨膜压力的水,并测量了压实度的通量。为了进行比较,膜还被静水压缩,即水在不同压力下不断流过膜。在相应的压力下,与静水处理相比,机械处理降低的通量要大得多。醋酸纤维素膜比粘性膜具有更大的弹性,而聚砜膜则相反。压实后通量从未恢复,并且通量减少随着预压缩压力的增加而增加。在当前温度范围内,玻璃化转变温度似乎对可压缩性没有任何影响,但是孔隙率和膜结构很重要。膜的厚度变化可以与施加的压力相关,如Δ1,类似于ΔP-0.8,这是多孔材料的典型关系。 [参考:11]

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