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Ion Substitutions, Non-stoichiometry, and Formation Conditions of Oxalate and Phosphate Minerals of the Human Body

机译:离子取代,非化学计量和人体磷酸盐和磷酸盐矿物的形成条件

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The pattern of ion substitutions and non-stoichiometry of oxalate and phosphate human body minerals (weddellite, whewellite, hydroxyapatite, struvite, and brushite) and their synthetic analogs was investigated by complex X-ray diffraction, spectroscopic, and chemical methods. All the studied biological minerals are characterized by variable non-stoichiometry composition that reflects the non- stationarity of formation conditions. Non-stoichiometry of calcium oxalates results from variations in quantities of disorderly distributed water molecules. The water amount in weddellite significantly influences the crystal structure parameters. In particular, there is positive correlation between the value of a parameter and the occupancy of "zeolitic" water sites. Variations in composition of calcium and magnesium phosphates are caused by substitutions at all the crystallographic sites. Ion replacements in apatite and struvite are more prominent in comparison with those in brushite. Non-stoichiometry of apatite and brushite is due to the presence of vacancies at the Ca-sites, and that of struvite is due to the vacancies at the Mg-site. Two types of non-stoichiometry in carbonated apatites of B-type realize due to replacements PO_4~(3-)← CO_3~(2-) or OH~-← H_2O. Maximum concentrations of impurity ions in magnesium and calcium phosphates are mainly limited by the content of these ions in the physiological solution. In case of Mg replacement with Ca in struvite and Ca with K in brushite and apatite, it is also essentially limited by the size differences of the host and admixture ions.
机译:通过复杂的X射线衍射,光谱和化学方法研究了离子取代和磷酸盐的非化学计量和磷酸盐的非化学计量和磷酸盐人体体内矿物质(HEDDELLITE,WHEWELTE,羟基磷灰石,斯特勒比特)及其合成类似物。所有研究的生物矿物质的特征在于可变的非化学计量组合物,反映形成条件的非平等性。草酸钙的非化学计量来自数量的无序分布水分子的变化。 Weddellite的水量显着影响晶体结构参数。特别地,参数的值与“沸石”水位的占用之间存在正相关性。钙和磷酸镁组合物的变化是由所有晶体位点的取代引起的。与黑草石材的那些相比,磷灰石和struvite中的离子替代更突出。磷灰石和黑铅矿的非化学计量是由于在Ca - 位点存在障碍,并且Struvite的存在是由于Mg-位点的空位。 B型碳酸化磷灰石中的两种类型的非化学计量来实现替换PO_4〜(3-)←CO_3〜(2-)或OH〜 - ←H_2O。镁中的杂质离子和磷酸钙中的最大浓度主要受到物理溶液中这些离子的含量的限制。在用kstruvite和k的k型kit kits和apatite中用Ca替代Mg替代,它基本上受到宿主和混合物离子的尺寸差异的限制。

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