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Study on Fabrication of Ceramic Membrane from Shirasu Balloon for Waste Water Filtration

机译:Shirasu气球陶瓷膜制备废水过滤的研究

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The fabrication of low cost ceramic membranes for microfiltration were studied by using a natural materials (shirasu balloon) which are produced from glassy volcanic materials. The shirasu powder was formed into cylindrical shaped membranes and sintered at five different temperatures from 600 °C to 800 °C using spark plasma sintering (SPS). The porosity and density of membranes were measured according to Archimedes method. The effect of sintering temperatures on microstructure and phase of the membranes has been investigated using FESEM and XRD. A filtration experiment was carried out to study the membrane performance for waste water filtration. The quality of the filtered water was determined by analyse the pH, turbidity, suspended solid, chemical oxygen demand (COD) and biochemical oxygen demand (BOD_5). The porosity reduced from 48.9% to 40.32% while the membrane density increased from 1.15 g/cm~3 to 1.33 g/cm~3 with increasing sintering temperatures from 600 °C to 800 °C. A little shrinkage occur during spark plasma sintering process. From the FESEM microstrcture, the maximum pore size of the membrane that has been observed at 600 °C is about 4.7 μm. Shirasu membrane are able to produce clean and clear treated water during the microfiltration test with membrane sintered at 800 °C and there is an improvement in quality of water that has been filtered. The ceramic water filter was successfully produced without the involvement of the high-tech, sophisticated machines and methods as well as complex materials.
机译:通过使用由玻璃火山材料产生的天然材料(Shirasu Balloon)来研究用于微滤的低成本陶瓷膜的制造。使用火花等离子体烧结(SPS)形成Shirasu粉末成圆柱形膜并在600℃至800℃下烧结。根据Archimedes方法测量膜的孔隙率和密度。使用FESEM和XRD研究了烧结温度对膜微观结构和相的影响。进行过滤实验以研究废水过滤的膜性能。通过分析pH,浊度,悬浮的固体,化学需氧量(COD)和生物化学需氧量(BOD_5)来确定过滤水的质量。孔隙率从48.9%降至40.32%,而膜密度从1.15g / cm〜3至1.33g / cm〜3增加,烧结温度从600℃升高至800℃。在火花等离子体烧结过程中发生了一点收缩。从FESEM微动画中,在600℃下观察到的膜的最大孔径为约4.7μm。在800℃下用膜烧结的微滤试验期间,Shirasu膜能够在微滤试验中产生清洁和透明的处理水,过滤的水质量有所提高。成功生产陶瓷过滤器,而无需参与高科技,复杂的机器和方法以及复杂的材料。

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