1,962
Views
62
CrossRef citations to date
0
Altmetric
Reviews

Classification research and types of slow controlled release fertilizers (SRFs) used - a review

, , , &
Pages 2219-2230 | Received 20 Dec 2017, Accepted 17 May 2018, Published online: 01 Aug 2018

References

  • Adotey, N., M. Kongchum, J. Li, G. B. Whitehurst, E. Sucre, and D. L. Harrell. 2017. Ammonia volatilization of zinc sulfate-coated and NBPT-treated urea fertilizers. Agronomy Journal 109 (6):2918–26. doi:10.2134/agronj2017.03.0153.
  • Allen, S. E. 1984. Slow-release nitrogen fertilizers. In Nitrogen in crop production. American Society of Agronomy, ed. R. D. Hauck, 195–206. Madison, WI: Crop Science Society of America, and Soil Science Society of America.
  • Azeem, B., K. Kushaari, Z. B. Man, A. Basit, and T. H. Thanh. 2014. Review on materials & methods to produce controlled release coated urea fertilizer. Journal of Controlled Release 181:11–21.
  • Chawakitchareon, P., R. Anuwattana, and J. Buates. 2016. Production of slow release fertilizer from waste materials. Advanced Materials Springer International Publishing. 83(4):534–40.
  • Chen, J. P. 2012. Preparation and properties of clay/polyacrylic acid (potassium polyacrylate) used for controlled or slow-release fertilizer. [M.D.Dissertation] Heifei University of Technology. 1–52. (Chinese)
  • Chen, S. L., M. Yang, C. Ba, S. S. Yu, Y. F. Jiang, H. T. Zou, and Y. L. Zhang. 2018. Preparation and characterization of slow-release fertilizer encapsulated by biochar-based waterborne copolymers. Science of the Total Environment 615:431–37. doi:10.1016/j.scitotenv.2017.09.209.
  • Chen, X., Z. W. Liao, X. Y. Mao, and D. H. Wang. 2009. Technology and effect of controlled-release fertilizer through physical-biochemical composite approaches. Journal of Huazhong Agricultural University 28 (3):300–05. (Chinese).
  • Cheng, Q. 2017. Effect of Real and Simulated Traffic on Coated Fertilizer Prill Integrity and Nitrogen Release, 1–71. Alabama: Auburn University.
  • Chien, S. H., L. I. Prochnow, and H. Cantarella. 2009. Recent developments of fertilizer production and use to improve nutrient efficiency and minimize environmental impacts. Advances in Agronomy 102:267–322.
  • Chorianopoulou, S. N., G. I. Saridis, P. Sigalas, M. Margetis, D. Benardos, H. Mavrogiannis, and D. L. Bouranis. 2017. The Application of S°-Coated Fertilizer to Durum Wheat Crop. In Sulfur metabolism in higher plants-fundamental, environmental and agricultural aspects. Proceedings of the International Plant Sulphur Workshop; De Kok, L. J., Rennenberg, H., Hawkesford, M. J., Eds. Springer International Publishing: Cham, Switzerland, pp. 115–121.. doi:10.1007/978-3-319-56526-2_11
  • Choudhury, A. T. M. A., and I. R. Kennedy. 2005. Nitrogen fertilizer losses from rice soils and control of environmental pollution problems. Communications in Soil Science & Plant Analysis 36 (11–12):1625–39. doi:10.1081/CSS-200059104.
  • Emilsson, T., J. C. Berndtsson, J. E. Mattsson, and K. Rolf. 2007. Effect of using conventional and controlled release fertiliser on nutrient runoff from various vegetated roof systems. Ecological Engineering 29 (3):260–71. doi:10.1016/j.ecoleng.2006.01.001.
  • Fan, L. T., and S. K. Singh. 1990. Controlled release - A quantitative treatment. Berlin: Springer-Verlag.
  • Faria, L. D. A., C. A. C. D. Nascimento, G. R. Bardella, T. A. D. Moura, F. L. Mendes, and G. C. Vitti. 2016. NH3 volatilization from urea-NBPT in eucalyptus. Communications in Soil Science & Plant Analysis 47 (6):769–74. doi:10.1080/00103624.2016.1146892.
