Development and Biochemical Composition Assessment of Fish Powders from Bangladeshi Indigenous Fish Species and Shelf-Life Characteristics Evaluation During 90 Days of Room Temperature (27°C - 30°C) Storage — Oak Academic Publishing
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Development and Biochemical Composition Assessment of Fish Powders from Bangladeshi Indigenous Fish Species and Shelf-Life Characteristics Evaluation During 90 Days of Room Temperature (27°C - 30°C) Storage
Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Genetic Engineering and Biotechnology, Jashore University of Science and Technology, Jashore, Bangladesh
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State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, China
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Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Genetic Engineering and Biotechnology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Genetic Engineering and Biotechnology, Jashore University of Science and Technology, Jashore, Bangladesh
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Department of Genetic Engineering and Biotechnology, University of Rajshahi, Rajshahi, Bangladesh
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Rural Development Academy (RDA), Bogra, Bangladesh
1 Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
2 Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
3 Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
4 Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
5 Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
6 Department of Genetic Engineering and Biotechnology, Jashore University of Science and Technology, Jashore, Bangladesh
7 State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, China
8 Department of Nutrition and Food Technology, Jashore University of Science and Technology, Jashore, Bangladesh
9 Department of Genetic Engineering and Biotechnology, Jashore University of Science and Technology, Jashore, Bangladesh
10 Department of Genetic Engineering and Biotechnology, Jashore University of Science and Technology, Jashore, Bangladesh
11 Department of Genetic Engineering and Biotechnology, University of Rajshahi, Rajshahi, Bangladesh
12 Rural Development Academy (RDA), Bogra, Bangladesh
In Bangladesh, Fish is a major source of daily protein intake of millions of people but most of the fishes are consumed here as fresh fish which is highly susceptible to damage during transportation and marketing. Therefore, an innovative approach was undertaken to process the fish to avoid damage and extend shelf-life while preserving the nutritional qualities to facilitate the more efficient use of fish as a source of protein and other essential nutrients. This study was conducted to develop some dried protein - enriched fish powders from some commonly consumed fish species in Bangladesh and the nutritional, sensorial, and safety qualities were assessed. Five indigenous abundant fish species including small indigenous fish (SIS) and carp fishes namely Awaous grammepomus , Channa punctata , Puntius puntio , Hypophthalmichthys molitrix and Labeo rohita were used for the preparation of dried protein-enriched fish powders. Biochemical, trace elements, sensorial, total viable count (TVC), pH, peroxide value, and moisture reconstitution during 90 days storage period were performed by standard analytical methods. The moisture, protein, fat, ash, carbohydrate (including fiber), and energy contents were ranged from (6.84% to 8.85%), (70.80% to 75.80%), (5.85% to 8.04%), (7.66% to 9.19%), (3.14% to 6.01%) and (367.50% to 37 9.61% kcal)/100g respectively. Highest content of protein was found in A. grammepomus (75.80%) samples and the lowest in H. molitrix (70.80%) samples. Maximum calcium content was found in sample L. rohita (2.54 g/kg) and minimum in C. punctate as (2.43 g/kg). Maximum iron content was found in H. molitrix (0.15 g/kg) and minimum in A. grammepomus . As for the phosphorous content the L. rohita samples contained the highest (1.4 g/kg) and the lowest in C. punctate (0.73 g/kg) samples . The pH, peroxide value (mEq of O 2 /kg of fat), and moisture reconstitution (g/100g) during 90 days were ranged from (5.30 to 8.17), (8.60 to 16.77), and (6.84 to 13.83) respectively. Microbial loads over the 90 days period were in acceptable range at the end of 90 days storage period. On the basis of biochemical qualities, sensorial and microbial attributes our findings suggest that the dried fish powders are enriched with macro and micro-nutrients especially proteins and could safely be used at least up to 3 months for food applications.
FAO (2000) The State of World Fisheries and Aquaculture. Rome.
