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Anil, A.S., Sharma, V.K., Jimenez-Ballesta, R., Parihar, C.M., Datta, S.P., Barman, M., Chobhe, K.A., Kumawat, C., Patra, A. & Jatav, S.S. 2022. Land. 11 (9). Article number 1488 https://doi.org/10.3390/land11091488
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Dey, A., Patel, S. & Singh, H.P. 2022. Pages 204-218. In. Kumar, P., Pandey, S.K., Singh, S.K., Singh, S.S. & Singh, V.K. (Eds.) Sustainable Agriculture Systems and Technologies. John Wiley & Sons. Chichester, UK. 376 pages. https://doi.org/10.1002/9781119808565.ch9
Kaduwal, S., Karki, T.B., Neupane, R., Bhattarai, R.K., Chaulagain, B., Ghimire, P., Gyawaly, P. & Das, S.K. 2022. Agronomy Journal of Nepal. 6 (1) 119-131. https://doi.org/10.3126/ajn.v6i1.47953
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This study aimed at analyzing runoff and soil erosion in a non-tilled field in comparison with a tilled field during the transition period from CT to CA in Italy. Runoff water volume was measured at each rainfall event, and the amount of sediment was quantified by drying the runoff samples. Two indices, runoff reduction benefits (RRB) and sediment reduction benefits (SRB), were computed. NT practices resulted in reductions of over 50% in runoff volumes and 50% to 95% in sediment losses. The average sediment concentration in NT was only 47% of CT. It would have been interesting to add with and without residue to see if this made a difference.