PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Product Concentration, Yield Percentage and Productivity of Citric Acid Formation Using Aspergillus niger Isolated from Palm Dates

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Aspergillus niger isolated from palm dates was examined to produce citric acid. The isolates from zahdi dates (A. niger S11) had the best yield of citric acid with a straightforward and efficient isolation technique without the need for purification of the isolates. The best results of citric acid obtained in the static air, using Czapek dox liquid medium, were 37.116 g/l, 33.742% yield, and 0.0859 g/L•h productivity, and in the 1 vvm air were 47.248 g/L, 42.953% yield, and 0.1094 g/L•h productivity, under temperature 30 °C, mixing speed 150 rpm, pH 4, sugar concentration 11%, and inoculum size 5%. Yield and concentration were 23.139% and 25.453 g/L using Date syrup.
Rocznik
Strony
1--13
Opis fizyczny
Bibliogr. 48 poz., rys.
Twórcy
  • Department of Biochemical Engineering, Al-Khwarizmi College of Engineering, University of Baghdad, Baghdad, Iraq
  • Department of Biochemical Engineering, Al-Khwarizmi College of Engineering, University of Baghdad, Baghdad, Iraq
Bibliografia
  • 1. Adeoye A.O., Lateef A., Gueguim-Kana E.B. 2015. Optimization of citric acid production using a mutant strain of Aspergillus niger on Cassava Peel substrate. Biocatalysis and Agricultural Biotechnology, 4(4), 568–74.
  • 2. Ali S.R., Anwar Z., Irshad M., Mukhtar S., Warraich N.T. 2016. Bio-Synthesis of citric acid from single and co-culture-based fermentation technology using agro-wastes. Journal of Radiation Research and Applied Sciences, 9(1), 57–62.
  • 3. Ali S., Haq I., Qadeer M. A., Iqbal J. 2001. Biosynthesis of citric acid by locally isolated Aspergillus niger using sucrose salt media. Online J. Biol. Sci, 1(4), 178–81.
  • 4. Almousa A.A., Abd El-Ghany M.N., Ashour E.H. 2018. Citric acid fermentation by Aspergillus niger. Indian Journal of Microbiology, 5, 20–37.
  • 5. Anastassiadis S., Rehm H.J. 2006. Citric acid production from glucose by yeast Candida olephila ATCC 20177 under batch, continuous and repeated batch cultivation. Electronic Journal of Biotechnology, 9(1), 26–39.
  • 6. Anastassiadis S., Morgunov I.G., Kamzolova S.V., Finogenova T.V. 2008. Citric acid production patent review. Recent Patents on Biotechnology, 2(2), 107–23.
  • 7. Angumeenal A.R., Venkappayya D. 2013. An overview of citric acid production. LWT - Food Science and Technology, 50(2), 367–70.
  • 8. Angumeenal A.R., Kamalakannan P., Prabhu H.J., Venkappayya D. 2003. Effect of transition metal cations on the production of citric acid using mixed cultures of Aspergillus niger and Candida gulliermondii. Journal of the Indian Chemical Society, 80(10), 903–6.
  • 9. Ates S., Dingil N., Bayraktar E., Mehmetoglu U. 2002. Enhancement of citric acid production by immobilized and freely suspended Aspergillus niger using silicone oil. Process Biochemistry, 38(3), 433–36.
  • 10. Auta H.S., Abidoye K.T., Tahir H., Ibrahim A.D., Aransiola S.A. 2014. Citric acid production by Aspergillus niger cultivated on Parkia Biglobosa fruit pulp. International Scholarly Research Notices, Nov 3, 762021.
  • 11. Campanhol B.S., Silveira G.C., Castro M.C., Ceccato-Antonini S.R., Bastos R.G. 2019. Effect of the nutrient solution in the microbial production of citric acid from sugarcane bagasse and vinasse. Biocatalysis and Agricultural Biotechnology, 19, 1–5.
  • 12. Campbell C.K, Johnson E.M., Warnock D.W. 2013. Identification of pathogenic fungi. 2nd edition. Published by Blackwell Publishing Ltd.
