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添加聚对苯二甲酸乙二酯(PET)的土-水泥砖的技术特性

Technological Characterization of PET-Polyethylene Terephthalate-Added Soil-Cement Bricks.

作者信息

da Silva Tulane Rodrigues, Cecchin Daiane, de Azevedo Afonso Rangel Garcez, Valadão Izabella, Alexandre Jonas, da Silva Flavio Castro, Marvila Markssuel Teixeira, Gunasekaran Murali, Garcia Filho Fabio, Monteiro Sergio Neves

机构信息

LAMAV-Advanced Materials Laboratory, UENF-State University of the Northern Rio de Janeiro, Av. Alberto Lamego, 2000, Campos dos Goytacazes 28013-602, Brazil.

Department of Agricultural and Environmental Engineering, Federal Fluminense University-UFF, R. Passo da Pátria, 156, Niterói 24210-240, Brazil.

出版信息

Materials (Basel). 2021 Sep 3;14(17):5035. doi: 10.3390/ma14175035.

Abstract

The ever-growing consumption and improper disposal of non-biodegradable plastic wastes is bringing worrisome perspectives on the lack of suitable environmentally correct solutions. Consequently, an increasing interest in the circular economy and sustainable techniques is being raised regarding the management of these wastes. The present work proposes an eco-friendly solution for the huge amount of discarded polyethylene terephthalate (PET) wastes by addition into soil-cement bricks. Room temperature molded 300 × 150 × 70 mm bricks were fabricated with mixtures of clay soil and ordinary Portland cement added with up to 30 wt.% of PET waste particles. Granulometric analysis of soil indicated it as sandy and adequate for brick fabrication. As for the PET particles, they can be considered non-plastic and sandy. The Atterberg consistency limits indicated that addition of 20 wt.% PET waste gives the highest plasticity limit of 17.3%; moreover, with PET waste addition there was an increase in the optimum moisture content for the compaction and decrease in specific weight. Standard tests showed an increase in compressive strength from 0.83 MPa for the plain soil-cement to 1.80 MPa for the 20 wt.% PET-added bricks. As for water absorption, all bricks displayed values between 15% and 16% that attended the standards and might be considered an alternative for non-structural applications, such as wall closures in building construction.

摘要

不可生物降解塑料垃圾的消费不断增长且处理不当,这让人对缺乏合适的环保解决方案感到担忧。因此,人们对这些垃圾的管理在循环经济和可持续技术方面的兴趣日益浓厚。本研究提出了一种环保解决方案,即将大量废弃的聚对苯二甲酸乙二酯(PET)添加到土壤水泥砖中。用粘土和普通硅酸盐水泥的混合物制备了尺寸为300×150×70mm、室温成型的砖块,并添加了高达30wt.%的PET废料颗粒。土壤的粒度分析表明其为砂土,适合制砖。至于PET颗粒,可认为其为非塑性且呈砂状。阿太堡稠度界限表明,添加20wt.%的PET废料时,塑性极限最高可达17.3%;此外,添加PET废料后,压实的最佳含水量增加,比重降低。标准测试表明,抗压强度从普通土壤水泥砖的0.83MPa提高到添加20wt.%PET砖块的1.80MPa。至于吸水率,所有砖块的吸水率在15%至16%之间,符合标准,可考虑用于非结构应用,如建筑施工中的墙体封闭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bd4/8434008/9847236e0fb8/materials-14-05035-g001.jpg

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