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Brine chemistry -- scaling and corrosion. Geothermal research study in the Salton Sea region of California

机译:盐水化学-结垢和腐蚀。加利福尼亚州索尔顿海地区的地热研究

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摘要

The potential for producing electrical power from the energy stored in the unusually hot, hypersaline brine deposits of the Salton Sea KGRA (Known Geothermal Resource Area) is large. Unfortunately, utilization of geothermal energy is currently hindered by severe scaling and corrosion problems. In order to solve these problems and to facilitate the commercial exploitation of geothermal resources in the Salton Sea KGRA, a research program that will determine the dependency of scaling and corrosion on brine composition and process conditions is necessary. The purpose of this report is to recommend a reasonable program of brine chemistry research that will result in the development of methods for predicting and controlling scale deposition, and in guidelines for the selection of corrosion-resistant construction materials. ududThis report is structured in the following manner: First, background information, which is necessary for the understanding of the problems of scaling and corrosion in the Salton Sea KGRA, is presented through a review of the history of geothermal exploration and development in the Salton Sea. Second, literature relevant to the geochemistry of the Salton Sea field is reviewed and important results are emphasized. Third, current research efforts directed toward actual power plant construction are summarized and evaluated. Fourth, research which has been proposed but is not currently funded is discussed. Fifth, because silica scaling has been the most troublesome problem in the past, the basic chemistry of silica and its relationship to scaling is discussed. Sixth, recommendations for future research are made in which a fundamental engineering approach is emphasized. In this approach, experiments would be conducted on actual process equipment and detailed chemical analyses would be performed on site in well-equipped field laboratories.
机译:利用储存在Salton Sea KGRA(已知的地热资源区)的异常高温,高盐盐水中的能量产生电能的潜力很大。不幸的是,目前严重的水垢和腐蚀问题阻碍了地热能的利用。为了解决这些问题并促进Salton Sea KGRA中地热资源的商业开发,需要一个研究程序来确定结垢和腐蚀对盐水成分和工艺条件的依赖性。本报告的目的是建议一项合理的盐水化学研究计划,该计划将导致开发用于预测和控制水垢沉积的方法,并为选择耐腐蚀的建筑材料提供指导。 ud ud本报告的结构如下:首先,通过回顾美国地热勘探和开发的历史,提供了背景信息,这对于理解Salton Sea KGRA中的结垢和腐蚀问题是必要的。索尔顿海。第二,回顾了与索尔顿海油田地球化学有关的文献,并强调了重要的结果。第三,总结和评估了针对实际电厂建设的当前研究成果。第四,讨论了已经提出但尚未获得资助的研究。第五,由于二氧化硅结垢是过去最麻烦的问题,因此讨论了二氧化硅的基本化学性质及其与结垢的关系。第六,提出了针对未来研究的建议,其中强调了基本的工程方法。用这种方法,将在实际的处理设备上进行实验,并在设备完善的现场实验室中进行详细的化学分析。

著录项

  • 作者

    Hoffmann Michael R.;

  • 作者单位
  • 年度 1975
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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