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Paper and wood industry waste as a sustainable solution for environmental vulnerabilities of expansive soil: A novel approach

机译:造纸和木材工业废料作为膨胀土环境脆弱性的可持续解决方案:一种新颖的方法

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The traditional disposal methods of paper/wood industry raise serious environmental concerns, thus, requires innovative and productive ideas to manage such waste. This article deals with the appraisal and modification of lignosulphonate, a waste by-product of paper/wood industry, as a soil stabilizer to mitigate the disastrous environmental vulnerabilities of expansive soil related to the wetting-drying cycles. In this context, a novel approach of integrating lignosulphonate with hydrated lime was proposed, based on the short comings of lignosulphonate as a lone soil stabilizer. Periodic variations of wetting-drying cycles were assessed on various engineering properties of untreated and treated expansive soils with the optimum percentage of lignosulphonate, hydrated lime, and proposed binary admixture. Micro-fabric changes were also analyzed to evaluate the stabilization mechanism in mitigating the disastrous environmental aspects of expansive soil. The results showed that both untreated and lignosulphonate treated samples underwent suppression in swelling behavior and gain equilibrium at the third wetting-drying cycle. Whereas, the proposed binary admixture exhibited complete mitigation of the swelling behavior and showed significant hindrance against the wetting-drying cycles in terms of compressibility, hydraulic conductivity, and shear strength of soil. In comparison, lignosulphonate alone showed inferior and hydrated lime showed almost similar amelioration of most of the engineering properties accounting the environmental vulnerabilities of expansive soils. The scanning-electron micro-graphs of all the soil samples showed destructed clay structures with more inter assemblage pore spaces upon wetting-drying cycles. Moreover, the proposed binary admixture exhibited better stabilization mechanism than lignosulphonate alone considering the wetting-drying cycles. Evidently, the proposed binary admixture curtails the environmental vulnerabilities of expansive soil, significantly reduces the lime consumption for expansive soil stabilization, and proposes a sustainable and environment friendly waste management for the paper/wood industry.
机译:造纸/木材工业的传统处置方法引起了严重的环境问题,因此,需要创新和生产性的理念来管理此类废物。本文涉及对木质/磺酸盐的评价和改性,木质素/磺酸盐是一种造纸稳定剂,是一种土壤稳定剂,可减轻与干湿循环有关的膨胀性土壤的灾难性环境脆弱性。在此背景下,基于木质素磺酸盐作为一种孤独土壤稳定剂的不足,提出了一种将木质素磺酸盐与熟石灰结合的新方法。用木质素磺酸盐,熟石灰和建议的二元混合物的最佳比例,对未经处理和处理过的膨胀土的各种工程特性,评估了干湿循环的周期性变化。还分析了微织物的变化,以评估减轻膨胀土灾难性环境方面的稳定机制。结果表明,未处理和木质素磺酸盐处理的样品均在第三个润湿干燥循环中经历了溶胀行为的抑制并获得了平衡。然而,所提出的二元混合物表现出完全缓解的溶胀行为,并且在可压缩性,水力传导率和土壤的剪切强度方面表现出显着的对干湿循环的阻碍。相比之下,仅木质素磺酸盐的质量较差,而熟石灰的大多数工程性能的改善几乎相似,这说明了膨胀土的环境脆弱性。所有土壤样品的扫描电子显微照片显示,在干湿循环后,破坏了的粘土结构具有更大的组间孔隙空间。此外,考虑到干湿循环,所提出的二元混合物表现出比单独的木质素磺酸盐更好的稳定机理。显然,所提出的二元混合物减少了膨胀土的环境脆弱性,显着减少了用于膨胀土稳定的石灰消耗量,并为造纸/木材工业提出了一种可持续且环保的废物管理方法。

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