  • Frame, W. H., M. M. Alley, G. B. Whitehurst, B. M. Whitehurst, and R. Campbell. 2012. In vitro evaluation of coatings to control ammonia volatilization from surface-applied urea. Agronomy Journal 104 (5):1201–07. doi:10.2134/agronj2012.0009.
  • Gabrielson, K. D., S. L. Wertz, D. R. Bobeck, and A. R. Sutton. 2017. Compositions of urea formaldehyde particles and methods of making thereof. US009682894B2.
  • Gambash, S., M. Kochba, and Y. Avnimelech. 1990. Studies on slow-release fertilizers: II. A method for evaluation of nutrient release rate from slow-releasing fertilizers. Soil Science 150 (1):446–50. doi:10.1097/00010694-199007000-00007.
  • Giroto, A. S., G. G. Guimarães, M. Foschini, and C. Ribeiro. 2017. Role of slow-release nanocomposite fertilizers on nitrogen and phosphate availability in soil. Scientific Reports 7 (46032):1–11. doi:10.1038/s41598-016-0028-x.
  • Guo, C., P. Li, J. Lu, T. Ren, R. Cong, and X. Li. 2016. Application of controlled-release urea in rice: Reducing environmental risk while increasing grain yield and improving nitrogen use efficiency. Communications in Soil Science and Plant Analysis 47 (9):1176–83. doi:10.1080/00103624.2016.1166235.
  • Habala, L., S. Varényi, A. Bilková, P. Herich, J. Valentová, J. Kožíšek, and F. Devínsky. 2016. Antimicrobial Activity and Urease Inhibition of Schiff Bases Derived from Isoniazid and Fluorinated Benzaldehydes and of Their Copper(II) Complexes. Molecules 21:1742. doi:10.3390/molecules21121742.
  • Hansen, L. I. 1966. Slow release fertilizer granule having a plurality of urethane resin coatings US3264089A.
  • Hauck, R. D. 1985. Slow-release and bioinhibitor-amended nitrogen fertilizers. Engelstad OP (Ed) Fertilizer Technology and Use 3:293–322.
  • Hou, J., Y. Dong, and Z. Fan. 2014. Effects of coated urea amended with biological inhibitors on physiological characteristics, yield, and quality of peanut. Communications in Soil Science & Plant Analysis 45 (7):896–911. doi:10.1080/00103624.2013.874024.
  • Hou, J., Y. Dong, G. Li, Z. Fan, and S. Liu. 2011. N-release Characteristics of coated compound fertilizers added by nitrification inhibitor and their effects on chinese cabbage. Journal of Soil and Water Conservation 25:250–53. (Chinese).
  • Huérfano, X., . S., M. M. Menéndez, M. B. Bolaños-Benavides, J. M. González-Moro, C. Estavillo, and González-Murua. 2016. The nitrification inhibitor 3,4-dimethylpyrazole phosphate decreases leaf nitrate content in lettuce while maintaining yield and N2O emissions in the Savanna of Bogotá. Plant Soil and Environment 62:533–39. doi:10.17221/105/2016-PSE.
  • Ikeda, S., K. Suzuki, M. Kawahara, M. Noshiro, and N. Takahashi. 2014. An assessment of urea-formaldehyde fertilizer on the diversity of bacterial communities in onion and sugar beet. Microbes & Environments 29:231–34. doi:10.1264/jsme2.ME13157.
  • Irfan, S., R. Razali, K. Z. Kushaari, and N. Mansor. 2017. Reaction-Multi diffusion model for nutrient release and autocatalytic degradation of PLA-coated controlled-release fertilizer. Polymers 9:111–23. doi:10.3390/polym9030111.
  • Jiang, J. Y., and Y. L. Fu. 2013. Prospect for physical type slow/controlled release fertilizers. World Journal of Forestry 2:35–39. ( (Chinese)) doi:10.12677/WJF.2013.24007.
  • Jin, Y. Y., R. F. Sun, Y. Su, J. Xu, S. Zhao, and X. B. Cheng. 2016. Research status of coated slow- and controlled-release fertilizers at home and abroad[J]. Vegetables 9:40–44. (Chinese).
  • Kasmaei, L. S., and M. Fekri. 2012. Application of Cu fertilizer on Cu recovery and desorption kinetics in two calcareous soils. Environmental Earth Sciences 67:2121–27. doi:10.1007/s12665-012-1652-9.