Islam, M., Sarker, M.N.I., Islam, M.S., Prabakusuma, A.S., Mahmud, N., Fang, Y. and Xia, W. (2018) Development and Quality Analysis of Protein Enriched Instant Soup Mix. Food and Nutrition Sciences, 9, 663-675. https://doi.org/10.4236/fns.2018.96050
Belton, B. and Thilsted, S.H. (2014) Fisheries in Transition: Food and Nutrition Security Implications for the Global South. Global Food Security, 3, 59-66. https://doi.org/10.1016/j.gfs.2013.10.001
Bogard, J.R., Thilsted, S.H., Marks, G.C., Wahab, M.A., Hossain, M.A., Jakobsen, J. and Stangoulis, J. (2015) Nutrient Composition of Important Fish Species in Bangladesh and Potential Contribution to Recommended Nutrient Intakes. Journal of Food Composition and Analysis, 42, 120-133. https://doi.org/10.1016/j.jfca.2015.03.002
Shaheen, N., Rahim, A.T.M.R., Mohiduzzaman, M., Banu, C.P., Bari, M.L., Tukun, A.B., Stadlmayr, B., et al. (2013) Food Composition Table for Bangladesh. Final Research Results, 187.
Monteiro, M.L.G., Mársico, E.T., Lázaro, C.A., Ribeiro, R.O., Jesus, R.S. and Conte-Júnior, C.A. (2014) Flours and Instant Soup from Tilapia Waste as Healthy Alternatives to the Food Industry. Food Science and Technology Research, 20, 571-581. https://doi.org/10.3136/fstr.20.571
Fitzpatrick, J.J. and Ahrné, L. (2005) Food Powder Handling and Processing: Industry Problems, Knowledge Barriers and Research Opportunities. Chemical Engineering and Processing: Process Intensification, 44, 209-214. https://doi.org/10.1016/j.cep.2004.03.014
de Freitas Eduardo, M. and da Silva Lannes, S.C. (2007) Use of Texture Analysis to Determine Compaction Force of Powders. Journal of Food Engineering, 80, 568-572. https://doi.org/10.1016/j.jfoodeng.2006.06.011
Park, S.H., Lim, H.S. and Hwang, S.Y. (2012) Evaluation of Antioxidant, Rheological, Physical and Sensorial Properties of Wheat Flour Dough and Cake Containing Turmeric Powder. Food Science and Technology International, 18, 435-443. https://doi.org/10.1177/1082013211428220
Hager, A.S., Wolter, A., Jacob, F., Zannini, E. and Arendt, E.K. (2012) Nutritional Properties and Ultra-Structure of Commercial Gluten Free Flours from Different Botanical Sources Compared to Wheat Flours. Journal of Cereal Science, 56, 239-247. https://doi.org/10.1016/j.jcs.2012.06.005
Jahan, S.N., Bayezid, M.A., Islam, B., Siddique, M.A.B., Karmakar, P.K. and Flowra, F.A. (2017) Biochemical Quality Assessment of Fish Powder. American Journal of Food and Nutrition, 5, 110-114. https://doi.org/10.12691/ajfn-5-3-6
Jeyasanta, K.I., Aiyamperumal, V. and Patterson, J. (2013) Utilization of Trash Fishes as Edible Fish Powder and Its Quality Characteristics and Consumer Acceptance. World Journal of Dairy & Food Sciences, 8, 1-10.
Sathivel, S. and Bechtel, P.J. (2006) Properties of Soluble Protein Powders from Alaska Pollock (Theragra chalcogramma). International Journal of Food Science & Technology, 41, 520-529. https://doi.org/10.1111/j.1365-2621.2005.01101.x
Sathivel, S. and Bechtel, P.J. (2008) A Comparison of Physical and Rheologic Properties of Arrowtooth Flounder Protein Made Using Three Different Extracting Processes. Journal of Food Biochemistry, 32, 557-575. https://doi.org/10.1111/j.1745-4514.2008.00184.x
Krishnan, M. and Prabhasankar, P. (2012) Health Based Pasta: Redefining the Concept of the Next Generation Convenience Food. Critical Reviews in Food Science and Nutrition, 52, 9-20. https://doi.org/10.1080/10408398.2010.486909
Chukwu, O. and Shaba, I.M. (2009) Effects of Drying Methods on Proximate Compositions of Catfish (Clarias gariepinus). World Journal of Agricultural Sciences, 5, 114-116.
