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Characteristics of porous ceramics prepared from sandblasting waste and waste diatomite by co-sintering process

机译:多孔陶瓷的特点做好准备喷砂处理废物和废硅藻土co-sintering过程

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摘要

The purpose of this research is to recycle sandblasting waste from the surface treatment process of solar cell industry to replace waste diatomite (with a replacement ratio of 0-20%) to make water-retention porous ceramics, and adopts the method of molding by semi-dry pressing under a pressure of 5 MPa, as the heating temperature fluctuated between 1000, 1100, 1200, and 1270 degrees C. With a heating rate of 5 degrees C/min, the heating process continued for 120 minutes. The sintered samples were then examined to determine whether its mechanical properties were met the CNS 382 R2002 Brick Criteria in terms of compressive strength (>3 MPa); while FTIR, and MIP instruments were used to measure the changes in the sintered samples according to pore size and total pore volume. The results indicated that the waste diatomite and sandblasting waste consisted of quartz, and porosities of porous ceramics with sandblasting waste about higher than 58.5-64.7%, water absorption of about 72.2-92.2%, and compressive strength of about 2.4-7.3 MPa can be produced using a porous ceramics of raw materials. The porous ceramics samples with 0-20% sandblasting waste prepared at the heating temperature of above 1100 degrees C meet the Standards for Japan Interlocking Block Pavement Engineering Association (compressive strength > 3 MPa, water absorption > 70%). Moreover, the thermal conductivity of cement paste was 0.57 W/m.K, which was significantly higher than 0.28-0.49 W/m.K of porous ceramics with sandblasting waste, the porous ceramics have good heat insulation effects. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38: 321-328, 2019
机译:本研究的目的是回收喷砂表面处理废物太阳能电池行业的过程来代替浪费硅藻土(0 - 20%)的替代率使保水的多孔陶瓷,采用由半干压成型的方法5 MPa的压力,加热温度波动之间的1000、1100、1200和1270度c .升温速率的5度C / min,加热过程持续了120年分钟。确定其力学性能是符合CNS 382 R2002砖的标准的抗压强度(> 3 MPa);红外光谱和MIP仪器被用来测量根据烧结样品的变化孔隙大小和总孔隙体积。表明,硅藻土和浪费喷砂浪费由石英,疏的多孔陶瓷喷砂浪费对高于58.5 - -64.7%,水吸收约72.2 - -92.2%,抗压可以产生强度约为2.4 - -7.3 MPa使用多孔陶瓷的原材料。多孔陶瓷样品喷砂为0 - 20%浪费的加热温度1100摄氏度以上符合日本标准联锁块铺面工程协会(抗压强度> 3 MPa,水吸收> 70%)。电导率的水泥粘贴为0.57 W / m。这是明显高于0.28 - -0.49吗W / m。多孔陶瓷具有良好的隔热效果。工程师环境掠夺,38:321 - 328,2019

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