Investigating the Soil Carbon Storage Dynamic and Sequestration Potentiality in the Tropical Coral Island (St. Martin) of Bay of Bengal
Masud Hassan, Md. Mazharul Islam, Md. Nazmul Hoda, Husna Pia, Marufa Aktar, Abdur Rahman, Md. Arafat Hassan, Akash Kumar Palit, Rajon Mohonto, Jahed Al Faysal, Md. Jashim Uddin
Asian Journal of Environment & Ecology · pp. 1–9 · Published 30 Mar 2018
10.9734/AJEE/2018/39754Abstract
With a limited amount of carbon storage, Saint Martin Island possesses a very unique soil and environmental characteristics. It needed to be documented about the carbon and organic matter percentage years ago for the proper measurement of carbon sequestration but the work was not completed. As the investigation started to collect the data, the experiment faced many obstacles at every stages because the information we needed was too less to conduct any experiment. We see that SOC (soil organic carbon) densities vary widely among various soil depths and various locations. Different land types and land use requires different carbon storage. The percentage of organic matter count and carbon storage in this Island is typically lower than other parts of the Bangladesh. The MAT (Medication-Assisted Treatment) and MAP framework was included with the variable climatic conditions which made a conclusion that the environmental impact and consequences are needed to be estimated for the improvement of soil condition and betterment of future research. With the analysis of carbon storage, we included some information about soil bulk density, wet soil mass and dry soil mass, and carbon stock indifferent vertical scale that may lead to better understanding about carbon storage and sequestration potentiality of that place in the future which may open a new windows of knowledge of carbon storage flux and global warming. To determine the degree of carbon sequestration in this Island a large number of proper experiments are needed to be done.
Cited by 1
Md. Jashim Uddin, A. S. M. Mohiuddin, Masud Hassan · American Journal of Climate Change · 2019
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