  • 13. Dashen M.M., Ado S.A., Ameh J., Amapu T., Zakari H. 2014. Screening and improvement of local isolates of Aspergillus niger for citric acid production. Bayero Journal of Pure and Applied Sciences, 6(1), 105–11.
  • 14. Da-Silva L.V., Tavares C.B., Amaral P.F., Coelho M.A.Z. 2012. Production of citric acid by Yarrowia lipolytica in different crude glycerol concentrations and in different nitrogen sources. Chemical Engineering Transactions, 27.
  • 15. Dezam A.P.G., Vasconcellos V.M., Lacava P.T., Farinas C.S. 2017. Microbial production of organic acids by endophytic fungi. Biocatalysis and Agricultural Biotechnology, 11, 282–87.
  • 16. Dhillon G.S., Brar S.K., Verma M., Tyagi R.D. 2011. Enhanced solid‐state citric acid bio‐production using apple pomace waste through surface response methodology. Journal of Applied Microbiology, 110(4), 1045–55.
  • 17. Dunya A. Salih, Safaa R. Yasin 2020. Palm dares as a source for isolation of Aspergillus niger to produce citric acid by submerged fermentation; kinetics study. IOP Conf. Ser.: Mater. Sci. Eng., 928, 022072. https://iopscience.iop.Org/article/10.1088/1757-899X/928/2/022072
  • 18. Förster A., Aurich A., Mauersberger S., Barth G. 2007. Citric acid production from sucrose using a recombinant strain of the yeast Yarrowia lipolytica. Applied Microbiology and Biotechnology, 75(6), 1409–17.
  • 19. Grewal H.S., Kalra K.L. 1995. Fungal production of citric acid. Biotechnology Advances, 13(2), 209–34.
  • 20. Haq P.B., Daud D.A. 1995. Process of dry cell mass calculation. J Biotechnol, 9, 31–35.
  • 21. Ikram-ul H., Ali S., Qadeer M.A., Iqbal J. 2002. Citric acid fermentation by mutant strain of Aspergillus niger GCMC-7 using molasses based medium. Electronic Journal of Biotechnology, 5(2), 125–32.
  • 22. Ikram-ul H., Ali S., Qadeer M.A., Iqbal J. 2004. Citric acid production by selected mutants of Aspergillus niger from cane molasses. Bioresource Technology, 93(2), 125–30.
  • 23. Kapoor K.K., Chaudry K., Tauro P. 1982. Citric acid. In: Prescott and Dunn’s Industrial Microbiology. Edited by Reed G. published by MacMillan Publishers Ltd., 709–47.
  • 24. Käppeli O., Müller M., Fiechter A. 1978. Chemical and structural alterations at cell surface of Candida tropicalis induced by hydrocarbon substrate. Journal of Bacteriology, 133, 952–58.
  • 25. Kareem S.O., Akpan I., Alebiowu O.O. 2010. Production of citric acid by Aspergillus niger using pineapple waste. Malaysian Journal of Microbiology, 6(2), 161–65.
  • 26. Karthikeyan A., Sivakumar N. 2010. Citric acid production by Koji fermentation using banana peel as a novel substrate. Bioresource Technology, 101(14), 5552–56.
  • 27. Kristiansen B., Mattey M., Linden J. (Eds.) 2002. Citric acid biotechnology. CRC press.
  • 28. Kubicek C.P., Röhr M., Rehm H.J. 1985. Citric acid fermentation. Critical Reviews in Biotechnology, 3(4), 331–73.
  • 29. Lee S.Y., Zakry F.A.A., Show P.L. 2015. Optimisation of citric acid production from a novel strain of Aspergillus niger by submerged fermentatio. Chemical Engineering Transactions, 45, 1501–6.
  • 30. Lotfy W., Ghanem K., El-Helow E. 2007. Citric acid production by a novel Aspergillus niger isolate: II. Optimization of process parameters through statistical experimental designs. Bioresource Technology, 98(18), 3470–7.
  • 31. Marier J.R., Boulet M. 1958. Direct determination of citric acid in milk with an improved pyridineacetic anhydride method. Journal of Dairy Science, 41(12), 1683–92.
  • 32. Mattey M. 1992. The production of organic acids. Critical Reviews in Biotechnology, 12(1–2), 87–132.
