THE UTILIZING OF RECYCLED PLASTIC WASTE AS AN ALTERNATIVE FOR ZERO CEMENT PAVING BLOCKS

Mustakim Mustakim, Asrul Asrul, Asnita Virlayani
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Abstract

The problem of plastic waste that needs to be handled and managed optimally can cause environmental damage. This study aims to test the compressive strength and water absorption value of paving blocks made of plastic which are designed using a mixed variation of V50-50 (50% sand, 50% plastic), V25-75 (25% sand, 75% plastic) and V0-100 (0% sand, 100% plastic) of the total proportion of the paving blocks mix. The method is carried out by melting PP (Polypropylene) mineral glass plastic, mixing with sand based on variations, printing according to the size of the paving block, and using as a test sample in the form of a dice. The average compressive strength test results show that the model with code V25-75 has a relatively higher compressive strength value than V50-50 and V0-100. The average compressive strength value of the sample with code V25-75 is 11.53 MPa, followed by code V50-50 of 9.63 MPa, and the lowest is coded V0-100 of 3.70 MPa. The compressive strength value is influenced by the optimal percentage between sand and plastic; plastic serves as a binder for sand in a mixture of paving blocks. The rate of water absorption value will continue to decrease along with the addition of plastic waste in the paving block mixture; V50-50 is 1.44, V25-75 is 0.88, and V0-100 is 0.16. This research is expected to be applied by the community to make paving block products to reduce the amount of plastic waste globally.
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利用再生塑料废物作为零水泥铺路砖的替代品
需要以最佳方式处理和管理的塑料废物问题可能会造成环境破坏。本研究的目的是测试采用V50-50(50%砂,50%塑料),V25-75(25%砂,75%塑料)和V0-100(0%砂,100%塑料)混合比例设计的塑料铺装块的抗压强度和吸水值。该方法是通过熔融PP(聚丙烯)矿物玻璃塑料,根据变化与沙子混合,根据铺装块的大小进行印刷,并以骰子的形式作为测试样品。平均抗压强度试验结果表明,代号为V25-75的模型比代号为V50-50和代号为V0-100的模型具有较高的抗压强度值。代号为V25-75的试样抗压强度平均值为11.53 MPa,代号为V50-50的试样抗压强度平均值为9.63 MPa,代号为V0-100的试样抗压强度平均值最低,为3.70 MPa。抗压强度值受砂塑最佳配比的影响;塑料在铺路石混合物中充当沙子的粘合剂。随着塑料废弃物在铺装砌块混合料中的加入,吸水率值会不断降低;V50-50为1.44,V25-75为0.88,V0-100为0.16。这项研究有望被社会应用于制造铺路砖产品,以减少全球塑料垃圾的数量。
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