Hilbig, C.C., Fockink, D.H., Maluf, M.L.F., Boscolo, W.R. and Feiden, A. (2013) Resistência do couro de tilápia e composição centesimal da pele nas operações de ribeira e curtimento. Scientia Agraria Paranaensis, 12, 258-266. https://doi.org/10.18188/1983-1471/sap.v12n4p258-266
Modibbo, U.U., Osemeahon, S.A., Shagal, M.H. and Halilu, M. (2014) Effect of Moisture Content on the Drying Rate Using Traditional Open Sun and Shade Drying of Fish from Njuwa Lake in North Eastern Nigeria. Journal of Applied Chemistry, 7, 41-45. https://doi.org/10.9790/5736-07114145
Lakra, W.S., Mohindra, V. and Lal, K.K. (2007) Fish Genetics and Conservation Research in India: Status and Perspectives. Fish Physiology and Biochemistry, 33, 475-487. https://doi.org/10.1007/s10695-007-9168-z
Sulieman, H.A. and Sidahmed, M.A. (2012) Effect of Drying System on Chemical and Physical Attributes of Dried Catfish Meat (Clarias Sp.) World’s Veterinary Journal, 2, 1-4.
Idah, P.A. and Nwankwo, I. (2013) Effects of Smoke-Drying Temperatures and Time on Physical and Nutritional Quality Parameters of Tilapia (Oreochromis niloticus). International Journal of Fisheries and Aquaculture, 5, 29-34.
Sengar, S.H., Khandetod, Y.P. and Mohod, A.G. (2009) Low Cost Solar Dryer for Fish. African Journal of Environmental Science and Technology, 3, 265-271.
Ojutiku, R.O., Kolo, R.J. and Mohammed, M.L. (2009) Comparative Study of Sun Drying and Solar Tent Drying of Hyperopisus bebeoccidentalis. Pakistan Journal of Nutrition, 8, 955-957. https://doi.org/10.3923/pjn.2009.955.957
AOAC (2003) Official Methods of Analysis of Association of Analytical Chemist. 17th Edition, AOAC, Gaithersburg.
El-Sohaimy, S.A., Shehata, M.G., Mehany, T. and Zeitoun, M.A. (2019) Nutritional, Physicochemical, and Sensorial Evaluation of Flat Bread Supplemented with Quinoa Flour. International Journal of Food Science, 2019, Article ID: 4686727. https://doi.org/10.1155/2019/4686727
Farzana, T. and Mohajan, S. (2015) Effect of Incorporation of Soy Flour to Wheat Flour on Nutritional and Sensory Quality of Biscuits Fortified with Mushroom. Food Science & Nutrition, 3, 363-369. https://doi.org/10.1002/fsn3.228
Bligh, E.G. and Dyer, W.J. (1959) A Rapid Method of Total Lipid Extraction and Purification. Canadian Journal of Biochemistry and Physiology, 37, 911-917. https://doi.org/10.1139/o59-099
Welch, M.W., Hamar, D.W. and Fettman, M.J. (1990) Method Comparison for Calcium Determination by Flame Atomic Absorption Spectrophotometry in the Presence of Phosphate. Clinical Chemistry, 36, 351-354.
Kumar, M.S., Galil, M.S.A., Suresha, M.S., Sathish, M.A. and Nagendrappa, G. (2007) A Simple Spectrophotometric Determination of Phosphate in Sugarcane Juices, Water and Detergent Samples. Journal of Chemistry, 4, 467-473. https://doi.org/10.1155/2007/576560
Mansur, M.A., Rahman, S., Khan, M.N.A., Reza, M.S. and Uga, S. (2013) Study on the Quality and Safety Aspect of Three Sun-Dried Fish. African Journal of Agricultural Research, 8, 5149-5155.
