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Original Articles

Optimization of Traditional Date Vinegar Preparation Using Full Factorial Design

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Literature Cited

  • Abd-Rahim, S. N., Sulaiman, A., Edama, N. A., Baharuddin, A. S., and Mokhtar, M. N. Factorial design analysis of a tapioca slurry saccharification process using encapsulated 400 enzymes. BioResource 9(2):3361–3368, 2014.
  • Álvarez-Cáliza, C., Santos-Duenas, I. M., García-Martínez, T., Canete-Rodrígueza, A. M., Millán-Pérez, M. C., Mauricio, J. C., and García-García, I. Effect of biological ageing of wine on its nitrogen composition for producing high quality vinegar. Food Bioprod. Process. 92:291–297, 2014.
  • Babu, B., and Wu, J. T. Production of natural butylated hydroxytoluene as an antioxidant by freshwater phytoplankton. J. Phycol. 44:1447–1454, 2008.
  • Bauer, A. W., Kibry, W. M., Sherris, J. C., and Turck, M. Antibiotic susceptibility testing by a standardized single disc method. Am. J. Clin. Path. 45:493–496, 1966.
  • Beheshti, Z., Chan, Y. H., Nia, H. S., Hajihosseini, F., Nazari, R., Shaabani, M., and Omran, M. T. S. Influence of apple cider vinegar on blood lipids. Life Sci. J. 9(4):2431–2440, 2012.
  • Blakebrough, N. Fundamentals of fermenter design. Pure Appl. Chem. 36:305–316, 1973.
  • Chatterjee, A., and Raychaudhuri, U. Optimization of media components for the production of palm vinegar using response surface methodology. J. Inst. Brew. 120(4):550–558, 2014.
  • Chen, T., Gui, Q., Shi, J. J., Zhang, X. H., and Chen, F. S. Analysis of variation of main components during aging process of Shanxi aged vinegar. Acetic Acid Bact. 2 (s1):e6, 2013.
  • Chena, C., and Chen, F. Study on the conditions to brew rice vinegar with high content of amino butyric acid by response surface methodology. Food Bioproduct Process. 87:334–340, 2009.
  • Codex Alimentarius Commission, Agenda Item 5, CX/EURO 00/5. Proposed draft revised regional standard for vinegar, Madrid, Spain, 3–6 October 2000.
  • Conner, H. A., and Allgeier, R. G. Vinegar: Its history and development. Adv. Appl. Microbiol. 20:81–133, 1976.
  • De Ory, I., Romero, L. E., and Cantero, D. Optimization of immobilization conditions for vinegar production: Siran, wood chips and polyurethane foam as carriers for Acetobacter aceti. Process Biochem. 39(5):547–555, 2004.
  • De Wilde, D., Dreher, T. Zahnow, C., Husemann, U., Greller, G. Adams, T., and Fenge, C. Superior scalability of single-use bioreactors. BioProcess Int. 12(8):1–8, 2014.
  • Durán, E., Palma, M., Natera, R., Castro, R., and Barroso, C. G. New FT-IR method to control the evolution of the volatile constituents of vinegar during the acetic fermentation process. Food Chem. 121:575–579, 2010.
  • Falcone, P. M., and Giudici, P. Molecular size and molecular size distribution affecting traditional balsamic vinegar aging. J. Agric. Food Chem. 56(16):7057–7066, 2008.
  • Fasinu, E. G., Ikhu-Omoregbe, D. I. O., and Jideani, V. A. Influence of selected physicochemical factors on the stability of emulsions stabilized by Bambara groundnut flour and starch. J. Food Sci. Technol. 52(11):7048–7058, doi: 10.1007/s13197-015-1818-z, 2015.
  • Gao, H., Xu, G., Fan, Y., Nan, H., and Fu, S. Optimization of fermentation process of pear vinegar by response surface methodology. Adv. Mat. Res. 201–203:2513–2516, 2011.
