Characteristics of phytolith-occluded organic carbon sequestration in typical plant communities in the Songnen grassland, China

植硅岩 草原 中国 固碳 农林复合经营 环境科学 碳纤维 地理 生态学 生物 数学 考古 二氧化碳 算法 复合数 花粉
作者
Niankang Chen,Lixiang Zhong,Dongmei Jie,Jiangyong Wang,Dehui Li,Guizai Gao,Jie Chen,Yu‐Fen Chen,Bahayila Halian,Fang Wang
出处
期刊:Ecological Engineering [Elsevier BV]
卷期号:173: 106442-106442 被引量:6
标识
DOI:10.1016/j.ecoleng.2021.106442
摘要

Phytolith-occluded organic carbon (PhytOC) sequestration is an important contributor to long-term carbon storage in grassland ecosystems. In this study, 28 typical plant communities of the Songnen grassland in China, consisting of Poaceae, Cyperaceae and Asteraceae community types, were selected for the analysis of phytoliths and PhytOC. The phytolith content, carbon content of phytolith, and PhytOC in biomass in each community were then measured. In addition, the statistical relationships between these three were analyzed, and the relationship between the percentage of phytoliths and PhytOC sequestration potential was determined so as to explore the PhytOC sequestration mechanism. Our principal results are as follows: (1) The annual PhytOC yield of Songnen grassland is 1.67 kg CO 2 hm −2 yr −1 . (2) In 28 communities, there are significant negative correlations between the contents of phytoliths and PhytOC (R 2 = 0.943, P < 0.05) and between the contents of phytoliths and PhytOC biomass (R 2 = 0.312, P < 0.05). However there is a significant positive correlation between the carbon content of phytolith and PhytOC in biomass (R 2 = 0.652, P < 0.05). (3) Short-cell phytoliths make a greater contribution to PhytOC sequestration, and we speculated that this is due to the formation process of short-cell phytoliths and their high productivity in this grassland. Furthermore based on the above, we proposed some management measures to increase the PhytOC sequestration rate of the entire ecosystem.
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