首页> 外文会议>NACE International CORROSION Conference >USING SYNCHROTRON RADIATION Wide Angle X-Ray Scattering (WAXS) TO STUDY THE INHIBITING EFFECT OF POLYPHOSPHONOCARBOXYLIC ACID (PPCA) ON CaCO3 SCALE FORMATION
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USING SYNCHROTRON RADIATION Wide Angle X-Ray Scattering (WAXS) TO STUDY THE INHIBITING EFFECT OF POLYPHOSPHONOCARBOXYLIC ACID (PPCA) ON CaCO3 SCALE FORMATION

机译:使用同步辐射宽角X射线散射(蜡)研究多磷酸羧酸(PPCA)对CaCO3刻度形成的抑制作用

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The aim of this paper is to further the understanding of scale formation and inhibition by in-situ probing of crystal growth by synchrotron radiation Wide Angle X-Ray Scattering (WAXS) in the absence and presence of Polyphosphinocarboxylic acid (PPCA) scale inhibitor at elevated temperature and high pressure. It has been shown that the nucleation and growth of various calcareous polymorphs and their individual crystal planes can be followed in real time and from this the following conclusions are reached. 1. The process of scale deposited on the surface can be divided into an unstable phase and a stable phase. The initial phase of crystallization of calcium carbonate is characterized by instability with individual planes from various vaterite and aragonite polymorphs emerging and subsequently disappearing under the hydrodynamic conditions. After the initial unstable phase, various calcium carbonate crystal planes adhere on the surface and then grow on the surface. 2. ^sPPCA inhibits surface deposition. It suppresses calcite formation and results in vaterite- dominated scale. This is the first time that crystallization of mineral scale and its,inhibition have been followed in-situ and as such, information on the nucleation and growth processes is accessible. This technique offers an exciting prospect for the study of scaling.
机译:本文的目的是进一步了解通过同步辐射广角X射线散射(蜡)在升高和存在下的多磷酸羧酸(PPCA)水垢抑制剂的情况下通过同步辐射X射线散射(蜡)的晶体生长的晶体生长的校正温度和高压。已经表明,各种钙质多晶型物的成核和生长可以实时遵循各种钙质多晶型物及其各个晶平面的生长。从而达到以下结论。 1.沉积在表面上的规模过程可分为不稳定的相和稳定相。碳酸钙结晶的初始阶段的特征在于,通过来自各种Vaterite的单个平面和各种飞机,在流体动力学条件下出现并随后消失。在初始不稳定相之后,各种碳酸钙晶体平面粘附在表面上,然后在表面上生长。 2. ^ SPPCA抑制表面沉积。它抑制了方解石的形成并导致了Vaterite-占主导地位。这是第一次结晶矿物尺度及其抑制,因此可以获得有关核切割和生长过程的信息。这种技术为缩放的研究提供了令人兴奋的前景。

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