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Articles

Organic acid profile of chestnut (Castanea sativa Mill.) as affected by hot air convective drying

Drying influence on chestnut organic acids

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 557-565 | Received 07 Apr 2017, Accepted 16 Mar 2018, Published online: 30 Apr 2018

References

  • Barreira, J. C. M.; Casal, S.; Ferreira, I. C. F. R.; Oliveira, M. B. P. P.; Pereira, J. A. Nutritional, Fatty Acid and Triacylglycerol Profiles of Castanea sativa Mill. Cultivars: A Compositional and Chemometric Approach. Journal of Agricultural and Food Chemistry 2009, 57, 2836–2842. DOI: 10.1021/jf803754u.
  • Barreira, J. C. M.; Casal, S.; Ferreira, I. C. F. R.; Peres, A. M.; Pereira, J. A.; Oliveira, M. B. P. P. Chemical Characterization of Chestnut Cultivars from Three Consecutive Years: Chemometrics and Contribution for Authentication. Food and Chemical Toxicology 2012, 50, 2311–2317. DOI: 10.1016/j.fct.2012.04.008.
  • Borges, O.; Gonçalves, B.; Soeiro de Carvalho, J. L.; Correia, P.; Silva, A. P. Nutritional Quality of Chestnut (Castanea sativa Mill.) Cultivars from Portugal. Food Chemistry 2008, 106, 976–984. DOI: 10.1016/j.foodchem.2007.07.011.
  • Ertürk, Ü.; Mert, C.; Soylu, A. Chemical Composition of Fruits of Some Important Chestnut Cultivars. Brazilian Archives of Biology and Technology 2006, 49, 183–188. DOI: 10.1590/S1516-89132006000300001.
  • Míguelez, J. D. L. M.; Bernárdez, M. M.; Queijeiro, J. M. G. Composition of Varieties of Chestnuts from Galicia (Spain). Food Chemistry 2004, 84, 401–404. DOI: 10.1016/S0308-8146(03)00249-8.
  • Pereira-Lorenzo, S.; Ramos-Cabrer, A. M.; Díaz-Hernández, M. B.; Ciordia-Ara, M.; Ríos-Mesa, D. Chemical Composition of Chestnut Cultivars from Spain. Scientia Horticulturae 2006, 107, 306–314. DOI: 10.1016/j.scienta.2005.08.008.
  • Cletus, A. B.; Carson, J. K. Drying Curves and Apparent Diffusivity of New Zealand Chestnut Variety “1015”. Journal of Food Engineering 2008, 85, 381–386. DOI: 10.1016/j.jfoodeng.2007.07.028.
  • Delgado, T.; Pereira, J. A.; Baptista, P.; Casal, S.; Ramalhosa, E. Shell’s Influence on Drying Kinetics, Color and Volumetric Shrinkage of Castanea sativa Mill. Fruits. Food Research International 2014, 55, 426–435. DOI: 10.1016/j.foodres.2013.11.043.
  • Guiné, R. P. F.; Fernandes, R. M. C. Analysis of the Drying Kinetics of Chestnuts. Journal of Food Engineering 2006, 76, 460–467. DOI: 10.1016/j.jfoodeng.2005.04.063.
  • Moreira, R.; Chenlo, F.; Chaguri, L.; Vázquez, G. Mathematical Modelling of the Drying Kinetics of Chestnut (Castanea sativa Mill.) Influence of the Natural Shells. Food and Bioproducts Processing 2005, 83(4), 306–314. DOI: 10.1205/fbp.05035.
  • Koyuncu, T.; Serdar, U.; Tosun, I. Drying Characteristics and Energy Requirement for Dehydration of Chestnuts (Castanea sativa Mill.). Journal of Food Engineering 2004, 62, 165–168. DOI: 10.1016/S0260-8774(03)00228-0.
  • Attanasio, G.; Cinquanta, L.; Albanese, D.; Matteo, M. D. Effects of Drying Temperatures on Physico-Chemical Properties of Dried and Rehydrated Chestnuts (Castanea sativa). Food Chemistry 2004, 88, 583–590. DOI: 10.1016/j.foodchem.2004.01.071.
  • Moreira, R.; Chenlo, F.; Chaguri, L.; Fernandes, C. Water Absorption, Texture, and Color Kinetics of Air-Dried Chestnuts during Rehydration. Journal of Food Engineering 2008, 86, 584–594. DOI: 10.1016/j.jfoodeng.2007.11.012.
  • Moreira, R.; Chenlo, F.; Chaguri, L.; Mayor, L. Analysis of Chestnut Cellular Tissue during Osmotic Dehydration, Air Drying, and Rehydration Processes. Drying Technology 2011, 29, 10–18. DOI: 10.1080/07373937.2010.482709.
  • Correia, P.; Leitão, A.; Beirão-da-Costa, M. L. The Effect of Drying Temperatures on Morphological and Chemical Properties of Dried Chestnuts Flours. Journal of Food Engineering 2009, 90, 325–332. DOI: 10.1016/j.jfoodeng.2008.06.040.
  • Correia, P.; Beirão-da-Costa, M. L. Effect of Drying Temperatures on Starch-Related Functional and Thermal Properties of Chestnut Flours. Food and Bioproducts Processing 2012, 90, 284–294. DOI: 10.1016/j.fbp.2011.06.008.
  • Moreira, R.; Chenlo, F.; Torres, M. D.; Rama, B. Influence of the Chestnuts Drying Temperature on the Rheological Properties of Their Doughs. Food and Bioproducts Processing 2013, 91, 7–13. DOI: 10.1016/j.fbp.2012.08.004.
