Unfolding the feasibility of rabi cropping through soil moisture characterization in Sibsagar district ofAssam, India
DOI:
https://doi.org/10.53550/Keywords:
Field capacity, Readily available water, Soil available water, Wilting pointAbstract
Characterization of soil water retention properties coupled with feasibility of growing rabi crops during post kharif period were carried out in this study. Soil samples from profiles located at different physiography were collected. It was observed that water retention is high at the FC and minimum at PWP. Water retention study showed that the release behavior differed according to the soil texture. Bulk density was seen to be negatively correlated with 0.33 bar (-0.597**) and 15 bar (-0.637**). Clay hold significant and negative correlation with all the sand fractions and high positive and significant correlations with 0.33 bar (0.730**) and 15 bar (0.744**). Regression study showed that at 0.33 bar a maximum of 75.68% variability could be explained by bulk density, organic carbon parameters, silt, clay with some sand fractions whereas at 15 bar, bulk density, organic carbon and to a great extent clay played a key role to account for 74.5% variability. The total available water (TAW) and readily available water (RAW) for rabi crops like lentil, moong, bengal gram, sesame differed. The study indicated that light soils could supply water for a period of 10 to 13 days, medium soils for 29 to 33 days and heavy soils for 28 to 37 days. It was found that the light soils would suffer from severe water stress in the initial stage and the other soils at latter part of the growing periods causing failure of crops. Therefore, rabi cropping based on only AWC of soils would not be feasible during post kharif period in the district.
References
Agnihotri, Y. 1999. Trend analysis of some short term seasonal rainfall and crop planning in Shivalik Foothill region. Ind. J. Soil Cons 27(1):64-69.
Allen, R.G., Pereira, L.S. Raes, D. and Smith, M. 1998. Crop evapotranspiration: Guidelines for computing crop water requirements. Irr. and Drain. Paper56. UN-FAO, Rome, Italy.
Bhardwaj, A.K. and Bhagat, R.M. 2004. Soil water retention by an acid alfisol amended with Lantana camara on longterm basis. Ind. J. Soil Cons. 32 (1):72-73.
Brady, N.C. and Well, R.R. 2002. The Nature and Properties of Soils, Pearson Education (Singapore) Pvt. Ltd , Delhi, India. 1 Indian Edn . 960 p.
Chamuah, G.S., Gangopadhyay, S.K., Walia, C.S. and Baruah, U. 1996. Soils of Jorhat district: Physiography relationship. Agropedology, 6(2): 29-36.
Chand, M., Dushyant Kumar, Singh, D., Roy, N. and Singh, D.K. 2011.
Analysis of rainfall crop planning in Jhansi district of Bundelkhand zone of Uttar Pradesh. 39 (1): Ind. J. Soil Cons 20-26.
Das, T.H., Sarkar, D., Bera, R. and Gajbhiye, K.S. 2005. Water retention characteristics of some typical Inceptisols developed on alluvial plains ofDamodar catchment (part) ,West Bengal. Ind. J. Soil Cons. 32 (2):123-127.
Jakhar, P., H.C., Hombe, G., Naik, B.S. and Barman, D. 2011. Probablity analysis of rainfall characteristics of Semiliguda in Koraput, Orissa. 39(1): 9-13.
Jeetendra Kumar and Singh, A.K.P. 2008. Water retention characteristics and development of models for prediction of available water capacity of the soil. Ind. J. Soil Cons. 36 (3): 169-171.
Kaushal, R., Bhandari, A.R., Tripathi, D. and Sharma, J.C. 1996. Soil water retention characteristics of some soils under forests in temperate zone of the Himalayas. Ind. J. Soil Cons 44 (1): 9-12.
Mukesh,A., Kumar, D., Singh, D., Roy,N. and Singh, D.K. 2011. Analysis of rainfall for crop planning in Jhansi district of Bundelkhand zone of Uttar Pradesh. Ind. J. Soil Cons39(1): 20-26.
Molenaar, A. 1960. Irrigation by Sprinkler. FAO, Rome, 91p.
Richards, L.A. 1949. Methods of measuring soil moisture tension. Soil Sci., 68: 95-112.
Sharma, K.K. and Dubey, S.K. 2013. Probability analysis of rainfall for planning water harvesting and irrigation in semi arid region of Uttar Pradesh. Ind. J. Soil. Cons, 41(1): 14-19.
Singh, R. and Nayak, A.K. 1995. Water retention and transmission characteristics of Mahi Right Bank canal command area of Gujrat Ind. J. Soil. Cons., 47: 9-15.
Statistical Handbook of Assam .2007. Department of Agriculture, Govt of Assam, Guahati.
Subash, N., Singh, S.S. and Neha, P. 2012 Rainfall variability and its impact on change of cropping systems in Bihar. Ind. J. Soil. Cons, 40(1): 33-40.
Subudhi, C.R., Sahoo, M. and Senapati, S.C. 2012. Rainfall probability analysis for crop planning in Kandhamal district of Orissa, India Ind. J. Soil. Cons 40(3): 247-251.
Sushil Kumar, Sharma, J.C. and Sharma, I.P. 2002. Water retention characteristics and erodibility indices of some soils under different land uses in NorthWest Himalaya. Ind. J. Soil. Cons., 30 (1): 29-35.
Velayutham, M., Mandal, D.K., Mandal, C. and Sehgal, J.L. 1999. Agroecological sub regions of India for planning and development. NBSS &LUPPub. 35, Nagpur, India, 372 p.



