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Drying Technology
An International Journal
Volume 37, 2019 - Issue 7
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Articles

Texture analysis of dried papaya (Carica papaya L., cv. Maradol) pretreated with calcium and osmotic dehydration

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Pages 906-919 | Received 01 Dec 2017, Accepted 23 Apr 2018, Published online: 11 Sep 2018

References

  • Almora, K.; Pino, J. A.; Hernández, M.; Duarte, C.; González, J.; Roncal, E. Evaluation of Volatiles from Ripening Papaya (Carica Papaya L., Var. Maradol Roja). Food Chem. 2004, 86, 127–130.
  • Germer, S. P.; Ferrari, C. C.; Lancha, J. P.; Berbari, S. A.; Carmello-Guerreiro, S. M.; Ruffi, C. R. Influence of Processing Additives on the Quality and Stability of Dried Papaya Obtained by Osmotic Dehydration and Conventional Air Drying. Drying Technol. 2014, 32, 1956–1969.
  • Ruiz-López, I. I.; Huerta-Mora, I. R.; Vivar-Vera, M. A.; Martínez-Sánchez, C. E.; Herman-Lara, E. Effect of Osmotic Dehydration on Air-Drying Characteristics of Chayote. Drying Technol. 2010, 28, 1201–1212.
  • Sokhansanj, S.; Jayas, D. S. Drying of foodstuffs. In Handbook of Industrial Drying, 2nd ed.; Mujumdar, A. S., Ed.; Marcel Dekker, Inc.: New York, 1995; Vol. 1 , pp 589–626.
  • Reyes, A.; Bubnovich, V.; Bustos, R.; Vásquez, M.; Vega, R.; Scheuermann, E. Comparative Study of Different Process Conditions of Freeze Drying of ‘Murtilla’ Berry. Drying Technol. 2010, 28, 1416–1425.
  • Perera, C. O. Selected Quality Attributes of Dried Foods. Drying Tech. 2005, 23, 717–730.
  • Sablani, S. S. Drying of Fruits and Vegetables: Retention of Nutritional/Functional Quality. Drying Technol. 2006, 24, 123–135.
  • Rahman, M. S.; Al-Farsi, S. A. Instrumental Texture Profile Analysis (TPA) of Date Flesh as a Function of Moisture Content. J. Food Eng. 2005, 66, 505–511.
  • Szczesniak, A. S. Texture: It Is Still an Overlooked Food Attribute? Food Technol. 1990, 44, 86–95.
  • Szczesniak, A. S. Texture Is a Sensory Property. Food Qual Prefer. 2002, 13, 215–225.
  • Chen, L.; Linus, O. U. Approaches to Analysis and Modeling Texture in Fresh and Processed Foods-a Review. J. Food Eng. 2013, 119, 497–507.
  • Konopacka, D.; Plocharski, W. J. Effect of Storage Conditions on the Relationship Between Apple Firmness and Texture Acceptability. Postharvest Biol. Technol. 2004, 32, 205–211.
  • Lenart, A.; Piotrowski, D. Drying Characteristics of Osmotically Dehydrated Fruits Coated with Semipermeable Edible Films. Drying Technol. 2001, 19, 849–877.
  • Rahman, M. S.; Sablani, S. S.; Al-Ibrahim, M. A. Osmotic Dehydration of Potato: Equilibrium Kinetics. Drying Technol. 2001, 19, 1163–1176.
  • Waliszewski, K. N.; Texon, N. I.; Salgado, M. A.; Garcia, M. A. Mass Transfer in Banana Chips During Osmotic Dehydration. Drying Technol. 1997, 15, 2597–2607.
  • Panagiotou, N. M.; Karathanos, V. T.; Maroulis, Z. B. Effect of Osmotic Agent on Osmotic Dehydration of Fruits. Drying Technol. 1999, 17, 175–189.
  • Chua, K. J.; Mujumdar, A. S.; Hawlader, M. N. A.; Chou, S. K.; Ho, J. C. Convective Drying of Agricultural Products. Effect of Continuous and Stepwise Change in Drying Air Temperature. Drying Technol. 2001, 19, 1949–1960.
