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Articles

Nitrogen retention capacity of paddy soil improved under long-term garlic-rice rotation

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Pages 27-33 | Received 02 Nov 2022, Accepted 09 Jan 2023, Published online: 23 Jan 2023

References

  • Abdelrhman AA, Gao L, Li S, Lu JJ, Song X, Zhang M, Zheng F, Wu H, Wu X. 2021. Long-term application of organic wastes improves soil carbon and structural properties in dryland affected by coal mining activity. Sustainability. 13:5686. doi:10.3390/su13105686.
  • Alberto MCR, Quilty JR, Buresh RJ, Wassmann R, Haidar S, Correa TQ, Sandro JM. 2014. Actual evapotranspiration and dual crop coefficients for dry-seeded rice and hybrid maize grown with overhead sprinkler irrigation. Agr Water Manage. 136:1–12. doi:10.1016/j.agwat.2014.01.005.
  • Bao SD. 2000. Soil agrochemical analysis. Beijing: China Agricultural Press.
  • Chen DJ, Jiang LN, Huang H, Toyota K, Dahlgren RA, Lu J. 2013a. Nitrogen dynamics of anaerobically digested slurry used to fertilize paddy fields. Biol Fert Soils. 49:647–659. doi:10.1007/s00374-012-0752-8.
  • Chen HH, Li XC, Hu F, Shi W. 2013b. Soil nitrous oxide emissions following crop residue addition: a meta-analysis. Global Change Biol. 19:2956–2964. doi:10.1111/gcb.12274.
  • Chen XP, Cui ZL, Fan MS, Vitousek P, Zhao M, Ma W, Wang Z, Zhang W, Yan X, Yang J, et al. 2014. Producing more grain with lower environmental costs. Nature. 514:486–489. doi:10.1038/nature13609.
  • Cameron KC, Di HJ, Moir JL. 2013. Nitrogen losses from the soil/plant system: a review. Ann Appl Biol. 162:145–173. doi:10.1111/aab.12014.
  • Duan Z, Xiao H. 2000. Effects of soil properties on ammonia volatilization. Soil Sci Plant Nutr. 46:845–852.
  • Gao SS, Xu P, Zhou F, Yang H, Zheng CM, Cao W, Tao S, Piao SL, Zhao Y, Ji XY. 2016. Quantifying nitrogen leaching response to fertilizer additions in China’s cropland. Environ Pollut. 211:241–251. doi:10.1016/j.envpol.2016.01.010.
  • Heffer P. 2009. Assesment of fertilizer use by crop at the global level 2006/07-2007/08. Paris: IFA.
  • Kuypers MMM, Marchant HK, Kartal B. 2018. The microbial nitrogen-cycling network. Nat Rev Microbiol. 16:263–226. doi:10.1038/nrmicro.2018.9.
  • Ladha JK, Dawe D, Pathak H, Padre A, Yadav RL, Singh B, Singh Y, Singh P, Kundu AL, Sakal R, et al. 2003. How extensive are yield declines in long-term rice–wheat experiments in Asia? Field Crops Res. 81:159–180. doi:10.1016/S0378-4290(02)00219-8.
  • Li YL, Kronzucker HJ, Shia WM. 2016. Microprofiling of nitrogen patches in paddy soil: analysis of spatiotemporal nutrient heterogeneity at the microscale. Sci Rep. 6:27064. doi:10.1038/srep27064.
  • Li MN, Wang YL, Adeli A, Yan HJ. 2018. Effects of application methods and urea rates on ammonia volatilization, yields and fine root biomass of alfalfa. Field Crop Res. 218:115–125. doi:10.1016/j.fcr.2018.01.011.
  • Li Z, Zeng Z, Tian D, Wang J, Wang B, Chen HYH, Quan Q, Chen W, Yang J, Meng C, et al. 2020. Global variations and controlling factors of soil nitrogen turnover rate. Earth-Sci Rev. 207:103250. doi:10.1016/j.earscirev.2020.103250.
  • Liu Y, Wang KK, Liao SP, Ren T, Li XK, Cong RH, Lu JW. 2022a. Differences in responses of ammonia volatilization and greenhouse gas emissions to straw return and paddy-upland rotations. Environ Sci Pollut Res. 29:25296–25307. doi:10.1007/s11356-021-17239-2.
