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海水淡化浓盐水排放对底栖生态系统的影响。

Impacts of Desalination Brine Discharge on Benthic Ecosystems.

作者信息

Sirota Ryan, Winters Gidon, Levy Oren, Marques Joseane, Paytan Adina, Silverman Jack, Sisma-Ventura Guy, Rahav Eyal, Antler Gilad, Bar-Zeev Edo

机构信息

Zuckerberg Institute for Water Research, Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede Boqer 84990, Israel.

The Dead Sea and Arava Science Center, Masada National Park, Mount Masada 869100, Israel.

出版信息

Environ Sci Technol. 2024 Apr 2;58(13):5631-5645. doi: 10.1021/acs.est.3c07748. Epub 2024 Mar 22.

Abstract

Seawater reverse osmosis (SWRO) desalination facilities produce freshwater and, at the same time, discharge hypersaline brine that often includes various chemical additives such as antiscalants and coagulants. This dense brine can sink to the sea bottom and creep over the seabed, reaching up to 5 km from the discharge point. Previous reviews have discussed the effects of SWRO desalination brine on various marine ecosystems, yet little attention has been paid to the impacts on benthic habitats. This review comprehensibly discusses the effects of SWRO brine discharge on marine benthic fauna and flora. We review previous studies that indicated a suite of impacts by SWRO brine on benthic organisms, including bacteria, seagrasses, polychaetes, and corals. The effects within the discharge mixing zones range from impaired activities and morphological deformations to changes in the community composition. Recent modeling work demonstrated that brine could spread over the seabed, beyond the mixing zone, for up to several tens of kilometers and impair nutrient fluxes from the sediment to the water column. We also provide a possible perspective on brine's impact on the biogeochemical process within the mixing zone subsurface. Desalination brine can infiltrate into the sandy bottom around the discharge area due to gravity currents. Accumulation of brine and associated chemical additives, such as polyphosphonate-based antiscalants and ferric-based coagulants in the porewater, may change the redox zones and, hence, impact biogeochemical processes in sediments. With the demand for drinking water escalating worldwide, the volumes of brine discharge are predicted to triple during the current century. Future efforts should focus on the development and operation of viable technologies to minimize the volumes of brine discharged into marine environments, along with a change to environmentally friendly additives. However, the application of these technologies should be partly subsidized by governmental stakeholders to safeguard coastal ecosystems around desalination facilities.

摘要

海水反渗透(SWRO)淡化设施生产淡水的同时,会排放高盐度卤水,其中通常包含各种化学添加剂,如阻垢剂和混凝剂。这种高密度卤水会沉入海底并在海床上蔓延,距离排放点可达5公里。此前的综述讨论了SWRO淡化卤水对各种海洋生态系统的影响,但对底栖生境的影响关注较少。本综述全面讨论了SWRO卤水排放对海洋底栖动植物的影响。我们回顾了先前的研究,这些研究表明SWRO卤水对底栖生物有一系列影响,包括细菌、海草、多毛类动物和珊瑚。排放混合区内的影响范围从活动受损、形态变形到群落组成变化。最近的建模工作表明,卤水可以在海床上扩散到混合区之外,长达数十公里,并损害从沉积物到水柱中的养分通量。我们还提供了一个关于卤水对混合区次表层生物地球化学过程影响的可能观点。由于重力流,淡化卤水会渗入排放区域周围的沙质底部。卤水中的卤水和相关化学添加剂(如聚膦酸盐基阻垢剂和铁基混凝剂)在孔隙水中的积累可能会改变氧化还原带,从而影响沉积物中的生物地球化学过程。随着全球对饮用水需求的不断增加,预计本世纪卤水排放量将增加两倍。未来的努力应集中在开发和运行可行的技术,以尽量减少排放到海洋环境中的卤水量,同时改用环保型添加剂。然而,这些技术的应用应由政府利益相关者提供部分补贴,以保护淡化设施周围的沿海生态系统。

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