Carbon Sequestration Potential of Mango Varieties Grown under High-Density Planting in Subtropical Region of Himachal Pradesh, India

Vikas Kumar Sharma

Department of Fruit Science, College of Horticulture and Forestry, Neri, Hamirpur, Himachal Pradesh, India.

Asha Thakur *

Department of Fruit Science, College of Horticulture and Forestry, Neri, Hamirpur, Himachal Pradesh, India.

Yashasvi Thakur

Department of Silviculture & Agroforestry, College of Horticulture and Forestry, Neri, Hamirpur, Himachal Pradesh, India.

Sandhya Thakur

Department of Entomology, Chaudhary Sarwan Kumar Himachal Pradesh Krishi Vishvavidyalaya, Palampur, Kangra, Himachal Pradesh, India.

*Author to whom correspondence should be addressed.


Abstract

Fruit trees can contribute to climate-change mitigation by retaining carbon in long-lived biomass, although cultivar-level variation under high-density orchard systems remains insufficiently documented. This study evaluated the standing biomass carbon and carbon dioxide-equivalent storage of eleven ten-year-old grafted mango cultivars grown under uniform high-density planting at the College of Horticulture and Forestry, Neri, Hamirpur, Himachal Pradesh. Three representative trees per cultivar were assessed. Aboveground biomass was estimated non-destructively using an allometric equation developed for grafted mango trees. Belowground biomass was calculated using a root-to-shoot ratio of 0.29, total biomass was converted to carbon using a factor of 0.47, and carbon dioxide-equivalent storage was estimated using a factor of 3.67. Significant differences were observed among cultivars in aboveground biomass, belowground biomass, total biomass, carbon stock and carbon dioxide-equivalent storage. ‘Chausa’ recorded the highest aboveground biomass (80.06 kg tree⁻¹), belowground biomass (23.22 kg tree⁻¹), total biomass (103.28 kg tree⁻¹), biomass carbon stock (48.54 kg tree⁻¹) and estimated carbon dioxide-equivalent storage (178.15 kg CO₂ tree⁻¹). ‘Pusa Peetamber’ recorded the lowest values for these parameters. The findings indicate that cultivar-specific growth characteristics influence biomass carbon storage under the evaluated subtropical conditions. Cultivar selection may therefore support comparatively greater standing biomass carbon in high-density mango orchards, although longer-term measurements are required to estimate annual sequestration and whole-orchard carbon performance.

Keywords: Biomass carbon stock, carbon dioxide-equivalent storage, cultivar variation, high-density planting, Mangifera indica, non-destructive allometry, aboveground biomass, belowground biomass, orchard carbon, subtropical horticulture.


How to Cite

Sharma, Vikas Kumar, Asha Thakur, Yashasvi Thakur, and Sandhya Thakur. 2026. “Carbon Sequestration Potential of Mango Varieties Grown under High-Density Planting in Subtropical Region of Himachal Pradesh, India”. International Journal of Environment and Climate Change 16 (8):280-89. https://doi.org/10.9734/ijecc/2026/v16i85578.

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