塑料废料在砖石砖生产中的利用,以达到强度、耐久性和环境可持续性

Q2 Engineering
Aneke Frank Ikechukwu, A. Naghizadeh
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引用次数: 3

摘要

产生的塑料垃圾已经将超过10亿吨的塑料垃圾淹没在我们的环境中。如果不能通过回收、再造和将这些废物转化为资源丰富的材料来为这场迫在眉睫的灾难提供有效、持久的解决方案。然后,天然不可补充材料的可持续性和保护将受到严重威胁。为了避免这场灾难即将造成的后果,并保护自然材料,低碳嵌入式建筑材料的生产迎来了可持续的未来。因此,在这种情况下,本研究介绍了由废PET塑料和铸造砂混合制成的废塑料砖(WPB)的强度和耐久性。使用10:90、20:80和30:70的比例与PET和沙子的组合干质量生产WPB砖。一系列抗压强度测试、断裂模量(MOR)测试、表观孔隙率测试、吸水性测试、耐盐性测试、超声波脉冲速度、,并进行扫描电子显微镜(SEM)测试,以研究符合南非国家标准(SANS 227)的WPB的强度和耐久性。与强度为18MPa的粘土砖相比,试验结果表明,WPB的平均抗压强度为35.2MPa。此外,试验结果表明,与粘土砖相比,由于废塑料垃圾的延展性,WPB在拉伸下表现出显著的强度抵抗力。此外,由于PET废料的疏水性,酸性效应在WPBs表面得到了显著的抵抗。粘土砖的刚度表现出脆性响应,而WPB具有高延展性,因此,动态模量和超声脉冲速度(UPV)之间具有很大的比例关系,确定系数(R2)为90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of Plastic Waste Material in Masonry Bricks Production Towards Strength, Durability and Environmental Sustainability
The level of generated plastic waste has awash over a billion metric tonnes of this waste into our environment. If an effective long-lasting solution to this impending disaster is not provided through recycling, reengineering, and conversion of this waste to resourceful materials. Then sustainability and conservation of natural non-replenishable materials will be severely threatened. The aims to avert the impending consequences of this disaster and conserve natural materials have given rise to a sustainable future in the production of low carbon embedded construction materials. Under these circumstances, this study, therefore, presents the strengths and durability of waste plastic bricks (WPB) produced from blending scrap PET plastics and foundry sand. The WPB masonry bricks were produced using ratios of 10:90, 20: 80, and 30: 70 to the combined dry mass of PET and sand. Series of compressive strength tests, modulus of rupture (MOR) tests, apparent porosity tests, water absorption tests, salt-resistance tests, ultrasonic pulse velocity, and scanning electron microscopy (SEM) tests were conducted to investigate the strength and durability of the WPB in conformance with the South African National Standard (SANS 227) for individual load-bearing masonry face brick unit. Compared to the clay bricks with 18 MPa what of strength, the test result revealed that the WPB rendered an average compressive strength of 35.2 MPa. Furthermore, the test result showed that the WPB recorded significant strength resistance under tension compared to the clay brick due to the ductility properties of scrap plastic waste. Also, the acid effects were significantly resisted on the surface WPBs due to the hydrophobic property of the PET- waste. The stiffness of the clay bricks portrayed brittle response, whereas WPBs benefited with high ductility properties, therefore, revealed a great proportionality between the dynamic modulus and ultrasonic pulse velocity (UPV) with a coefficient of determination (R2) of 90%.
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
21
审稿时长
12 weeks
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