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回收废热塑性塑料用于节能建筑材料:一项实验研究。

Recycling waste thermoplastic for energy efficient construction materials: An experimental investigation.

机构信息

Rajendra Mishra School of Engineering Entrepreneurship, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

Rajendra Mishra School of Engineering Entrepreneurship, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

出版信息

J Environ Manage. 2019 Jun 15;240:119-125. doi: 10.1016/j.jenvman.2019.03.016. Epub 2019 Mar 28.

Abstract

A large stream of research has studied the performance of waste plastics impregnated concrete, reporting multiple benefits and advocating its use in construction works. But no study has reported the merits of bricks impregnated with waste plastics. The present paper reports the results of experiments done on bricks made up of varying percentages of waste thermoplastics (0 - 10% by weight) and sand (60 - 70% by weight), holding percentages of fly ash and ordinary Portland cement constant at 15% (by weight) each. Three types of waste thermoplastics were used, forming three separate batches of bricks. The plastics were polycarbonates, polystyrenes, and mixed plastics. The bricks were cured under water for 28 days. Some of the batches were baked at temperatures ranging from 90 °C to 110 °C for 2 hours in order to melt the plastics to form voids. The bricks made with the above-stated compositions were found to possess low thermal conductivity and adequately high compressive strength. The compressive strength of these bricks is observed to be more than 17 MPa, which lies within the upper half of the range of strengths specified for bricks in the IS 1077:1992 standard. The waste plastics impregnated bricks display high thermal resistance, a feature that can add economic value to the brick manufacturers, motivating them to establish the necessary logistics for collection and use of all types of waste thermoplastics. The paper also presents a regression model to predict the compressive strength of bricks at varying plastic contents. The study, thus, introduces a new strand of research on sustainable recycling of waste thermoplastics in the context of the circular economy.

摘要

大量研究已经研究了浸渍废塑料的混凝土的性能,报告了多种优点,并提倡将其用于建筑工程。但是,没有研究报告过浸渍废塑料的砖的优点。本文报告了用不同百分比的废热塑性塑料(重量的 0-10%)和砂(重量的 60-70%)制成的砖的实验结果,粉煤灰和普通波特兰水泥的比例保持不变,各占重量的 15%。使用了三种废热塑性塑料,形成了三个单独的砖批次。塑料为聚碳酸酯、聚苯乙烯和混合塑料。砖在水中养护 28 天。一些批次在 90°C 至 110°C 的温度下烘烤 2 小时,以使塑料熔化形成空隙。用上述成分制成的砖具有较低的导热系数和足够高的抗压强度。这些砖的抗压强度观察到超过 17MPa,处于 IS 1077:1992 标准规定的砖强度范围的上半部分。浸渍废塑料的砖具有较高的耐热性,这一特性可以为砖制造商增加经济价值,促使他们建立必要的物流,以收集和使用所有类型的废热塑性塑料。本文还提出了一个回归模型,以预测不同塑料含量下砖的抗压强度。因此,该研究在循环经济背景下介绍了废热塑性塑料可持续回收的新研究方向。

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