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Characterization and dissolution properties of phytolith occluded phosphorus in rice straw

机译:稻草植物闭塞磷的特征及溶出性能

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摘要

Silicon (Si) is assimilated from soil by rice and is deposited in shoots in inter- and intracellularly, resulting in the formation of silicaceous structures, namely phytoliths. During the precipitation of Si, elements present in xylem/phloem sap, including phosphorus (P), can also be occluded in the phytolith. We examined the release of Si and P from the rice straw derived phytolith to elaborate the desilification mechanism, and the potential effects of phytolith as a nutrient ammendment. Data from batch heating experiments revealed that P trapped in the phytolith structure could be released accompanying with the dissolution of the phytolith. The highest values of soluble Si and P were found in the range of 500-700 degrees C. The chemical composition, X-ray diffraction, infrared spectra and specific surface area (SSA) data suggested that the presence of occluded organic carbon at 500 degrees C and crystallization of silica at > 700 degrees C were the main reasons for lower dissolution rates of phytolith and decreasing P release. With respect to practices of burning rice straw, it can be recommended that treatment temperature needs to be taken into account to maximize P release for crops.
机译:硅(Si)由水稻和细胞内沉积在土壤中,沉积在枝条中,导致形成硅质结构,即植物植物。在Si的沉淀过程中,Xylem / Phloem Sap中存在的元素,包括磷(P),也可以在植物溶质中堵塞。我们研究了从稻草衍生的植物植物中释放Si和P的释放,以详细阐述沉灰机制,以及植物植物作为营养常规的潜在影响。来自批量加热实验的数据显示,在植物结构中捕获的p可以随着植物溶解的溶解而释放。可溶性Si和P的最高值被发现在500-700℃的范围内。化学成分,X射线衍射,红外光谱和特定表面积(SSA)数据表明,在&二氧化硅的500℃和结晶在> 700℃下,是植物溶解率降低的主要原因,并降低P释放。关于燃烧稻草的实践,可以建议考虑治疗温度以最大化作物的释放。

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