利用废纸纸浆灰渣开发可持续砂浆

D. Agrawal, S. Raut
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引用次数: 2

摘要

在发展中国家,处理工业和农业部门产生的废物是一个主要问题。在建筑中使用这些工业/农业废物不仅可以解决环境污染问题,而且可以解决土地处置问题。为了开发可持续发展的砂浆,废纸纸浆灰分被用作水泥的部分替代,用量从5%到20%不等,增量为5%。对所得废纸纸浆灰分的理化性质进行了研究,发现其二氧化硅含量约为29.25%,接近水泥中的二氧化硅含量。设计了两种配比为1:4和1:6的砂浆。砂浆立方体被配制成不同的混合料,并被固化成不同的固化期。对所研制的砂浆进行了抗压强度、抗折砖粘结强度、抗剪砖粘结强度和收缩极限等物理力学试验。试验结果表明,由于废纸浆具有较高的吸水率,随着废料掺量的增加,混合料的水灰比也显著增加。当废纸浆灰替代量为10%时,砖的抗压、抗折和抗剪强度均比对照提高10%。因此,利用废纸纸浆灰渣开发可持续砂浆将有助于环境免受工业污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Sustainable Mortar from Waste Paper Pulp Ash
In developing countries, disposal of waste generated from industries and agriculture sector is a major concern. Use of such industrial/agricultural waste in construction can be the viable solution not only for environmental pollution but also for land disposal problems. In view of developing sustainable mortar, waste paper pulp ash is used as a partial replacement of cement in various range from 5% to 20% with increment of 5%. The physico-chemical properties of the obtained waste paper pulp ash were studied, and it was observed that the silica content was about 29.25% which is near to silica content in cement. Two mortar mixes 1:4 and 1:6 proportion were designed. Mortar cubes were prepared for different mixes and were cured for various curing periods. The developed mortar mixes were tested for the various physico-mechanical tests viz. compressive strength, flexural brick bond strength, shear brick bond strength and shrinkage limit test. The test results revealed that as the content of the waste increased, the water to cement ratio for the mix was also significantly increased, since the wastepaper pulp has a high degree of water absorption. At the optimum dose of 10% replacement of waste paper pulp ash, the compressive, flexural brick bond and shear brick bond strength was increased by 10% as compared to control mix. Therefore, development of sustainable mortar using waste paper pulp ash will be helpful to survive environment from industrial pollution.
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