  • Liu SW, Wang M, Yin M, Chu G, Xu C, Zhang X, Abliz B, Tang C, Wang D, Chen S. 2022b. Fifteen years of crop rotation combined with straw management alters the nitrogen supply capacity of upland-paddy soil. Soil Till Res. 215:105219. doi:10.1016/j.still.2021.105219.
  • Luo W, Qian L, Liu W, Zhang X, Wu Z. 2021. A potential Mg-enriched biochar fertilizer: excellent slow-release performance and release mechanism of nutrients. Sci Total Environ. 768:144454. doi:10.1016/j.scitotenv.2020.144454.
  • Nishida M. 2016. Decline in fertility of paddy soils induced by paddy rice and upland soybean rotation, and measures against the decline. Jpn Agr Res Q. 50:87–94. doi:10.6090/jarq.50.87.
  • Rahman MS, Islam MR. 2009. Effects of pH on isotherms modeling for Cu(II) ions adsorption using maple wood sawdust. Chem Eng J. 149:273–280. doi:10.1016/j.cej.2008.11.029.
  • Turmel MS, Speratti A, Baudron F, Verhulst N, Govaerts B. 2015. Crop residue management and soil health: a systems analysis. Agric Syst. 134:6–16. doi:10.1016/j.agsy.2014.05.009.
  • Wang ZH, Liu XJ, Ju XT, Zhang FS, Malhi SS. 2004. Ammonia volatilization loss from surface-broadcast urea: comparison of vented- and closed-chamber methods and loss in winter wheat–summer maize rotation in north China plain. Commun Soil Sci Plant. 35:2917–2939. doi:10.1081/CSS-200036499.
  • Zhang HL, Lal R, Zhao X, Xue JF, Chen F. 2014. Chapter one-opportunities and challenges of soil carbon sequestration by conservation agriculture in China. Adv Agron. 124:1–36. doi:10.1016/B978-0-12-800138-7.00001-2.
  • Zhang WZ, Chen XQ, Wang HY, Wei WX, Zhou JM. 2022. Long-term straw return influenced ammonium ion retention at the soil aggregate scale in an Anthrosol with rice-wheat rotations in China. J Integr Agr. 21:521–531. doi:10.1016/S2095-3119(20)63592-4.
  • Zhao BQ, Li XY, Liu H, Wang BR, Zhu P, Huang SM, Bao DJ, Li YT, So HB. 2011. Results from long-term fertilizer experiments in China: the risk of groundwater pollution by nitrate. NJAS-Wagen J Life Sci. 58:177–183. doi:10.1016/j.njas.2011.09.004.
  • Zhao ZX, Wang XY, Tian YJ, Wang R, Peng Q, Cai HJ. 2022. Effects of straw returning on soil ammonia volatilization under different production conditions based on meta-analysis. Environ Sci. 43:1678–1687. doi:10.13227/j.hjkx.202107086.
  • Zheng H, Huang H, Zhang G, Li J. 2016. National-scale paddy-upland rotation in Northern China promotes sustainable development of cultivated land. Agr Water Manage. 170:20–25. doi:10.1016/j.agwat.2016.01.009.
  • Zhu, Z.L., 1985. Progress in the study of soil nitrogen supply and fate of fertilizer nitrogen in China. Soil. 17:2–9. https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=cjfd1985&filename=tura198506009&dbcode=cjfq.
  • Zhou W, Wang T, Fu Y, Yang Z, Liu Q, Yan F, Chen Y, Tao Y, Malik N, Ren W. 2020. Residual nitrogen from preceding garlic crops is important for double-cropped rice. Nutr Cycl Agroecosyst. 118:311–324. doi:10.1007/s10705-020-10099-1.
  • Zhou Y, Xu L, Xu Y, Xi M, Tu D, Chen J, Wu W. 2021. A meta-analysis of the effects of global warming on rice and wheat yields in a rice–wheat rotation system. Food Energy Secur. 10. doi:10.1002/fes3.316.