School of Tropical Agriculture and Forestry, Hainan University, Haikou City, 570228, China; Intelligent Forestry Key Laboratory of Haikou City, Hainan University, Haikou City, 570228, China.
Research Center for Wild Animal and Plant Resource Protection and Utilization, Qiongtai Normal University, Haikou City, 571100, China.
J Environ Manage. 2024 Sep;368:122199. doi: 10.1016/j.jenvman.2024.122199. Epub 2024 Aug 14.
Coastal wetland ecosystems harbor rich biodiversity and possess significant ecosystem service value (ESV). Therefore, it offers a range of crucial ecosystem services (ES) for human well-being and socio-economic development. Taking the Hainan Island coastal zone (HICZ) as a case study, the spatio-temporal characteristics of land use and land cover change (LULCC), and its associated ESV in wetland landscapes were analyzed over three time points (2000, 2010 and 2020). We explored the spatio-temporal evolution trajectory of ESV on the basis of geo-information tupu. Then, future land use simulation (FLUS) was employed to predict wetland patterns and ESV under three different scenarios: business as usual (BAU), ecological conservation first (ECF), and economic development first (EDF). The results showed that over the past two decades, a significant proportion (exceeding 80%) of the overall wetland region was comprised of offshore and coastal wetlands (OCW) as well as constructed wetlands (CW); these formed the matrix of the landscape. The area of building land (BL) continued to exhibit a consistent upward trend. Expanding by 2.18 times, it represented the most significant increase in the rate of dynamic changes in BL. The main ES in the HICZ corresponded to the regulation services (53.57%) and the support services (27.58%). The ESV of wetland losses accounted for 45.17% (43.08 × 10 yuan) of the total loss. The spatial differentiation of ESV in the HICZ was larger in the southwest and the northeast regions, while it was comparatively lower in the north. The transformation in the area of early and late change types accounted for 236.46 km and 356.69 km, respectively. The scenario ECF was achieved with an optimal development of ESV (1807.72 × 10 yuan), which was coordinated with the high-level of development of regional ES functions and the economy. These findings provide valuable information for the sustainable development as well as the protection of ecology and environment of the coastal zone under the background of the construction of Hainan pilot free trade zone in the future.
滨海湿地生态系统蕴藏着丰富的生物多样性,具有重要的生态系统服务价值(ESV)。因此,它为人类福祉和社会经济发展提供了一系列至关重要的生态系统服务(ES)。以海南岛沿海带(HICZ)为例,分析了三个时间点(2000 年、2010 年和 2020 年)的土地利用和土地覆盖变化(LULCC)及其相关的湿地景观生态系统服务价值的时空特征。我们基于地理信息图谱探讨了 ESV 的时空演变轨迹。然后,采用未来土地利用模拟(FLUS)预测了三种不同情景下的湿地格局和 ESV:照常发展(BAU)、生态优先保护(ECF)和经济优先发展(EDF)。结果表明,在过去的二十年中,超过 80%的整体湿地区域由近海和海岸湿地(OCW)以及人工湿地(CW)组成;这些构成了景观的基质。建设用地(BL)的面积继续呈持续上升趋势。增长了 2.18 倍,是 BL 动态变化率增长最大的部分。HICZ 的主要生态系统服务对应调节服务(53.57%)和支持服务(27.58%)。湿地损失的生态系统服务价值占总损失的 45.17%(43.08×10 元)。HICZ 的生态系统服务价值空间差异在西南和东北地区较大,而在北部地区则相对较小。早期和晚期变化类型的面积转换分别为 236.46km 和 356.69km。情景 ECF 实现了生态系统服务价值的最优发展(1807.72×10 元),这与区域生态系统功能和经济的高水平发展相协调。这些发现为未来海南自由贸易试验区建设背景下沿海带的可持续发展和生态环境保护提供了有价值的信息。