Original Article

Impact of Conservation Agriculture on Small and Marginal Farms in Telangana, India

Year: 2025 | Month: March | Volume 70 | Issue 1

References (27)

1.Bhan, S. and Behera, U.K. 2014. Conservation agriculture in India–Problems, prospects and policy issues. International Soil and Water Conservation Research, 2(4): 1-12.

View at Google Scholar

2.Bhattacharyya, R., Ghosh, B.N., Mishra, P.K., Mandal, B., Rao, C.S., Sarkar, D., Das, K., Anil, K.S., Lalitha, M., Hati, K.M. and Franzluebbers, A.J. 2015. Soil Degradation in India: Challenges and Potential Solutions. Sustainability, 7(4): 3528-3570.

View at Google Scholar

3.Bhuvaneshwari, S., Hettiarachchi, H. and Meegoda, J. N. 2019. Crop residue burning in India: policy challenges and potential solutions. International Journal of Environmental Research and Public Health, 16(5): 832.

View at Google Scholar

4.Bisaliah, S. 1977. Decomposition analysis of output change under new production technology in wheat farming: Some implications to returns on investment. Indian Journal of Agricultural Economics, 32(3): 193-201.

View at Google Scholar

5.Biswas, H., Raizada, A., Mandal, D., Dhetarwal, S.K., Srinivas, S. and Mishra, P. 2015. Identification of vulnerable areas to soil erosion risk in India using GIS methods. Soil Earth Discussion, 7(2): 1611-1637.

View at Google Scholar

6.Chatterjee, S. 2017. State-wise Comparative Analysis of Different Cost Components and Factor Productivity of Paddy in India during Last Decade. RASHI: Journal of the society for Application of Statistics in Agriculture and Allied Sciences, 2(1): 83-97.

View at Google Scholar

7.Chatterjee, S., Chakraborty, R. and Hasan, M. 2020. Economic impact assessment of conservation agriculture on small and marginal farm households in eastern India. Agricultural Economics Research Review, 33(Conference Number): 127-138.

View at Google Scholar

8.Dam, A., Chatterjee, S. and Biswas, A. 2024. Productivity growth and sustainability of rice-wheat cropping system in Indo-Gangetic plains of India. Agricultural Economics Research Review, 36(Conference Number): 49-59.

View at Google Scholar

9.Dayakar, P. and Kumar, K.S.K. 2024. Soil and water conservation measures and rainfed agriculture in Telangana, India: Role of community and neighbourhood conservation measures. Land Use Policy, 137: 107011.

View at Google Scholar

10.Goldar, B., Chattopadhyay, S.K., Nath, S., Sengupta, S. and Das, P.C. 2023. Determinants of total factor productivity growth in India. Theoretical Economics Letters, 13: 683-718.

View at Google Scholar

11.Jia, Q., Zheng, H., Shi, Z., Liu, X., Sun, D. and Zhang, J. 2024. Effects of Straw and Green Manure Addition on Crop Yield, Soil Properties and CH4 Emissions: A Meta- Analysis. Agronomy, 14(11): 2724.

View at Google Scholar

12.Kumar, N., Chhokar, R.S., Meena, R.P., Kharub, A.S., Gill, S.C., Tripathy, S.C., Gupta, O.P., Mangrauthia, S.K., Sundaram, R.M., Sawant, C.P., Gupta, A., Naorem, A., Kumar, M. and Singh, G.P. 2022. Challenges and opportunities in productivity and sustainability of rice cultivation system: a critical review in Indian perspective. Cereal Research Communications, 50: 573–601.

View at Google Scholar

13.Manjusree, R.V., Maiti, S., Garai, S., Manjunath, K.V., Bhakat, M., Dixit, A., Jha, S. and Kadian, K. 2021. Impact of agromet advisory services on farmers’ operational decisions related to dairy farming in Thiruvananthapuram. Indian Journal of Dairy Sciences, 75(3): 285-289.

View at Google Scholar

14.Nanda, B.K., Sahoo, N. and Panigrahi, B. 2019. Assessment of soil loss from agricultural lands of South Andaman district in tropical Islands. International Journal of Current Microbiology and Applied Sciences, 8(3): 2190-2198.

