Changes in the carbon source and storage in a cultivation area of macro-algae in Southeast China

Macro-algae culture has recently attracted attention in China because of its capability to sequester carbon. Here, radionuclides, total organic carbon (TOC), and nitrogen (TN) were examined in a cultivation area of macro-algae in Southeast China. At the reference site, the ratio of TOC to TN (C/N, 8...

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Veröffentlicht in:Marine pollution bulletin 2023-03, Vol.188, p.114680-114680, Article 114680
Hauptverfasser: Wang, Yingying, Yang, Weifeng, Zhao, Xiufeng, Zhang, Qinghua, Chen, Hansen, Fang, Ziming, Zheng, Minfang
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Sprache:eng
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Zusammenfassung:Macro-algae culture has recently attracted attention in China because of its capability to sequester carbon. Here, radionuclides, total organic carbon (TOC), and nitrogen (TN) were examined in a cultivation area of macro-algae in Southeast China. At the reference site, the ratio of TOC to TN (C/N, 8.1 ± 0.2, mean ± SD) did not exhibit discernible variation over the past 70 years. In contrast, in the cultivation area, C/N descended from 9.0 ± 0.2 around 1960 to 8.3 ± 0.2 between 1960 and 1990 and 7.6 ± 0.2 after 1990, coincident with the recorded kelp production in this area, indicating an influence of macro-algae culture-associated activities on carbon origin. Using a model, algal culture-associated activities contributed 23 ± 7 % between 1963 and 1990 and 53 ± 8 % between 1990 and 2022 to TOC. The burial of culture-associated TOC varied from 0.15 to 1.23 mg-C cm−2 yr−1, implying the unneglectable influence on carbon storage. •Changes in carbon source were observed in a macro-algae culture area in China.•Temporal pattern of carbon source matched kelp production in the culture field.•Burial flux of algae culture-associated carbon increased with kelp production.
ISSN:0025-326X
1879-3363
DOI:10.1016/j.marpolbul.2023.114680