电子废塑料部分替代粗骨料在轻量化混凝土中的应用效果

Derrick Nii-Laryea Botchway, J. Bentil, Charles Yeboah Henaku
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摘要

本研究评估了用轻质混凝土中的电子废物(电子废物)塑料部分替代粗骨料的有用性,因为发展中国家面临着电子废物管理以及混凝土生产粗骨料的高成本的挑战。在C20级混凝土中,以5%、10%、15%和20%的比例用电子废塑料代替粗骨料。测定了电子废塑料集料的粒径分布以及混凝土的坍落度、抗压强度、吸水率和容重。一般来说,随着电子垃圾的增加,暴跌幅度减小。当粗集料替代5%和10%的电子垃圾时,抗压强度下降,而当粗集料替代15%和20%的电子垃圾时,抗压强度增加。养护28d后,15%和20%电子垃圾掺量的混凝土吸水率为0%,10%电子垃圾掺量的混凝土吸水率为0.01%,5%电子垃圾掺量的混凝土吸水率为0.013%。5%、10%、15%和20%电子废塑料含量的密度比0%电子废塑料含量的密度下降。得到的抗压强度值表明,C20/25级轻量化混凝土的抗压强度范围在16.09 ~ 22.87 Nmm-2之间,用电子废塑料替代15%和20%的粗骨料较为合适。这意味着用电子废塑料部分替代粗骨料可能对轻质混凝土有用,并有助于消除电子废塑料对环境的威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Partial Replacement of Coarse Aggregate with Electronic Waste Plastic in Light Weight Concrete
This study assessed the usefulness of the replacement of coarse aggregate partially with electronic waste (e-waste) plastic in lightweight concrete since developing countries have been challenged with management of e-waste as well as high cost of coarse aggregates for concrete production. Coarse aggregates were replaced with e-waste plastic in concrete at 5%, 10%, 15%, and 20% for a concrete class of C20. The particle size distribution of the e-waste plastic aggregates was determined as well as the slump, compressive strength, water absorption and bulk density of the concrete. Generally, the slump decreased as the e-waste increased. The compressive strengths decreased for the 5% and 10% replacement of coarse aggregates with e-waste but increased for the 15% and 20% replacement of coarse aggregate with e-waste. 0% water absorption was obtained for the 15% and 20% e-waste content while the 10% e-waste concrete obtained 0.01% and the 5% e-waste obtaining of 0.013% after 28days of curing. The densities of 5%, 10%, 15% and 20% e-waste plastic content decreased as compared to the 0% e-waste plastic content. The values of compressive strength obtained showed that coarse aggregate replacements by e-waste plastic at 15% and 20% may be appropriate for lightweight concrete of class C20/25 since compressive strengths ranged between 16.09 Nmm–2 and 22.87 Nmm–2. This implies that partial replacement of coarse aggregate with e-waste plastic may be useful for lightweight concrete as well as helping in eradicating the environment of the menace of e-waste plastic.
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