Eboh, L., Mepba, H.D. and Ekpo, M.B. (2006) Heavy Metal Contaminants and Processing Effects on the Composition, Storage Stability and Fatty Acid Profiles of Five Common Commercially Available Fish Species in Oron Local Government, Nigeria. Food Chemistry, 97, 490-497. https://doi.org/10.1016/j.foodchem.2005.05.041
Al Mamun, S., Das, K.K. and Uddin, M.A. (2016) Microbiological Analysis and Determination of Antibacterial Activity of Apple Samples Collected from Local Markets in Dhaka City, Bangladesh. Stamford Journal of Microbiology, 6, 11-15. https://doi.org/10.3329/sjm.v6i1.33511
Chowdhury, C.R., Shahnawaz, K., Kumari, D.P., Chowdhury, A., Gootveld, M. and Lynch, E. (2018) Highly Acidic pH Values of Carbonated Sweet Drinks, Fruit Juices, Mineral Waters and Unregulated Fluoride Levels in Oral Care Products and Drinks in India: A Public Health Concern. Perspectives in Public Health, 139, 186-194. https://doi.org/10.1177/1757913918787218
Siddique, A. and Park, Y.W. (2018) Evaluation of Correlation between Acid Degree Value and Peroxide Value in Lipolysis of Control and Iron Fortified Caprine Milk Cheeses during 4 Months Storage. Open Journal of Animal Sciences, 9, 1-11. https://doi.org/10.4236/ojas.2019.91001
Farzana, T., Mohajan, S., Saha, T., Hossain, M.N. and Haque, M.Z. (2017) Formulation and Nutritional Evaluation of a Healthy Vegetable Soup Powder Supplemented with Soy Flour, Mushroom, and Moringa Leaf. Food Science & Nutrition, 5, 911-920. https://doi.org/10.1002/fsn3.476
Bisla, G., Choudhary, S. and Chaudhary, V. (2014) Evaluation of the Nutritive and Organoleptic Values of Food Products Developed by Incorporated Catharanthus roseus (Sadabahar) Fresh Leaves Explore Their Hypoglycemic Potential. The Scientific World Journal, 2014, Article ID: 304120. https://doi.org/10.1155/2014/304120
Veeramachaneni, K., Vladislavleva, E. and O’Reilly, U.M. (2012) Knowledge Mining Sensory Evaluation Data: Genetic Programming, Statistical Techniques, and Swarm Optimization. Genetic Programming and Evolvable Machines, 13, 103-133. https://doi.org/10.1007/s10710-011-9153-2
Van Ruth, S., Brouwer, E., Koot, A. and Wijtten, M. (2014) Seafood and Water Management. Foods, 3, 622-631. https://doi.org/10.3390/foods3040622
Sultana, S., Parween, S. and Hossain, M.A. (2011) Biochemical Analysis of Some Dried SIS Fishes of the River Padma in Rajshahi. Journal of Life and Earth Science, 6, 39-43. https://doi.org/10.3329/jles.v6i0.9719
Abbasi, A., Babaali, E. and Berizi, E. (2019) Effect of Radiation, Heating, High Pressure, and the Commercial Processing Method on Reduction and/or Elimination of Patulin in Fruit and Vegetable Products: A Systematic Review. Toxin Reviews. https://doi.org/10.1080/15569543.2019.1584823
Abdel-Haleem, A.M. and Omran, A.A. (2014) Preparation of Dried Vegetarian Soup Supplemented with Some Legumes. Food and Nutrition Sciences, 5, 2274. https://doi.org/10.4236/fns.2014.522241
Flowra, F.A., Tumpa, A.S. and Islam, M.T. (2012) Biochemical Analysis of Five Dried Fish Species of Bangladesh. University Journal of Zoology, Rajshahi University, 31, 9-11. https://doi.org/10.3329/ujzru.v31i0.15373
Abbey, L., Glover-Amengor, M., Atikpo, M.O., Atter, A. and Toppe, J. (2017) Nutrient Content of Fish Powder from Low Value Fish and Fish Byproducts. Food Science & Nutrition, 5, 374-379. https://doi.org/10.1002/fsn3.402
Majumdar, B.C. (2018) Comparison of the Changes in Nutritional Quality of Three Important Small Indigenous Fish Species in Bangladesh at Room Temperature (27°-31°C): A Review. Journal of Animal Research and Nutrition, 2, 15. https://doi.org/10.21767/2572-5459.100035
Islam, M.T., Ahmed, S., Sultana, M.A., Tumpa, A.S. and Flowra, F.A. (2013) Nutritional and Food Quality Assessment of Dried Fishes in Singra Upazila under Natore District of Bangladesh. Trends in Fisheries Research, 2, 2319-4758.
