首页> 外文会议>Progress in environmental science and technology.;vol. 3. >Water and Wastewater Minimization in the Oil Refinery through Water Pinch Analysis Using Double Contaminants Approach
【24h】

Water and Wastewater Minimization in the Oil Refinery through Water Pinch Analysis Using Double Contaminants Approach

机译:通过使用双污染物方法进行水捏分析来最小化炼油厂中的水和废水

获取原文
获取原文并翻译 | 示例

摘要

Water pinch analysis is an opportunity for chemical, civil and environmental engineers to analyze water-using processes before designing and operating. Furthermore, it can minimize the freshwater utility and wastewater generation. This study aims to find an appropriate way to minimize water utility in the petrochemical and petroleum industries due to high rate of water consumption. For this purpose, Tehran petroleum refinery has been well studied. In this research, three contaminants including suspended solid (SS), hardness (H) as well as COD have been considered as key contaminants and three processes, which use vast amount of water including desalter, cooling towers as well as portable; plant and fire were selected to analyze the water network. These key contaminants were analyzed two by two simultaneously based on their mass transfer. In other words, mass transfer of a contaminant was analyzed with respect to another one. The results show that, in the targeting for minimization based on SS and H, the amount of required water is reduced142.74 m3/h, which is about 42%. This amount for SS and COD is equal to86.3 m3/h (26%) and for COD and H is124 m3/h (37%). Analyzing the method shows that the method based on double contaminants gives more precise results rather than single contaminant. Therefore, it is suggested that more contaminants and operations are considered for study of water networks and reach water utility optimization based on key contaminant as well. Besides, mathematical optimization methods and computer programming can be used to obtain the results that are more exact.
机译:夹水分析为化学,土木和环境工程师提供了在设计和操作之前分析用水过程的机会。此外,它可以最大程度地减少淡水利用和废水的产生。这项研究旨在找到一种适当的方法,以减少由于高耗水率而在石化和石油行业中的用水量。为此,对德黑兰炼油厂进行了深入研究。在这项研究中,包括悬浮固体(SS),硬度(H)和化学需氧量(COD)在内的三种污染物被认为是关键污染物和三种过程,它们使用大量的水,包括脱盐剂,冷却塔以及便携式废水。选择了工厂和火灾来分析供水网络。根据它们的传质,同时对这些关键污染物进行了两两分析。换句话说,针对另一污染物分析了污染物的传质。结果表明,在基于SS和H的最小化目标中,所需水量减少了142.74 m3 / h,约为42%。 SS和COD的量等于86.3立方米/小时(26%),而COD和H的量等于124立方米/小时(37%)。对方法的分析表明,基于双重污染的方法比单一污染得到的结果更精确。因此,建议对水网络进行研究时应考虑更多的污染物和操作方法,并且还要根据关键污染物实现水的利用率优化。此外,可以使用数学优化方法和计算机编程来获得更精确的结果。

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