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水动力和热力学因素以及柠檬酸的添加对二水草酸钙沉淀的影响。

The effect of hydrodynamic and thermodynamic factors and the addition of citric acid on the precipitation of calcium oxalate dihydrate.

机构信息

Department of Chemistry, University of Osijek, Cara Hadrijana 8/A, 31000, Osijek, Croatia.

Ruđer Bošković Institute, Bijenička cesta 54, 10000, Zagreb, Croatia.

出版信息

Urolithiasis. 2018 Jun;46(3):243-256. doi: 10.1007/s00240-017-0991-0. Epub 2017 Jun 23.

Abstract

This paper reports on the investigation of experimental conditions relevant for spontaneous precipitation of significant amount of pure calcium oxalate dihydrate (COD). For this purpose, the hydrodynamic and thermodynamic parameters, such as mode of agitation, temperature, supersaturation and concentration of additives (citrate ions), have been studied. The results show that in the model systems, without the citrate addition and applied mechanical stirring, calcium oxalate monohydrate (COM) was observed as dominant modification after 20 min of aging, while the magnetic stirring resulted in a formation of a mixture of COM and calcium oxalate trihydrate (COT), regardless of the temperature applied. In the mechanically stirred systems, the addition of citrate ions in the range of concentrations, 0.001 mol dm < c (NaCHO) < 0.012 mol dm, caused the formation of COM and COD mixture at all temperatures. At the same conditions and in the magnetically stirred systems formation of COD, in a mixture with COT or COM, has been observed. The highest COD content in the mechanically stirred system was obtained at 45 °C and c (NaCHO) = 0.001 mol dm (w = 89.5%), while in the magnetically stirred system almost pure COD was obtained at 37 °C and c (NaCHO) = 0.008 mol dm (w = 96.5%).

摘要

本文报道了对大量纯一水合草酸钙自发沉淀实验条件的研究。为此,研究了动力学和热力学参数,如搅拌方式、温度、过饱和度和添加剂(柠檬酸盐离子)的浓度。结果表明,在模型体系中,没有添加柠檬酸盐和机械搅拌的情况下,老化 20 分钟后观察到一水合草酸钙(COM)是主要的形态,而磁场搅拌则导致 COM 和三水合草酸钙(COT)的混合物形成,而与所施加的温度无关。在机械搅拌体系中,在浓度范围 0.001 < c(NaCHO) < 0.012 mol dm 的柠檬酸盐离子添加下,在所有温度下都形成了 COM 和 COD 的混合物。在相同条件下和磁场搅拌体系中,形成了 COD 与 COT 或 COM 的混合物。在机械搅拌体系中,在 45°C 和 c(NaCHO) = 0.001 mol dm(w = 89.5%)的条件下获得了最高的 COD 含量,而在磁场搅拌体系中,在 37°C 和 c(NaCHO) = 0.008 mol dm(w = 96.5%)的条件下几乎获得了纯的 COD。

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