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New fertiliser options for managing phosphorus for organic and low-input farming systems. (Special Issue: Low P farming systems.)

机译:用于管理有机和低投入农业系统中磷的新肥料选择。 (特刊:低磷耕作制度。)

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Plant-available phosphorus (P) has been found to be limiting crop and pasture production in Australian dryland, broadacre, organic farming systems. The present review examines the mechanisms that act to provide organic sources of P to soil or mobilise P stored within the soil. A range of products is available to exploit one or more of these mechanisms to achieve a claimed improvement in P fertility. These products are described, and where possible, scientific research of their effectiveness is reviewed. The use of microbial inoculants, although successful in laboratory and glasshouse experiments, has returned varied results in field trials. The addition of organic fertilisers, such as composted or elemental sulfur (S) enriched reactive phosphate rock (RPR), tended to produce more reliable results. The variable nature of the composting process creates complexity in the production of composted RPR. The increased dissolution of RPR by the oxidation of added S has been successful in increasing available P content above that of RPR alone. This is especially significant to low-rainfall areas where RPR tend to be ineffective. This paper highlights the need for development and optimisation of the many organic fertilisers and additives available to organic producers. In all cases, products still require rigorous field and economic evaluation so that organic producers can be confident in making decisions that are informed, correct, and profitable with regard to P fertility. The alleviation of P deficiency is vital to the increased adoption and sustainability of boardacre organic farming in Australia.
机译:已发现植物可利用的磷(P)限制了澳大利亚旱地,阔亩,有机耕作系统的农作物和牧草生产。本综述探讨了为土壤提供磷的有机来源或动员土壤中存储的磷的机制。有多种产品可利用这些机制中的一种或多种来实现声称的磷肥力提高。描述了这些产品,并在可能的情况下审查了其有效性的科学研究。尽管在实验室和温室实验中成功使用了微生物接种剂,但在田间试验中却获得了不同的结果。添加有机肥料,例如堆肥或元素硫(S)富集的反应性磷酸盐岩(RPR),往往会产生更可靠的结果。堆肥过程的可变性质在堆肥的RPR生产中产生了复杂性。通过添加的S的氧化提高RPR的溶解度已成功地将可用P含量提高到了单独RPR之上。这对于RPR无效的低雨量地区尤其重要。本文强调了开发和优化有机生产者可获得的许多有机肥料和添加剂的必要性。在所有情况下,产品仍然需要严格的现场和经济评估,以便有机生产商可以自信地做出关于P肥力的明智,正确和有利可图的决策。磷缺乏症的缓解对于澳大利亚越来越多的有机农作物采用和可持续发展至关重要。

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