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首页> 外文期刊>Journal of Cleaner Production >Interaction of biopolymer with dispersive geomaterial and its characterization: An eco-friendly approach for erosion control
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Interaction of biopolymer with dispersive geomaterial and its characterization: An eco-friendly approach for erosion control

机译:生物聚合物与分散岩体的相互作用及其表征:一种生态辅助侵蚀控制方法

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Addition of natural polymer or biopolymer is considered as a novel, cost-effective and eco-friendly soil modification approach mainly pertaining to erosion stability. The present study focuses on the interaction of three types of biopolymer i.e., xanthan gum, guar gum and carboxymethyl cellulose to stabilize two dispersive industrial waste materials i.e., fly ash and coal mine overburden soil. The results found that all the three biopolymers enhanced the index and geotechnical properties of fly ash and mine overburden due to their high viscosity, aggregation, adsorption and cross-linking bond formation. However, the rate of enhancement varies with the type and concentration of biopolymer. The biomodified soil were evaluated for erosion stability against wind and water by performing pinhole test, cylindrical dispersion, surface resistance and water retention test. It concluded that a very minimal fraction, 1% of biopolymer solution could mitigate the dispersiveness of the geomaterial. Additionally, the results of microscopic analysis by scanning electron microscope assist to correlate the morphological changes with the engineering properties of biomodified soil due to the interaction of soil with the long-chained biopolymers strings. Finally, leachate and cost analysis of the biopolymer modified material was assessed to evaluate the efficiency of the biomodification.
机译:添加天然聚合物或生物聚合物被认为是一种新颖的,具有成本效益和环保的土壤改性方法,主要与腐蚀稳定性有关。本研究侧重于三种类型的生物聚合物等的相互作用,黄原胶,瓜尔胶和羧甲基纤维素,以稳定两种分散工业废料,即粉煤灰和煤矿覆盖土壤。结果发现,由于它们的高粘度,聚集,吸附和交联键形成,所有三种生物聚合物的所有三种生物聚合物都会增强粉煤灰和矿山覆盖层的指标和岩土性特性。然而,增强率随生物聚合物的类型和浓度而变化。通过进行针孔试验,圆柱形分散,表面电阻和水保持试验,评估侵蚀风和水的侵蚀稳定性的生物透析的土壤。结论是,1%的生物聚合物溶液的馏分非常小,可以减轻岩土材料的分散性。另外,通过扫描电子显微镜进行显微镜分析的结果,帮助与生物透析土壤的工程性能相关,由于土壤与长链生物聚合物串相互作用。最后,评估了生物聚合物改性物质的渗滤液和成本分析,评估了生物弥补的效率。

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