Understanding carbon storage dynamics in Ayeyarwady delta's mangrove ecosystem in Myanmar: insights for restoration efforts

IF 2.5 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Bikram Pandey, Saroj Koirala, Htay Aung, Rong Li, Arbindra Timilsina, Soe Thaw Thaw Htun, Joacim Kontny, Htun Thiri Naing
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Abstract

Mangroves are highly valued for their ecosystem services, providing a wide range of ecological, social, and economic benefits, including their role as carbon-rich ecosystems. Recent research suggests that preserving mangrove forests can offer a cost-effective strategy for mitigating CO2 emissions. However, extensive deforestation has placed mangrove ecosystems under severe global threats. Currently, the assessment of mangrove restoration outcomes, particularly regarding soil carbon stocks, is inadequate. Therefore, this study aims to investigate the impact of restoration on soil organic carbon (SOC) in Shwe Thaung Yan, Ayeyarwady coastal region of Myanmar. The study aimed to quantify and compare carbon stocks in different soil layers, examine the carbon sequestration potential of various mangrove species, and evaluate the effectiveness of mangrove restoration efforts. Soil samples were collected in 2015 (pre-restoration) and 2021 (post-restoration) at various soil depths and analyzed for SOC concentration, organic matter content, and bulk density using the Loss on Ignition (LOI) procedure. Significant changes in soil properties were observed between 2015 and 2021, with higher SOC and carbon concentrations observed in 2021. The average soil carbon stocks in 2021 (1954.43 ± 33.24 Mg C ha−1) were approximately 2.7 times higher than the estimated carbon stocks in 2015 (732.26 ± 6.99 Mg C ha−1). Furthermore, the study revealed variations in SOC accumulation among different soil depths, with higher carbon stocks found in the upper soil layers. This study highlights the positive impact of mangrove restoration on SOC accumulation and emphasizes the significance of considering soil carbon dynamics in restoration initiatives. The findings offer valuable insights for the conservation and management of mangrove ecosystems, especially concerning their potential for carbon sequestration and their contribution to mitigating climate change.
了解缅甸伊洛瓦底三角洲红树林生态系统的碳储存动态:对恢复工作的启示
红树林的生态系统服务价值极高,可提供广泛的生态、社会和经济效益,包括其作为富碳生态系统的作用。最近的研究表明,保护红树林可以为减缓二氧化碳排放提供一种具有成本效益的策略。然而,大面积的森林砍伐使红树林生态系统面临严重的全球性威胁。目前,对红树林恢复成果,尤其是土壤碳储量的评估尚不充分。因此,本研究旨在调查缅甸伊洛瓦底江沿岸地区 Shwe Thaung Yan 红树林恢复对土壤有机碳(SOC)的影响。研究旨在量化和比较不同土壤层中的碳储量,考察各种红树林物种的固碳潜力,并评估红树林恢复工作的成效。研究人员分别于 2015 年(恢复前)和 2021 年(恢复后)在不同土壤深度采集了土壤样本,并使用点火损失(LOI)程序分析了 SOC 浓度、有机质含量和体积密度。在 2015 年和 2021 年之间,土壤性质发生了显著变化,2021 年的 SOC 和碳浓度更高。2021 年的平均土壤碳储量(1954.43 ± 33.24 兆克碳/公顷-1)是 2015 年估计碳储量(732.26 ± 6.99 兆克碳/公顷-1)的约 2.7 倍。此外,研究还揭示了不同土壤深度中 SOC 积累的差异,发现上层土壤的碳储量较高。这项研究强调了红树林恢复对 SOC 积累的积极影响,并强调了在恢复过程中考虑土壤碳动态的重要性。研究结果为红树林生态系统的保护和管理提供了宝贵的见解,尤其是在其固碳潜力及其对减缓气候变化的贡献方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Environmental Research Communications
Environmental Research Communications ENVIRONMENTAL SCIENCES-
CiteScore
3.50
自引率
0.00%
发文量
136
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