R. Kassa, T. Workie, Alyu Abdela, Mikiyas Fekade, M. Saleh, Yonas Dejene
{"title":"Soil Stabilization Using Waste Plastic Materials","authors":"R. Kassa, T. Workie, Alyu Abdela, Mikiyas Fekade, M. Saleh, Yonas Dejene","doi":"10.4236/ojce.2020.101006","DOIUrl":null,"url":null,"abstract":"Expansive clay soils are the types of soils whose \nvolume changes with the change in water content. They have a behavior of \nswelling and shrinking that is a serious hazard to structures built over them. \nExpansive soils are abundantly existing soil types in Ethiopia, particularly \nAddis Ababa. This paper shows the outcomes of an attempt to reinforce and \nstabilize expansive clay soil with plastic bottle strips. The plastic strips \nwere prepared and added at three different mixing ratios (0.5%, 1% and 2%) by \nweight and in three different aspect ratios (5 mm × 7.5 mm, 10 mm × 15 mm, 15 mm \n× 20 mm). The experimental results showed that there was a significant \nimprovement in shear strength parameters. The swelling and desiccation cracking \nbehavior of the soil were also expressively reduced. There was a substantial \nreduction in the optimum moisture content and slight increment in maximum dry \ndensity. The optimum plastic size (aspect ratio) and plastic content that \nresults in optimum result can be selected based on the importance of the \nselection parameter for a specified engineering work. Stabilizing expansive \nclay soils with waste plastic bottles simultaneously solves the challenges of \nimproper plastic waste recycling that is currently a teething problem in most \ndeveloping countries. The results obtained from this study favorably suggest \nthat inclusion of this material in expansive soils would be effective for \nground improvement in geotechnical engineering.","PeriodicalId":302856,"journal":{"name":"Open Journal of Civil Engineering","volume":"5 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2020-01-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"26","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Open Journal of Civil Engineering","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.4236/ojce.2020.101006","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 26
Abstract
Expansive clay soils are the types of soils whose
volume changes with the change in water content. They have a behavior of
swelling and shrinking that is a serious hazard to structures built over them.
Expansive soils are abundantly existing soil types in Ethiopia, particularly
Addis Ababa. This paper shows the outcomes of an attempt to reinforce and
stabilize expansive clay soil with plastic bottle strips. The plastic strips
were prepared and added at three different mixing ratios (0.5%, 1% and 2%) by
weight and in three different aspect ratios (5 mm × 7.5 mm, 10 mm × 15 mm, 15 mm
× 20 mm). The experimental results showed that there was a significant
improvement in shear strength parameters. The swelling and desiccation cracking
behavior of the soil were also expressively reduced. There was a substantial
reduction in the optimum moisture content and slight increment in maximum dry
density. The optimum plastic size (aspect ratio) and plastic content that
results in optimum result can be selected based on the importance of the
selection parameter for a specified engineering work. Stabilizing expansive
clay soils with waste plastic bottles simultaneously solves the challenges of
improper plastic waste recycling that is currently a teething problem in most
developing countries. The results obtained from this study favorably suggest
that inclusion of this material in expansive soils would be effective for
ground improvement in geotechnical engineering.
膨胀粘土是一种体积随含水量变化而变化的土。它们有一种膨胀和收缩的行为,这对建在它们上面的结构是一个严重的危害。膨胀土是埃塞俄比亚大量存在的土壤类型,特别是亚的斯亚贝巴。本文介绍了用塑料瓶条加固和稳定膨胀粘土的试验结果。制备并添加3种不同重量混合比(0.5%、1%和2%)和3种不同长宽比(5 mm × 7.5 mm、10 mm × 15 mm、15 mm × 20 mm)的塑料条。试验结果表明,抗剪强度参数有明显改善。土壤的膨胀和干燥开裂行为也明显降低。最佳含水率显著降低,最大干密度略有增加。根据具体工程选择参数的重要程度,可以选择产生最佳效果的最佳塑性尺寸(长宽比)和塑性含量。用废塑料瓶稳定膨胀粘土同时解决了塑料废物回收不当的挑战,这是目前大多数发展中国家的一个初期问题。本研究的结果表明,在膨胀土中加入这种材料对岩土工程中的地基改善是有效的。