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Jia, Y., Sun, Y., Zhang, D., Yang, W., Pang, J., Siddique, K.H.. & Qu, Z. 2025. Agronomy-Basel. 15 (5) Article 1007. https://doi.org/10.3390/agronomy15051007
Khosa, M.K., Barik, K., Aksakal, E., Jahangir, Md MR., Didenko, N.O. & Islam, K.R. 2025. Plos One. 20 (5) Article e0322891. https://doi.org/10.1371/journal.pone.0322891
Tan, J., Si, B., Zhao, Y., Lu, Y., Chen, Y., An, N., Li, S., Wang, W., Fu. H., Han, W. & Yi, Y. 2025. Soil and Tillage Research. 253. Article 106677. https://doi.org/10.1016/j.still.2025.106677
Saha, P., Das, T.K., Singh, R., Raj, R., Mahanta, D., Bhatia, A., Shukla, L., Meena, M.C., Sen, S., Roy, A., Gunturi, A. & Sharma, T. 2025. Indian Journal of Agricultural Sciences. 95 (4) 451-456. https://doi.org/10.56093/ijas.v95i4.152847
Sá, J.C de M., Lal, R., Lorenz, K., Bajgai, Y., Gavilan, C., Ferreira, A de O., Briedis, C., Inagaki, T.M., Gonçalves, D.R.P. & Bortoluzzi, J.K. Science of The Total Environment. 1004. Article 180720 https://doi.org/10.1016/j.scitotenv.2025.180720
Mitchell, J.P., Jackson, L.E., Reicosky, D.C., Kassam, A., Shrestha, A., Harben, R., Miyao, E.M., Scow, K.M., Sposito, G. et. al., (+34 others). 2025. Journal of Environmental Quality. 54 (5) 1288-1305. https://doi.org/10.1002/jeq2.70039
Sadiq, F.K., Anyebe, O., Tanko, F., Abdulkadir, A., Manono, B., Matsika, T.A., Abubakar, F. & Bello, S.K. 2025. Soil Systems. 9. Article 103. https://doi.org/10.3390/soilsystems9030103
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Fagodiya, R.K., Verma, K., Sharma, G., Rai, A.K., Prajapat, K., Singh, R., Sheoran, P., Basak, N., Chandra, P., Sharma, D.P., Yadav, R.K. & Biswas, A.K. 2025. Soil and Tillage Research. 254. Article 106697. https://doi.org/10.1016/j.still.2025.106697
Madzivanzira, T., Mvumi, B.M., Nazare, R.M., Nyakudya, E., Mtambanengwe, F. & Mapfumo, P. 2025.Advances in Agriculture. 1. Article 4837619. https://doi.org/10.1155/aia/4837619
Zhou, Y., Ferdinand, M.S., van Wesemael, J., Dvorakova, K., Baret, P.V., Van Oost, K. & van Wesemael, B. 2025. Remote Sensing of Environment. 328. Article 114858. https://doi.org/10.1016/j.rse.2025.114858
Kim, D.H., Wade, T., Brym, Z., Ogisma, L., Bhattarai, R., Bai, X., Bhadha, J. & Her, Y. 2025. Journal of Environmental Management. 387. Article 125833. https://doi.org/10.1016/j.jenvman.2025.125833
de Andrade, H.A.F., Sagrilo, E., de Oliveira, Jr., J.O.L., de Sousa, D.C., Costa, C.P.M., Costa, P.M., Araujo Neto, R.B. et al. (6 more) 2025. Agronomy-Basel 15 (5) Article 1083. https://doi.org/10.3390/agronomy15051083
Algarin, C.A.V., Thiengo, C.C., Cherubin, M.R., Bieluczyk, W., Mariano, E., Amorim, D.J., Franco, M.F.S., Gonzalez, A.C. & Lavres, J. 2025. Soil Advances. 4. Article 100084 https://doi.org/10.1016/j.soilad.2025.100084
Kasrija, L., Hui, D., Ray, A., Ren, W., Wang, L., Fay, P.A., Smith, D.R., Li, J., Illukpitiya, P. & Tian, H. 2025. Field Crops Research. 334. Article 110167. https://doi.org/10.1016/j.fcr.2025.110167
Schreefel, L., Steenman, E., Adler, F., Buffara, R., Freundt, S., DeClerck, F., Duncan, J., Giller, K.E., Koster, H. & van Zanten, H.H.E. njp Sustainable Agriculture. 3 (1) Article 59. https://doi.org/10.1038/s44264-025-00100-1
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This article from China looks at disc coulters as effective tools for managing maize residues in CA. A maize residue interaction model was developed and validated against field test results. Experiments looked at and disc and tilt angle for wavy, notched and plain disc coulters. Four measures included draft force (FD), soil disturbance area (ASoil), flat residue-cutting efficiency (RFC) and standing residue cutting efficiency (RSC). Increasing disc angle had a significant positive effect on FD and Asoil while resulting in higher RFC and RSC. The optimal angle of the three disc types were determined and reported in this paper. The wavy disk was suggested as the preferred choice. since it had higher RFC and RSC values.