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发展中国家的废塑料回收:利用低密度聚乙烯水囊形成塑料粘结砂块。

Recycling waste plastics in developing countries: Use of low-density polyethylene water sachets to form plastic bonded sand blocks.

机构信息

Environmental and Water Resource Engineering Section, Department of Civil and Environmental Engineering, Imperial College London, SW7 2AZ, UK.

Waste Aid UK, Wye, Kent, UK.

出版信息

Waste Manag. 2018 Oct;80:112-118. doi: 10.1016/j.wasman.2018.09.003. Epub 2018 Sep 7.

Abstract

In many developing countries low-density polyethylene (LDPE) sheets, bags and water sachets are a major waste problem because local collection and recycling systems do not exist. As a result, LDPE has no value and is dumped causing aesthetic, environmental and public health issues. A relatively simple technology has been developed in the Cameroon that produces LDPE-bonded sand blocks and pavers. The application of this technology is an example of a community-driven waste management initiative that has potential to impact on the global plastics waste crisis because it can transform waste LDPE and other readily available types of plastics into a valuable local resource. In this research, waste LDPE water sachets have been melted and mixed with sand to form LDPE-bonded sand blocks. The effect of sand particle size and sand to plastic ratio on density, the compressive strength and water adsorption are reported. Optimum samples have been further characterised for flexural strength and thermal conductivity. LDPE-bonded sand is a strong, tough material with compressive strengths up to ∼27 MPa when produced under optimum processing conditions. The density and compressive strength increase as the particle size of the sand decreases. The potential for using this simple technology and the materials it produces to transform LDPE plastic waste management in developing countries is discussed.

摘要

在许多发展中国家,低密度聚乙烯(LDPE)薄膜、袋子和水袋是一个主要的废物问题,因为当地没有收集和回收系统。因此,LDPE 没有价值,被丢弃,造成了美学、环境和公共卫生问题。在喀麦隆已经开发出一种相对简单的技术,可以生产 LDPE 粘结砂块和铺路砖。这项技术的应用是一个社区驱动的废物管理倡议的例子,它有可能对全球塑料废物危机产生影响,因为它可以将废 LDPE 和其他现成的塑料转化为有价值的本地资源。在这项研究中,废 LDPE 水袋被熔化并与沙子混合,形成 LDPE 粘结砂块。报告了沙子粒径和沙对塑料比例对密度、抗压强度和吸水率的影响。最优样品进一步进行了弯曲强度和热导率的特性化研究。在最佳加工条件下,LDPE 粘结砂是一种坚固、坚韧的材料,抗压强度高达约 27MPa。随着沙子粒径的减小,密度和抗压强度增加。讨论了利用这项简单技术及其生产的材料来改变发展中国家 LDPE 塑料废物管理的潜力。

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