  • Rodrigues, A. C. C.; Cunha, R. L.; Hubinger, M. D. Rheological Properties and Colour Evaluation of Papaya during Osmotic Dehydration Processing. J. Food Eng. 2003, 59, 129–135.
  • Udomkun, P.; Mahayothee, B.; Nagle, M.; Muller, J. Effects of Calcium Chloride and Calcium Lactate Applications with Osmotic Pretreatment on Physicochemical Aspects and Consumer Acceptances of Dried Papaya. Int. J. Food Sci. Technol. 2014, 49, 1122–1131.
  • Lovera, N.; Ramallo, L.; Salvadori, V. Effect of Processing Conditions on Calcium Content, Firmness, and Color of Papaya in Syrup. J. Food Process. 2014, 2014, 1. DOI:10.1155/2014/603639.
  • Ramallo, L. A.; Liotta, T. Efecto De Las Condiciones De Elaboración En La Incorporación De Calcio y La Firmeza Del Mamón (Carica Papaya L.) En Almíbar. Revista De Ciencia y Tecnología. 2012, 16, 59–64.
  • Rico, D.; Martín-Diana, A. B.; Frías, J. M.; Barat, J. M.; Henehan, G. M.; Barry-Ryan, C. Improvement in Texture Using Calcium Lactate and Heat-Shock Treatments for Stored Ready-to-Eat Carrots. J. Food Eng. 2007, 79, 1196–1206.
  • Pereira, L. M.; Ferrari, C. C.; Mastrantonio, S. S.; Rodrigues, A. C.; Hubinger, M. D. Kinetic Aspects, Texture, and Color Evaluation of Some Tropical Fruits during Osmotic Dehydration. Drying Technol. 2006, 24, 475–484.
  • Barragán-Iglesias, J.; Méndez-Lagunas, L. L.; Rodríguez-Ramírez, J. Ripeness Indexes and Physicochemical Changes of Papaya (Carica Papaya L., Cv. Maradol) during Ripening on-Tree. Scientia Horticulturae. 2018, 236, 272–278.
  • AOAC. Official Methods of Analysis, 13th ed.; Association of Official Analytical Chemists: Washington, DC, 1990.
  • Jain, S. K.; Verma, R. C.; Murdia, L. K.; Jain, H. K.; Sharma, G. P. Optimization of Process Parameters for Osmotic Dehydration of Papaya Cubes. J Food Sci Technol. 2011, 48, 211–217.
  • Rodríguez-Ramírez, J.; Méndez-Lagunas, L. L.; Martínez-Álvarez, C.; Diego-Nava, F. A Closed Loop Tunnel for Drying Kinetics Research. In Proceedings of Inter-American Drying Conference, Veracruz, México, 2001; pp 499–504.
  • Civille, G. V.; Szczesniak, A. S. Guidelines to Training a Texture Profile Panel. J. Texture Studies 1973, 4, 204–223.
  • Bari, L.; Hassan, P.; Absar, N.; Haque, M. E.; Khuda, M. I. I. E.; Pervin, M. M.; Khatun, S.; Hossain, M. I. Nutritional Analysis of Two Local Varieties of Papaya (Carica Papaya L.) at Different Maturation Stages. Pak. J. Biol. Sci. 2006, 9, 137–140.
  • Luna-Guzmán, I.; Cantwell, M.; Barrett, D. M. Fresh-Cut Cantaloupe: Effects of CaCl2 Dips and Heat Treatments on Firmness and Metabolic Activity. Postharvest Biol. Technol. 1999, 17, 201–213.
  • Valdés, S. M. Hidratos De Carbono. In Química De Los Alimentos; Badui, S. D., Ed.; PEARSON Addison Wesley: México, 2006; pp. 29–117.
  • Banjongsinsiri, P.; Shields, J.; Wicker, L. Vacuum Infusion of Plant or Fungal Pectinmethylesterase and Calcium Affects the Texture and Structure of Eggplant. J. Agric. Food Chem. 2004, 52, 8214–8223.
  • Lara, I.; Garcı́a, P.; Vendrell, M. Modifications in Cell Wall Composition after Cold Storage of Calcium-Treated Strawberry (Fragaria × Ananassa Duch.) Fruit. Postharvest Biol. Technol. 2004, 34, 331–339.
  • Willats, W. T.; Knox, J. P.; Mikkelsen, J. D. Pectin: New Insights into an Old Polymer are Starting to Gel. Trends Food Sci. Technol. 2006, 17, 97–104.
