Soil Organic Carbon Storage under Different Agronomic Management Practices: A Review

P. Abarajitha

Department of Agronomy, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India.

Shivanand Sharanayya Hiremath *

ICAR KLE Krishi Vigyan Kendra Mattikopp Bailhongal Taluk Belagavi District Karnataka, India.

K. Ravi Chandra

Sri Venkateswara Veterinary University-Livestock Research Station, Lam, Guntur-522034, Andhra Pradesh, India.

Rohit Gupta

ICAR-Central Institute for Research on Buffalo, Sub Campus, Nabha, Patiala, PIN: 147201, India.

C. Rajesh

Department of Agronomy, University of Agricultural Sciences, Bangalore, India.

Sandeep Rout

Faculty of Agriculture Sri Sri University, Cuttack, Odisha-754006, India.

Ram Gopal

ANDUA & T, Kumarganj Ayodhya-224229 (U.P.), India.

Mayank Kumar

Department of Soil Science and Agricultural Chemistry, Chandra Shekhar Azad University of Agriculture and Technology, Kanpur, Uttar Pradesh 208002, India.

Narinder Panotra

Institute of Biotechnology, SKUAST, Jammu, India.

*Author to whom correspondence should be addressed.


Abstract

Soil organic carbon (SOC) is a central component of soil health and a major terrestrial carbon reservoir that influences nutrient cycling, soil structure, water retention, biological activity and crop productivity. Indian agricultural soils have experienced SOC depletion because of intensive cropping, conventional tillage, residue burning and inadequate organic input return, with average SOC levels in many croplands reported at 0.3–0.5%, below the approximate 0.75% level considered important for sustaining productivity in many tropical agro-ecosystems. This review synthesises the manuscript evidence on the effects of agronomic management practices on SOC storage, stabilisation and persistence across Indian farming systems. Conservation tillage, zero tillage and minimum tillage reduce soil disturbance and support carbon retention, with reported SOC stock gains ranging from 0.15 to 0.80 Mg C ha⁻¹ yr⁻¹ depending on practice and region. Diversified crop rotations, particularly those involving legumes, improve root carbon inputs, residue quality and biological nitrogen inputs, while cover crops and green manures add biomass and enhance aggregate-associated carbon. Organic amendments such as farmyard manure, vermicompost, compost, poultry manure, press mud and biochar increase SOC by 15–60% under the rates reported in the manuscript, with biochar showing comparatively high stability. Residue retention, integrated nutrient management, agroforestry and conservation agriculture further contribute to SOC accumulation by increasing organic inputs and improving aggregate protection. However, SOC responses vary substantially with soil texture, climate, cropping intensity, management duration and socio-economic constraints. The review highlights that region-specific combinations of carbon-positive practices, supported by monitoring, extension services and policy incentives, are required to improve soil fertility and strengthen climate-resilient agricultural systems in India.

Keywords: Soil organic carbon, conservation tillage, agronomic management, sequestration, climate mitigation


How to Cite

Abarajitha, P., Shivanand Sharanayya Hiremath, K. Ravi Chandra, Rohit Gupta, C. Rajesh, Sandeep Rout, Ram Gopal, Mayank Kumar, and Narinder Panotra. 2026. “Soil Organic Carbon Storage under Different Agronomic Management Practices: A Review”. International Journal of Environment and Climate Change 16 (8):204-18. https://doi.org/10.9734/ijecc/2026/v16i85573.

Downloads

Download data is not yet available.