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Sensitivity of soil phosphorus tests in predicting the potential risk of phosphorus loss from pasture soil

机译:土壤磷测试在预测牧场土壤磷流失的潜在风险中的敏感性

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摘要

The objective of this study was to examine the effects of urine and dung additions on the phosphorus (P) chemistry of pasture land and to compare the sensitivity of two soil extraction methods in assessing the P-loading risk. In a field experiment, urine and dung were added to soil in amounts corresponding to single excrement portions and the soil samples, taken at certain intervals, were analysed for pHH2O, acid ammonium acetate extractable P (PAc) and water extractable total P (TPw), and molybdate reactive P (MRPw). Urine additions immediately increased soil pH and MRPw, but no such response was observed in PAc extraction due to the low pH (4.65) of the extractant enhancing the resorption of P. The PAc responded to the dunginduced increase in soil total P similarly as did Pw, which suggests that both tests can serve to detect areas of high P concentration. However, water extraction was a more sensitive method for estimating short-term changes in P solubility. In pasture soils, the risk of P loss increases as a result of the interaction of urination and high P concentration in the topsoil resulting from continuous dung excretion.
机译:这项研究的目的是研究尿液和粪便的添加对牧场磷(P)化学的影响,并比较两种土壤提取方法在评估磷负荷风险方面的敏感性。在田间试验中,将尿和粪便以对应于单个排泄物的量添加到土壤中,并以一定间隔对土壤样品进行pHH2O,酸性乙酸铵可萃取P(PAc)和水可萃取总P(TPw)的分析。 ,和钼酸盐反应性P(MRPw)。尿液的添加会立即增加土壤的pH和MRPw,但由于萃取剂的低pH(4.65)会增强P的吸收,因此在PAc提取中未观察到这种反应。PAc对粪便诱导的土壤总P的响应与Pw相似。 ,这表明这两个测试都可以检测高P浓度区域。然而,水萃取是一种更灵敏的方法,用于估算P溶解度的短期变化。在牧场土壤中,由于粪便不断排泄导致排尿和表层土壤中高P浓度的相互作用,导致P损失的风险增加。

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