首页> 外文期刊>Geoderma: An International Journal of Soil Science >Phosphorus dynamics in soils irrigated with reclaimed waste water or fresh water - A study using oxygen isotopic composition of phosphate
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Phosphorus dynamics in soils irrigated with reclaimed waste water or fresh water - A study using oxygen isotopic composition of phosphate

机译:再生废水或淡水灌溉土壤中的磷动力学-利用磷酸盐的氧同位素组成进行的研究

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Transformations of phosphate (Pi) in different soil fractions were tracked using the stable isotopic composition of oxygen in phosphate (delta O-18(p)) and Pi concentrations. Clay soil from Israel was treated with either reclaimed waste water (secondary, low grade) or with fresh water amended with a chemical fertilizer of a known isotopic signature. Changes of delta O-18(p) and Pi within different soil fractions, during a month of incubation, elucidate biogeochemical processes in the soil, revealing the biological and the chemical transformation impacting the various P pools. Pin the soil solution is affected primarily by enzymatic activity that yields isotopic equilibrium with the water molecules in the soil solution. The dissolved P interacts rapidly with the loosely bound P (extracted by bicarbonate). The oxides and mineral P fractions (extracted by NaOH and HCl, respectively), which are considered as relatively stable pools of P. also exhibited isotopic alterations in the first two weeks after P application, likely related to the activity of microbial populations associated with soil surfaces. Specifically, isotopic depletion which could result from organic P mineralization was followed by isotopic enrichment which could result from preferential biological uptake of depleted P from the mineralized pool. Similar transformations were observed in both soils although transformations related to biological activity were more pronounced in the soil treated with reclaimed waste water compared to the fertilizer treated soil
机译:使用氧在磷酸盐中的稳定同位素组成(δO-18(p))和Pi浓度来跟踪不同土壤部分中磷酸盐(Pi)的转化。以色列的粘土用再生废水(中学的,低级的)或用已知同位素特征的化学肥料改良的淡水处理。在培养一个月的时间内,不同土壤组分中的δO-18(p)和Pi的变化阐明了土壤中的生物地球化学过程,揭示了影响各种P池的生物学和化学转化。固定土壤溶液主要受酶活性的影响,该酶活性与土壤溶液中的水分子产生同位素平衡。溶解的P与松散结合的P(由碳酸氢盐提取)快速相互作用。被认为是相对稳定的P的氧化物和矿物质P馏分(分别由NaOH和HCl提取)在施用P后的前两周也表现出同位素变化,可能与土壤中微生物种群的活动有关表面。具体而言,可能由有机磷矿化引起的同位素耗竭,其次是同位素富集,这可能是由于矿物质池中优先吸收贫化的磷而导致的。在两种土壤中都观察到了相似的转化,尽管与化肥处理过的土壤相比,再生水处理过的土壤中与生物活性有关的转化更为明显。

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