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Statistical Evaluation of Sprayed Synthetic Soils Amended with Four Additive Factors Used in High- and Cut Rock Slopes

机译:高低切边坡用四种加成因子修正的喷洒合成土壤的统计评估

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There are many bare and cut rock slopes resulting from quarrying or highway engineering abandoned in China because of immature outside soil spray seeding (OSSS) engineering techniques. To improve properties of synthetic soil technique to spray on such slopes (gradient > 50 degrees), four components of OSSS, that is, cement, inorganic compound fertilizers (ICF), wood bits, and peat soil at four treatment levels for eachweremixed into soil using orthogonal array designs OA(16) (4(5)). Relationships of each of four components with plant biomass, soil physicochemical and microbial features were explored to determine optimal synthetic soil combinations for OSSS techniques. Significant differences in plant biomass, soil physicochemical properties and microbial activities among 16 different OSSS synthetic soils with different contents of four components were identified. Optimal combination of N10 with higher nutrients (added with 0.8% ICF, 1.5% cement, 1.5% peat soil, and 2.0% wood bits) and N13 with highest viscidity (addedwith 0.4% ICF, 2.0% cement, 1.5% peat soil, and 2.0% wood bits) than other combinations were obtained to be used in OSSS sprayed soils to reconstruct the bare high-and cut rock slopes, which was supported by results of cluster analysis. On the other hand, based on canonical correlation analysis, redundancy analysis, and discriminant analysis, soil physicochemical properties explained 56.41% of the soil microbial activities and the cement is the most influential factor on soil properties. Among all tested indicators, soil NH4-N, total P, pH, organic C, phenol oxidase, invertase, CM-cellulase, acid phosphatase, alkaline phosphatase, and basal respirationwere more responsive toOSSS synthetic soils. Our results have documented improvement of soil physicochemical and microbial features of the OSSS soil under the condition of 2.0% cement content.
机译:由于外部土壤喷播播种(OSSS)工程技术不成熟,在中国由于采石或公路工程而产生的许多裸露的和切开的岩石边坡。为了改善在这种坡度(坡度> 50度)上喷洒的合成土壤技术的特性,将四种处理水平的OSSS的四个成分(即水泥,无机复合肥料(ICF),木屑和泥炭土)分别混合到土壤中使用正交阵列设计OA(16)(4(5))。探索了四种成分与植物生物量,土壤理化和微生物特征之间的关系,以确定用于OSSS技术的最佳合成土壤组合。在四种成分含量不同的16种不同OSSS合成土壤之间,植物生物量,土壤理化性质和微生物活性之间存在显着差异。 N10与更高养分(添加0.8%ICF,1.5%水泥,1.5%泥炭土和2.0%木屑)和N13最高粘度(添加0.4%ICF,2.0%水泥,1.5%泥炭土和获得了比其他组合多2.0%的木屑,用于OSSS喷洒的土壤,以重建裸露的高切岩石边坡,这得到了聚类分析结果的支持。另一方面,基于典型相关分析,冗余度分析和判别分析,土壤理化性质占土壤微生物活动的56.41%,而水泥是影响土壤性质的最主要因素。在所有测试指标中,土壤NH4-N,总磷,pH,有机碳,酚氧化酶,转化酶,CM纤维素酶,酸性磷酸酶,碱性磷酸酶和基础呼吸对OSSS合成土壤的响应性更高。我们的结果表明,在水泥含量为2.0%的条件下,OSSS土壤的土壤理化和微生物特性得到改善。

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