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减少磷化肥引起砂壤土中磷淋失。

Minimizing phosphorus leaching from a sandy clay loam caused by phosphorus fertilizers.

机构信息

Department of Soil Science, College of Agriculture, Bu-Ali Sina University, Hamedan, Iran.

AgResearch, Lincoln Science Centre, Private Bag 4749, Christchurch, 8140, New Zealand.

出版信息

Environ Monit Assess. 2022 Jul 15;194(8):587. doi: 10.1007/s10661-022-10265-8.

DOI:10.1007/s10661-022-10265-8
PMID:35838852
Abstract

At moderate to high fertilization rates, sandy-textured soils can leach much phosphorus (P) threatening surface water quality. High rates are used to compensate for P leaching, but there is also potential to reduce P leaching by using different P fertilizers. We examined the effect of poultry manure (PM), sheep manure (SM), triple superphosphate (TSP), sewage sludge of Sanandaj (SSS), sewage sludge of Toyserkan (SST), and biochars of Sanandaj and Toyserkan sewage sludges (BSSS and BSST, respectively) applied at a rate of 100 mg P kg (equivalent to 220 kg P ha yr, the current regional practice for capital applications designed to raise and maintain soil P in the region) on P leaching over 10 pore volumes (equivalent to 589 mm rainfall) through a sandy clay loam soil widespread in Iran (and the Middle East). Phosphorus leaching losses decreased in the following order: TSP > SM > PM > SST > BSSS > control > SSS > BSST. The leachability of fertilized soil was best estimated by measurement of the mobile KCl-P fraction. At the capital application rate used, SSs or their biochars represented the least risk of P leaching and could be used in place of highly soluble manures or TSP to either protect water quality or maintain more P in the soil. However, this should only occur after confirming that this substitution does not impair agronomic performance.

摘要

在中等到高施肥率下,沙质土壤会淋洗出大量的磷(P),从而威胁到地表水的质量。高施肥率用于补偿磷淋洗,但也有可能通过使用不同的磷肥来减少磷淋洗。我们研究了在 100 mg P kg 的施肥率下(相当于 220 kg P ha yr,这是当前用于提高和维持该地区土壤磷的资本应用的区域实践),禽粪(PM)、羊粪(SM)、过磷酸钙(TSP)、Sanandaj 污水污泥(SSS)、Toyserkan 污水污泥(SST)和 Sanandaj 和 Toyserkan 污水污泥的生物炭(BSSS 和 BSST,分别)对通过广泛分布于伊朗(和中东)的沙壤土淋洗磷的影响超过 10 个孔隙体积(相当于 589 mm 降雨)。磷淋洗损失的顺序为:TSP > SM > PM > SST > BSSS > 对照 > SSS > BSST。通过测定可移动的 KCl-P 分数,可以最好地估计施肥土壤的淋溶能力。在使用的资本应用率下,SSs 或其生物炭代表着磷淋洗的最小风险,可以替代高可溶性肥料或 TSP,以保护水质或保持土壤中更多的磷。然而,在确认这种替代不会损害农业性能之前,应该只发生这种情况。

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