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Release of Phosphorus from Rock Phosphate Through Composting Using Organic Materials and its Effect on Corn Growth

机译:有机物料通过堆肥从磷矿石中释放磷及其对玉米生长的影响

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摘要

The use of natural forms of minerals such as rock phosphate as an alternative source to synthetic fertilizers partially or totally is receiving renewed attention worldwide. Apart from nutritional effects, application of such minerals is effective in reducing the cost of crop production and maintaining the natural fertility of soil. Since the solubility of rock phosphate is generally low, it does not always give satisfactory results when directly applied. The present study was therefore, undertaken to explore the possibility of increasing the release of P from rock phosphate at different rates through composting using rice straw and the effect of P-charged compost on the yield and P uptake by corn plants. The concentration of total P significantly enhanced in the final product with all treatments as organic materials decreased during composting compared to control where no P was added. Phosphorus from rock phosphate was solubilized and transformed into available forms during composting. Application of rock phosphate had no effect on degradation of rice straw up to 20 % but at higher rates, the degradation decreased. The water soluble P decreased with the addition of rock phosphate to composted materials. The soluble P in 2 % citric acid increased dramatically on composting with rock phosphate and the maximum increase was observed with 30 % rock phosphate. This fraction is presumed to be available to plant uptake. Release of P from rock phosphate was decreased by addition of (NH_4)_2SO_4, but increased by the addition of urea. It is concluded that urea hydrolyzes the organic matter within the period of composting and that the products of hydrolysis chelate Ca~(2+) ions and so increased the release of P from the rock phosphate. The response of corn plants to addition of compost that included rock phosphate was considerable when added in sandy soil. The P-charged compost containing 6.75 % total P was comparable to super phosphate or better when combined with phosphate dissolving bacteria in increasing dry matter yield and P uptake. Rice straw compost prepared without rock phosphate did not give significant increase in corn yield.
机译:在全球范围内,使用天然形式的矿物质(例如磷酸盐岩)作为合成肥料的部分或全部替代来源正在引起新的关注。除了营养作用外,使用此类矿物质还可以有效降低农作物的生产成本并保持土壤的天然肥力。由于磷酸岩的溶解度通常较低,因此直接施用时并不总是能得到令人满意的结果。因此,本研究旨在探索通过稻草堆肥增加磷从磷矿石中释放速率不同的可能性,以及含磷堆肥对玉米植株产量和磷吸收的影响。与未添加P的对照相比,在堆肥过程中有机物质减少时,所有处理均使最终产品中的总P浓度显着提高。在堆肥过程中,将磷酸岩中的磷溶解并转化为可用的形式。施用磷矿粉对稻草的降解没有影响,高达20%时,降解率降低。水溶性磷随堆肥物料中添加磷酸盐岩而降低。用磷酸岩堆肥时,2%柠檬酸中的可溶性P急剧增加,而用30%磷酸岩观察到最大的增加。假定该部分可用于植物吸收。通过添加(NH_4)_2SO_4可以减少磷矿石中磷的释放,但是通过添加尿素可以增加磷的释放。结论是:尿素在堆肥过程中会水解有机物,水解产物会螯合Ca〜(2+)离子,从而增加了磷从磷矿中的释放。当添加到沙质土壤中时,玉米植物对添加包括磷酸岩的堆肥的反应是相当大的。含磷总量为6.75%的含P肥料堆肥与过磷酸钙相当,或与溶解磷酸盐的细菌结合使用,可提高干物质产量和磷吸收量。没有磷酸钙制备的稻草堆肥不能使玉米单产显着提高。

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