  • Kottegoda, N., C. Sandaruwan, G. Priyadarshana, A. Siriwardhana, U. A. Rathnayake, D. M. Berugoda Arachchige, A. R. Kumarasinghe, D. Dahanayake, V. Karunaratne, and G. A. Amaratunga. 2017. Urea-hydroxyapatite nanohybrids for slow release of nitrogen. ACS Nano 11 (2):1214–21. doi:10.1021/acsnano.6b07781.
  • Li, D. P., Z. J. Wu, and C. H. Liang. 2010. Nitrogen release characteristics of coated urea amended with biological inhibitors in meadow brown soil. Plant Nutrition & Fertilizer Science 16 (1):214–18. (Chinese).
  • Li, D. P., Z. J. Wu, and C. H. Liang. 2011. Traits of urea nitrogen release from starch acetate coated urea and amended with biological inhibitors in meadow brown soil. Chinese Journal of Soil Science 42:1376–81. (Chinese).
  • Li, Y. M., Y. X. Sun, S. Q. Liao, G. Y. Zou, T. K. Zhao, Y. H. Chen, J. G. Yang, and L. Zhang. 2017. Effects of two slow-release nitrogen fertilizers and irrigation on yield, quality, and water-fertilizer productivity of greenhouse tomato. Agricultural Water Management 186:139–46. doi:10.1016/j.agwat.2017.02.006.
  • Liu, Y. Y. 2012. The preparation of new coated slow-release fertilizer and properties study. [M.D.Dissertation] Nanjing University of Science & Technology. 1–55. (Chinese)
  • Malhi, S. S., E. Oliver, G. Mayerle, G. Kruger, and K. S. Gill. 2003. Improving effectiveness of seedrow-placed urea with urease inhibitor and polymer coating for durum wheat and canola. Communications in Soil Science & Plant Analysis 34 (11–12):1709–27. doi:10.1081/CSS-120021307.
  • Meena, B. P., K. Ramesh, S. Neenu, P. Jha, and I. Rashmi. 2017. Controlled Release fertilizers for improving nitrogen use efficiency, 59–79. New Delhi: New India Publishing Agency.
  • Naz, M. Y., and S. A. Sulaiman. 2016. Slow release coating remedy for nitrogen loss from conventional urea: A review. Journal of Controlled Release 225:109–20. doi:10.1016/j.jconrel.2016.01.037.
  • Ni, B., M. Liu, S. Lü, L. Xie, and Y. Wang. 2011. Environmentally friendly slow-release nitrogen fertilizer. Journal of Agricultural & Food Chemistry 59:10169–75. doi:10.1021/jf202131z.
  • Ni, X. Y., Y. J. Wu, Z. Y. Wu, L. Wu, G. N. Qiu, and L. X. Yu. 2013. A novel slow-release urea fertiliser: Physical and chemical analysis of its structure and study of its release mechanism. Biosystems Engineering 115:274–82. doi:10.1016/j.biosystemseng.2013.04.001.
  • Oertli, J. J. 1980. Controlled-release fertilizers. Fertilizer Research 1 (2):103–23. doi:10.1007/BF01073182.
  • Oertli, J. J., and O. R. Lunt. 1962. Controlled Release of Fertilizer Minerals by Incapsulating Membranes: I. Factors Influencing the Rate of Release. Soil Science Society of America Journal 26:579–83. doi:10.2136/sssaj1962.03615995002600060019x.
  • Pan, L., C. F. Wang, K. Yan, K. D. Zhao, G. H. Sheng, H. L. Zhu, X. L. Zhao, D. Qu, F. Niu, and Z. L. You. 2016. Synthesis, structures and helicobacter pylori urease inhibitory activity of copper(II) complexes with tridentate aroylhydrazone ligands. Journal of Inorganic Biochemistry 159:22–28. doi:10.1016/j.jinorgbio.2016.02.017.
  • Pengthamkeerati, P., and A. Modtad. 2016. Nitrification Inhibitor Effects on Nitrous Oxide Emission, Nitrogen Transformation, and Maize (Zea mays L.) Yield in Loamy Sand Soil in Thailand. Communications in Soil Science and Plant Analysis 47 (7):875–87. doi:10.1080/00103624.2016.1159314.
