首页> 外文会议>Symposium on Advances in Crystal Growth Inhibition Technologies, Aug 22-26, 1999, New Orleans >THE ROLE OF CALCIUM PHOSPHINO-POLYCARBOXYLATE COMPLEXATION IN INHIBITING BASO_4 PRECIPITATION FROM BRINE
【24h】

THE ROLE OF CALCIUM PHOSPHINO-POLYCARBOXYLATE COMPLEXATION IN INHIBITING BASO_4 PRECIPITATION FROM BRINE

机译:磷酸钙-羧酸钙络合物在抑制卤水中BASO_4沉淀中的作用

获取原文
获取原文并翻译 | 示例

摘要

The kinetics of BaSO_4 nucleation and its inhibition with phosphino-polycarboxylic acid (PPCA) has been studied. The induction period of BaSO_4 nucleation under a wide range of ionic strength and temperature has been measured through a turbidity method. The presence of Ca~(2+) does not show a significant effect on the induction period of BaSO_4 nucleation. The presence of PPCA increases the induction period of BaSO_4 nucleation while the extent of the prolongation depends on the solution pH and Ca~(2+) concentration. Only the dissociated fraction and the metal complexed fraction of PPCA are effective to inhibit BaSO4 nucleation while the protonated fraction has no significant effect at any conditions. In a low supersaturated solution, the calcium complexed fraction of PPCA is more effective than the dissociated fraction. While in a highly supersaturated solution, the calcium complexed fraction of PPCA is similarly effective as the dissociated fraction. Temperature has no significant effect on the efficiency of the calcium complexed fraction of PPCA and has only slight effect on that of the dissociated fraction of PPCA. The overall efficiency of PPCA to inhibit BaSO4 nucleation is proportional to the total concentration of Ca~(2+). Ca~(2+) enhances the overall efficiency of PPCA through decreasing the fraction of protonated PPCA and forming Ca-PPCA complexes. Ca~(2+) might play the role of a bridge connecting the crystal sites with exposed SO_4~(2-) and PPCA functional groups so that the adsorption of PPCA on the active sites of BaSO_4 crystal surfaces is enhanced.
机译:研究了BaSO_4成核的动力学及其对膦基多羧酸(PPCA)的抑制作用。通过浊度法测量了在广泛的离子强度和温度下BaSO_4成核的诱导期。 Ca〜(2+)的存在对BaSO_4成核的诱导期没有显着影响。 PPCA的存在增加了BaSO_4成核的诱导期,而延长的程度取决于溶液的pH和Ca〜(2+)浓度。仅PPCA的解离级分和金属络合级分可有效抑制BaSO4成核,而质子化级分在任何条件下均无显着影响。在低过饱和溶液中,PPCA的钙络合级分比解离级分更有效。在高度过饱和的溶液中,PPCA的钙络合级分与解离级分同样有效。温度对PPCA的钙络合级分的效率没有显着影响,而对PPCA的离解级分的效率只有很小的影响。 PPCA抑制BaSO4成核的总效率与Ca〜(2+)的总浓度成正比。 Ca〜(2+)通过降低质子化PPCA的比例并形成Ca-PPCA复合物而提高了PPCA的整体效率。 Ca〜(2+)可能起到连接晶体位点与裸露的SO_4〜(2-)和PPCA官能团的桥梁的作用,从而增强PPCA在BaSO_4晶体表面活性位上的吸附。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号