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Long-Term Assessment of an Innovative Mangrove Rehabilitation Project: Case Study on Carey Island Malaysia

机译:创新性红树林修复项目的长期评估:马来西亚凯里岛的案例研究

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摘要

Wave energy and storm surges threaten coastal ecology and nearshore infrastructures. Although coastal structures are conventionally constructed to dampen the wave energy, they introduce tremendous damage to the ecology of the coast. To minimize environmental impact, ecofriendly coastal protection schemes should be introduced. In this paper, we discuss an example of an innovative mangrove rehabilitation attempt to restore the endangered mangroves on Carey Island, Malaysia. A submerged detached breakwater system was constructed to dampen the energy of wave and trap the sediments behind the structure. Further, a large number of mangrove seedlings were planted using different techniques. Further, we assess the possibility of success for a future mangrove rehabilitation project at the site in the context of sedimentology, bathymetry, and hydrogeochemistry. The assessment showed an increase in the amount of silt and clay, and the seabed was noticeably elevated. The nutrient concentration, the pH value, and the salinity index demonstrate that the site is conducive in establishing mangrove seedlings. As a result, we conclude that the site is now ready for attempts to rehabilitate the lost mangrove forest.
机译:波浪能和风暴潮威胁着沿海生态和近岸基础设施。尽管常规地构造了沿海结构以衰减波能,但是它们对海岸的生态造成了极大的破坏。为了最大程度地减少对环境的影响,应引入生态友好的沿海保护计划。在本文中,我们讨论了一个创新性红树林修复尝试的示例,该尝试旨在恢复马来西亚凯里岛上濒临灭绝的红树林。建造了一个水下分离式防波堤系统,以衰减波浪能并捕获结构后面的沉积物。此外,使用不同的技术种植了大量的红树林幼苗。此外,我们在沉积学,测深法和水文地球化学的背景下评估了该地点未来红树林修复项目成功的可能性。评估显示,淤泥和粘土的数量增加,海床明显升高。养分浓度,pH值和盐度指数表明该部位有利于建立红树林幼苗。结果,我们得出结论,该地点现已准备好恢复失落的红树林。

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