Literature DB >> 33737623

Distribution and altitudinal patterns of carbon and nitrogen storage in various forest ecosystems in the central Yunnan Plateau, China.

Jianqiang Li1, Qibo Chen2, Zhuang Li2, Bangxiao Peng2, Jianlong Zhang2, Xuexia Xing2, Binyang Zhao2, Denghui Song2.   

Abstract

The n class="Chemical">carbon (C) pool in forest ecosystems plays a long-term and sustained role in mitigating the imclass="Species">pacts of global warming, and the sequestration of C is closely linked to the class="Species">pan class="Chemical">nitrogen (N) cycle. Accurate estimates C and N storage (SC, SN) of forest can improve our understanding of C and N cycles and help develop sustainable forest management policies in the content of climate change. In this study, the SC and SN of various forest ecosystems dominated respectively by Castanopsis carlesii and Lithocarpus mairei (EB), Pinus yunnanensis (PY), Pinus armandii (PA), Keteleeria evelyniana (KE), and Quercus semecarpifolia (QS) in the central Yunnan Plateau of China, were estimated on the basis of a field inventory to determine the distribution and altitudinal patterns of SC and SN among various forest ecosystems. The results showed that (1) the forest SC ranged from 179.58 ± 20.57 t hm-1 in QS to 365.89 ± 35.03 t hm-1 in EB. Soil, living biomass and litter contributed an average of 64.73%, 31.72% and 2.86% to forest SC, respectively; (2) the forest SN ranged from 4.47 ± 0.94 t ha-1 in PY to 8.91 ± 1.83 t ha-1 in PA. Soil, plants and litter contributed an average of 86.88%, 10.27% and 2.85% to forest SN, respectively; (3) the forest SC and SN decreased apparently with increasing altitude. The result demonstrates that changes in forest types can strongly affect the forest SC and SN. This study provides baseline information for forestland managers regarding forest resource utilization and C management.

Entities:  

Year:  2021        PMID: 33737623     DOI: 10.1038/s41598-021-85710-8

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


  9 in total

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  9 in total
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1.  Great Facilitation of Thirty Years of Reforestation with Mixed Species to Ecosystem Nitrogen Accumulation in Dry-Hot Valley in the Jinsha River.

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  1 in total

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