  • Zhang, M.; Chen, H.; Zhang, Y. Physicochemical, Thermal, and Pasting Properties of Chinese Chestnut (Castanea mollissima Bl.) Starches as Affected by Different Drying Methods. Starch/Stärke. 2011, 63, 260–267. DOI: 10.1002/star.v63.5.
  • Raybaudi-Massilia, R. M.; Mosqueda-Melgar, J.; Martín-Belloso, O. Antimicrobial Activity of Malic Acid against Listeria monocytogenes, Salmonella Enteritidis and Escherichia coli O157: H7 in Apple, Pear and Melon Juices. Food Control. 2009, 20, 105–112. DOI: 10.1016/j.foodcont.2008.02.009.
  • Altmeyer, P. J.; Matthes, U.; Pawlak, F.; Hoffmann, K.; Frosch, P. J.; Ruppert, P.; Wassilew, S. W.; Horn, T.; Kreysel, H. W.; Lutz, G. Antipsoriatic Effect of Fumaric Acid Derivatives. Results of a Multicenter Double-Blind Study in 100 Patients. Journal of the American Academy of Dermatology 1994, 30, 977–981. DOI: 10.1016/S0190-9622(94)70121-0.
  • Zhou, S.; Jin, J.; Bai, T.; Sachleben, L. R.; Cai, L.; Zheng, Y. Potential Drugs Which Activate Nuclear Factor E2-Related Factor 2 Signaling to Prevent Diabetic Cardiovascular Complications: A Focus on Fumaric Acid Esters. Life Sciences 2015, 134, 56–62. DOI: 10.1016/j.lfs.2015.05.015.
  • Duffy, S. J.; Gokce, N.; Holbrook, M.; Huang, A.; Frei, B.; Keaney, J. F.; Vita, J. A. Treatment of Hypertension with Ascorbic Acid. The Lancet. 1999, 354, 2048–2049. DOI: 10.1016/S0140-6736(99)04410-4.
  • Nagai, R.; Nagai, M.; Shimasaki, S.; Baynes, J. W.; Fujiwara, Y. Citric Acid Inhibits Development of Cataracts, Proteinuria and Ketosis in Streptozotocin (Type 1) Diabetic Rats. Biochemical and Biophysical Research Communications 2010, 393, 118–122. DOI: 10.1016/j.bbrc.2010.01.095.
  • Ribeiro, B.; Rangel, J.; Valentão, P.; Andrade, P. B.; Pereira, J. A.; Bölke, H.; Seabra, R. M. Organic Acids in Two Portuguese Chestnut (Castanea sativa Miller) Varieties. Food Chemistry 2007, 100, 504–508. DOI: 10.1016/j.foodchem.2005.09.073.
  • Gonçalves, B.; Borges, O.; Costa, H. S.; Bennett, R.; Santos, M.; Silva, A. P. Metabolite Composition of Chestnut (Castanea sativa Mill.) Upon Cooking: Proximate Analysis, Fibre, Organic Acids and Phenolics. Food Chemistry 2010, 122, 154–160. DOI: 10.1016/j.foodchem.2010.02.032.
  • Barros, A. I. R. N. A.; Nunes, F. M.; Gonçalves, B.; Bennett, R. N.; Silva, A. P. Effect of Cooking on Total Vitamin C Contents and Antioxidant Activity of Sweet Chestnuts (Castanea sativa Mill.). Food Chemistry 2011, 128, 165–172. DOI: 10.1016/j.foodchem.2011.03.013.
  • Carocho, M.; Barros, L.; Antonio, A. L.; Barreira, J. C. M.; Bento, A.; Kaluska, I.; Ferreira, I. C. F. R. Analysis of Organic Acids in Electron Beam Irradiated Chestnuts (Castanea sativa Mill.): Effects of Radiation Dose and Storage Time. Food and Chemical Toxicology 2013, 55, 348–352. DOI: 10.1016/j.fct.2013.01.031.
  • Neri, L.; Dimitri, G.; Sacchetti, G. Chemical Composition and Antioxidant Activity of Cured Chestnuts from Three Sweet Chestnut (Castanea sativa Mill.) Ecotypes from Italy. Journal of Food Composition and Analysis 2010, 23, 23–29. DOI: 10.1016/j.jfca.2009.03.002.
  • Dinis, L. T.; Peixoto, F.; Pinto, T.; Costa, R.; Bennett, R. N.; Gomes-Laranjo, J. Study of Morphological and Phenological Diversity in Chestnut Trees (‘Judia’ Variety) as a Function of Temperature Sum. Environmental and Experimental Botany 2011, 70, 110–120. DOI: 10.1016/j.envexpbot.2010.08.003.
  • Bernárdez, M. M.; Miguélez, J. D. M.; Queijeiro, J. G. HPLC Determination of Sugars in Varieties of Chestnut Fruits from Galicia (Spain). Journal of Food Composition and Analysis 2004, 17, 63–67. DOI: 10.1016/S0889-1575(03)00093-0.
  • Ball, G. F. M.; Vitamin C. In Vitamins in Foods: Analysis, Bioavailability, and Stability, Ball, G. F. M., Ed.; CRC Press: Boca Raton, USA, 2006; pp. 289–305.
  • Lee, S. K.; Kader, A. A. Preharvest and Postharvest Factors Influencing Vitamin C Content of Horticultural Crops. Postharvest Biology and Technology 2000, 20, 207–220. DOI: 10.1016/S0925-5214(00)00133-2.
  • Shui, G.; Leong, L. P. Separation and Determination of Organic Acids and Phenolic Compounds in Fruit Juices and Drinks by High-Performance Liquid Chromatography. Journal of Chromatography A 2002, 977, 89–96. DOI: 10.1016/S0021-9673(02)01345-6.