  • Qiao, D., H. Liu, L. Yu, X. Bao, G. P. Simon, E. Petinakis, and L. Chen. 2016. Preparation and characterization of slow-release fertilizer encapsulated by starch-based superabsorbent polymer. Carbohydrate Polymers 147:146–54. doi:10.1016/j.carbpol.2016.04.010.
  • Ross, H. M. K., A. B. Middleton, P. G. Pfiffner, and E. Bremer. 2010. Evaluation of polymer-coated urea and urease inhibitor for winter wheat in southern Alberta. Agronomy Journal 102 (4):1210–16. doi:10.2134/agronj2009.0194.
  • Sabahi, H., A. H. Rezayan, S. Sadeghi, and S. Jamehdor. 2014. Study the N turnover of legume seed meals for designing a slow-release nitrogen fertilizer. Communications in Soil Science & Plant Analysis 45 (10):1325–35. doi:10.1080/00103624.2013.875198.
  • Saha, B. K., M. T. Rose, V. Wong, T. R. Cavagnaro, and A. F. Patti. 2017. Hybrid brown coal-urea fertiliser reduces nitrogen loss compared to urea alone. Science of the Total Environment 601-602:1496–504. doi:10.1016/j.scitotenv.2017.05.270.
  • Sahrawat, K. L. 1995. Forms, Properties and dissolution of controlled-release nitrogenous fertilisers. Fertiliser News 40:41–46. doi:10.1007/BF00749519.
  • Sazzad, M. H., M. T. Islam, and F. Chowdhury. 2013. A Review & Outlook of Slow-Release Fertilizer, 1–156. Germany: LAP LAMBERT Academic Publishing. ISBN: 978-3659415074.
  • Sempeho, S. I., H. T. Kim, E. Mubofu, and A. Hilonga. 2014. Meticulous Overview on the Controlled Release Fertilizers. Advances in Chemistry (1):1–16. doi:10.1155/2014/363071.
  • Sharrock, P., M. Fiallo, A. Nzihou, and M. Chkir. 2009. Hazardous animal waste carcasses transformation into slow release fertilizers. Journal of Hazardous Materials 167 (1):119–23. doi:10.1016/j.jhazmat.2008.12.090.
  • Shaviv, A. 2001. Advances in controlled-release fertilizers. Advances in Agronomy 71 (1):1–49.
  • Shaviv, A., and R. L. Mikkelsen. 1993. Controlled-release fertilizers to increase efficiency of nutrient use and minimize environmental degradation-A review. Fertilizer Research 35:1–12. doi:10.1007/BF00750215.
  • Shen, Y. Z., C. W. Du, J. M. Zhou, and F. Ma. 2015. Modeling nutrient release from swelling polymer-coated urea. Applied Engineering in Agriculture 31 (2):247–54.
  • Sokmen, B. B., N. Gumrukcuoglu, S. Ugras, H. Sahin, Y. Sagkal, and H. I. Ugras. 2015. Synthesis, antibacterial, antiurease, and antioxidant activities of some new 1,2,4-triazole Schiff base and amine derivatives. Applied Biochemistry & Biotechnology 175:705–14. doi:10.1007/s12010-014-1307-2.
  • Strategic Report. 2017. Controlled Release Fertilizers Market: Global Market Estimation, Dynamics, Regional Share, Trends, Competitor Analysis 2012 to 2016 and Forecast 2017 to 2023. Precision Business Insights (PBI). 1–209. London, England. website: www.precisionbusinessinsights.com
  • Tian, Z., J. J. Wang, S. Liu, Z. Zhang, S. K. Dodla, and G. Myers. 2015. Application effects of coated urea and urease and nitrification inhibitors on ammonia and greenhouse gas emissions from a subtropical cotton field of the Mississippi delta region. Science of the Total Environment 533:329–38. doi:10.1016/j.scitotenv.2015.06.147.
  • Timilsena, Y. P., R. Adhikari, P. Casey, T. Muster, H. Gill, and B. Adhikari. 2015. Enhanced efficiency fertilisers: A review of formulation and nutrient release patterns. Journal of the Science of Food and Agriculture 95 (6):1131–42. doi:10.1002/jsfa.6812.
  • Torrisi, B., A. Trinchera, E. Rea, M. Allegra, G. Roccuzzo, and F. Intrigliolo. 2013. Effects of organo-mineral glass-matrix based fertilizers on citrus Fe chlorosis. European Journal of Agronomy 44:32–37. doi:10.1016/j.eja.2012.07.007.
