首页> 外文期刊>Journal of plant nutrition and soil science >Physico-chemical characterization of humic-metal-phosphate complexes and their potential application to the manufacture of new types of phosphate-based fertilizers
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Physico-chemical characterization of humic-metal-phosphate complexes and their potential application to the manufacture of new types of phosphate-based fertilizers

机译:腐殖金属磷酸盐复合物的理化特性及其在新型磷酸盐基肥料生产中的潜在应用

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摘要

The aim of this review is to describe the main physicochemical characteristics of diverse types of humic-metal-phosphate acid complexes. The effects of these complexes on phosphorus (P) fixation in soils with different pH values and physicochemical features and on plant phosphorus uptake are also discussed. Humic-metal-phosphate complexes have apparent stability constants in the same range as those of metal-humic complexes, in solutions with diverse pH and ionic-strength values. Likewise, the molecular-size distribution of humic-metal-phosphate complexes as a function of pH is similar to that of potassium or sodium humates and metal-humic complexes. Humic-metal-phosphate complexes are able to decrease phosphate fixation in soils and increase plant growth and phosphate uptake. Phosphorus fertilizers containing humicmetal-%%%phosphate complexes proved to be efficient to improve plant growth and P uptake with respect to conventional fertilizers such as single superphosphate. The values of parameters related to plant phosphorus-utilization efficiency (PUt E) suggest that the regulation of root acquisition of phosphate from these complexes could involve the interregulation of a system for the optimization of metabolic P utilization in the shoot and another system involving stress responses of roots under phosphorus deficiency.
机译:这篇综述的目的是描述各种类型的腐殖金属磷酸盐酸配合物的主要理化特性。还讨论了这些配合物对具有不同pH值和理化特性的土壤中磷(P)固定的影响以及对植物磷吸收的影响。在具有不同pH和离子强度值的溶液中,腐殖酸-金属-磷酸盐复合物具有与金属-腐殖酸复合物相同的表观稳定性常数。同样,腐殖金属磷酸盐复合物的分子大小分布随pH的变化与腐殖酸钾或腐殖酸盐和金属腐殖酸盐复合物的分子大小分布相似。腐殖金属磷酸盐复合物能够减少土壤中磷酸盐的固定,并增加植物的生长和磷酸盐的吸收。与传统肥料(如单一过磷酸钙)相比,含有腐殖金属-%%%%磷酸盐复合物的磷肥被证明可有效改善植物生长和磷的吸收。与植物磷利用效率(PUt E)相关的参数值表明,调控这些复合物中磷酸盐的根吸收可能涉及相互调节调控芽中代谢性磷利用的系统和另一个涉及胁迫响应的系统缺磷的根系。

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