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Comparison of Nanomaterials with Other Unconventional Materials Used as Additives for Soil Improvement in the Context of Sustainable Development: A Review

机译:纳米材料与其他非传统材料的比较用作可持续发展背景下土壤改善的添加剂:综述

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摘要

Since the concept of sustainable development enjoys popular support in the 21st century, various kinds of unconventional materials were introduced for soil improvement in the past few decades to replace the traditional materials like concrete and lime. This paper compared nanomaterials with other three kinds of representative unconventional materials to demonstrate its superiority in soil treatment. The other three kinds of unconventional materials include microbially induced calcite precipitation (MICP), recycled tire and environmental fiber. Nanomaterial and MICP have a comprehensive effect on soil reinforcement, since they can improve shear strength, adjust permeability, resist liquefaction and purify the environment. Recycled tire and environmental fibers are granular materials that are mostly adopted to reinforce reconstituted soil. The reinforcement mechanisms and effects of these four kinds of unconventional materials are discussed in detail, and their price/performance ratios are calculated to make an evaluation about their market application prospects. It can be seen that nanomaterials have promising prospects. Colloidal silica, bentonite and laponite present a satisfactory effect on liquefaction mitigation for sandy foundation, and carbon nanotube has an aptitude for unconfined compressive strength improvement. Among the investigated nanomaterials, colloidal silica is the closest to scale market application. Despite the advantages of nanomaterials adopted as additives for soil improvement, they are known for unwanted interactions with different biological objects at the cell level. Nevertheless, research on nanomaterials that are adopted for soil improvement are very promising and can intensify the relationship between sustainable development and geotechnical engineering through innovative techniques.
机译:由于可持续发展的概念在21世纪享有热门的支持,因此过去几十年来拓展土壤改善的各种非传统材料,以取代混凝土和石灰等传统材料。本文将纳米材料与其他三种代表性非传统材料相比,以证明其在土壤处理中的优越性。另外三种非传统材料包括微生物诱导的方解石沉淀(MICP),再生轮胎和环境纤维。纳米材料和MICP对土壤增强有综合影响,因为它们可以提高剪切强度,调节渗透性,抵抗液化并净化环境。再生轮胎和环境纤维是粒状材料,主要用于加强重构土壤。详细讨论了这四种非传统材料的加固机制和效果,并计算了其价格/性能比率,以评估其市场应用前景。可以看出,纳米材料具有很有希望的前景。胶体二氧化硅,膨润土和Laponite对砂质基础的液化缓解效果令人满意,碳纳米管具有不合适的抗压强度改善能力。在调查的纳米材料中,胶体二氧化硅是最接近的尺度市场应用。尽管纳米材料采用作为土壤改善的添加剂的优点,但它们已知在细胞水平下与不同生物物体的不希望的相互作用。然而,对土壤改善采用的纳米材料的研究非常有前途,并通过创新技术加剧可持续发展与岩土工程之间的关系。

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