  • Treinyte, J., V. Grazuleviciene, R. Paleckiene, J. Ostrauskite, and L. Cesoniene. 2017. Biodegradable Polymer Composites as Coating Materials for Granular Fertilizers. Journal of Polymers & the Environment 25:1–12.
  • Trenkel, M. E. 2010. Slow- and Controlled-Release and Stabilized Fertilizers: An Option for Enhancing Nutrient Use Effciency in Agriculture, 1–133. Paris,France: International Fertilizer Industry Association (IFA).
  • Wang, C. Y. 2009. Syntheses, crystal structures, and urease inhibitory properties of copper(II) and zinc(II) complexes with 2-bromo-4-chloro-6-[(2-dimethylaminoethylimino)methyl]phenol. Journal of Coordination Chemistry 62 (17):2860–68. doi:10.1080/00958970902946702.
  • Wang, Q., Y. L. Wang, J. L. Guo, C. X. Guo, and Z. P. Yang. 2016a. Release of sulfur coated urea in mild saline-alkali soil and study of its fertilizer efficiency. Acta Agriculturae Boreali-Sinica 31:182–87. (Chinese).
  • Wang, X. G., S. Y. Lü, C. M. Gao, X. B. Xu, X. J. Zhang, X. Bai, M. Z. Liu, and L. Wu. 2014. Highly efficient adsorption of ammonium onto palygorskite nanocomposite and evaluation of its recovery as a multifunctional slow-release fertilizer. Chemical Engineering Journal 252:404–14. doi:10.1016/j.cej.2014.04.097.
  • Wang, X. W., J. L. Kuai, J. H. Yu, and X. J. Liu. 2016b. Effects of controlled/slow-released nitrogen fertilizers on physiological characteristics and quality of melon under substrate cultivation. Journal of Plant Nutrition and Fertilizer 22:847–54. (Chinese).
  • Wang, Y., M. Liu, B. Ni, and L. Xie. 2012. κ-Carrageenan–Sodium alginate beads and superabsorbent coated nitrogen fertilizer with slow-release, water-retention, and anticompaction properties. Industrial & Engineering Chemistry Research 51:1413–22. doi:10.1021/ie2020526.
  • White, D. P. 1965. Survival, growth, and nutrient uptake by Spruce and Pine seedlings as affected by slow-release fertilizer materials, In Forest-Soil Relationships in North America, ed. C. T. Youngberg,  47–63. Corvallis: Oregon State University Press.
  • Woerther, C. J. 1963. Lakeland, Fla, assignor to International Minerals & Chemical Corporation, a corporation of New York. Process for preparing slow release fertilizer composition. US 3096171A.
  • Yamamoto, C. F., E. I. Pereira, L. H. C. Mattoso, T. Mattoso, and C. Ribeiro. 2016. Slow release fertilizers based on urea/urea–Formaldehyde polymer nanocomposites. Chemical Engineering Journal 287:390–97. doi:10.1016/j.cej.2015.11.023.
  • Yang, H. Z., G. L. Zheng, H. L. Liu, Q. H. Lin, and W. Luo. 2016. Types of slow/controlled release fertilizer and its quality evaluation method. Chinese Journal of Tropical Agriculture 36:21–27. (Chinese).
  • Yang, Y., X. Y. Ni, Z. J. Zhou, L. X. Yu, B. M. Liu, Y. Yang, and Y. J. Wu. 2017. Performance of matrix-based slow-release urea in reducing nitrogen loss and improving maize yields and profits. Field Crops Research 212:73–81. doi:10.1016/j.fcr.2017.07.005.
  • Zhang, L. L., Z. J. Wu, and L. J. Chen. 2009. Effect of coating and hydroquinone incorporation on urea-N release and its hydrolysis. Ecology & Environmental Sciences 18 (3):1112–17. (Chinese).
  • Zhou, T., Y. Wang, S. Huang, and Y. C. Zhao. 2018. Synthesis composite hydrogels from inorganic-organic hybrids based on leftover rice for environment-friendly controlled-release urea fertilizers. Science of the Total Environment 615:422–30. doi:10.1016/j.scitotenv.2017.09.084.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.