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首页> 外文期刊>RSC Advances >Both chemical and crystalline phase configuration influence the molecular features of humic acids in humic–calcium–phosphates fertilizers
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Both chemical and crystalline phase configuration influence the molecular features of humic acids in humic–calcium–phosphates fertilizers

机译:化学和结晶相构型既有影响腐殖酸钙磷酸盐肥料腐殖酸的分子特征

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Phosphate–metal–humic complexes are very relevant in nature due to their crucial role in phosphate availability for plants and microorganisms. Synthetic phosphate–calcium–humic acid (HA) complexes have proven to be efficient sources of available phosphorus for crops. However, the current knowledge about their structure and molecular features is very poor. The structural implications of phosphate interaction with humic binding sites through calcium bridges, in both monocalcium phosphate and dicalcium phosphate is investigated by using molecular modeling, ~(31) P-NMR, ~(1) H-NMR and X-ray diffractometry. The conformational changes in the molecular configuration of the humic acid involved in the interaction resulting from the synthetic process is also studied by using HPSEC and synchronous fluorescence. The results obtained allow us to identify the phosphate type in the crystalline phase that is involved in the interaction of humic acid binding sites and the different forms of calcium phosphate. Synchronous fluorescence also shows that whereas the conformational configuration of the HA binding site is only partially affected in the monocalcium phosphate interaction, it changes in the case of dicalcium phosphate showing simpler molecular arrangements. These changes in the molecular conformation of the binding site in HA in solution may influence the biological activity of the humic acid. On the other hand, HPSEC studies show that the humic–calcium–phosphate interaction is accompanied by increases in the humic acid apparent size distribution. This effect is more intense in the case of monocalcium phosphate system probably due the influence of pH.
机译:由于其在植物和微生物的磷酸盐可用性中的至关重要作用,磷酸盐 - 金属 - 腐殖络合物非常相关。合成磷酸盐 - 钙 - 腐殖酸(HA)复合物已被证明是作物可用磷的有效来源。然而,目前关于它们结构和分子特征的知识非常差。通过使用分子建模,研究了通过钙桥通过钙桥与腐殖质结合位点与腐殖质结合位点的结构意义。通过使用分子建模,〜(31)P-NMR,〜(1)H-NMR和X射线衍射法。还通过使用HPSEC和同步荧光来研究由合成过程所产生的相互作用的腐殖酸分子结构的构象变化。得到的结果允许我们鉴定磷酸盐类型,其涉及腐殖酸结合位点和不同形式的磷酸钙的相互作用。同步荧光还表明,除了HA结合位点的构象构型仅在磷酸钙相互作用中部分地影响,而IT在磷酸二钙的情况下变化,显示出更简单的分子布置。在溶液中HA中的结合位点的分子构象的这些变化可能影响腐殖酸的生物活性。另一方面,HPSEC研究表明,腐殖质 - 磷酸钙相互作用伴随着腐殖酸表观尺寸分布的增加。在磷酸盐体系的情况下可能由于pH的影响而言,这种效果更强烈。

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