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Effect of different heat treatments on oxidation-bonded SiC membrane for water filtration

机译:不同热处理对水过滤氧化粘接性SiC膜的影响

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The porous SiC-based membrane has proved its validity in microfiltration membrane fabrication, but application is limited due to its high fabrication cost. In this study, the oxidation bonding technique was used to fabricate a SiC microfiltration membrane. The oxidation behaviour exhibited during different thermal treatments was related to pore morphology, and ultimately membrane permeance. Corrosion properties of the oxidation-bonded SiC specimens were also studied. We have found that a membrane made by coating an oxidation-bonded SiC layer over a clay-bonded SiC support and sintered at 1000 degrees C for 3 h could make a defect-free, corrosion resistant microfiltration membrane with pure water membrane permeance above 700 LMH per bar over the 1 h operation time. The membrane has a narrow pore size distribution, with an average pore size of 78 nm.
机译:多孔SiC基膜已经证明其在微滤膜制造中的有效性,但由于其高制造成本,应用受到限制。 在该研究中,使用氧化键合技术制造SiC微滤膜。 在不同的热处理期间表现出的氧化行为与孔形态有关,最终膜渗透性有关。 还研究了氧化粘结的SiC样本的腐蚀性。 我们发现通过在粘土粘结的SiC载体上涂覆氧化粘合的SiC层并在1000℃下烧结3小时来制备的膜可以使耐缺陷的耐腐蚀的微滤膜,其纯水膜渗透超过700LmH 每个酒吧在1小时操作时间。 膜具有狭窄的孔径分布,平均孔径为78nm。

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