Islam, M., Mahmud, N., Nawas, T., Fang, Y. and Xia, W. (2018) Health Benefits and Spray Drying Microencapsulation Process of Fish Oil Health Benefits and Spray Drying Microencapsulation Process of Fish Oil (Omega-3). American Journal of Food Science and Nutrition Research, 5, 29-42.
Trautvetter, U., Ditscheid, B., Jahreis, G. and Glei, M. (2018) Calcium and Phosphate Metabolism, Blood Lipids and Intestinal Sterols in Human Intervention Studies Using Different Sources of Phosphate as Supplements—Pooled Results and Literature Search. Nutrients, 10, 936. https://doi.org/10.3390/nu10070936
Hei, A. and Sarojnalini, C. (2012) Proximate Composition, Macro and Micro Mineral Elements of Some Smoke-Dried Hill Stream Fishes from Manipur, India. Nature and Science, 10, 59-65.
Medeiros, R.J., dos Santos, L.M.G., Freire, A.S., Santelli, R.E., Braga, A.M.C., Krauss, T.M. and Jacob, S.D.C. (2012) Determination of Inorganic Trace Elements in Edible Marine Fish from Rio de Janeiro State, Brazil. Food Control, 23, 535-541. https://doi.org/10.1016/j.foodcont.2011.08.027
Reyahi-Khoram, M., Setayesh-Shiri, F. and Cheraghi, M. (2016) Study of the Heavy Metals (Cd and Pb) Content in the Tissues of Rainbow Trouts from Hamedan Coldwater Fish Farms. Iranian Journal of Fisheries Sciences, 15, 858-869.
Ahmad, A. and Shuhaimi-Othman, M. (2010) Heavy Metal Concentrations in Sediments and Fishes from Lake Chini, Paliang, Malaysia. Journal of Biological Sciences, 10, 93-100. https://doi.org/10.3923/jbs.2010.93.100
Kumar, P.S., Ramakrishnan, K., Kirupha, S.D. and Sivanesan, S. (2010) Thermodynamic and Kinetic Studies of Cadmium Adsorption from Aqueous Solution onto Rice Husk. Brazilian Journal of Chemical Engineering, 27, 347-355. https://doi.org/10.1590/S0104-66322010000200013
Malum, Y.M. and Salihu, L. (2017) Determination of Heavy Metals in Hibiscus cannabinus and Moringa oleifera Cultivated at Zango Abattoir, Tudun Wada, Kaduna Metropolis. International Journal of Sustainable Development Research, 3, 32. https://doi.org/10.11648/j.ijsdr.20170304.11
Flowra, F.A., Bayezid, M.A., Alam, M.M., Hussain, M.A. and Jahan, S.N. (2017) Safety Aspects: An Assessment of Heavy Metals in Dried Fishes of Chalan Beel. Journal of Agricultural Engineering and Food Technology, 4, 82-86.
In’t Veld, J.H.H. (1996) Microbial and Biochemical Spoilage of Foods: An Overview. International Journal of Food Microbiology, 33, 1-18. https://doi.org/10.1016/0168-1605(96)01139-7
Food Standards Australia. New Zealand. (2018) Compendium of Microbiological Criteria for Food.
Pradhan, N., Shrestha, M.K., Rai, S., Jha, D.K. and Sah, S.K. (2018) Quality Assessment of Dried Mrigal (Cirrhunus mrigala) Chhari Fish from Different Market Outlets of Nepal. International Journal of Fisheries and Aquatic Studies, 6, 463-471.
