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使用微压二氧化碳增强天然加工黑橄榄卤水中的抗菌性能。

Use of Slightly Pressurized Carbon Dioxide to Enhance the Antimicrobial Properties of Brines in Naturally Processed Black Table Olives.

作者信息

Zullo Biagi Angelo, Ciafardini Gino

机构信息

Department of Agricultural, Environmental and Food Sciences, University of Molise, Via de Sanctis, I-86100 Campobasso, Italy.

出版信息

Microorganisms. 2022 Oct 17;10(10):2049. doi: 10.3390/microorganisms10102049.

Abstract

Naturally fermented black table olives are processed at low pH in the presence of high sodium chloride concentrations ranging from 8 to 12% (). Reducing the salt content of brine has become an urgent issue as it is responsible for several health and environmental problems. The study aim was to evaluate slightly pressurized CO (spCO) as a third barrier to microbial growth in naturally processed black table olives with low pH and a reduced NaCl concentration. Based on the assessments performed on a pilot plant scale, an spCO of 1 bar completely inhibited the growth of the bacteria and molds in the presence of reduced saline concentrations. Furthermore, the amount of yeast decreased in the brine as a function of the NaCl content. Laboratory tests performed under spCO conditions using a single yeast species from the same habitat confirmed the high sensitivity of some oxidizing yeasts and indicated that the fermenting yeast, , is the most tolerant species. Overall, in the brine of naturally processed olives with a low pH between 4 and 4.2, the antimicrobial properties observed with the high concentrations of NaCl can be achieved with a lower salt dose of 5% () when combined with spCO.

摘要

天然发酵的黑餐用橄榄是在低pH值且氯化钠浓度高达8%至12%的条件下加工而成的。降低盐水的盐分含量已成为一个紧迫问题,因为它会引发一些健康和环境问题。本研究的目的是评估微压二氧化碳(spCO)作为低pH值且氯化钠浓度降低的天然加工黑餐用橄榄中微生物生长的第三道屏障。基于中试规模的评估,1巴的spCO在盐分浓度降低的情况下完全抑制了细菌和霉菌的生长。此外,盐水中酵母的数量随氯化钠含量的变化而减少。在spCO条件下使用来自同一栖息地的单一酵母菌种进行的实验室测试证实了一些氧化型酵母的高敏感性,并表明发酵酵母是最具耐受性的菌种。总体而言,在pH值介于4至4.2之间的天然加工橄榄的盐水中,当与spCO结合使用时,5%()的较低盐剂量可实现高浓度氯化钠所具有的抗菌特性。

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