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首页> 外文期刊>Environmental Science and Pollution Research >Feasibility of biochar application on a landfill final cover-a review on balancing ecology and shallow slope stability
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Feasibility of biochar application on a landfill final cover-a review on balancing ecology and shallow slope stability

机译:在垃圾填埋场最终覆盖层中应用生物炭的可行性-平衡生态学和浅层边坡稳定性

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摘要

Due to the increasing concerns on global warming, scarce land for agriculture, and contamination impacts on human health, biochar application is being considered as one of the possible measures for carbon sequestration, promoting higher crop yield and contamination remediation. Significant amount of researches focusing on these three aspects have been conducted during recent years. Biochar as a soil amendment is effective in promoting plant performance and sustainability, by enhancing nutrient bioavailability, contaminants immobilization, and microbial activities. The features of biochar in changing soil physical and biochemical properties are essential in affecting the sustainability of an ecosystem. Most studies showed positive results and considered biochar application as an effective and promising measure for above-mentioned interests. Bio-engineered man-made filled slope and landfill slope increasingly draw the attention of geologists and geotechnical engineers. With increasing number of filled slopes, sustainability, low maintenance, and stability are the major concerns. Biochar as a soil amendment changes the key factors and parameters in ecology (plant development, soil microbial community, nutrient/contaminant cycling, etc.) and slope engineering (soil weight, internal friction angle and cohesion, etc.). This paper reviews the studies on the production, physical and biochemical properties of biochar and suggests the potential areas requiring study in balancing ecology and man-made filled slope and landfill cover engineering. Biochar-amended soil should be considered as a new type of soil in terms of soil mechanics. Biochar performance depends on soil and biochar type which imposes challenges to generalize the research outcomes. Aging process and ecotoxicity studies of biochar are strongly required.
机译:由于对全球变暖,农业耕地稀缺以及污染对人类健康的影响日益引起关注,生物炭的应用被认为是固碳,促进更高的农作物产量和污染修复的可能措施之一。近年来,针对这三个方面进行了大量研究。生物炭作为土壤改良剂,可通过增强养分的生物利用度,固定污染物和微生物活性来有效提高植物的性能和可持续性。生物炭在改变土壤物​​理和生化特性方面的特征对于影响生态系统的可持续性至关重要。大多数研究显示出积极的结果,并认为生物炭的应用是上述兴趣的有效和有希望的措施。生物工程人造的填充边坡和垃圾填埋场边坡越来越引起地质学家和岩土工程师的关注。随着填土坡道数量的增加,可持续性,低维护性和稳定性成为主要问题。生物炭作为土壤改良剂改变了生态学(植物发育,土壤微生物群落,养分/污染物循环等)和边坡工程(土壤重量,内摩擦角和内聚力等)的关键因素和参数。本文回顾了有关生物炭的生产,物理和生化特性的研究,并提出了需要在平衡生态学和人为填充的边坡和垃圾掩埋场工程方面进行研究的潜在领域。就土壤力学而言,应将生物炭改良过的土壤视为一种新型土壤。生物炭的性能取决于土壤和生物炭的类型,这对概括研究结果提出了挑战。强烈要求对生物炭进行老化过程和生态毒性研究。

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