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===Major cations=== | ===Major cations=== | ||
− | Major cations include calcium, magnesium, sodium, and potassium. | + | Cations are positively charged elements. Major cations in soil include calcium (Ca<sub>2</sub><sup>+</sup>), magnesium (Mg<sub>2</sub><sup>+</sup>), sodium (Na<sup>+</sup>), and potassium (K<sup>+</sup>). Each of these are important plant nutrients. |
===Sulfur=== | ===Sulfur=== |
Overview of soil physical properties and associated activities affecting soil physical properties and processes. Click on links to go to a specific section. | ||||
Property | Effects | Desired value | Management strategies | |
Phosphorus | ||||
Nitrogen | ||||
Major cations | ||||
Sulfur | ||||
Trace metals | ||||
Cation exchange capacity | ||||
Electrical conductivity | ||||
Organic matter (carbon) | ||||
Base saturation | ||||
Enzymes | ||||
Salinity | ||||
Sodium adsorption ratio | ||||
pH |
Soil chemical properties include concentrations of specific chemicals (e.g. phosphorus, nitrogen, carbon, major cations (calcium, magnesium, sodium, potassium), sulfur, trace metals and elements), pH, cation exchange capacity, base saturation, salinity, sodium adsorption ratio, enzymes, and electrical conductivity. These properties affect processes such as nutrient cycling, biologic activity, soil formation, pollutant fate, and erosion.
This page provides an overview of soil chemical properties, processes they affect, effects of human activities, discussion of stormwater applications, and links to related topics, including information on sampling, testing, and soil health assessments.
Soil chemical properties discussed below include phosphorus, nitrogen, major cations, trace metals, cation exchange capacity, electrical conductivity, enzymes, organic matter and carbon, base saturation, salinity, sodium adsorption ration, and pH.
Phosphorus constitutes about 0.2 percent of a plant’s dry weight, where it is primarily a component of tissue molecules such as nucleic acids, phospholipids, and adenosine triphosphate (ATP). Along with nitrogen, phosphorus is often a limiting nutrient in soil. Soils limited in phosphorus reduce plant growth and development, while excess phosphorus can be exported from soil and enter freshwater bodies.
Approximately 30 to 65 percent of total soil phosphorus is in organic forms and the remaining 35 to 70 percent in inorganic forms. Soil microorganisms play a key role in processing and transforming organic forms into plant available forms. Inorganic phosphorus forms include the following:
Phosphorus is typically measured in a laboratory with one of the following methods.
Phosphorus can also be determined in the field with appropriate equipment or with test strips. Test strips are less accurate but may be suitable for identifying phosphorus deficiencies.
The soil phosphorus cycle is somewhat complicated since phosphorus is affected by soil mineralogy and chemistry and by soil biotic processes.
Stormwater application Stormwater runoff typically contains about 0.2-0.6 mg/L of total phosphorus, though this varies with land use and season. Particulate phosphorus accounts for about 50-75% of total phosphorus. Dissolved forms are more bioavailable. Phosphorus is not limiting in most stormwater applications. In many applications where engineered media are employed, phosphorus represents a risk for surface receiving waters. Link here for more information.
Additional reading
Phosphorus constitutes about 1 percent of a plant’s dry weight, where it plays a role in the growth of tissues and cells found within the plant, as well as the formation of chlorophyll. Along with phosphorus, nitrogen is often a limiting nutrient in soil. Soils limited in nitrogen reduce plant growth and development, while excess nitrogen can be exported from soil and enter freshwater bodies, including groundwater.
Nitrogen occurs in both organic and inorganic forms in soil, with ammonium (NH4+) and nitrate (NO3-) being the dominant inorganic forms.
Measurement of nitrogen in soils depends on the form being measured.
The nitrogen cycle in soil is somewhat complex, with the following important processes (Plant and Soil Sciences e-library).
Stormwater application Stormwater runoff typically contains about 2-3 mg/L of total nitrogen, with roughly equal proportions of nitrate and reduced forms (ammonia and organic nitrogen). Nitrogen is not limiting in most stormwater applications and represents a relatively low risk for receiving waters in most situation. Link here for more information.
Additional reading
Cations are positively charged elements. Major cations in soil include calcium (Ca2+), magnesium (Mg2+), sodium (Na+), and potassium (K+). Each of these are important plant nutrients.