Desorption isotherms and thermodynamic properties of Solanum gilo

S. G. Santos, Jefferson Kran Sarti, Cássio da Silva Kran, H. W. D. Silva, R. Rodovalho, Luís Sérgio Rodrigues Vale, Daniel Pereira da Silva, João César Reis Alves, D. C. D. Oliveira, I. A. Devilla
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Abstract

Solanum gilo is a plant belonging to the family Solanaceae with a probable origin in Africa. It was introduced to Brazil by workers. The fruit is cultivated by small producers in Brazil and it is a source of food for the low-income population. Its seeds are harvested with high moisture contents, and the drying process is necessary. Sorption isotherms consist of the relation between water activity (aw) and moisture content of an agricultural product at a constant temperature. This information contributes to the drying process, thus favoring an increased longevity of agricultural products, such as seeds. This research aims to determine the desorption isotherms of Solanum gilo seeds and calculate their thermodynamic properties (enthalpy, entropy and Gibbs free energy). Sorption experiments were performed by the gravimetric static method using saline solutions. Several mathematical models were fitted to the experimental data, and the selection of the best model was performed by statistical criteria. Equilibrium moisture contents were obtained at 10, 20 and 30°C and at water activities between 0.111 and 0.985 (decimal). The modified Oswin model best represents moisture desorption isotherms of Solanum gilo seeds under the studied conditions. The energy required for the process was 0.22-555.68 kJ kg-1. The latent heat of vaporization (L), the enthalpy (Qst), the entropy (ΔS) and the Gibbs free energy (ΔG) increased with the reduction of the equilibrium moisture content of seeds. The theory of isokinetics is valid for the desorption process.
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龙葵的解吸等温线及热力学性质
龙葵(Solanum gilo)是一种植物,属于龙葵科,可能起源于非洲。它是由工人引入巴西的。这种水果是由巴西的小生产者种植的,它是低收入人口的食物来源。它的种子收获时水分含量很高,干燥过程是必要的。吸附等温线是指恒定温度下农产品水分活度(aw)与水分含量之间的关系。这些信息有助于干燥过程,从而有利于延长农产品(如种子)的寿命。本研究旨在确定龙葵种子的解吸等温线,并计算其热力学性质(焓、熵和吉布斯自由能)。重量吸附实验进行的静态方法使用生理盐水的解决方案。对实验数据拟合了多个数学模型,并根据统计准则进行了最佳模型的选择。平衡水分含量在10、20和30℃,水活度在0.111和0.985之间(十进制)。修正的Oswin模型最能反映所研究条件下龙葵种子的水分解吸等温线。该工艺所需能量为0.22-555.68 kJ kg-1。蒸发潜热(L)、焓(Qst)、熵(ΔS)和吉布斯自由能(ΔG)随着种子平衡含水率的降低而增大。等速动力学理论对解吸过程是有效的。
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