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Preparation, Characterization and Properties of New Low Cost Multi-channel Ceramic Membrane Tube for Water Treatment

机译:新型低成本水处理多通道陶瓷膜管的制备,表征与性能

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Multi-channel tubular macroporous ceramic membrane supports were successfully prepared via a plastic extrusion method, using α-Al_2O_3 with a purity of 94wt% and aluminum hydroxide as starting materials, the ash of burned rice hull as the pore-forming agent and a small amount of talc and kaolin as sintering aids. The effects of the kinds of sintering aids, content of aluminum hydroxide and ash of burned rice hull on the porosity, pore size and distribution, compressive strength, acid and alkali corrosion resistance and permeability of the new multi-channel ceramic membrane supports were investigated. The results showed that aluminum hydroxide effectively improved the mechanical strength, and the support sintered at 1450°C for 4h with the aluminum hydroxide content of 20wt% exhibited higher performance: average pore size diameter and porosity were nearly 5um and 50% respectively, the compressive strength was around 7MPa, the pure water flux was 26m~3/m~2h at 0.1 MPa and changed to nearly 20m~3/m~2h after the acid and alkali treatment at 90°C for 48h. The support possesses excellent corrosion resistance and can be used in the water treatment process with large range of pH value.
机译:以纯度为94wt%的α-Al_2O_3为原料,以氢氧化铝为原料,以稻壳烧成灰分为成孔剂,采用塑性挤压法成功制备了多通道管状大孔陶瓷膜载体。滑石和高岭土作为烧结助剂。研究了烧结助剂的种类,氢氧化铝含量和烧过的稻壳的灰分对新型多通道陶瓷膜载体的孔隙率,孔径和分布,抗压强度,耐酸碱腐蚀性和渗透性的影响。结果表明,氢氧化铝有效提高了机械强度,氢氧化铝含量为20wt%的载体在1450°C烧结4h表现出较高的性能:平均孔径和孔隙率分别接近5um和50%,压缩强度约为7MPa,纯水通量在0.1 MPa时为26m〜3 / m〜2h,在90°C酸碱处理48h后变为近20m〜3 / m〜2h。该载体具有优异的耐腐蚀性,可用于pH值范围较大的水处理过程中。

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