首页> 外文OA文献 >Sludge Biochar Amendment and Alfalfa Revegetation Improve Soil Physicochemical Properties and Increase Diversity of Soil Microbes in Soils from a Rare Earth Element Mining Wasteland
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Sludge Biochar Amendment and Alfalfa Revegetation Improve Soil Physicochemical Properties and Increase Diversity of Soil Microbes in Soils from a Rare Earth Element Mining Wasteland

机译:污泥生物炭修正案和苜蓿再培养改善土壤物理化学特性,从稀土元素采矿荒地中的土壤微生物的升高

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摘要

Long-term unregulated mining of ion-adsorption clays (IAC) in China has resulted in severe ecological destruction and created large areas of wasteland in dire need of rehabilitation. Soil amendment and revegetation are two important means of rehabilitation of IAC mining wasteland. In this study, we used sludge biochar prepared by pyrolysis of municipal sewage sludge as a soil ameliorant, selected alfalfa as a revegetation plant, and conducted pot trials in a climate-controlled chamber. We investigated the effects of alfalfa revegetation, sludge biochar amendment, and their combined amendment on soil physicochemical properties in soil from an IAC mining wasteland as well as the impact of sludge biochar on plant growth. At the same time, we also assessed the impacts of these amendments on the soil microbial community by means of the Illumina Miseq sequences method. Results showed that alfalfa revegetation and sludge biochar both improved soil physicochemical properties and microbial community structure. When alfalfa revegetation and sludge biochar amendment were combined, we detected additive effects on the improvement of soil physicochemical properties as well as increases in the richness and diversity of bacterial and fungal communities. Redundancy analyses suggested that alfalfa revegetation and sludge biochar amendment significantly affected soil microbial community structure. Critical environmental factors consisted of soil available K, pH, organic matter, carbon–nitrogen ratio, bulk density, and total porosity. Sludge biochar amendment significantly promoted the growth of alfalfa and changed its root morphology. Combining alfalfa the revegetation with sludge biochar amendment may serve to not only achieve the revegetation of IAC mining wasteland, but also address the challenge of municipal sludge disposal by making the waste profitable.
机译:在中国的离子吸附粘土(IAC)的长期不受管制的开采导致了严重的生态破坏,并在追求康复需求中创造了大面积的荒地。土壤修正和植物植物是IAC矿业荒地康复的两个重要手段。在这项研究中,我们使用通过城市污水污泥热解制的污泥生物炭作为土壤改良,选择苜蓿作为植物植物,并在气候控制室中进行罐试验。我们调查了苜蓿再培养,污泥Biochar修正案的影响,以及IAC矿业荒地土壤土壤物理化学特性的综合修正案,以及污泥生物炭对植物生长的影响。与此同时,我们还通过Illumina MiSeq序列方法评估了这些修正案对土壤微生物群落的影响。结果表明,苜蓿再培养和污泥Biochar既有改进的土壤理疗性能和微生物群落结构。当合并苜蓿再培养和污泥生物炭修正时,我们检测到对土壤物理化学特性的改善以及细菌和真菌社区的丰富和多样性的增加。冗余分析表明,苜蓿再培养和污泥生物炭修正案显着影响土壤微生物群落结构。关键环境因素由土壤可用K,pH,有机物,碳 - 氮比,堆积密度和总孔隙率组成。污泥生物炭修正案显着促进了苜蓿的生长,并改变了根系形态。将紫花苜蓿与污泥生物炭修正案结合起来,不仅可以实现IAC矿业荒地的再培训,而且还通过使废物盈利来解决市政污泥处理的挑战。

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