植硅岩
土壤水分
环境科学
中国
碳纤维
中国
生态演替
土壤碳
土壤科学
农林复合经营
林业
地理
生物
植物
数学
考古
复合数
算法
花粉
作者
Bing Wang,Na Zhao,Qiuliang Zhang,Xin Zhang
出处
期刊:Forests
[Multidisciplinary Digital Publishing Institute]
日期:2025-05-24
卷期号:16 (6): 887-887
摘要
Phytolith carbon sequestration has been recognized as an important mechanism for long-term carbon sequestration in forest ecosystems. Conducting relevant research in cold temperate regions that are sensitive to climate change can reveal their unique mechanisms as a stable and long-term carbon pool, fill key blind spots in global carbon cycling models, and provide necessary scientific support for developing climate-resilient ecological strategies and carbon neutrality pathways. In this study, we focused on the Larix gmelinii forest ecosystem and investigated the latitudinal spatial characteristics of soil phytolith and phytolith-occluded carbon (phytOC) in Eastern China. We analyzed the factors that influenced their accumulation and assessed their storage potential across different climatic zones. Our findings revealed an exponential increase in soil phytolith content with increasing latitude in Eastern China. Additionally, the content of soil phytoliths in tropical and subtropical forests was significantly lower than in the cold temperate forests. It was also found that soil phytOC content increased linearly with latitude and was significantly higher in cold temperate zones than in the other climatic zones. The order of soil phytOC storage was tropical (0.23 t ha−1) < middle temperate (0.24 t ha−1) < subtropical (0.27 t ha−1) < cold temperate (1.20 t ha−1). Soil phytolith and phytOC content were significantly negatively correlated with temperature and precipitation. pH, organic matter, and nutrients of soil significantly influenced the formation and accumulation of soil phytoliths. It can provide a scientific basis for the quantitative evaluation of forest soil carbon pool.
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