Department of Marine Sciences and Applied Biology, University of Alicante, San Vicente del Raspeig s/n, Alicante, Spain; Programa de Doctorado Interdisciplinario en Ciencias Ambientales, Facultad de Ciencias Naturales y Exactas, Universidad de Playa Ancha, Valparaíso, Chile.
Department of Marine Sciences and Applied Biology, University of Alicante, San Vicente del Raspeig s/n, Alicante, Spain.
Mar Pollut Bull. 2020 Dec;161(Pt B):111813. doi: 10.1016/j.marpolbul.2020.111813. Epub 2020 Nov 5.
The environmental impact of desalination is the most important concern related to its sustainable development. We present the results of a long-term environmental plan to monitor brine discharge (BD) from a desalination plant located in a high environmental value area in Spain. Generalized additive models were used to analyze the biological parameters of biological communities. Results of 17 years of BD monitoring show how its environmental impact can be minimized through well-planned decision-making between scientists and industry. The brine dilution prior to its discharge into an artificial channel of low ecological value significantly reduced the brine influence area. P. oceanica shoot production and echinoderms abundances were relatively stable across historical series and similar values in control and impacts locations were observed. Conversely, there was a higher abundance and species richness of fishes in the BD area. The important findings reported here should be considered for future applications in similar projects.
海水淡化的环境影响是与其可持续发展相关的最重要问题。我们介绍了一项长期环境计划的结果,该计划旨在监测位于西班牙高环境价值地区的海水淡化厂的排海盐水(BD)。广义加性模型被用于分析生物群落的生物参数。17 年的 BD 监测结果表明,通过科学家和工业之间的精心规划决策,可以将其环境影响降至最低。在将海水排入低生态价值的人工渠道之前进行海水稀释,可显著减少海水影响区域。大西洋柳珊瑚的繁殖体产量和棘皮动物丰度在历史序列中相对稳定,并且在对照和影响区域观察到相似的值。相反,在 BD 区域鱼类的丰度和物种丰富度更高。这里报告的重要发现应考虑用于类似项目的未来应用。