Seagrass blue carbon stocks and sequestration rates in the Colombian Caribbean

海草 泰莱草 蓝炭 环境科学 固碳 土壤碳 生态系统 土壤水分 红树林 生态学 生物 土壤科学 二氧化碳
作者
Óscar Serrano,Diana Isabel Gómez-López,Laura Sánchez-Valencia,Andrés Acosta Chaparro,Raúl Navas-Camacho,Juan David González-Corredor,Cristian Salinas,Pere Masqué,César A. Bernal,Núria Marbà
出处
期刊:Scientific Reports [Springer Nature]
卷期号:11 (1) 被引量:36
标识
DOI:10.1038/s41598-021-90544-5
摘要

Abstract Seagrass ecosystems rank amongst the most efficient natural carbon sinks on earth, sequestering CO 2 through photosynthesis and storing organic carbon (C org ) underneath their soils for millennia and thereby, mitigating climate change. However, estimates of C org stocks and accumulation rates in seagrass meadows (blue carbon) are restricted to few regions, and further information on spatial variability is required to derive robust global estimates. Here we studied soil C org stocks and accumulation rates in seagrass meadows across the Colombian Caribbean. We estimated that Thalassia testudinum meadows store 241 ± 118 Mg C org ha −1 (mean ± SD) in the top 1 m-thick soils, accumulated at rates of 122 ± 62 and 15 ± 7 g C org m −2 year −1 over the last ~ 70 years and up to 2000 years, respectively. The tropical climate of the Caribbean Sea and associated sediment run-off, together with the relatively high primary production of T. testudinum , influencing biotic and abiotic drivers of C org storage linked to seagrass and soil respiration rates, explains their relatively high C org stocks and accumulation rates when compared to other meadows globally. Differences in soil C org storage among Colombian Caribbean regions are largely linked to differences in the relative contribution of C org sources to the soil C org pool (seagrass, algae Halimeda tuna , mangrove and seston) and the content of soil particles < 0.016 mm binding C org and enhancing its preservation. Despite the moderate areal extent of T. testudinum in the Colombian Caribbean (661 km 2 ), it sequesters around 0.3 Tg CO 2 year −1 , which is equivalent to ~ 0.4% of CO 2 emissions from fossil fuels in Colombia. This study adds data from a new region to a growing dataset on seagrass blue carbon and further explores differences in meadow C org storage based on biotic and abiotic environmental factors, while providing the basis for the implementation of seagrass blue carbon strategies in Colombia.

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