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Effect of waste electronic plastic and silica fume on mechanical properties and thermal performance of concrete

机译:废电子塑料和二氧化硅烟气对混凝土机械性能和热性能的影响

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Production of plastic and the resulting plastic waste is on the rise due to the rapid increase in population and urbanization. In this context, studies investigating the recycling and reuse of plastic waste in construction industry provides an avenue to reduce adverse environmental impacts of waste plastic and to save natural resources. This research work investigates the use of plastic fine aggregate (PFA) manufactured from electronic waste as a replacement of natural fine aggregate in concrete. Concrete mixes with 10%, 15%, and 20% replacement of natural sand with PFA are prepared and tested. Fresh properties are studied based on workability and density while mechanical properties are studied based on compressive strength, split tensile strength, stress?strain behavior, Poisson?s ratio, and lateral-to-axial strain ratio. The results revealed that manufactured PFA improves the workability of concrete but as expected, the compressive and tensile strength was reduced significantly. To improve the strength properties, silica fume (SF) is incorporated in the concrete mix as a replacement of cement with same replacement percentage as for PFA. Addition of silica fume minimized the effects of plastic aggregate on strength properties with compressive and tensile strength of concrete showing a reduction of only 4.7% and 1.1%, respectively, for maximum replacement of plastic aggregate and silica fume. Indoor and outdoor thermal performance tests showed that concrete with 20% replacement percentage of PFA and silica fume exhibits better thermal performance with an average reduction of 8% in the thermal conductivity. Results from thermogravimetric analysis showed an increased loss of mass at around 300 degrees C to 480 degrees C in addition to the usual weight loss that concrete exhibits from 600 to 800 degrees C. Overall results suggest that plastic aggregate can be utilized as a natural fine aggregate replacement to produce eco-friendly concrete with comparable strength properties and improved thermal properties. (C) 2021 Elsevier Ltd. All rights reserved.
机译:由于人口和城市化的快速增加,塑料生产和由此产生的塑料废物正在上升。在这种情况下,研究建筑业中塑料废物回收和再利用的研究提供了减少废物塑料不良环境影响的途径,并节省自然资源。该研究工作调查了从电子废物制成的塑料细聚集体(PFA)的使用作为混凝土中的自然精细聚集体。制备混凝土混合物10%,15%和20%用PFA替代天然砂的替代品。基于可加工性和密度研究了新鲜性质,而基于压缩强度,分裂拉伸强度,应力行为,泊松素比和横向轴向应变比来研究新的性能。结果表明,制造的PFA改善了混凝土的可加工性,但随着预期的,压缩和拉伸强度显着降低。为了提高强度性能,硅胶烟气(SF)掺入混凝土混合中,作为替代PFA相同的替代百分比的水泥。添加二氧化硅烟气使塑料聚集体对强度性能的影响,混凝土的压缩和拉伸强度分别仅减少4.7%和1.1%,以最大限度地更换塑料骨料和二氧化硅烟气。室内和室外热性能测试表明,具有20%更换PFA和硅胶烟气的混凝土具有更好的热性能,导热率平均降低8%。除了通常的减肥之外,热重分析的结果显示出大约300摄氏度的质量损失增加到300℃至480℃。总体结果表明塑料骨料可以用作天然精细聚集体更换生产具有可比强度性能和改善的热性能的生态友好混凝土。 (c)2021 elestvier有限公司保留所有权利。

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