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Acacia Gum as a Natural Anti-Plasticizer for the Production of Date Syrup Powder: Sorption Isotherms Physicochemical Properties and Data Modeling

机译:相思树胶作为生产枣糖浆粉的天然抗增塑剂:吸附等温线理化性质和数据建模

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摘要

The thermoplastic and hygroscopic behaviors of date syrup (DS) challenge the DS drying process. In this context, DS was mixed with 30%, 40%, 50%, and 60% acacia gum (AG) and subjected to a drum dryer. The chemical composition, bulk density ( ), caking degree (CD), glass transition temperature (Tg), and color values of DS powders were studied. The sorption isotherms were also obtained and compared to that of those predicted by mathematical models. According to the results, increasing the AG concentration enhanced the moisture content, , brightness, and Tg while it reduced the CD and equilibrium moisture sorption. All DS powders had type III isotherm behavior, i.e., similar to high-sugar foods. Guggenheim-Anderson-de Boer (GAB) and Peleg models were found to be suitable for fitting the experimental data and these models explained the monolayer moisture content decrease with increasing AG concentration. These results of the present study, for the first time, verified that the AG can be used as a natural anti-plasticizer agent for DS powder production.
机译:大枣糖浆(DS)的热塑性和吸湿性挑战了DS的干燥过程。在这种情况下,将DS与30%,40%,50%和60%的阿拉伯胶(AG)混合并进行鼓式干燥。研究了DS粉末的化学成分,堆积密度(),结块度(CD),玻璃化转变温度(Tg)和色值。还获得了吸附等温线,并将其与数学模型预测的等温线进行了比较。根据结果​​,增加AG浓度可提高水分含量,亮度和Tg,同时降低CD和平衡水分的吸收。所有DS粉末均具有III型等温线行为,即类似于高糖食品。 Guggenheim-Anderson-de Boer(GAB)和Peleg模型适合于拟合实验数据,这些模型解释了单层水分含量随AG浓度增加而降低。本研究的这些结果首次证明该AG可以用作DS粉生产中的天然抗增塑剂。

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