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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Selected soil physical properties and aggregate-associated carbon and nitrogen as influenced by gypsum, crop residue, and glucose
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Selected soil physical properties and aggregate-associated carbon and nitrogen as influenced by gypsum, crop residue, and glucose

机译:由石膏,作物残留物和葡萄糖的影响选择土壤物理性质和骨料相关的碳和氮

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摘要

Soil physical properties play an important role in maintaining proper soil conditions for sustainable plant growth and development. These properties can be improved through addition of soil amendments, but little information is available of the effect of gypsum applied alone or in combination with various C sources on selected soil properties. A greenhouse study was conducted involving two contrasting soil types (Wooster silt loam and Hoytville clay loam) from Ohio, USA to which were applied gypsum (8.9 and 26.9 Mg ha(-1)), two contrasting C sources (i.e. crop residues at 13.4 Mg ha(-1) and glucose at 4.5 Mg ha(-1)), their combinations and an untreated control. Response variables included soil bulk density, porosity, water stable aggregates, and aggregated-associated total C and N. A significant (P & 0.10) reduction in soil bulk density and increased porosity by glucose as compared to the control was observed. Crop residue addition also decreased bulk density. There was no significant effect on bulk density due to gypsum. Addition of glucose combined with gypsum (26.9 Mg ha(-1)) or crop residue resulted in more water stable aggregates (WSA), greater mean weight diameter (MWD), and greater geometric mean diameter (GMD) as compared to other treatments. The differences were attributed to multiple factors such as the gluing activity of the polysaccharides promoted by glucose, and the inorganic binding/stabilizing activity brought about by Ca2+ in the gypsum. Addition of C amendments increased aggregate formation and lowered soil bulk density. It also caused a C increase within aggregates. Both, highly labile C (i.e. glucose) and more stable C in the form of plant residues provided benefit by improving soil physical properties. These benefits were also enhanced in some instances when gypsum was applied in combination with the C amendments.
机译:土壤物理特性在维持可持续植物生长和发展的适当土壤条件方面发挥着重要作用。通过添加土壤修正,可以提高这些性质,但是少量的信息可用于单独应用的石膏效果或与选定的土壤性质的各种C源相结合。进行了温室研究,涉及来自俄亥俄州的两种对比土壤类型(Wooster Silt Loam和Hoytville粘土壤土),美国施用石膏(8.9和26.9 mg HA(-1)),两个对比的C来源(即在13.4的作物残留物Mg HA(-1)和4.5mg HA(-1))的葡萄糖,它们的组合和未处理的对照。响应变量包括土壤堆积密度,孔隙率,水稳定的聚集体和聚集相关的总C和N。观察到与对照相比,葡萄球菌密度的显着(P& 0.10)降低和通过葡萄糖的孔隙率增加。作物残余物加成也降低了堆积密度。由于石膏导致的批量密度没有显着影响。与其他处理相比,加入葡萄糖(26.9mg ha(-1))或作物残余物,导致更多的水稳定的聚集体(WSA),更大的平均重量直径(MWD),更大的几何平均直径(GMD)。差异归因于多种因素,例如通过葡萄糖促进的多糖的胶合活性,以及​​在石膏中Ca2 +引起的无机结合/稳定活性。添加C修正案增加了骨料形成和降低的土壤堆积密度。它还引起了聚集体内的C增加。通过改善土壤物理性质,植物残留物形式的高度不稳定的C(即葡萄糖)和更稳定的C.在某些情况下,在与C修正案结合使用石膏时,这些益处也在某些情况下得到增强。

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