Leng Qingxue, Mohamat-Yusuff Ferdaus, Mohamed Khairul Nizam, Zainordin Nazatul Syadia, Hassan Zafri
College of Ecology and Environment, Hainan Tropical Ocean University, Sanya, Hainan, 572022, China.
Faculty of Forestry and Environment, Universiti Putra Malaysia, Seri Kembangan, 43400, Selangor, Malaysia.
Sci Rep. 2025 Jul 12;15(1):25233. doi: 10.1038/s41598-025-10723-6.
Over the past two decades, the technology underlying Hybrid Ocean Thermal Energy Conversion (H-OTEC) power plants have progressively matured. These advancements position H-OTEC as a promising alternative energy source with significant potential to replace traditional power plants. The cold discharge from H-OTEC Pilot Plants reduces the temperature of receiving water bodies, thereby directly or indirectly impacting the marine ecological environment. A one-year study was conducted around a pilot-stage 1.0 MW H-OTEC Pilot Plant in Port Dickson to investigate the effects of cold discharge on macro- and meiobenthic communities across different seasons. Apart from the water temperature within a 5-meter range affected by the H-OTEC cold discharge, the impact on other water quality indicators is negligible. A total of 22 macrobenthic species belonging to 4 phyla and meiobenthic organisms belonging to 9 taxa were identified across 15 sampling points. This study demonstrated that cold emissions had a limited impact on the abundance and community structure of benthic organisms across different seasons. The abundance of benthic organisms exhibited a significant increase in Inter-monsoon, followed by a significant decrease in Dry season. Moreover, there was a positive correlation observed between the abundance of benthic organisms and the content of water temperature, conductivity, gavel, sediment pigments and total organic matter. This study identified significant seasonal variations in the structure of both macro- and meio-benthic communities. Specifically, Umbonium vestiarium and other gastropoda were the dominant taxa and primary contributors to the observed significant changes in the structure of macro- and meio-benthic communities, respectively. Nevertheless, further study with a higher discharge volume of the outfall is crucial to assist in the outfall pipe placement of the mega-scale OTEC electricity plant. This study provided crucial insights into the ecological impacts of cold emissions from H-OTEC Pilot Plants in tropical coastal areas.
在过去二十年中,混合海洋热能转换(H-OTEC)发电厂的基础技术已逐渐成熟。这些进展使H-OTEC成为一种有前景的替代能源,具有取代传统发电厂的巨大潜力。H-OTEC试验电厂的冷排放降低了受纳水体的温度,从而直接或间接影响海洋生态环境。在波德申一座1.0兆瓦试验阶段的H-OTEC试验电厂周围进行了为期一年的研究,以调查冷排放在不同季节对大型底栖生物群落和小型底栖生物群落的影响。除了受H-OTEC冷排放影响的5米范围内的水温外,对其他水质指标的影响可忽略不计。在15个采样点共鉴定出4个门的22种大型底栖生物和9个分类单元的小型底栖生物。这项研究表明,冷排放在不同季节对底栖生物的丰度和群落结构影响有限。底栖生物的丰度在季风过渡期显著增加,随后在旱季显著下降。此外,底栖生物的丰度与水温、电导率、砾石、沉积物色素和总有机质含量之间存在正相关关系。这项研究确定了大型和小型底栖生物群落结构存在显著的季节性变化。具体而言,高腰玉螺和其他腹足纲动物分别是大型和小型底栖生物群落结构显著变化的主要分类单元和主要贡献者。然而,对更高排水量的排污口进行进一步研究对于协助大型海洋温差能发电厂的排污管铺设至关重要。这项研究为热带沿海地区H-OTEC试验电厂冷排放的生态影响提供了重要见解。