  • Ghosh, S., Chakraborty, R., Chatterjee, G., and Raychaudhuri, U. Study on fermentation conditions of palm juice vinegar by response surface methodology and development of a kinetic model. Braz. J. Chem. Eng. 29(3):461–472, 2012.
  • Giudici, P., Gullo, M., and Solieri, L. Traditional balsamic vinegar. In: Vinegars of the World. L. Solieri and P. Giudici, eds. Springer-Verlag Italia, Milan, Pp. 157–177, 2009.
  • González, A., and De Vuyst, L. Vinegars from tropical Africa. In: Vinegars of the World. L. Solieri and P. Giudici, eds. Springer-Verlag Italia, Milan, pp. 209–219, 2009.
  • Haji, S., and Erkey, C. An experiment for undergraduate laboratory—Kinetics of hydrolysis of acetic anhydride by in-situ FTIR spectroscopy. Chem. Eng. Educ. 39:56, 2005.
  • Hidalgo, C., Vegas, C., Mateo, E., Tesfaye, W., Cerezo, A. B., Callejón, R. M., Poblet, M., Guillamón, J. M., Mas, A., and Torija, M. J. Effect of barrel design and the inoculation of Acetobacter pasteurianus in wine vinegar production. Int. J. Food Microbiol. 141:56–62, 2010.
  • Ibrahim, M., Nada, A., and Kamal, D. E. Density functional theory and FTIR spectroscopic study of carboxyl group. Indian J. Pure Appl. Phys. 43:911–917, 2005.
  • Jeong, Y.-J., Lee, G.-D., and Kim, K.-S. Optimization for the fermentation condition of persimmon vinegar using response surface methodology. Korean J. Food Sci. Technol. 30(5):1203–1208, 1998.
  • Jiang, Y., Lin, S., Zhang, L., and Yu, P. Upgrading the fermentation process of Zhejiang rosy vinegar by purebred microorganisms. Adv. Microbiol. 3:297–301, 2013.
  • Jiang, Z., Wang, S., Zhang, N., Liu, J., Zhang, H., and Xu, Z. An approach to brew beer vinegar with barm beer from spent yeast slurry. J. Am. Soc. Brew. Chem. 71(3):138–143, 2013.
  • Jing, L., Zhang, Y., Fan, S., Gu, M., Guan, Y., Lu, X., Huang, C., and Zhou, Z. Preventive and ameliorating effects of citrus D-limonene on dyslipidemia and hyperglycemia in mice with high-fat diet-induced obesity. Eur. J. Pharmacol. 715(1–3):46–55, 2013.
  • Jussier, D., Morneau, A. D., and Mira de Orduna, R. Effect of simultaneous inoculation with yeast and bacteria on fermentation kinetics and key wine parameters of cool-climate Chardonnay. Appl. Environ. Microbiol. 72(1):221–227, 2006.
  • Kadirgama, K., and Abou-El-Hossein, K. A. Prediction of torque in milling by response surface method and neural network. Int. J. Model. Simul. 28(4):1–7, 2008.
  • Kaur, P., Kocher, G. S., and Phutela, R. P. Production of tea vinegar by batch and semi-continuous fermentation. J. Food Sci. Technol. 48(6):755–758, 2011.
  • Khidhir, B. A., Al-Oqaiel, W., and Kareem, P. M. Prediction models by response surface methodology for turning operation. Am. J. Model. Optimiz. 3(1):1–6, 2015.
  • Lee, Y. K. Microbial Biotechnology: Principles and Applications. World Scientific, Singapore, 2006.
  • Lingham, T., Besong, S., Ozbay, G., and Lee, J.-L. Antimicrobial activity of vinegar on bacterial species isolated from retail and local channel catfish (Ictalurus punctatus). J. Food Process. Technol. http://dx.doi.org/10.4172/2157-7110.S11-001, 2012.
  • Matloob, M. H. Zahdi date vinegar: Production and characterization. Am. J. Food Technol. 9(5):231–245, 2014.
