Spatiotemporal Variations in Carbon Sources and Sinks in National Park Ecosystem and the Impact of Tourism

Author:

Hu Quanxu12,Zhang Jinhe12,Xue Huaju3,Wang Jingwei12,Li Aiqing14

Affiliation:

1. School of Geography and Ocean Science, Nanjing University, Nanjing 210023, China

2. Huangshan Park Ecosystem Observation and Research Station, Ministry of Education, Huangshan 242700, China

3. School of Economics and Management, Qinghai Normal University, Xining 810008, China

4. School of Civil and Transportation Engineering, Qinghai Minzu University, Xining 810007, China

Abstract

The capacity of carbon sinks varies among the different types of ecosystems, and whether national parks, as an important type of nature reserve, have a high carbon sink capacity (CSC) and whether eco-tourism in national parks affects their CSC are the main scientific issues discussed. Using MODIS Net Primary Production (NPP) product data, this study analysed the spatiotemporal variation in carbon sources and sinks (CSSs) in the ecosystem of Huangshan National Park from 2000 to 2020, as well as the impact of tourism on these carbon sources and sinks. The findings indicate that, while the ecosystems of national parks generally have a strong CSC, they may not always function as carbon sinks, and during the study period, Huangshan National Park served as a carbon source for four years. Temporally, the CSSs in the ecosystem of the national park exhibit a cyclical pattern of change with a four-year cycle and strong seasonality, with spring and autumn functioning as carbon sinks, and summer and winter as carbon sources. Spatially, the CSSs of the national park ecosystem exhibited a vertical band spectrum of spatial distribution, and the CSC showed a trend of gradual enhancement from low altitude to high altitude. Tourism is a major factor that has an impact on the CSC of national park ecosystems.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference86 articles.

1. IPCC (2013). Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press.

2. Global Carbon Budget 2021;Friedlingstein;Earth Syst. Sci. Data,2022

3. The contribution of China’s emissions to global climate forcing;Li;Nature,2016

4. The contributions of individual countries and regions to the global radiative forcing;Fu;Proc. Natl. Acad. Sci. USA,2021

5. Estimation of China’s terrestrial ecosystem carbon sink: Methods, progress and prospects;Piao;Sci. China-Earth Sci.,2022

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