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紫色水稻土有机无机复合与土粒团聚的关系 被引量:25
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作者 魏朝富 谢德体 陈世正 《土壤学报》 CAS CSCD 北大核心 1996年第1期70-77,共8页
紫色水稻土的原土复合量(重组腐殖质)为中性土>钙质土>酸性土,同一土壤剖面中其含量是随土层深度下降;而有机无机复合度为钙质土>中性、酸性土,在土壤剖面中是随土层深度增加。<0.01mm土粒团聚量和<0.01mm土粒团... 紫色水稻土的原土复合量(重组腐殖质)为中性土>钙质土>酸性土,同一土壤剖面中其含量是随土层深度下降;而有机无机复合度为钙质土>中性、酸性土,在土壤剖面中是随土层深度增加。<0.01mm土粒团聚量和<0.01mm土粒团聚度为钙质土>中性土>酸性土。原土复合量和有机质含量,物理性粘粒含量、铁氧化物含量与<0.01mm土粒团聚量呈显著正相关;而有机无机复合度与有机质含量呈显著负相关,与腐殖质结合状态,物理性粘粒含量和<0.01mm土粒团聚度间无显著相关性。土壤有机质在上粒团聚中,是与矿物质呈复合状态的腐殖质(原土复合量)起作用,而原上复合量的多少很大程度上决定了<0.01mm土粒团聚量。有机无机复合和土粒团聚的关系是通过原土复合量和<0.01mm土粒团聚量间的关系来体现的。 展开更多
关键词 有机无机复合 土粒团聚 紫色水稻土
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Characteristics of Organo-Mineral Complexing of Microaggregates in Paddy Soils Developed from Purple Soils 被引量:1
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作者 WEICHAOFU XIEDETI 《Pedosphere》 SCIE CAS CSCD 1996年第4期365-372,共8页
This paper deals with characteristics of organo-mineral complexing of microaggregates in the paddy soils developed from purple soils in Sichuan, China. Results show that the contents of organic matter in microaggregat... This paper deals with characteristics of organo-mineral complexing of microaggregates in the paddy soils developed from purple soils in Sichuan, China. Results show that the contents of organic matter in microaggregates are in the order of 1--0.25 mm > smaller than 0.05 mm > 0.05-0.25 mm. But the organic matter in 1-0.01 mm microaggregates accounts for 68.1%-78.7% of that in soil. The organic matter in<0.05 mm microaggregates is complexed humus on the whole, of which the degree of organo-mineral complexing varies between 96.1% and 99.5%, which is higher than that of the soil or>0.05 mm microaggregates. The contents of loosely combined humus and the ratios of loosely and tightly combined humus markedly decline with the size of microaggregates. Fresh soil humus formed from semi-decomposed organic material or organic manure added is combined first with<0.001 mm clay, and then aggregated with other organic and mineral particles to form larger microaggregates, in which the aging of humus happens at the same time; whereas organic matter of the light fraction is mainly involved in the formation of>0.05 mm microaggregates. 展开更多
关键词 combined humus microaggregate organo-mineral complexing paddy soils from purple soils
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Reconstruction of Soil Particle Composition During Freeze-Thaw Cycling: A Review 被引量:40
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作者 ZHANG Ze MA Wei +2 位作者 FENG Wenjie XIAO Donghui HOU Xin 《Pedosphere》 SCIE CAS CSCD 2016年第2期167-179,共13页
Studies conducted over several decades have shown that the freeze-thaw cycles are a process of energy input and output in soil, which help drive the formation of soil structure, through water expansion by crystallizat... Studies conducted over several decades have shown that the freeze-thaw cycles are a process of energy input and output in soil, which help drive the formation of soil structure, through water expansion by crystallization and the movement of water and salts by thermal gradients. However, most of these studies are published in Russian or Chinese and are less accessible to international researchers. This review brought together a wide range of studies on the effects of freezing and thawing on soil structure. The following findings are summarized: i) soil structure after freeze-thaw cycles changes considerably and the changes are due to the mechanical fragmentation of soil coarse mineral particles and the aggregation of soil fine particles; ii) the particle size of soil becomes homogeneous and the variation in soil structure weakens as the number of freeze-thaw cycles increases; iii) in the freezing process of soil, an important principle in the variation of soil particle bonding is presented as: condensation →aggregation→ crystallization; iv) the freeze-thaw cycling process has a strong effect on soil structure by changing the granulometric composition of mineral particles and structures within the soil. The freeze-thaw cycling process strengthens particle bonding, which causes an overall increase in aggregate stability of soil, showing a process from destruction to reconstruction. 展开更多
关键词 aggregate stability AGGREGATION FRAGMENTATION mineral particle soil granulometric composition soil structure
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