首页> 外文会议>2011 International Symposium on Water Resource and Environmental Protection >Soil nutrient and soil enzyme activity at various types of slopes in disturbed area of Xiangjiaba hydropower construction
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Soil nutrient and soil enzyme activity at various types of slopes in disturbed area of Xiangjiaba hydropower construction

机译:向家坝水电工程建设扰动区不同类型坡面土壤养分和土壤酶活性。

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Taking seven types of slopes in the disturbed area of Xiangjiaba construction as test objects this paper measured their soil pH, soil nutrient and soil enzyme activity. The results showed that the soil at natural forests (NF) was acidic, while the others were weakly alkaline at different degree. Variation of soil nutrients in different slopes is obvious; soil enzyme activity is also a significant difference between different slopes. The soil of D slope (Thick layer substrate, TLS) is the highest in activity of urease and invertase, the soil of natural forests (NF) is the highest in activity of neutral phosphatase, while the soil in natural forests (NF) is the lowest in activity of catalase. The soil of discarded residue (DR) is the lowest in activity of urease, invertase and neutral phosphatase except catalase. Soil pH and soil nutrient factors and enzyme activities showed some differences between C, D, E three slopes that were using the same remediation technology thick layer substrates. The analysis of correlation indicates that the activities of four soil enzymes were highly correlated not only with each other, but also were closely with soil organic matter, available nitrogen, total nitrogen, suggested that integrated enzymatic activity could be used to indicate and estimate soil fertility of artificial remediation slopes in the disturbed area.
机译:以向家坝建设扰动区的7种边坡为试验对象,对它们的土壤pH,土壤养分和土壤酶活性进行了测定。结果表明,天然林土壤为酸性,其余均为弱碱性。不同坡度土壤养分变化明显。不同坡度之间土壤酶活性也存在显着差异。 D坡度土壤(厚层底物,TLS)的尿素酶和转化酶活性最高,天然林(NF)的土壤中性磷酸酶活性最高,而天然林(NF)的土壤是中性磷酸酶最高。过氧化氢酶的活性最低。除过氧化氢酶外,废弃残留物(DR)的尿素酶,转化酶和中性磷酸酶活性最低。使用相同的修复技术的厚层基质,土壤pH,土壤养分因子和酶活性在C,D,E 3个坡度之间存在一定差异。相关性分析表明,四种土壤酶的活性不仅彼此高度相关,而且与土壤有机质,速效氮,总氮密切相关,表明综合酶活性可用于指示和估算土壤肥力。扰动区域的人工修复坡度的变化。

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