粘液
焓
吸附
热力学
化学
水分
吸附
玻璃化转变
植物
聚合物
物理
物理化学
有机化学
生物
作者
Sandra Karina Velázquez-Gutiérrez,Ana Cristina Figueira,M.E. Rodríguez-Huezo,Angélica Román‐Guerrero,H. Carrillo-Navas,C. Pérez‐Alonso
标识
DOI:10.1016/j.carbpol.2014.11.068
摘要
Freeze-dried chia mucilage adsorption isotherms were determined at 25, 35 and 40°C and fitted with the Guggenheim-Anderson-de Boer model. The integral thermodynamic properties (enthalpy and entropy) were estimated with the Clausius-Clapeyron equation. Pore radius of the mucilage, calculated with the Kelvin equation, varied from 0.87 to 6.44 nm in the temperature range studied. The point of maximum stability (minimum integral entropy) ranged between 7.56 and 7.63kg H2O per 100 kg of dry solids (d.s.) (water activity of 0.34-0.53). Enthalpy-entropy compensation for the mucilage showed two isokinetic temperatures: (i) one occurring at low moisture contents (0-7.56 kg H2O per 100 kg d.s.), controlled by changes in water entropy; and (ii) another happening in the moisture interval of 7.56-24 kg H2O per 100 kg d.s. and was enthalpy driven. The glass transition temperature Tg of the mucilage fluctuated between 42.93 and 57.93°C.
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