Prioritizing Tree-Based Systems for Optimizing Carbon Sink in the Indian Sub-Himalayan Region

Author:

Dey Tanusri1,S Dinesha2ORCID,Singh Manendra1ORCID,A Arshad1,Tamang Mendup1,N Shahina N1,Nath Arun Jyoti3,Shukla Gopal1ORCID,Chakravarty Sumit1

Affiliation:

1. Department of Forestry, Uttar Banga Krishi Vishwavidyalaya, Pundibari 736 165, India

2. Department of Forestry, Pandit Deendayal Upadhyay College of Horticulture and Forestry, Piprakothi, Rajendra Prasad Central Agricultural University, Samastipur 845 429, India

3. Department of Ecology and Environmental Science, Assam University, Silchar 788 011, India

Abstract

Land use of the sub-Himalayan region is not that intensive like the intensively land-managed region of Punjab, India. Land resources of the sub-Himalayas must be managed effectively for sustainable development by preparing carbon inventories and data banks. Such macro-level studies have not been conducted yet in the present study area, and thus were conducted to suggest sustainable land use management options. To achieve the present study’s desired goal, 33 tree-based land uses were identified from forested and agricultural landscapes of the sub-humid tropical region of West Bengal, India. Stratified random nested quadrat sampling was adopted for the study. The SOC, biomass, and carbon accumulation significantly differed. Mixed forests had the highest soil primary nutrients and carbon stock. Positive correlations were observed between SOC, total standing biomass, litter production, and ecosystem carbon. The sequence of land uses based on carbon stock was mixed-species forest > sole tree species stands in a forest landscape > tea plantations > homegardens. This baseline information can be used for developing prediction models for future interventions towards sustainable land management. The study, however, could not estimate the carbon fluxes in and out of the systems due to the absence of detailed land use land-cover databases.

Publisher

MDPI AG

Subject

Nature and Landscape Conservation,Ecology,Global and Planetary Change

Reference143 articles.

1. Global consequences of land use;Foley;Science,2005

2. Marland, G., Boden, T.A., and Andres, R.J. (2007). Global, regional, and national CO2 emissions, Trends: A Compendium of Data on Global Change.

3. Stocker, T.F., Qin, D., Plattner, G.-K., Tignor, M., Allen, S.K., Boschung, J., Nauels, A., Xia, Y., Bex, V., and Midgley, P.M. (2013). Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press.

4. Determination of tropical deforestation rates and related carbon losses from 1990 to 2010;Achard;Glob. Chang. Biol.,2014

5. Global carbon budget;Moriarty;Earth Syst. Sci. Data,2015

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