首页> 外文会议>International Conference on Energy and Power >A review of the water desalination systems integrated with renewable energy
【24h】

A review of the water desalination systems integrated with renewable energy

机译:与可再生能源相结合的水海水淡化系统综述

获取原文

摘要

Water and energy are indispensable entities for any flourishing life and civilization. The water and energy scarcities have emerged due to the dramatic growth in the population, standards of living, and the rapid development of the agricultural and industrial sectors. Desalination seems to be one of the most promising solutions to the water problem;; however, it is an intensive energy process. The integration of the renewable energy into water desalination systems has become increasingly attractive due to the growing demand for the water and energy, and the reduction of the contributions to the carbon footprint. The intensive investigations on the conventional desalination systems, especially in the oil-rich countries have somewhat overshadowed the progress and implementation of the renewable energy desalination (RED) systems. The economic performance evaluation of the RED systems and its comparison with conventional systems is not conclusive due to many varying factors related to the level of technology, the source of energy availability, and the government subsidy. The small RED plants have a high capital cost, low efficiency and productivity which make RED systems uncompetitive with the conventional ones. However, the selection of the small RED plants for the remote arid areas with small water demands is viable due to the elimination of the high cost of the water transportation, and the connection to the electricity grid. The purpose of this paper is to review the technology, energy, and cost of the recent available desalination systems and their potential to be integrated with the renewable energy resources. This review suggests that the solar still distillation (SD) system, which is simply a natural evaporation-condensation process, is the most practical renewable desalination technique to be used in the remote arid areas;; however, a further research is required to enhance their performance and to increase the productivities of these systems.
机译:水和能源是任何蓬勃生命和文明的必不可少的实体。由于人口的巨大增长,生活水平和农业和工业部门的快速发展,水和能源稀缺性出现了。海水淡化似乎是水问题最有希望的解决方案之一;但是,它是一个强化的能源过程。由于对水和能量的需求不断增长,以及对碳足迹的贡献的增加,可再生能量将可再生能量的整合变得越来越有吸引力。对传统海水淡化系统的密集调查,特别是在石油富国国家的进展情况有所了解,可再生能源海水淡化(RED)系统的进展和实施。由于与技术水平,能源可用性和政府补贴的许多不同因素,以及政府补贴,红色系统的经济绩效评估及其与常规系统的比较并不决定。小型红色植物具有高资本成本,低效率和生产率,使红色系统与传统的产品不竞争。然而,由于消除了水运输的高成本,以及与电网的连接,因此选择具有小水需求小的遥控区域的小红色植物的选择是可行的,以及与电网的连接。本文的目的是审查最近可用的海水淡化系统的技术,能源和成本及其与可再生能源集成的潜力。该评论表明,太阳静止蒸馏(SD)系统,即天然蒸发冷凝工艺,是在远程干旱地区使用的最实用的可再生脱盐技术;但是,需要进一步的研究来提高其性能并增加这些系统的产品。

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