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Sustainable utilization of waste tire-chips reinforced copper tailings as structural fill

机译:废弃轮胎芯片的可持续利用加强铜尾矿作为结构填充

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摘要

One of the major wastes from mining and automobile sectors is tailings and waste tires, respectively. Their voluminous nature calls for urgent action for safe disposal and to reduce the growing threat on the environment. Under the present study, laboratory model footing and toxicity characteristics leaching procedure (TCLP) tests were conducted on tire chip-reinforced copper tailings (TRCT) to explore the feasibility of its use as structural fill and its potential impact on surroundings. Parameters considered for the laboratory study were tire chip quantity, relative density of copper tailings and depth of reinforced zone. The test results indicate that there is a significant enhancement in bearing capacity of copper tailing at all the studied strains by the addition of waste tires. Bearing capacity increased by more than nine times compared to unreinforced tailings when reinforced with 30% tire chips by weight. The TCLP tests conducted on copper tailings established that concentrations of the leached elements were well below the regulatory standards. Furthermore, a neural network model was trained via the experimental results of the tests to quickly predict the bearing capacity of TRCT for quick use in field applications. Therefore, the proposed technique can help in the effective waste management and safe disposals of large quantities of copper tailings as well as waste tires and also promoting sustainability in construction.
机译:采矿和汽车部门的主要废物分别是尾矿和废轮轮胎。他们的巨大性质要求安全处置的紧急行动,并减少对环境日益增长的威胁。根据本研究,在轮胎芯片增强铜尾矿(TRCT)上进行了实验室模型基础和毒性特性浸出程序(TCLP)测试,以探讨其用作结构填充的可行性及其对周围环境的潜在影响。考虑实验室研究的参数是轮胎芯片量,铜尾矿的相对密度和加强区的深度。测试结果表明,通过加入废轮胎,所有研究菌株的铜拖尾的承载能力存在显着增强。与含有30%轮胎碎片加强的尾矿相比,承载能力增加了9次以上的尾矿。在铜尾矿上进行的TCLP测试确定了浸出元素的浓度远远低于监管标准。此外,通过测试的实验结果培训了神经网络模型,以便快速预测TRCT的承载力,以便在现场应用中快速使用。因此,所提出的技术可以帮助大量铜尾矿以及废轮胎的有效废物管理和安全处理以及促进建筑的可持续性。

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