  • Sablani, S. S.; Rahman, S. M. Effect of Syrup Concentration, Temperature and Sample Geometry on Equilibrium Distribution Coefficients during Osmotic Dehydration of Mango. Food Res. Int. 2003, 36, 65–71.
  • El-Aouar, A. A.; Moreira, P. A.; Lucena, J. B.; Xidieh, F. M. Influence of the Osmotic Agent on the Osmotic Dehydration of Papaya (Carica Papaya L.). J. Food Eng. 2006, 75, 267–274.
  • García, M.; Díaz, R.; Martínez, Y.; Casariego, A. Effects of Chitosan Coating on Mass Transfer During Osmotic Dehydration of Papaya. Food Res. Int. 2010, 43, 1656–1660.
  • Thalerngnawachart, S.; Duangmal, K. Influence of Humectants on the Drying Kinetics, Water Mobility, and Moisture Sorption Isotherm of Osmosed Air-Dried Papaya. Drying Technol. 2016, 34, 574–583.
  • Rodrigues, S.; Oliveira, F. P.; Gallão, M. I.; Fernandes, F. N. Effect of Immersion Time in Osmosis and Ultrasound on Papaya Cell Structure during Dehydration. Drying Technol. 2009, 27, 220–225.
  • Yu, Y.; Jin, T. Z.; Fan, X.; Xu, Y. Osmotic Dehydration of Blueberries Pretreated with Pulsed Electric Fields: effects on Dehydration Kinetics, and Microbiological and Nutritional Qualities. Drying Technol. 2017, 35, 1543–1551.
  • Rodriguez, A.; García, M. A.; Campañone, L. A. Experimental Study of the Application of Edible Coatings in Pumpkin Sticks Submitted to Osmotic Dehydration. Drying Technol. 2016, 34, 635–644.
  • An, K.; Li, H.; Zhao, D.; Ding, S.; Tao, H.; Wang, Z. Effect of Osmotic Dehydration with Pulsed Vacuum on Hot-Air Drying Kinetics and Quality Attributes of Cherry Tomatoes. Drying Technol. 2013, 31, 698–706.
  • El-Aouar, A. A.; Moreira, P. A.; Xidieh, F. M. Drying Kinetics of Fresh and Osmotically Pre-Treated Papaya (Carica Papaya L.). J. Food Eng. 2003, 59, 85–91.
  • Lemus-Mondaca, R.; Miranda, M.; Andres, A. G.; Briones, V.; Villalobos, R.; Vega-Gálvez, A. Effect of Osmotic Pretreatment on Hot Air Drying Kinetics and Quality of Chilean Papaya (Carica Pubescens). Drying Technol. 2009, 27, 1105–1115.
  • Rahman, M. S.; Perera, C. O. Drying and Food Preservation. In Handbook of Food Preservation, 2nd ed; Rahman M. S., Ed; CRC Press: Boca Raton, FL, 2007; pp 433–446.
  • Akosman, C. Determination of Drying Characteristics and Effective Diffusivity for Sugar Cubes. Chem. Eng. Technol. 2004, 27, 1222–1226.
  • Porciuncula, B. D. A.; Segura, L. A.; Laurindo, J. B. Processes for Controlling the Structure and Texture of Dehydrated Banana. Drying Technol. 2016, 34, 167–176.
  • Maskan, M. Microwave/Air and Microwave Finish Drying of Banana. J. Food Eng. 2000, 44, 71–78.
  • Gabas, A. L.; Menegalli, F. C.; Ferrari, F.; Telis-Romero, J. Influence of Drying Conditions on the Rheological Properties of Prunes. Drying Technol. 2002, 20, 1485–1502.
  • Lyu, J.; Yi, J.; Bi, J.; Chen, Q.; Zhou, L.; Liu, X. Effect of Sucrose Concentration of Osmotic Dehydration Pretreatment on Drying Characteristics and Texture of Peach Chips Dried by Infrared Drying Coupled with Explosion Puffing Drying. Drying Technol. 2017, 35, 1887–1896.
  • Waldron, K. W.; Smith, A. C.; Parr, A. J.; Ng, A.; Parker, M. L. New Approaches to Understanding and Controlling Cell Separation in Relation to Fruit and Vegetable Texture. Trends Food Sci. Technol. 1997, 8, 213–221.
  • Rahman, M. S. Dried Food Properties: Challenges Ahead. Drying Technol. 2005, 23, 695–715.

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