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Article

Variations in Soil Blue Carbon Sequestration between Natural Mangrove Metapopulations and a Mixed Mangrove Plantation: A Case Study from the World’s Largest Contiguous Mangrove Forest

1
Jindal School of Environment and Sustainability, O.P. Jindal Global University, Sonipat 131001, Haryana, India
2
Ecological Restoration Laboratory, Department of Environmental Science & Engineering, Indian Institute of Technology (ISM), Dhanbad 826004, Jharkhand, India
3
Jindal School of Liberal Arts and Humanities, O.P. Jindal Global University, Sonipat 131001, Haryana, India
*
Author to whom correspondence should be addressed.
Life 2023, 13(2), 271; https://doi.org/10.3390/life13020271
Submission received: 20 November 2022 / Revised: 27 December 2022 / Accepted: 11 January 2023 / Published: 18 January 2023
(This article belongs to the Special Issue Marine Carbon Systems: Dynamics, Conservation, and Management)

Abstract

Sundarban is the world’s largest mangrove wetland. This study, conducted in 2016, to compare blue carbon sequestration with different natural metapopulations and a four-year-old Avicennia marina (30% area)-Rhizophora mucronata (70% area)-mixed mangrove plantation under anthropoganic stress. The aims of the study is to find out the variations in soil ecological function indicators (pH, electrical conductivity, bulk density, soil texture, available nitrogn, phosphorus and soil organic carbon) and key ecological service indicator (soil blue carbon pool) between sites. Simpson’s Index of dominance, diversity and Shannon-Weiner Index revealed that all the sites are under ecological stress, with the Suaeda maritima-dominated mudflat having the least biodiversity. It is also revealed that pH and electrical conductivity were highest in Suaeda maritima and Phoenix padulosa-dominated metapopulations, whereas organic carbon was the highest under the mangrove plantation and Avicennia marina-dominated site. Available nitrogen was recorded highest in the community with the Sonneretia sp.-Avicennia marina association. The mixed mangrove plantation had the highest blue carbon pool. The species diversity was not found to be related with the distance from the nearby conserved mangrove forest, contrary to the island biogeography theory. This study concludes with a recommendation of mixed mangrove plantations to restore the degraded saline mudflats along the human settlements across the globe.
Keywords: mangrove; restoration; blue carbon; degraded mudflat; plantation; ecological function; ecological service; island biogeography mangrove; restoration; blue carbon; degraded mudflat; plantation; ecological function; ecological service; island biogeography

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MDPI and ACS Style

Chowdhury, A.; Naz, A.; Maiti, S.K. Variations in Soil Blue Carbon Sequestration between Natural Mangrove Metapopulations and a Mixed Mangrove Plantation: A Case Study from the World’s Largest Contiguous Mangrove Forest. Life 2023, 13, 271. https://doi.org/10.3390/life13020271

AMA Style

Chowdhury A, Naz A, Maiti SK. Variations in Soil Blue Carbon Sequestration between Natural Mangrove Metapopulations and a Mixed Mangrove Plantation: A Case Study from the World’s Largest Contiguous Mangrove Forest. Life. 2023; 13(2):271. https://doi.org/10.3390/life13020271

Chicago/Turabian Style

Chowdhury, Abhiroop, Aliya Naz, and Subodh Kumar Maiti. 2023. "Variations in Soil Blue Carbon Sequestration between Natural Mangrove Metapopulations and a Mixed Mangrove Plantation: A Case Study from the World’s Largest Contiguous Mangrove Forest" Life 13, no. 2: 271. https://doi.org/10.3390/life13020271

APA Style

Chowdhury, A., Naz, A., & Maiti, S. K. (2023). Variations in Soil Blue Carbon Sequestration between Natural Mangrove Metapopulations and a Mixed Mangrove Plantation: A Case Study from the World’s Largest Contiguous Mangrove Forest. Life, 13(2), 271. https://doi.org/10.3390/life13020271

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