  • Official Journal of the European Union, L 153/4, Regulations, Commission implementing regulation (EU) N° 501/2012, 2012.
  • Ould El Hadj, M. D., Sebihi, A. H., and Siboukeur, O. Qualité hygiénique et caractéristiques physico-chimiques du vinaigre traditionnel de quelques variétés de dattes de la cuvette de ouargla. Rev. Energ. Ren.: Production et Valorisation – Biomasse, 87–92, www.cder.dz/download/bio_14.pdf, 2001.
  • Priyadarshini, S., John, S., and Iyer, P. Antimicrobial activity and characterisation of microflora of vinegar preparations developed from peels and fruit of sweet lime. Eur. J. Biotechnol. Biosci. 2(2):42–45, 2014.
  • Rutala, W. A., Barbee, S. L., Aguiar, N. C., Sobsey, M. D., and Weber, D. J. Antimicrobial activity of home disinfectants and natural products against potential human pathogens. Infect. Control Hosp. Epidemiol. 21(1):33–38, 2000.
  • Saha, P., and Banerjee, S. Optimization of process parameters for vinegar production using banana fermentation. Int. J. Res. Eng. Technol. 2(9):501–514, 2013.
  • Sengun, I. Y. Microbiological and chemical properties of fig vinegar produced in Turkey. Afr. J. Microbiol. Res. 7(20):2332–2338, 2013.
  • Shizuma, T., and Fukuyama, N. Anticarcinogenic and anti-colitis effects of the Japanese vinegar Kurozu. Rice Res. 1(2):1–2, doi: 10.4172/jrr.1000113, 2013.
  • Schlepütz, T., Gerhards, J. P., and Büchs, J. Ensuring constant oxygen supply during inoculation is essential to obtain reproducible results with obligatory aerobic acetic acid bacteria in vinegar production. Process Biochem. 48:398–405, 2013.
  • Silva, M. E., Torres Neto, A. B., Silva, W. B., Silva, F. L. H., and Swarnakar, R. Cashew wine vinegar production: Alcoholic and acetic fermentation. Braz. J. Chem. Eng. 24(2):163–169, 2007.
  • Solieri, L., Landi, S., De Vero, L., and Giudici, P. Molecular assessment of indigenous yeast population from traditional balsamic vinegar. J. Appl. Microbiol. 101(1):63–71, 2006.
  • Solieri, L., Dakal, T. C., and Giudici, P. Zygosaccharomyces sapae sp. nov., isolated from Italian traditional balsamic vinegar. Int. J. Syst. Evol. Microbiol. 63:364–371, 2013.
  • Sonarico, D., Motta, S., Bertolini, L., and Antonelli, A. HPLC determination of organic acids in traditional balsamic vinegar of Reggion Emilia. J. Liq. Chrom. Rel. Technol. 26(13):2177–2187, 2003.
  • Testfaye, M. J., Morales, M. L., Garcia-Parilla, M. C., and Troncoso, A. M. Wine vinegar: Technology, authenticity and quality evaluation. Trends Food Sci. Technol. 13:12–21, 2002.
  • Thepkaew, N., and Chomsri, N. Fermentation of pineapple juice using wine yeasts: Kinetics and characteristics. As. J. Food Agro-Ind. 6(1):1–10, 2013.
  • Xiao-Wei, H., Xiao-Bo, Z., Ji-Yong, S., Jie-Wen, Z., Yao-Di, Z., and Zongbao, S. Colorometric artificial nose for monitoring traditional solid state fermentation process of vinegar Pei. J. Food Process. Bev. 1(2):1–6, 2013.
  • Yehye, W. A., Abdul Rahman, N., Ariffin, A., Alhadi, A. A., Kadir, F. A., and Yaeghoobi, M. Understanding the chemistry behind the antioxidant activities of butylated hydroxytoluene (BHT): A review. Eur. J. Med. Chem. 101:295–312, 2015.

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