首页> 外文期刊>New Zealand journal of agricultural research >Dissolution of granulated low-grade phosphate rocks, phosphate rocks/sulphur (Biosuper), and superphosphate in soil
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Dissolution of granulated low-grade phosphate rocks, phosphate rocks/sulphur (Biosuper), and superphosphate in soil

机译:颗粒状低品位磷酸盐岩,磷酸盐岩/硫(Biosuper)和过磷酸钙在土壤中的溶解

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Abstract The dissolution of two low-grade phosphate rocks—Chatham Rise phosphorite nodules (CR) and Christmas Island ‘C’—after granulating with or without sulphur was studied by mixing these materials with soil and incubating at 25°c. A superphosphate treatment was included for comparison. Subsamples were taken at intervals over a period of 8 months, and were analysed for pH, sulphate, and phosphate in soil solution and Olsen's bicarbonate-extractable phosphate. Greater acidity was produced when sulphur/phosphate rock mixtures were incorporated than with phosphate rock alone, owing to microbial oxidation of the elemental S to H2SO4. The oxidation of sulphur reached a maximum 3–4 weeks after incorporating CR/S and ‘C’/S. Addition of CR increased the bicarbonate-soluble phosphate by a maximum of 24 μg/g, whereas CR/S increased it by 95 μg/g. Values similarly obtained for ‘C’ and ‘C’/S were 17 and 20 μg/g. Addition of superphosphate produced the highest level of bicarbonate-soluble phosphate (maximum increas...
机译:摘要通过将两种材料与土壤混合并在25°C下保温,研究了两种低级磷酸盐岩石(Chatham Rise磷矿结核(CR)和圣诞岛“ C”)在制粒后的溶解情况。为了比较,包括过磷酸盐处理。每隔8个月取样一次,分析土壤溶液中的pH值,硫酸盐和磷酸盐以及Olsen的碳酸氢盐可萃取磷酸盐。当掺入硫/磷酸盐岩石混合物时,由于元素S的微生物氧化为H2SO4,与单独使用磷酸盐岩石相比,产生的酸性更高。加入CR / S和“ C” / S后,硫的氧化时间最多达到3-4周。 CR的添加使碳酸氢根可溶的磷酸盐最多增加24μg/ g,而CR / S将其增加95μg/ g。类似地获得的“ C”和“ C” / S值分别为17和20μg/ g。加入过磷酸钙可产生最高水平的碳酸氢根可溶性磷酸盐(最大增加量)。

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