Abbaspoor, F., Asghari, H. R., Rezvani Moghadam, P., Abbas Dokht, H., & Shabahang, J. (2018). Biochar and fertilizer effects on some soil properties and yield and quality characteristics of Nigella sativa L under water shortage. Water Research in Agriculture, 32(3), 441-457. https://dio.org/10.22092/jwra.2018.117801
Allen, R. G., Pereira, L. S., Raes, D., & Smith, M. (1998). Crop evapotranspiration-Guidelines for computing crop water requirements-FAO irrigation and drainage paper 56. Fao, Rome, 300(9), D05109.
Doan, T. T., Ngo, P. T., Rumpel, C., Van Nguyen, B., & Jouquet, P. (2013). Interactions between compost, vermicompost and earthworms influence plant growth and yield: A one-year greenhouse experiment. Scientia Horticulturae, 160, 148-154. https://dio.org/10.1016/j.scienta.2013.05.042
Helmers, M., Abendroth, L., Reinhart, B., Chighladze, G., Pease, L., Bowling, L., & Brown, L. (2022). Impact of controlled drainage on subsurface drain flow and nitrate load: A synthesis of studies across the US Midwest and Southeast. Agricultural Water Management, 259, 107265. https://dio.org/10.1016/j.agwat.2021.107265
Javani Jooni, H., Liaghat, A., Hassanoghli, A., & Nazari, B. (2018). The effect of controlled drainage on the discharge, drainage water level, and water productivity in the Moghan plain. Iran Water Research, 49(1), 207-219.https://dio.org/10.22059/ijswr.2018.234990.667691
Jia, Z., Luo, W., Fang, Sh., Wang, N., & Wang, L. (2006). Evaluating current drainage practices and feasibility of controlled drainage in the YinNan irrigation district, China. Agricultural Water Management, 84, 20-26.
Khademi, A., Fekri, M., Naseri, A., &Mahmoodabadi, M. (2018). The effect of different pistachio wastes biochar application on some fertility properties of a loam soil. Iranian Journal of Soil and Water Research, 50(1), 231-246. 10.22059/ijswr.2018.244637.66778
Li, J. H., Lv, G. H., Bai, W. B., Liu, Q., Zhang, Y. C., & Song, J. Q. (2016). Modification and use of biochar from wheat straw (Triticum aestivum L.) for nitrate and phosphate removal from water. Desalination and Water Treatment, 57(10), 4681-4693. https://dio.org/10.1080/19443994.2014.994104
Laird, D. A., Fleming, P., Wang, B., Horton, R., & Karlen, D. L. (2010). Biochar impact on nutrient leaching from a Midwestern agricultural soil. Geoderma, 158(3–4), 436–442.
Liang, B., Lehmann, J., Solomon, D., Kinyangi, J., Grossman, J., O'Neill, B., Skjemstad, J. O., Thies, J., Luizão, F. J., Petersen, J., & Neves, E. G. (2006). Black carbon increases cation exchange capacity in soils. Soil Science Society of America Journal, 70(5), 1719-1730.
Nozari, H., & Azadi, S. (2019). Experimental evaluation of artificial neural network for predicting drainage water and groundwater salinity at various drain depths and spacing. Neural Computing and Applications, 31(6), 1797–1809. https://doi.org/10.1007/s00521-017-3155-9
Ouyang, L., Wang, F., Tang, J., Yu, L., & Zhang, R. (2013). Effects of biochar amendment on soil aggregates and hydraulic properties. Journal of Soil Science and Plant Nutrition, 13(4), 991–1002. https://dio.org/10.4067/S0718-95162013005000078
Ross, J. A., Herbert, M. E., Sowa, S. P., Frankenberger, J. R., King, K. W., Christopher, S. F., Tank, J. L., Arnold, J. G., White, M. J., & Yen, H. (2016). A synthesis and comparative evaluation of factors influencing the effectiveness of drainage water management. Agricultural Water Management, 178, 366-376. 10.1016/j.agwat.2016.10.011
Rozemeijer, J. C., Visser, A., Borren, W., Winegram, M., Van der Velde, Y., Klein, J., & Broers, H. P. (2016). High-frequency monitoring of water fluxes and nutrient loads to assess the effects of controlled drainage on water storage and nutrient transport. Hydrology and Earth System Sciences, 2, 347-358. 10.5194/hess-20-347-2016
Shen, Y., Yin, J., Huang, Y., & Cheng, H. (2018). Influence of biochar application on soil nitrogen and phosphorus leaching in the red soil area. Acta Ecologica Sinica,38(6), 2007-2016.
Skaggs, R. W., Fausey, N. R., & Evans, R. O. (2012). Drainage water management. Journal of Soil and Water Conservation, 62(6), 167A-172A.
Sohi, S. P., Krull, E., Lopez-Capel, E., & Bol, R. (2010). A review of biochar and its use and function in soil. In Advances in agronomy (Vol. 105, pp. 47–82). Elsevier.
Sun, Z., Bruun, E. W., Arthur, E., De Jonge, L. W., Moldrup, P., Hauggaard-Nielsen, H., & Elsgaard, L. (2014). Effect of biochar on aerobic processes, enzyme activity, and crop yields in two sandy loam soils. Biology and Fertility of Soils, 50, 1087-1097. https://dio.org/10.1007/s00374-014-0928-5.
Wang, Z., Shao, G., Lu, J., Zhang, K., Gao, Y., & Ding, J. (2020). Effects of controlled drainage on crop yield, drainage water quantity and quality: A meta-analysis. Agricultural Water Management, 239, 106267. https://dio.org/10.1016/j.agwat.2020.106253
Wesström, I., Joel, A., & Messing, I. (2014). Controlled drainage and subirrigation–A water management option to reduce non-point source pollution from agricultural land. Agriculture, Ecosystems & Environment, 198, 74-82. https://dio.org/10.1016/j.agee.2014.03.017
Yao, Y., Gao, B., Zhang, M., Inyang, M., & Zimmerman, A. R. (2012). Effect of biochar amendment on sorption and leaching of nitrate, ammonium, and phosphate in a sandy soil. Chemosphere, 89(11), 1467-1471.
Zhang, A. P., Liu, R. L., Gao, J., Zhang, Q. W., Xiao, J. N., Chen, Z., & Yang, L. Z. (2014). Effects of biochar on nitrogen losses and rice yield in anthropogenic-alluvial soil irrigated with yellow river water. Journal of Agro-Environment Science, 33(12), 2395-2403.
Zhang, X., Xu, X., Zhang, B., Qi, Y., & Wang, J. (2010). Effects of biochar amendment on soil quality, crop yield and greenhouse gas emission in a Chinese rice paddy: A field study. Soil Use and Management, 26(4), 414-419.