Cold Plasma Technology for Tomato Processing By-Product Valorization: The Case of Tomato Peeling and Peel Drying

M. Sosnin, Egor Berestenko, E. H. A. Mounassar, I. Shorstkii
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引用次数: 1

Abstract

The tomato processing industry is focused on product yield maximization, keeping energy costs and waste effluents to a minimum while maintaining high product quality. In our study, cold atmospheric plasma (CAP) pretreatment enhanced tomato processing to facilitate peelability, a specific peeling process, and enhance peel drying. Peeling force analysis determined that CAP pretreatment of whole tomatoes improved peelability under the conditions used. The specific peeling force after CAP treatment decreased by more than three times. It was observed that cold atmospheric plasma pretreatment reduced the duration of infrared drying of tomato peels by 18.2%. Along with that, a positive effect on the reduction of the specific energy consumption of peel drying was shown for CAP-pretreated tomato peels. The obtained data show that the technology of cold atmospheric plasma pretreatment, in particular, when processing whole tomatoes and tomato peels, has a promising application in industry, as it can significantly reduce the specific energy consumption for peeling and drying procedures.
冷等离子体技术在番茄加工副产物增值中的应用——以番茄去皮和果皮干燥为例
番茄加工业的重点是产品产量最大化,在保持高产品质量的同时,将能源成本和废物排放降至最低。在我们的研究中,冷常压等离子体(CAP)预处理提高了番茄加工的可剥皮性,一个特定的剥皮过程,并促进了果皮的干燥。剥皮力分析表明,在使用的条件下,全番茄的CAP预处理提高了剥皮性。CAP处理后的比剥离力降低了3倍以上。低温常压等离子体预处理可使番茄皮红外干燥时间缩短18.2%。与此同时,cap预处理的番茄皮对降低果皮干燥的比能耗也有积极的影响。所获得的数据表明,冷常压等离子体预处理技术,特别是在处理整个西红柿和西红柿皮时,具有很好的工业应用前景,因为它可以显着降低去皮和干燥过程的比能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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