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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Optimizing the formulation of coal gangue planting substrate using wastes: The sustainability of coal mine ecological restoration
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Optimizing the formulation of coal gangue planting substrate using wastes: The sustainability of coal mine ecological restoration

机译:利用废物优化煤矸石种植底物的制剂:煤矿生态恢复的可持续性

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摘要

With the development of China's coal industry, coal gangue has become one of the most extensive solid wastes. The collection of soil from other places for land reclamation has become a commonly used technology for ecological restoration of coal-mining areas in China. The purpose of this study was to use coal gangue as a new type of planting substrate component, with the goal of replacing soil to solve the increasing shortage of land resources. The formulation of the substrate was optimized using an orthogonal experiment with four factors: coal gangue (g)-to-soil (g) ratio (1000:0, 750:250, 500:500), maize straw content (0, 25, and 50 g kg(-1)), fly ash content (0, 75, and 150 g kg(-1)), and water retention agent content (0, 1, and 2 g kg(-1)).The results showed that coal gangue significantly improved the chemical properties (organic matter, total N, total P, available N, available P and available K) of the substrate (P < .01) at a dosage of 1000 g and increased alfalfa growth and improved the soil nutrient ratio at a dosage of 500 g. In addition, maize straw significantly affected the physical properties (bulk density, total porosity, capillary porosity, soil moisture content and permeability coefficient) of the substrate (P < .01) at 50 g and was most beneficial to plant growth (P < .01) at 25 g. Fly ash caused certain changes in the physical and chemical properties of the substrate and thus affected plant growth; the water retention agent showed a lesser effect. After the orthogonal experiments, we used a model to comprehensively analyze the effects of the four factors on 21 parameters to determine the optimum ratios of the components, which were as follows: a coal gangue-to-soil ratio of 1:1 (500 g:500 g), a maize straw content of 50 g kg(-1), a fly ash content of 37 g kg(-1), and a water retention agent content of 1 g kg(-1). The findings of this study will provide a theoretical and technical basis for the ecological restoration of coal mining areas and the resource utilization of coal gangue.
机译:随着中国煤炭行业的发展,煤矸石已成为最广泛的固体废物之一。来自其他土地填海地区的土壤收集已成为中国煤矿地区生态恢复的常用技术。本研究的目的是使用煤矸石作为一种新型种植衬底元件,具有更换土壤来解决土地资源不足的目的。使用具有四个因素的正交实验进行优化基材的制剂:煤矸石(G) - 土壤(g)比(1000:0,750:250,500:500),玉米秸秆含量(0,25,和50g kg(-1)),飞灰含量(0,75和150g kg(-1)),水保留剂含量(0,1,和2g kg(-1))。结果展示煤矸石显着提高了基材(P <0.01)的化学性质(有机物质,总,可用的N,可用的P和可用k),剂量为1000克,增加苜蓿生长并改善土壤营养比例为500克。此外,玉米秸秆在50g下显着影响底物(P <.01)的物理性质(堆积密度,总孔隙,毛细血管孔隙,土壤水分含量和渗透系数,并且对植物生长最有利(P <。 01)在25克。粉煤灰引起了基材的物理和化学性质的一定变化,从而受到影响的植物生长;水保留剂显示出较小的效果。在正交实验之后,我们使用模型来综合分析了21例参数对四种因素的影响,以确定组分的最佳比例,如下:煤矸石 - 土壤比例为1:1(500克) :500克),玉米秸秆含量为50g kg(-1),粉煤灰含量为37g kg(-1),水保留剂含量为1g kg(-1)。本研究的调查结果将为煤矿地区生态恢复和煤矸石的资源利用提供理论和技术基础。

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