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Impacts of Phosphogypsum Soluble Fertilizer and Lime Amendment of Acid Soils on the Bioavailability of Phosphorus and Sulphur under Lucerne (Medicago sativa)

机译:磷酸缺口可溶性肥料及石灰酸性酸性酸性酸性钙质对苜蓿(Medicago Sativa)磷和硫生物利用性的影响

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摘要

Legumes play critical dual roles in grazed grassland ecosystems; providing nitrogen inputs and high-quality feed for grazing livestock. However, many species fail to persist in acidic, low fertility soils. A glasshouse study was conducted to investigate the response of lucerne ( ) to phosphogypsum (PG), lime and soluble P + S fertilizer (PS) application to two soils. Phosphorus and sulphur were applied through either PG (0, 1, 3 and 9 t ha ) or P + S fertilizer at equivalent rates to PG. Both PG and PS were applied with or without lime, which was applied at 2 t ha . Yield and nutrient uptake of the lucerne was measured, while the soil was analyzed for pH, Olsen P and exchangeable aluminum. Yield responses were significantly different between the two soils. Maximum yields and P and S uptakes were obtained under PG 9 t ha combined with lime. Exchangeable Al decreased in both soils under 1 ha of PG compared with the control. At the highest rate, Olsen P increased by 8 and 6 mg kg for PG and by 6 and 11 mg kg for PS compared with the control for Glenmore and Molesworth soils respectively. Phosphogypsum showed positive effects on P and S bioavailability.
机译:豆类在格拉泽草原生态系统中发挥着关键的双重作用;为放牧牲畜提供氮素投入和优质饲料。然而,许多物种未能持续存在于酸性,低生育土壤中。进行了玻璃室研究,以研究液体葡萄球菌()对磷酸杆菌(PG),石灰和可溶性P + S肥料(PS)应用于两种土壤的响应。通过PG(0,1,3和9 T HA)或Pg施加磷和硫,以等效的速率施加至pg。 PG和PS都施用或不含石灰,其在2THA下施用。测量葡萄球菌的产量和营养吸收,而土壤被分析pH,醇酸,可换铝。两种土壤之间产生响应显着差异。在PG 9 T HA与石灰结合物中获得最大收率和P和S上痉挛。与对照相比,在1公顷的土壤下,可更换的Al降低。以最高速率,与Glenmore和Molesworth土壤的控制相比,蛋白P为PG和6毫克kg增加了8%和6mg kg,PS为ps,PS为PS。磷酸缺口显示出对P和S生物利用度的阳性作用。

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