王子寅, 唐万鹏, 刘秉儒, 赵晓玉, 李子豪. 植被毯覆盖对旱区露天煤矿土壤生态化学计量及酶活性的影响[J]. 农业工程学报, 2022, 38(15): 124-132. DOI: 10.11975/j.issn.1002-6819.2022.15.013
    引用本文: 王子寅, 唐万鹏, 刘秉儒, 赵晓玉, 李子豪. 植被毯覆盖对旱区露天煤矿土壤生态化学计量及酶活性的影响[J]. 农业工程学报, 2022, 38(15): 124-132. DOI: 10.11975/j.issn.1002-6819.2022.15.013
    Wang Ziyin, Tang Wanpeng, Liu Bingru, Zhao Xiaoyu, Li Zihao. Effects of vegetation blanket cover on the ecological stoichiometry and enzymatic activity of opencast coal mine soils in arid areas[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2022, 38(15): 124-132. DOI: 10.11975/j.issn.1002-6819.2022.15.013
    Citation: Wang Ziyin, Tang Wanpeng, Liu Bingru, Zhao Xiaoyu, Li Zihao. Effects of vegetation blanket cover on the ecological stoichiometry and enzymatic activity of opencast coal mine soils in arid areas[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2022, 38(15): 124-132. DOI: 10.11975/j.issn.1002-6819.2022.15.013

    植被毯覆盖对旱区露天煤矿土壤生态化学计量及酶活性的影响

    Effects of vegetation blanket cover on the ecological stoichiometry and enzymatic activity of opencast coal mine soils in arid areas

    • 摘要: 为阐明不同材质植被毯覆盖对干旱地区露天煤矿土壤养分及酶活性的影响,以宁夏贺兰山自然保护区大峰矿为研究对象,分析秸秆、椰丝及秸秆-椰丝3种不同材质植被毯覆盖后矿区土壤有机碳、全氮、全磷、脲酶、蛋白酶、碱性磷酸酶和过氧化氢酶及生态化学计量比特征。结果表明:1)植被毯覆盖增加土壤表层有机碳和总氮含量且最大值为椰丝植被毯覆盖土壤,总磷含量无明显变化,10~20 cm土壤有机碳、总氮、总磷含量无明显变化;2)植被毯覆盖增加C/P、N/P且最大值同样为椰丝植被毯覆盖土壤,C/N无明显变化;3)植被毯覆盖土壤脲酶和碱性磷酸酶活性显著高于裸地,且0~10 cm大于10~20 cm,蛋白酶活性无显著变化,过氧化氢酶活性仅有椰丝植被毯的0~10 cm显著高于10~20 cm;4)土壤酶活性与环境因子的相关性和冗余分析结果显示:土壤TP、C/N是制约酶活性的主要影响因子,而N/P、TN是驱动酶活性的主要因子。三种植被毯覆盖后,土壤表层养分含量增加,同时增加了土壤表层的C/P和N/P,且促进表层土壤酶活性。此外,4种酶活性之间也存在显著正相关关系(P<0.01)。相对于秸秆、秸秆-椰丝植被毯,椰丝植被毯提供土壤养分的能力更强。土壤酶活性与环境因子的相关性和冗余分析结果显示:土壤TP、C/N是制约酶活性的主要影响因子,而N/P、TN是驱动酶活性的主要因子。上述结果表明,植被毯覆盖后增加了土壤表层养分,同时促进表层土壤的酶活性。研究结果能够为旱区露天煤矿土壤植被毯生态修复技术的实施提供一定理论依据。

       

      Abstract: This study aims to explore the effects of different vegetation blanket covers on the nutrient and enzyme activities of open-pit coal mine soils in arid areas. The research object was taken as the Dafeng mine in Ningxia Helan Mountains Nature Reserve. Three vegetation blanket covers were set as straw, straw-coir, and coir. Some parameters were measured, including the organic carbon, total nitrogen, total phosphorus, urease, protease, and alkaline phosphatase, as well as the peroxidase and ecological stoichiometric ratios of the mine soils. The results showed that: 1) The vegetation blanket covered with different materials increased the organic carbon and total nitrogen content of the surface layer of the soil. Specifically, the maximum content was achieved in the soil covered by the coir vegetation blanket. By contrast, there was no significant change in the total phosphorus content, and the organic carbon. Among them, there was the total nitrogen, and total phosphorus content of the soil from 10 to 20 cm. Only the organic carbon content of straw-coir vegetation blanket cover soil decreased with the increasing soil depth in the vertical direction. There was no change in the organic carbon, total nitrogen, and total phosphorus of the rest of the vegetation blanket-covered soil, as the soil depth increased. 2) The vegetation blanket cover with different materials increased C/P and N/P ratios. The maximum was also the soil covered by the coir vegetation blanket. There was no significant change in the C/N. Moreover, there was no change in the C/N, C/P and N/P, as the soil depth increased. 3) The urease and alkaline phosphatase activities of the vegetation blanket-covered soil were significantly higher than those of the bare ground. The soil from 0 to 10cm was greater than that from 10 to 20cm. There was no change in the protease activity with the depth of the soil layer. Furthermore, the catalase activity was significantly higher only in the soil from 0 to 10cm of the coir vegetation blanket than in the soil from 10 to 20 cm. 4) The correlation between soil enzyme activity and environmental factors showed that the total phosphorus of soil and C/N were the main influencing factors to govern the enzyme activity, whereas, the N/P and the total nitrogen of soil were the main factors to drive the enzyme activity. The nutrient content of the soil surface layer increased after the three vegetation blankets were mulched, which also increased the C/P and N/P of the soil surface layer, thus promoting surface soil enzyme activity. In addition, there was a significant positive correlation (P<0.01) among the four enzyme activities. The coir vegetation blanket was more capable to provide soil nutrients, compared with the straw and straw-coir vegetation blankets. The redundancy analysis of soil enzyme activities and environmental factors showed that the total soil phosphorus of soil and C/N were the main influencing factors to govern the enzyme activities, while the N/P and the total nitrogen of soil were the main factors driving the enzyme activities. Consequently, the vegetation blankets cover increased the nutrients in the surface layer of the soil. At the same time, the enzyme activity was also promoted in the surface soil. The findings can provide a strong theoretical basis to implement the ecological restoration of vegetation blankets for the open-pit coal mine soil in arid areas.

       

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