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Soil structure (8/27) -- Introduction to Soil Science

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Soil structure

Soil structure Amber Anderson - Identify soil structures and factors influencing their development - Predict what structure might be present given additional information such as soil conditions or horizon - Explain how structure may impact plant growth or other soil functions - Predict how management factors might impact structure Structure Soil structure is the shape in which soil particles group together and form aggregates. A soil aggregate, or conglomerate of sand, silt, clay, and sometimes organic material, may be a variety of different shapes. Structure is important because it allows critical areas of open space, vital for water to move, roots to grow, and soil organisms. Consider a classroom or the space in which you are currently viewing this: when the materials are put together effectively, it allows space for interactions. If only a pile of building materials, the space doesn’t serve the same function. Factors influencing aggregation A variety of factors influence how soil particles aggregate or group together. Biological activity, organic addition, wetting/drying cycles, freezing/thawing cycles would be expected to increase aggregation, whereas tillage, compaction, and chemical properties such as sodium would decrease aggregation. Shapes Granular These rounded groups of particles don’t pack together well, allowing more space for water to move through. They are most commonly found in A horizons with higher levels of organic matter, healthy root growth, without significant compaction. Platy Commonly found in E horizons, the natural breaks in this soil are horizontal rather than vertical. These are easily destroyed by tillage. Note that this is different from ‘plates’ formed by operating equipment when a soil is wet. Although they look somewhat similar, this structure is naturally formed over time. Blocky Blocky structural units are common to find in a B horizon or cultivated A horizon. They can be grouped by either angular blocky having sharp angles likely found in higher-clay soils, or subangular blocky, the more rounded corners. Prismatic These have longer natural breaks vertically in the soil rather than horizontally. As was the case with this large prism in the photo, they are generally found in B horizons. Water and roots in this soil will likely move preferentially through the breaks between these units. Columnar Columnar are a special type of structure created when sodium impacts a prismatic structure. A ‘muffin top’ or ‘popcorn’ looking appearance on the top of a prism develops from sodium dispersing particles. These are agronomically challenging soils to manage. Both water and roots will likely have problems moving through this soil easily. Massive or Single grained These units of ‘non structure’ indicates there has been limited changes to this soil since deposition. In glacial till materials, a large piece will likely break between the points of pressure applied, rather than falling apart on pre-determined lines. A midwestern s
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