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Research Article

Phosphorus removal from biodiesel by crystallization of magnesium ammonium phosphate

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Pages 8823-8836 | Received 15 Sep 2022, Accepted 26 May 2023, Published online: 07 Jul 2023

References

  • Benti, N. E., A. B. Aneseyee, C. A. Geffe, T. A. Woldegiyorgis, G. S. Gurmesa, M. Bibiso, A. A. Asfaw, A. W. Milki, and Y. S. Mekonnen. 2023. Biodiesel production in Ethiopia: Current status and future prospects. Scientific African 19:e01531. doi:10.1016/j.sciaf.2022.e01531.
  • Benti, N. E., Y. S. Mekonnen, A. A. Asfaw, M. D. Lerra, T. A. Woldegiyorgis, C. A. Gaffe, A. B. Aneseyee, and W. Meng. 2022. Techno-economic analysis of solar energy system for electrification of rural school in Southern Ethiopia. Cogent Engineering 9 (1):1–22. doi:10.1080/23311916.2021.2021838.
  • Changwei, J., S. W. Singgu, Y. Jinxin, M. Hao, and S. Changke. 2022. Application progress of zero carbon and carbon neutral fuel internal combustion engine. Journal of Beijing Polytechnicuniversity 48 (3):273–91. in Chinese.
  • Chauhan, C. K., and M. J. J. J. O. C. G. Joshi. 2013. In vitro crystallization, characterization and growth-inhibition study of urinary type struvite crystals. Journal of Crystal Growth 362 (Complete):330–37. doi:10.1016/j.jcrysgro.2011.11.008.
  • Cieślik, B., and P. Konieczka. 2017. A review of phosphorus recovery methods at various steps of wastewater treatment and sewage sludge management. The concept of “no solid waste generation” and analytical methods. Journal of Cleaner Production 142:1728–40. doi:10.1016/j.jclepro.2016.11.116.
  • Dey, S., N. M. Reang, P. K. Das, and M. Deb. 2021. A comprehensive study on prospects of economy, environment, and efficiency of palm oil biodiesel as a renewable fuel. Journal of Cleaner Production 286:124981. doi:10.1016/j.jclepro.2020.124981.
  • Enagi, I. I., K. A. Al-Attab, Z. A. Zainal, and Y. H. Teoh. 2022. Palm biodiesel spray and combustion characteristics in a new micro gas turbine combustion chamber design. Energy 254:124335. doi:10.1016/j.energy.2022.124335.
  • Haas, M. J., A. J. McAloon, W. C. Yee, and T. A. Foglia. 2006. A process model to estimate biodiesel production costs. Bioresource Technology 97 (4):671–78. doi:10.1016/j.biortech.2005.03.039.
  • Kumari, S., S. Jose, M. Tyagi, and S. J. J. O. C. P. Jagadevan. 2020. A holistic and sustainable approach for recovery of phosphorus via struvite crystallization from synthetic distillery wastewater. Journal of Cleaner Production 254:120037. doi:10.1016/j.jclepro.2020.120037.
  • Kurji, H., A. Valera-Medina, J. Runyon, A. Giles, D. Pugh, R. Marsh, N. Cerone, F. Zimbardi, and V. Valerio. 2016. Combustion characteristics of biodiesel saturated with pyrolysis oil for power generation in gas turbines. Renewable Energy 99:443–51. doi:10.1016/j.renene.2016.07.036.
  • Leistner, K., K. Xie, A. Kumar, K. Kamasamudram, and L. Olsson. 2017. Ammonia desorption peaks can be assigned to different copper sites in Cu/SSZ-13. Catalysis Letters 147 (8):1882–90. doi:10.1007/s10562-017-2083-8.
