Use este identificador para citar ou linkar para este item: http://repositorio.ufla.br/jspui/handle/1/46683
Título: Colour variation in immature coffee dried under different dry bulb and dew point temperature conditions
Título(s) alternativo(s): Variação da cor de cafés imaturos secados em diferentes condições de temperatura de bulbo seco e temperatura de ponto de orvalho
Variación de color del café seco inmaturo en diferentes condiciones de temperatura de bulbo seco y temperatura de punto de rocío
Palavras-chave: Defeito preto-verde
Café - Secagem
Modelagem matemática
Taxa de redução de água
Black-green defect
Coffee - Drying
Mathematical modelling
Water reduction rate
Data do documento: Mai-2020
Editor: CDRR Editors
Citação: RIOS, P. de A. et al. Colour variation in immature coffee dried under different dry bulb and dew point temperature conditions. Research, Society and Development, Vargem Grande Paulista, v. 9, n. 7, p. e539974419, 2020. DOI: 10.33448/rsd-v9i7.4419.
Resumo: This study evaluated colour variation as a function of the drying kinetics of immature coffee subjected to different drying conditions. Additionally, mathematical models were fitted to experimental data for green coffee berries dried in a thin layer under different drying conditions, besides the water reduction rate (WRR) was determined. Each of the drying environments was determined by the combination of three different dry bulb temperatures (Tdb) (35, 40 and 45 °C) and three different dew point temperatures (Tdp) (2.6, 10.8 and 16.2 °C). Coffee (Coffea arabica L.) berries of the Topázio Amarelo variety were collected manually and selectively with initial water content of 2.106 ± 0.05 kg.kg-1 (dry basis, db); they were processed by the dry-processing method and dried to a final water content of 0.124 ± 0.05 kg.kg-1 (db) in a fixed-bed dryer combined with a laboratory air conditioning system (LACS). Following this process, the samples were separated into two parts, one containing beans with black-green and sour defects and the other containing the remaining beans, and the colour was read for each group. For all drying combinations, the Midilli model best fit the experimental data. The lowest WRR was 0.063 kg.kg-1.h-1 and occurred in the combination with the Tdb of 35 °C and Tdp of 16.2 °C. In the portion of coffee without defects, among the treatments performed at the Tdb of 35 °C, the combination with the Tdp of 2.6 °C had the lowest luminance values. For the “a” coordinate, the lowest values were found in the combination of the Tdb of 35 °C and Tdp of 2.6 °C.
URI: http://repositorio.ufla.br/jspui/handle/1/46683
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DEG - Artigos publicados em periódicos

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