  • 33. Max B., Salgado J.M., Rodríguez N., Cortés S., Converti A., Domínguez J.M. 2010. Biotechnological production of citric acid. Braz J Microbiol. Oct, 41(4), 862–75. DOI: 10.1590/S1517-83822010000400005. Epub 2010 Dec 1. PMID: 24031566; PMCID: PMC3769771.
  • 34. Mostafa Y.S., Alamri S.A. 2012. Optimization of date syrup for enhancement of the production of citric acid using immobilized cells of Aspergillus niger. Saudi Journal of Biological Sciences, 19(2), 241–46.
  • 35. Nadeem A., Syed Q., Baig S., Irfan M., Nadeem M. 2010. Enhanced production of citric acid by Aspergillus niger M-101 using lower alcohols. Turkish Journal of Biochemistry, 35(1), 7–13.
  • 36. Rao P.R., Reddy M.K. 2013. Production of citric acid by Aspergillus niger using oat bran as substrate. International Journal of Chemistry and Chemical Engineering, 3(3), 181–91.
  • 37. Rodrigues C., de Souza Vandenberghe L.P., Teodoro J., Pandey A., Soccol C.R. 2009. Improvement on citric acid production in solid-state fermentation by Aspergillus niger LPB BC mutant using citric pulp. Applied Biochemistry and Biotechnology, 158(1), 72–87.
  • 38. Roehr M., Kubicek C. P., Komínek J. 1996. Biotechnology: products of primary metabolism (Chapter 9 Citric Acid). Edited by Rehm H. J. and Reed J. in cooperation with Puhler A. and Stadler P. Puplished by Wiley Online Library, 307–45.
  • 39. Rohr M. 1983. Citric acid. Biotechnology, 3, 419–54.
  • 40. Sauer M., Mattanovich D., Marx H. 2013. Microbial production of food ingredients, enzymes and nutraceuticals (Chapter 12 Microbial Production of Organic Acids for Use in Food). Woodhead Publishing, 288–320.
  • 41. Shadafza D., Ogata T., Fazeli A. 1976. Comparison of citric acid production from beet molasses and date syrup with Aspergillus niger. Journal of Fermentation Technology, 54(2), 67–75.
  • 42. Show P.L., Oladele K.O., Siew Q.Y., Aziz Zakry F.A., Lan J.C.W., Ling T.C. 2015. Overview of citric acid production from Aspergillus niger. Frontiers in Life Science, 8(3), 271–83.
  • 43. Soccol C.R., Vandenberghe L.P.S., Rodrigues C., Pandey A. 2006. New perspectives for citric acid production and application. Food Technology and Biotechnology, 44(2), 141–49.
  • 44. Vandenberghe L.P.S., Karp S.G., de Oliveira P.Z., de Carvalho J.C., Rodrigues C., Soccol C.R. 2018. Current developments in biotechnology and bioengineering: production, isolation and purification of industrial products (Chapter 18 Solid-State Fermentation for the Production of Organic Acids). Edited by Pandey A., Negi S., and Soccol C. R. Published by Elsevier, 415–34.
  • 45. Vandenberghe L.P.S., Rodrigues C., de Carvalho J.C., Medeiros A.B.P., Soccol C.R. 2016. Current developments in biotechnology and bioengineering: production, isolation and purification of industrial products (Chapter 25 Production and Application of Citric Acid). Edited by Pandey A., Negi S., and Soccol C. R. Published by Elsevier, 557–75.
  • 46. Vasanthabharathi V., Sajitha N., Jayalakshim S. 2013. Citric acid production from U-V mutated estuarine Aspergillus niger. Advances in Biological Research, 7(3), 89–94.
  • 47. Xu D.B., Madrid C.P., Röhr M., Kubicek C.P. 1989. The influence of type and concentration of the carbon source on production of citric acid by Aspergillus niger. Applied Microbiology and Biotechnology, 30(6), 553–8.
  • 48. Zhang H., Xu J., Su X., Bao J., Wang K., Mao Z. 2017. Citric acid production by recycling its wastewater treated with anaerobic digestion and nanofiltration. Process Biochemistry, 58, 245–51.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e8890641-ad7a-44e2-beec-ff2dcaca87c0
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.