Al-Reza, S., Karmaker, S., Hasan, M., Roy, S., Hoque, R. and Rahman, N. (2015) Effect of Traditional Fish Processing Methods on the Proximate and Microbiological Characteristics of Laubuka dadiburjori during Storage at Room Temperature. Journal of Fisheries and Aquatic Science, 10, 232. https://doi.org/10.3923/jfas.2015.232.243
Immaculate, K., Giftson, H., Saritha, K. and Patterson, J. (2015) Studies on the Nutritional and Microbiological Quality of Smoked Tuna Fish (Auxis thazard) in Tuticorin, South East Coast of India. International Journal of Food Quality and Safety, 1, 28-38.
Socaciu, M.I., Semeniuc, C. and Vodnar, D. (2018) Edible Films and Coatings for Fresh Fish Packaging: Focus on Quality Changes and Shelf-Life Extension. Coatings, 8, 366. https://doi.org/10.3390/coatings8100366
Banda, J., Chigwechokha, P., Singini, W., Kamanula, J., Msiska, O. and Simbeye, J. (2017) The Shelf Life of Solar Tent Dried and Open Sun Dried Diplotaxodon limnothrissa (Ndunduma)-Pisces; Cichlidae. International Journal of Fisheries and Aquatic Studies, 5, 212-218.
Farid, F.B., Latifa, G.A., Nahid, M.N. and Begum, M. (2014) Effect of Sun-Drying on Proximate Composition and pH of Shoal Fish (C. striatus; Bloch, 1801) Treated with Salt and Saltturmeric Storage at Room Temperature (27°C - 30°C). IOSR Journal of Agriculture and Veterinary Science, 7, 1-8. https://doi.org/10.9790/2380-07930108
Odour-Odote, P., Shamasundar, B.A., Booman, A.C., Howell, N.K., Parin, M.A. and Zugarramurdi, A. (2016) Effect of Raw Material Quality on Quality and Yield of Dried Fish Products. International Journal, 3, 55. https://doi.org/10.15379/2408-9826.2016.03.02.04
Özyurt, G., Kuley, E., Özkütük, S. and Özogul, F. (2009) Sensory, Microbiological and Chemical Assessment of the Freshness of Red Mullet (Mullus barbatus) and Goldband Goatfish (Upeneus moluccensis) during Storage in Ice. Food Chemistry, 114, 505-510. https://doi.org/10.1016/j.foodchem.2008.09.078
Cai, Q., Wu, Y., Li, L., Wang, Y., Yang, X. and Zhao, Y. (2017) Lipid Oxidation and Fatty Acid Composition in Salt-Dried Yellow Croaker (Pseudosciaena polyactis) during Processing. Journal of Ocean University of China, 16, 855-862. https://doi.org/10.1007/s11802-017-3233-8
Siriskar, D.A., Khedkar, G.D. and Lior, D. (2013) Production of Salted and Pressed Anchovies (Stolephorus sp.) and Its Quality Evaluation during Storage. Journal of Food Science and Technology, 50, 1172-1178. https://doi.org/10.1007/s13197-011-0450-9
Nurullah, M., Kamal, M., Islam, M.N., Ahasan, C.T. and Thilsted, S.H. (2007) Shelf Life of Dried Products from Small Indigenous Fish Species under Various Packing and Storage Conditions. Bangladesh Journal of Fisheries Research, 11, 229-236.
Tenyang, N., Tiencheu, B. and Womeni, H.M. (2018) Effect of Smoking and Refrigeration on Lipid Oxidation of Clupea harengus: A Fish Commonly Consumed in Cameroon. Food Science & Nutrition, 6, 464-473. https://doi.org/10.1002/fsn3.575
Moneim, A., Sulieman, E. and Mustafa, W.A. (2012) Quality Characteristics of Dried Fish Obtained from Eldeim Area, Central Sudan. International Journal of Food Science and Nutrition Engineering, 2, 1-6. https://doi.org/10.5923/j.food.20120201.01
Özogul, Y., Özyurt, G., Özogul, F., Kuley, E. and Polat, A. (2005) Freshness Assessment of European Eel (Anguilla anguilla) by Sensory, Chemical and Microbiological Methods. Food Chemistry, 92, 745-751. https://doi.org/10.1016/j.foodchem.2004.08.035