The impact of enological products for tartaric stabilization on wine filterability

IF 1 4区 工程技术 Q4 CHEMISTRY, APPLIED
V. Puškaš, U. Miljić, V. Vučurović
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引用次数: 0

Abstract

The aim of this research was to evaluate the impact of most commonly used agents for tartaric stabilization of wine, such as metatartaric acid, carboxymethyl cellulose (CMC), mannoproteins and gum arabic, on the filterability of white, rose and red wine previously pre-filtered and prepared for the final filtration and bottling. Wine filterability after sweetening with rectified concentrated must was also assessed. The experiments were carried out using Quality Filterability Test and the obtained results were expressed through filterability index (FI), and maximum filterable volume (Vmax). The results confirmed that used enological agents for the inhibition of tartaric instabilities generally did not worsen the filterability of white and rose wine (FI<20). However, it was evident that products containing mannoproteins and metatartaric acid considerably reduced red wine filterability (FI>500). The correlation between white and rose wine turbidity and filterability was recorded in the trials but the same trend was not registered for the red wine. The results of this study are important since membrane (final) filtration of improperly prepared wine characterized by low filterability can both increase the costs and lead to hold up on the bottling line.
酒石稳定的酿酒产品对葡萄酒过滤性能的影响
本研究的目的是评估最常用的葡萄酒酒石酸稳定剂,如元酒石酸、羧甲基纤维素(CMC)、甘露蛋白和阿拉伯胶,对白葡萄酒、桃红葡萄酒和红葡萄酒的过滤性能的影响,这些葡萄酒之前经过预过滤并准备用于最终的过滤和装瓶。并对精馏浓缩液加甜后的葡萄酒过滤性能进行了评价。实验采用Quality Filterability Test进行,所得结果用过滤指数(FI)和最大可过滤体积(Vmax)表示。结果证实,酒石酸不稳定性的抑制剂一般不会使白葡萄酒和桃红葡萄酒的滤过性恶化(FI500)。在试验中记录了白葡萄酒和桃红葡萄酒的浊度和滤过性之间的相关性,但在红葡萄酒中没有记录同样的趋势。这项研究的结果是重要的,因为膜(最终)过滤不正确制备的葡萄酒的特点是低过滤能力,既可以增加成本,并导致在装瓶生产线上搁置。
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来源期刊
Chemical Industry & Chemical Engineering Quarterly
Chemical Industry & Chemical Engineering Quarterly CHEMISTRY, APPLIED-ENGINEERING, CHEMICAL
CiteScore
2.10
自引率
0.00%
发文量
24
审稿时长
3.3 months
期刊介绍: The Journal invites contributions to the following two main areas: • Applied Chemistry dealing with the application of basic chemical sciences to industry • Chemical Engineering dealing with the chemical and biochemical conversion of raw materials into different products as well as the design and operation of plants and equipment. The Journal welcomes contributions focused on: Chemical and Biochemical Engineering [...] Process Systems Engineering[...] Environmental Chemical and Process Engineering[...] Materials Synthesis and Processing[...] Food and Bioproducts Processing[...] Process Technology[...]
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