Spatiotemporal Evolution and Drivers of Carbon Storage from a Sustainable Development Perspective: A Case Study of the Region along the Middle and Lower Yellow River, China

Sustainability Pub Date : 2024-07-26 DOI:10.3390/su16156409
Shu An, Yifang Duan, Dengshuai Chen, Xiaoman Wu
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Abstract

Carbon storage (C-storage) is a critical indicator of ecosystem services, and it plays a vital role in maintaining ecological balance and driving sustainability. Its assessment provides essential insights for enhancing environmental protection, optimizing land use, and formulating policies that support long-term ecological and economic sustainability. Previous research on C-storage in the Yellow River Basin has mainly concentrated on the spatiotemporal fluctuations of C-storage and the investigation of natural influencing factors. However, research combining human activity factors to explore the influences on C-storage is limited. In this paper, based on the assessment of the spatiotemporal evolution of C-storage in the region along the Middle and Lower Yellow River (MLYR), the influences of anthropogenic and natural factors on C-storage were explored from the perspective of sustainable development. The findings reflected the relationship between socio-economic activities and the ecological environment from a sustainable development perspective, providing important scientific evidence for the formulation of sustainability policies in the region. We noticed the proportion of arable land was the highest, reaching 40%. The increase of construction land because of the fast urbanization mainly came from arable land and grassland. During the past 15 years, the cumulative loss of C-storage was 71.17 × 106 t. The high-value of C-storage was primarily situated in hilly areas, and the area of C-storage hotspots was shrinking. The aggregation effect of low-value C-storage was strengthening, while that of high-value C-storage was weakening. The dominant factors (q > 0.5) influencing the spatiotemporal variation of C-storage in the region along the Middle Yellow River (MYR) were temperature and precipitation, while the primary factor in the region along the Lower Yellow River (LYR) was temperature. Overall, meteorological factors were the main determinants across the entire study area. Additionally, compared to the MYR, anthropogenic factors had a smaller impact on the spatiotemporal evolution of C-storage in the LYR, but their influence has been increasing over time.
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从可持续发展角度看碳储存的时空演变和驱动因素:中国黄河中下游地区案例研究
碳储存(C-storage)是生态系统服务的一个重要指标,在维持生态平衡和推动可持续发展方面发挥着至关重要的作用。对其进行评估可为加强环境保护、优化土地利用以及制定支持长期生态和经济可持续发展的政策提供重要启示。以往对黄河流域碳储量的研究主要集中在碳储量的时空波动和自然影响因素的调查上。然而,结合人类活动因素探讨储碳影响因素的研究还很有限。本文在评估黄河中下游地区储碳量时空演变的基础上,从可持续发展的角度探讨了人为因素和自然因素对储碳量的影响。研究结果从可持续发展的角度反映了社会经济活动与生态环境之间的关系,为该地区制定可持续发展政策提供了重要的科学依据。我们注意到耕地比例最高,达到 40%。快速城市化带来的建设用地增加主要来自耕地和草地。过去 15 年,贮存量累计损失 71.17×106 t。贮存量高值区主要分布在丘陵地区,贮存量热点地区面积不断缩小。低值储碳的聚集效应增强,而高值储碳的聚集效应减弱。影响黄河中游地区储碳量时空变化的主导因子(q>0.5)是气温和降水,而黄河下游地区的主导因子是气温。总体而言,气象因素是整个研究区域的主要决定因素。此外,与多年平均气温相比,人为因素对涟水地区碳储量时空演变的影响较小,但随着时间的推移,其影响在不断增加。
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