Spatiotemporal dynamics and underlying mechanisms of ecosystem respiration in rubber plantations: a case study in Hainan Island

IF 1.2 4区 化学 Q4 POLYMER SCIENCE Journal of Rubber Research Pub Date : 2024-04-01 DOI:10.1007/s42464-024-00245-7
Yinghe An, Zhixiang Wu, Yichen Wang, Runqing Zhang, Lan Wu, Wenjie Liu, Peng Wang, Zhongyi Sun
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Abstract

Rubber plantations are an important component of tropical forest ecosystems and are emerging as crucial contributors to carbon sequestration in the tropics. However, ecosystem respiration (RECO), which constitutes an essential constraint on the carbon fixation capacity of rubber plantations, and its driving mechanisms remains unclear. Therefore, this study developed a data-driven semi-empirical model to simulate rubber plantations RECO utilising eddy covariance flux measurements and was upscaled to Hainan Island using remote sensing images and climatic data. Numerical simulations experiments analysed direct and indirect of climatic factors impacts on rubber plantations RECO. The results showed that the model accurately captured RECO trends and seasonality (R2 = 0.87, RMSE = 1.27 g C m−2 d−1); in the past 19 years, RECO showed a noticeable increase, particularly in the late rainy season and the seasonality of RECO has shown a delayed pattern. The RECO in the central region (52% area) exhibited multimodal enhancement while northern and southern regions (37% area) showed oscillations or decreases. Temporally, RECO is higher in the rainy season compared to the dry season, and spatially, RECO is higher in the southern region than in the northern region. Among the climatic factors, water conditions (rainfall and air humidity) have been emerged as dominant factors (5.38%) influencing RECO, surpassing temperature (3.96%) and radiation (3.81%). In addition, climatic factors make a positive overall contribution during the dry season but perform oppositely in the rainy season. This study offers theoretical and technical insights into high carbon sink management in rubber plantations and carbon sequestration in tropical forests ecosystems.

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橡胶种植园生态系统呼吸的时空动态和内在机制:海南岛案例研究
橡胶种植园是热带森林生态系统的重要组成部分,正在成为热带地区碳固存的重要贡献者。然而,生态系统呼吸作用(RECO)是橡胶种植园碳固定能力的重要制约因素,其驱动机制尚不清楚。因此,本研究利用涡度协方差通量测量数据,建立了一个数据驱动的半经验模型来模拟橡胶园 RECO,并利用遥感图像和气候数据将该模型放大到海南岛。数值模拟实验分析了气候因素对橡胶园 RECO 的直接和间接影响。结果表明,该模型准确捕捉了 RECO 的变化趋势和季节性(R2 = 0.87,RMSE = 1.27 g C m-2 d-1);在过去的 19 年中,RECO 出现了明显的增长,尤其是在雨季后期,RECO 的季节性也呈现出延迟模式。中部地区(52% 的面积)的 RECO 呈多模式增强,而北部和南部地区(37% 的面积)则呈震荡或下降。从时间上看,雨季的 RECO 高于旱季;从空间上看,南部地区的 RECO 高于北部地区。在气候因子中,水条件(降雨量和空气湿度)是影响 RECO 的主要因素(5.38%),超过了温度(3.96%)和辐射(3.81%)。此外,气候因素在旱季的总体贡献是积极的,但在雨季的表现则相反。这项研究为橡胶种植园的高碳汇管理和热带森林生态系统的碳封存提供了理论和技术启示。
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来源期刊
Journal of Rubber Research
Journal of Rubber Research 化学-高分子科学
自引率
15.40%
发文量
46
审稿时长
3 months
期刊介绍: The Journal of Rubber Research is devoted to both natural and synthetic rubbers, as well as to related disciplines. The scope of the journal encompasses all aspects of rubber from the core disciplines of biology, physics and chemistry, as well as economics. As a specialised field, rubber science includes within its niche a vast potential of innovative and value-added research areas yet to be explored. This peer reviewed publication focuses on the results of active experimental research and authoritative reviews on all aspects of rubber science. The Journal of Rubber Research welcomes research on: the upstream, including crop management, crop improvement and protection, and biotechnology; the midstream, including processing and effluent management; the downstream, including rubber engineering and product design, advanced rubber technology, latex science and technology, and chemistry and materials exploratory; economics, including the economics of rubber production, consumption, and market analysis. The Journal of Rubber Research serves to build a collective knowledge base while communicating information and validating the quality of research within the discipline, and bringing together work from experts in rubber science and related disciplines. Scientists in both academia and industry involved in researching and working with all aspects of rubber will find this journal to be both source of information and a gateway for their own publications.
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