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Phosphorus
Pub Date : 2018-09-11 DOI: 10.2136/sssabookser5.3.c32
S. Kuo
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引用次数: 55
Chemical Speciation of Trace Elements in Soil Solution 土壤溶液中微量元素的化学形态
Pub Date : 2018-09-11 DOI: 10.2136/SSSABOOKSER8.C14
S. Sauvé, D. Parker
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引用次数: 3
Plant Analysis as an Aid in Fertilizing Sugarbeet 植物分析在甜菜施肥中的辅助作用
Pub Date : 2018-09-11 DOI: 10.2136/SSSABOOKSER3.3ED.C16
A. Ulrich, F. Jackson Hills
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引用次数: 16
Air Pressure Measurement 气压测量
Pub Date : 2018-09-11 DOI: 10.2136/SSSABOOKSER5.1.2ED.C50
H. Flühler, A. Peck, L. Stolzy
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引用次数: 1
Physical-Chemical Aspects of Nutrient Availability 养分有效性的物理化学方面
Pub Date : 2018-09-11 DOI: 10.2136/SSSABOOKSER3.3ED.C2
R. B. Corey
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引用次数: 5
Mineral Occurrence in Soil Environments 土壤环境中的矿物赋存
Pub Date : 2018-09-11 DOI: 10.2136/SSSABOOKSER1.2ED.C5
B. L. Allen, B. Hajek
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引用次数: 101
Soil Enzymes 土壤酶
Pub Date : 2018-09-11 DOI: 10.2136/sssabookser5.2.c37
M. Tabatabai
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引用次数: 54
Sulfur
Pub Date : 2018-09-11 DOI: 10.2136/sssabookser5.3.c33
M. Tabatabai
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引用次数: 1
Feldspars, Olivines, Pyroxenes, and Amphiboles 长石、橄榄石、辉石和角闪石
Pub Date : 2018-09-11 DOI: 10.2136/SSSABOOKSER1.2ED.C20
P. Huang
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引用次数: 21
2.6 Aggregate Stability and Size Distribution 2.6骨料稳定性与粒度分布
Pub Date : 2018-09-11 DOI: 10.2136/SSSABOOKSER5.4.C14
J. Nimmo, K. Perkins
A soil aggregate is “a group of primary soil particles that cohere to each other more strongly than to other surrounding particles” (Soil Science Society of America, 1997). Soil aggregates can be formed by both aggregation and fragmentation processes. There are several ways of quantifying aggregate size and cohesive strength. The relative abundance of aggregates at each possible size, after breaking the soil into individual aggregates in a prescribed way, is the usual representation of the characteristic size distribution. Similarly, an abundance index may indicate stability, as the fraction of soil material that remains aggregated after a specified disruptive procedure. Other stability indices relate more directly to the force required to break an aggregate apart, usually in terms of the mechanical energy per soil mass that must be applied to achieve a certain result, such as aggregate rupture. The analysis of soil aggregation is important in a variety of applications. Aggregate stability and size information may be used to evaluate or predict the effects of various agricultural techniques, such as tillage and organic-matter additions, and erosion by wind and water. Aggregate analysis is often used in experiments where various tillage methods are applied and then evaluated by examining the resulting stable aggregates. Because of their direct relation to cohesive forces, aggregate size and stability are important to understanding soil erosion and surface sealing. Analysis of dry aggregates may be used to estimate possible wind-erosion effects, while wet analysis may be more appropriate to evaluate or predict erosion due to rainfall impact and runoff. The stability of wet aggregates can be related to surface-seal development and field infiltration, as water-stable fractions may restrict water entry and form surface seals (Loch, 1994). Through these erosion and sealing effects, as well as the relation between aggregation and structural features such as macropores, aggregate analysis may help us understand most aspects of soil water behavior, including runoff, infiltration, and redistribution, as well as soil aeration and root growth. Increasingly, aggregate properties are being used in models that predict soil hydraulic properties, including water retention and unsaturated hydraulic conductivity (e.g., Rieu & Sposito, 1991a, b; Nimmo, 1997; Kosugi & Hopmans, 1998). The strength of interparticle cohesion depends on a variety of soil physical, chemical, and biological influences, some of the most important being air–water
土壤团聚体是“一组基本的土壤颗粒,它们彼此之间的粘结力比周围的其他颗粒更强”(美国土壤科学学会,1997)。土壤团聚体的形成既有团聚过程,也有破碎过程。有几种量化骨料粒度和内聚强度的方法。在按规定的方式将土壤分解成单个团聚体后,每一可能粒径的团聚体的相对丰度是特征粒径分布的通常表示。类似地,丰度指数可以表示稳定性,即在特定的破坏过程后仍保持聚集的土壤物质的比例。其他稳定性指标更直接地与使骨料破裂所需的力有关,通常是指为达到某种结果(如骨料破裂)而必须施加的每个土体的机械能。土壤团聚体的分析在各种应用中都很重要。团聚体稳定性和大小信息可用于评估或预测各种农业技术的效果,如耕作和有机质添加,以及风和水的侵蚀。聚集体分析常用于试验中,在试验中采用各种耕作方法,然后通过检查所得到的稳定聚集体来评估。由于骨料粒度和稳定性与黏结力的直接关系,它们对于理解土壤侵蚀和地表密封具有重要意义。干团聚体的分析可用于估计可能的风蚀影响,而湿分析可能更适合于评估或预测由于降雨影响和径流造成的侵蚀。湿团聚体的稳定性可能与地表密封发育和野外渗透有关,因为水稳定组分可能限制水进入并形成地表密封(Loch, 1994)。通过这些侵蚀和密封作用,以及团聚体与大孔隙等结构特征之间的关系,团聚体分析可以帮助我们了解土壤水分行为的大多数方面,包括径流、入渗和再分配,以及土壤通气性和根系生长。越来越多地,骨料特性被用于预测土壤水力特性的模型中,包括保水性和非饱和水力导电性(例如,Rieu & possito, 1991a, b;尼姆,1997;Kosugi & Hopmans, 1998)。颗粒间凝聚力的强度取决于土壤的各种物理、化学和生物影响,其中一些最重要的是空气-水
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引用次数: 134
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