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Potential local environmental impacts of salinity gradient energy: A review

机译:盐度梯度能量对当地环境的潜在影响:综述

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摘要

Marine renewable energy development aims to harness the vast resources of the coastal environment to meet growing energy demands. Among the variety of coastal energy sources, salinity gradient energy (SGE) technology captures the energy released from the controlled mixing of waters of different salinities found naturally in estuarine systems or in other combinations of anthropogenic sources of brine and fresh waters. Although SGE technology is in the pilot stage of development, there is currently no comprehensive published assessment of its environmental impacts. This assessment uses research from proxy facilities and pilot SGE projects to predict impacts of an SGE facility through construction, operation and decommission phases. Construction and decommission of an SGE facility is expected to disrupt habitat and organisms via noise, land modification, and release of pollutants, similar to other coastal facilities such as desalination plants or water intake cooling structures. During operation, however, impacts unique to SGE result from intake of both high- and low-salinity waters, which in natural sources will involve impingement, entrainment, and chemical treatment to reduce biofouling. In addition, SGE effluent is expected to be of lower salinity and higher volume than effluent from a desalination plant, thereby posing unique risks to discharge sites. This review highlights areas of concern and lack of knowledge, which can guide environmental impact assessment and monitoring priorities of site managers.
机译:海洋可再生能源开发旨在利用沿海环境的大量资源来满足不断增长的能源需求。在各种沿海能源中,盐度梯度能量(SGE)技术捕获从受控混合的不同盐度的水中释放的能量,这些水是在河口系统或其他人为来源的盐水和淡水的组合中自然发现的。尽管SGE技术处于试验阶段,但目前尚无关于其环境影响的全面公开评估。该评估使用来自代理设施和SGE试点项目的研究来预测SGE设施在建设,运营和退役阶段的影响。与海水淡化厂或取水冷却结构等其他沿海设施类似,SGE设施的建设和退役有望通过噪声,土地改良和污染物释放来破坏栖息地和生物。然而,在运行期间,SGE的独特影响是由于摄入高盐和低盐的水而引起的,在自然资源中,这将涉及撞击,夹带和化学处理以减少生物污染。此外,与海水淡化厂的废水相比,SGE废水的盐度和体积预计更高,从而对排放地点构成独特的风险。此次审查突出了关注和缺乏知识的领域,这些领域可以指导环境影响评估和监视站点管理者的优先级。

著录项

  • 来源
    《Renewable & Sustainable Energy Reviews》 |2019年第3期|111-120|共10页
  • 作者单位

    Inst Coastal Studies, 850 NC 345, Wanchese, NC 27981 USA|Univ N Carolina, Inst Environm, 100 Europa Dr Suite 490, Chapel Hill, NC 27517 USA;

    Univ N Carolina, Inst Environm, 100 Europa Dr Suite 490, Chapel Hill, NC 27517 USA|Univ N Carolina, Environm Ecol & Energy Program, 3202 Murray Venable Hall,CB 3275, Chapel Hill, NC 27517 USA;

    Inst Coastal Studies, 850 NC 345, Wanchese, NC 27981 USA|Univ N Carolina, Inst Environm, 100 Europa Dr Suite 490, Chapel Hill, NC 27517 USA|Univ N Carolina, Environm Ecol & Energy Program, 3202 Murray Venable Hall,CB 3275, Chapel Hill, NC 27517 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Salinity gradient energy; Environmental impact; Marine renewable energy; Pressure retarded osmosis; Reverse electrodialysis;

    机译:盐度梯度能量;环境影响;海洋可再生能源;压力渗透;反电渗析;
  • 入库时间 2022-08-18 04:13:38

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