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Ectomycorrhizal Influence on Particle Size Surface Structure Mineral Crystallinity Functional Groups and Elemental Composition of Soil Colloids from Different Soil Origins

机译:外生菌根对不同土壤来源的土壤胶体的粒径表面结构矿物结晶度官能团和元素组成的影响

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摘要

Limited data are available on the ectomycorrhizae-induced changes in surface structure and composition of soil colloids, the most active portion in soil matrix, although such data may benefit the understanding of mycorrhizal-aided soil improvements. By using ectomycorrhizae (Gomphidius viscidus) and soil colloids from dark brown forest soil (a good loam) and saline-alkali soil (heavily degraded soil), we tried to approach the changes here. For the good loam either from the surface or deep soils, the fungus treatment induced physical absorption of covering materials on colloid surface with nonsignificant increases in soil particle size (P > 0.05). These increased the amount of variable functional groups (O–H stretching and bending, C–H stretching, C=O stretching, etc.) by 3–26% and the crystallinity of variable soil minerals (kaolinite, hydromica, and quartz) by 40–300%. However, the fungus treatment of saline-alkali soil obviously differed from the dark brown forest soil. There were 12–35% decreases in most functional groups, 15–55% decreases in crystallinity of most soil minerals but general increases in their grain size, and significant increases in soil particle size (P < 0.05). These different responses sharply decreased element ratios (C : O, C : N, and C : Si) in soil colloids from saline-alkali soil, moving them close to those of the good loam of dark brown forest soil.
机译:关于外生菌根引起的土壤胶体表面结构和组成变化的有限数据,土壤胶体是土壤基质中最活跃的部分,尽管这些数据可能有助于了解菌根辅助的土壤改良。通过使用根外生菌(Gomphidius viscidus)和黑褐色森林土壤(良好的壤土)和盐碱土壤(严重退化的土壤)的土壤胶体,我们试图在此进行研究。对于来自表层土壤或深层土壤的良好壤土,真菌处理诱导了胶体表面覆盖材料的物理吸收,而土壤粒径却无明显增加(P> 0.05)。这些将可变官能团(OH拉伸和弯曲,CH拉伸,C = O拉伸等)的数量增加了3–26%,并使可变土壤矿物(高岭石,水云母和石英)的结晶度增加了3.6%。 40–300%。但是,对盐碱土壤的真菌处理与深棕色森林土壤明显不同。大多数官能团降低了12–35%,大多数土壤矿物质的结晶度降低了15–55%,但其晶粒大小普遍增加,并且土壤粒径显着增加(P <0.05)。这些不同的反应使盐碱土壤土壤胶体中的元素比(C:O,C:N和C:Si)急剧下降,使它们接近深棕壤土的优质壤土。

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