Evaluating coastal lagoon sustainability through the driver-pressure-state-impact-response approach: a study of Khenifiss Lagoon, southern Morocco

IF 2 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Frontiers in Earth Science Pub Date : 2024-06-21 DOI:10.3389/feart.2024.1322749
Hamza El Behja, Abdelmounim El M’rini, Driss Nachite, Mohammed Bouchkara, Khalid El Khalidi, Bendahhou Zourarah, Md Galal Uddin, Mohamed Abioui
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Abstract

Coastal lagoons are valuable ecosystems, providing socioeconomic benefits and supporting human populations and biodiversity. However, these systems face several challenges, making them vulnerable to both natural and human factors. In this study, we apply the Driver-Pressure-State-Impact-Response (DPSIR) Approach to conduct a comprehensive socioeconomic and environmental assessment of the Khenifiss Lagoon to promote sustainable development and support decision-makers. Located on the southern Atlantic coast of Morocco, the lagoon was designated a natural reserve in 1962, a biological reserve in 1983, and a protected wetland under the Ramsar Convention since 1980. This study represents the initial endeavor to conduct a comprehensive global and multidisciplinary environmental assessment of the lagoon by using a wide range of data sources, including relevant publications and reports, satellite images and remote sensing data, field observations, and interviews, all analyzed under the DPSIR framework. Our findings show that both natural and human factors have an impact on the ecosystem. Natural Factors associated with the geomorphological features of the region likely contribute to the silting of the lagoon, possibly intensified by a large shipwreck stuck at its inlet. Meanwhile, human factors encompass population growth (at a rate of 2% per year), tourism, shellfish farming, fishing, shellfish harvesting, and salt extraction. Our results reveal significant changes in the lagoon’s condition in recent years, including a reduction in water body extent, a probable decrease in depth, and an increase in the accumulation of solid waste, plastics, and wastewater in three sectors spanning a total surface area of 464 ha (equivalent to 7% of the lagoon), a substantial expansion of the salt mining area encompassing 368 ha, and a remarkable loss of biodiversity, manifested in declining fish stocks and seabird populations. This study showed that the lagoon is positioned as a potential site for economic growth and serves to alert stakeholders and the local population to the ecosystem’s environmental issues. Based on the findings of this study, we highly recommend regulating human activities within the lagoon, the removal of the wreck at the entrance, proper waste management, community awareness programs, and strict monitoring and enforcement of regulations to protect the environment.
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通过 "驱动因素-压力-状态-影响-反应 "方法评估沿海泻湖的可持续性:对摩洛哥南部 Khenifiss泻湖的研究
沿海泻湖是宝贵的生态系统,可提供社会经济效益,并为人类和生物多样性提供支持。然而,这些系统面临着一些挑战,使其容易受到自然和人为因素的影响。在本研究中,我们采用 "驱动因素-压力-状态-影响-响应(DPSIR)"方法对 Khenifiss 泻湖进行了全面的社会经济和环境评估,以促进可持续发展并为决策者提供支持。该泻湖位于摩洛哥南部大西洋沿岸,1962 年被指定为自然保护区,1983 年被指定为生物保护区,1980 年被指定为《拉姆萨尔公约》保护湿地。这项研究是对该泻湖进行全面的全球多学科环境评估的首次尝试,它使用了广泛的数据来源,包括相关出版物和报告、卫星图像和遥感数据、实地观察和访谈,所有这些都在 DPSIR 框架下进行了分析。我们的研究结果表明,自然和人为因素都会对生态系统产生影响。与该地区地貌特征相关的自然因素可能是造成泻湖淤塞的原因之一,而泻湖入口处的一艘大型沉船可能加剧了淤塞。与此同时,人为因素包括人口增长(每年 2%)、旅游业、贝类养殖、捕鱼、贝类捕捞和采盐。我们的研究结果表明,近年来泻湖的状况发生了重大变化,包括水体范围缩小,水深可能下降,固体废物、塑料和废水在总面积为 464 公顷(相当于泻湖面积的 7%)的三个区域的积累增加,盐矿开采区面积大幅扩大,达 368 公顷,生物多样性显著丧失,表现为鱼类种群和海鸟数量减少。这项研究表明,泻湖被定位为一个潜在的经济增长点,并提醒利益相关者和当地居民注意生态系统的环境问题。根据这项研究的结果,我们强烈建议对泻湖内的人类活动进行监管,拆除入口处的沉船,进行适当的废物管理,开展社区宣传计划,并严格监督和执行法规,以保护环境。
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来源期刊
Frontiers in Earth Science
Frontiers in Earth Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
3.50
自引率
10.30%
发文量
2076
审稿时长
12 weeks
期刊介绍: Frontiers in Earth Science is an open-access journal that aims to bring together and publish on a single platform the best research dedicated to our planet. This platform hosts the rapidly growing and continuously expanding domains in Earth Science, involving the lithosphere (including the geosciences spectrum), the hydrosphere (including marine geosciences and hydrology, complementing the existing Frontiers journal on Marine Science) and the atmosphere (including meteorology and climatology). As such, Frontiers in Earth Science focuses on the countless processes operating within and among the major spheres constituting our planet. In turn, the understanding of these processes provides the theoretical background to better use the available resources and to face the major environmental challenges (including earthquakes, tsunamis, eruptions, floods, landslides, climate changes, extreme meteorological events): this is where interdependent processes meet, requiring a holistic view to better live on and with our planet. The journal welcomes outstanding contributions in any domain of Earth Science. The open-access model developed by Frontiers offers a fast, efficient, timely and dynamic alternative to traditional publication formats. The journal has 20 specialty sections at the first tier, each acting as an independent journal with a full editorial board. The traditional peer-review process is adapted to guarantee fairness and efficiency using a thorough paperless process, with real-time author-reviewer-editor interactions, collaborative reviewer mandates to maximize quality, and reviewer disclosure after article acceptance. While maintaining a rigorous peer-review, this system allows for a process whereby accepted articles are published online on average 90 days after submission. General Commentary articles as well as Book Reviews in Frontiers in Earth Science are only accepted upon invitation.
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