View at Google Scholar

15.National Bureau of Soil Survey and Land Use Planning– At a Glance. 2023. National Bureau of Soil Survey and Land Use Planning (NBSS & LUP), Government of India. pp. 1-19.

View at Google Scholar

16.Nthebere, K., Prakash, T.R., Gudapati, J., Bhimireddy, P., Admala, M. and Chandran, L.P. 2024. Assessment of conservation agriculture practices on soil nutrient’s stratification ratio, carbon sequestration rate, management indices and crop productivity in Southern Telangana India. Agriculture Association of Textile Chemical and Critical Reviews Journal, 12(2): 254-271.

View at Google Scholar

17.Nthebere, K., Sharma, S.H.K., Kumari, C.P. and Qureshi, A.A. 2022. Long-term effect of different cropping systems on carbon sequestration in a sandy loam soil of Telangana. Agricultural Reviews, 43(2): 249–254.

View at Google Scholar

18.Ordóñez-Fernández, R., Repullo-Ruibérriz de Torres, M.A., Márquez-García, J., Moreno-García, M. and Carbonell- Bojollo, R.M. 2018. Legumes used as cover crops to reduce fertilisation problems improving soil nitrate in an organic orchard. European Journal of Agronomy, 95: 1-13.

View at Google Scholar

19.Parihar, C.M., Yadav, M.R., Jat, S.L., Singh, A.K., Kumar, B., Pradhan, S., Chakraborty, D., Jat, M.L., Jat, R.K., Saharawat, Y.S. and Yadav, O.P. 2016. Long term effect of conservation agriculture in maize rotations on total organic carbon, physical and biological properties of a sandy loam soil in north-western Indo-Gangetic Plains. Soil and Tillage Research, 161: 116-128.

View at Google Scholar

20.Porichha, G.K., Hu, Y., Rao, K.T.V. and Xu, C.C. 2021. Crop residue management in India: Stubble burning vs. other utilizations including bioenergy. Energies, 14(14): 4281.

View at Google Scholar

21.Soliman, Y.M., Soliman, W.S. and Abbas, A.M. 2022. Alley Cropping and Organic Compost: An Efficient and Sustainable Agro-Ecological Strategy for Improving Turmeric (Curcuma longa L.) Growth and Attributes. Agriculture, 13(1): 149.

View at Google Scholar

22.Sreenivas, K., Sujatha, G., Mitran, T., Suresh, K.J.R., Ravisankar, T. and Rao, P.V.N. 2021. Decadal changes in land degradation status of India. Current Science, 121(4): 539-550.

View at Google Scholar

23.Swamy, H.M., Lokesh, G.B., Joshi, A.T., Patil, S.S. and Masthanreddy, B.G. 2018. A comparative economics of paddy-paddy and paddy-maize cropping system- A study from North Eastern Karnataka. Ecology Environment and Conservation, 24(February Suppl.): S138-S145.

View at Google Scholar

24.Tuti, M.D., Rapolu, M.K., Sreedevi, B., Bandumula, N., Kuchi, S., Bandeppa, S., Saha, S., Parmar, B., Rathod, S., Ondrasek, G. and Sundaram, R.M. 2022. Sustainable intensification of a Rice–Maize system through conservation agriculture to enhance system productivity in Southern India. Plants, 11(9): 1229.

View at Google Scholar

25.Wang, X., Ren, Y., Zhang, S., Chen, Y. and Wang, N. 2017. Applications of organic manure increased maize (Zea mays L.) yield and water productivity in a semi-arid region. Agricultural water management, 187: 88-98.

View at Google Scholar

26.Wing, C., Simon, K. and Bello-Gomez, R.A. 2018. Designing difference in difference studies: Best practices for public health policy research. Annual Review of Public Health, 39: 453–469.

View at Google Scholar

27.Yitbarek, M.B. 2019. Livestock and livestock product trends by 2050: Review. International Journal of Animal Research, 4(30): 1-20.

View at Google Scholar

@International Journal of Fermented Foods | Association with SASNET | Printed by New Delhi Publishers

65031792 - Visitors since April 13, 2019