基于plus - invest - geodetector模型的安徽省碳储量时空演变及驱动力分析[j]。

Q2 Environmental Science
Ji-Ang Jia, Wei-Ling Guo, Liu-Yang Xu, Chang Gao
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引用次数: 0

摘要

探讨“双碳”战略目标下安徽省土地利用变化对碳储量的影响及碳储量空间分异的驱动因素,预测2035年不同情景下安徽省土地利用格局,具有重要的理论和现实意义。采用耦合PLUS-InVEST模型,分析了2035年安徽省土地利用格局与碳储量在自然开发、生态保护、耕地保护和生态耕地保护情景下的时空变化特征,并利用地理探测器分析了碳储量空间分异的驱动力。结果表明:①1990—2020年,安徽省土地利用格局呈现耕地、林地面积持续减少、城市面积显著扩大的趋势;②1990 ~ 2020年,安徽省碳储量减少1.39×107 t,呈持续减少趋势,耕地向城市转化是碳储量减少的主要原因,占总碳储量损失的65.96%。③在单因素检测下,海拔高度对碳储量的解释力最强(q值为0.185),自然环境因子对碳储量空间分异的解释力占主导地位。④2035年,不同情景下的碳储量均呈减少趋势,其中耕地生态双重保护情景下抑制碳储量减少最为显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Spatio-temporal Evolution and Driving Force Analysis of Carbon Storage in Anhui Province Coupled with PLUS-InVEST-GeoDectetor Model].

To explore the impact of land use change on carbon storage and the driving factors of spatial differentiation of carbon storage in Anhui Province under the strategic goal of "dual carbon" and to predict the land use pattern of Anhui Province in 2035 under different scenarios is theoretically and practically important. The coupling PLUS-InVEST model was used to analyze the spatial and temporal variation characteristics of land use pattern and carbon storage in Anhui Province under the scenarios of natural development, ecological protection, cultivated land protection, and ecological cultivated land protection in 2035, and the driving force of spatial differentiation of carbon storage was analyzed by using geographic detectors. The results showed that: ① From 1990 to 2020, the land use pattern of Anhui Province showed a trend of continuous decrease in cultivated land and forest land area and significant expansion of urban area. ② From 1990 to 2020, the carbon storage in Anhui Province decreased by 1.39×107 t, showing a continuous decreasing trend, and the conversion of cultivated land to urban was the major reason for the decrease in carbon storage, accounting for 65.96% of the total carbon storage loss. ③ The explanatory power of elevation on carbon storage was the strongest under single factor detection (q value of 0.185), and the explanatory power of natural environmental factors on carbon storage spatial differentiation was dominant. ④ In 2035, the carbon storage under different scenarios will be decreasing, and the reduction of inhibited carbon storage under the cultivated land ecological dual protection scenario will be the most significant.

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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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