  • Mesilov, V., S. Dahlin, S. L. Bergman, S. Xi, J. Englund, H. Malm, L. J. Pettersson, and S. L. J. T. J. O. P. C. Bernasek. 2022. Impact of biodiesel-based phosphorus and sulfur on copper speciation of Cu-SSZ-13 Catalysts: XAFS Scanning during H 2 -TPR. The Journal of Physical Chemistry C 126 (7):3385–96. doi:10.1021/acs.jpcc.1c08832.
  • Ogunkunle, O., and N. Ahmed. 2021. Overview of biodiesel combustion in mitigating the adverse impacts of engine emissions on the sustainable human–environment scenario. Sustainability 13 (10):5465. doi:10.3390/su13105465.
  • Rahman, M. M., M. Salleh, U. Rashid, A. Ahsan, M. M. Hossain, and C. S. J. A. J. O. C. Ra. 2014. Production of slow release crystal fertilizer from wastewaters through struvite crystallization – a review. Arabian Journal Chemistry 7 (1):139–55. doi:10.1016/j.scitotenv.2020.142947.
  • Rosec, Ž., T. Katrašnik, U. Žvar Baškovič, and T. Seljak. 2020. Exhaust gas recirculation with highly oxygenated fuels in gas turbines. Fuel 278:118285. doi:10.1016/j.fuel.2020.118285.
  • Sun, H., A. Mohammed, and Y. J. S. O. T. T. E. Liu. 2020. Phosphorus recovery from source-diverted blackwater through struvite precipitation. The Science of the Total Environment 743:140747. doi:10.1016/j.scitotenv.2020.140747.
  • Tiruye, G. A., A. T. Besha, Y. S. Mekonnen, N. E. Benti, G. A. Gebreslase, and R. A. J. S. Tufa. 2021. Opportunities and challenges of renewable energy production in Ethiopia. Sustainability 13 (18):10381. doi:10.3390/su131810381.
  • Väliheikki, A., M. Kärkkäinen, M. Honkanen, O. Heikkinen, T. Kolli, K. Kallinen, M. Huuhtanen, M. Vippola, J. Lahtinen, and R. L. Keiski. 2017. Deactivation of Pt/SiO2-ZrO2 diesel oxidation catalysts by sulphur, phosphorus and their combinations. Applied Catalysis B: Environmental 218:409–19. doi:10.1016/j.apcatb.2017.06.068.
  • Youyong, S. 2015. Study on preparation of biodiesel from Jatropha oil. in Chinese.
  • Yulan, L., 2009. Oil extraction and processing technology: oil extraction and processing technology. (in Chinese)
  • Zeng, W., D. Wang, Z. Luo, J. Yang, and Z. J. J. O. C. P. Wu. 2020. Phosphorus recovery from pig farm biogas slurry by the catalytic ozonation process with MgO as the catalyst and magnesium source. Journal of Cleaner Production 269 (22):122133. doi:10.1016/j.jclepro.2020.122133.
  • Zhang, Y., M. A. Dubé, D. D. McLean, and M. Kates. 2003. Biodiesel production from waste cooking oil: 2. Economic assessment and sensitivity analysis. Bioresource Technology 90 (3):229–40. doi:10.1016/S0960-8524(03)00150-0.
  • Zhang, C., X. Tan, X. Yang, F. Wu, and X. J. S. O. T. T. E. Liu. 2020. Acid treatment enhances phosphorus release and recovery from waste activated sludge. Performances and Related Mechanisms 763:142947. doi:10.1016/j.scitotenv.2020.142947.
  • Zhang, Y., P. Thepsithar, X. Jiang, and J. H. J. I. C. Tay. 2013. Products, 2013. Direct determination of phosphate in raw Jatropha curcas oil by ion chromatography. Industrial Crops and Products 44 (2):459–64. doi:10.1016/j.indcrop.2012.10.010.
  • Zonghong, F., L. Fashe, H. Yundi, G. Jin, H. Jianhang, and X. Yong. 2017. Simultaneous quantitative analysis of six cations in three biodiesel and their feedstock oils by an ion-exchange chromatography system without chemical suppression. Energy & Fuels 31. doi:10.1021/acs.energyfuels.6b01574.

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