首页> 外文会议>Pacific basin nuclear conference >BOILING POINTS AND SPECIATION OF AQUEOUS ELECTROLYTE SOLUTIONS UNDER 'HIDEOUT' CONDITIONS IN SUPERCRITICAL WATER-COOLED REACTOR COOLANT BY RAMAN SPECTROSCOPY
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BOILING POINTS AND SPECIATION OF AQUEOUS ELECTROLYTE SOLUTIONS UNDER 'HIDEOUT' CONDITIONS IN SUPERCRITICAL WATER-COOLED REACTOR COOLANT BY RAMAN SPECTROSCOPY

机译:通过拉曼光谱法在超临界水冷反应器冷却剂中的“藏隐藏”条件下水性电解质溶液的沸点和形态

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The Canadian Supercritical Water-Cooled Reactor ("SCWR") is a conceptual design for "Generation Ⅳ" direct-cycle pressure-tube reactors. Material selection for the CANDU-SCWR design requires the designers to predict water chemistry, and chemistry control procedures, in the range from 275 to 450 °C and 25 MPa. It is not generally appreciated that the presence of dissolved electrolytes can raise the critical temperature of aqueous solutions above that of pure water at T_c= 373.95 °C, by as much as 100 °C, even at concentrations as low as 2 mol/kg. This study presents a report of the use of small scale capillary cells ("high pressure optical cells", HPOC) to determine the boiling point rise of aqueous electrolyte solutions at pressures of 15, 20, 25 and 30 MPa, and to determine the speciation at temperatures just below the boiling point using Raman spectroscopy. Methods have been developed for obtaining quantitative time-dependent reduced isotropic Raman spectra with quartz HPOC capillary cells under these SCWR "hideout" conditions. Examples of boiling point rise and speciation for monovalent salts, and oxyacid contaminants are reported.
机译:加拿大超临界水冷反应器(“SCWR”)是“一代”直循环压力管反应器的概念设计。 CANDU-SCWR设计的材料选择要求设计人员预测水化学,以及化学控制程序,范围为275至450°C和25MPa。通常情况理解,溶解电解质的存在可以将高于T_C = 373.95℃的纯水的水溶液的临界温度升高多达100℃,甚至在低至2mol / kg的浓度下。本研究提出了使用小型毛细管电池(“高压光学电池”,HPOC)的报告,以确定在15,20,25和30MPa的压力下的水电解质溶液的沸点上升,并确定物种在使用拉曼光谱的沸点低于沸点的温度下。已经开发了在这些SCWR“藏身”条件下用石英HPOC毛细管细胞获得定量时间依赖性的各向同性拉曼光谱的方法。报道了沸点升高和单价盐的形态和氧酸污染物的实例。

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