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Permeability of porous ceramic based on calcium carbonate as pore generating agent

机译:以碳酸钙为造孔剂的多孔陶瓷的渗透性

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摘要

This study concerns the processing and characterization of porous ceramics based on low cost mineral raw materials for environmental applications. Three formulations were tested with calcium carbonate as pore generating agent and different proportions of kaolin, potassic feldspar, albite, quartz and white clay. Ceramic bodies were formed by pressing, heat treated up to 1180 degrees C and characterized for porosity, flexural strength, air permeability and microstructural aspects. The resulting bodies displayed apparent porosity (28-32%), flexural strength (7-29 MPa), permeability coefficients (k(1) congruent to 10(-15) m(2) and k(2) congruent to 10(-11) m) and average pore size (0.706-1.137 mu m) suitable for membrane separations. The formulation containing 50% kaolin, 20% limestone, 10% potassic feldspar, 10% albite and 10% quartz (dry basis) was considered the most suitable for separation of suspended solids from liquid suspensions (microfiltration). (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:这项研究涉及用于环保应用的基于低成本矿物原料的多孔陶瓷的加工和表征。使用碳酸钙作为成孔剂以及不同比例的高岭土,钾长石,钠长石,石英和白土对三种配方进行了测试。陶瓷体是通过压制成形的,热处理温度高达1180摄氏度,并具有孔隙率,抗弯强度,透气性和微观结构方面的特点。所得物体显示出表观孔隙率(28-32%),抗弯强度(7-29 MPa),渗透系数(k(1)等于10(-15)m(2)和k(2)等于10(- 11)m)和适用于膜分离的平均孔径(0.706-1.137μm)。包含50%高岭土,20%石灰石,10%钾长石,10%钠长石和10%石英(干基)的配方被认为最适合从液体悬浮液中分离悬浮固体(微滤)。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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