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Titlebook: Bottom Soils, Sediment, and Pond Aquaculture; Claude E. Boyd Book 1995 Chapman & Hall 1995 Flora.aquaculture.aquatic animals.classificatio

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Michael J. Rathbone,Arlene McDowellrbon dioxide to organic matter. For example, nitrifying bacteria use energy released in the oxidation of ammonia to nitrate and reduce CO. to organic carbon of carbohydrate. On a global basis, the amount of organic matter synthesized by chemoautotrophy is very small in comparison with the quantity produced by photosynthesis.
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https://doi.org/10.1007/978-3-662-22115-0oil condition. This chapter discusses pond management and soil treatment techniques for improving or maintaining the condition of pond soils. Application of these techniques can enhance soil condition and water quality, improve production efficiency, and prolong the useful life of ponds.
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,Soil Organic Matter, Anaerobic Respiration, and Oxidation—Reduction,ptors used by microbes in respiration. Below the thin, aerobic surface layer where oxygen is the terminal electron acceptor in respiration are successive layers where nitrate, iron and manganese, sulfate, and carbon dioxide, respectively, are used as electron acceptors or oxidants in respiration. Fermentation also occurs in anaerobic soil.
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https://doi.org/10.1007/978-1-137-09745-3quaculture ponds. Soil also is a key factor in aquaculture, but much less attention is given to soil condition than to water supply and water quality. Most ponds are built from and in soil. Many dissolved and suspended substances in water are derived from contact with soil. Pond bottom soils are the
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https://doi.org/10.1007/978-1-137-11765-6and covered with water all or part of the time. There are three basic types of aquaculture ponds: watershed ponds, levee ponds, and excavated ponds.. Watershed ponds are formed by making embarkments across natural watercourses to impound runoff. Soils for building embankments may come from both insi
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https://doi.org/10.1007/978-1-137-11765-6re. Essential mineral nutrients (Table 3.1) are supplied by the soil. Most vascular plants absorb carbon dioxide through their leaves and take in water and mineral nutrients through their roots. The root system extends into the soil and provides a large surface area for absorbing nutrients and water
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Susan W. Larsen,Mette A. Thing,Claus Larsenic animal production are biologically mediated oxidations and reductions. Photosynthesis is a well-known reduction reaction; inorganic carbon in carbon dioxide is reduced to organic carbon in carbohydrate with the capture of energy. Aerobic respiration is an oxidation reaction in which carbon in org
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