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针对接种在六个苹果品种上的扩展青霉的消毒处理效果。

Efficacy of sanitizing treatments against Penicillium expansum inoculated on six varieties of apples.

作者信息

Salomão Beatriz C M, Aragão Gláucia M F, Churey John J, Worobo Randy W

机构信息

Department of Chemical Engineering and Food Engineering, Federal University of Santa Catarina, Universidade Federal de Santa Catarina, Florianópolis, Brazil.

出版信息

J Food Prot. 2008 Mar;71(3):643-7. doi: 10.4315/0362-028x-71.3.643.

Abstract

The effectiveness of several wash treatments was evaluated against spores of Penicillium expansum inoculated on six varieties of apples (Red Delicious, Golden Supreme, Empire, Macintosh, Fuji, and Gala). The wash treatments were water, acidified water (pH 6.5), acidified sodium hypochlorite (pH 6.5), nonacidified sodium hypochlorite (pH 8.8, 9.3, and 9.7; 50, 100, and 200 ppm, respectively), and peracetic acid (50 and 80 ppm). Spores of P. expansum were dried on the surface of the apples for 2 h before exposure to the different sanitizer solutions. Each apple was submerged in 100 ml of each treatment solution for 30 s, and the number of spores remaining were recovered and enumerated. The efficacy of chlorine solutions was enhanced by decreasing the pH to 6.5 (up to 5-log reduction, depending on apple variety). Peracetic acid solutions (50 and 80 ppm) resulted in a reduction of less than 2 log spores per g and had the same efficacy (P < or = 0.05) as nonacidified chlorine solutions (50, 100, and 200 ppm). Control water solutions produced a reduction of 1.34 log spores per g. Chlorine solutions at pH 6.5 resulted in the largest reduction of P. expansum spores for all apple varieties tested.

摘要

评估了几种清洗处理方法对接种在六个苹果品种(红元帅、金冠、帝国、麦金托什、富士和嘎啦)上的扩展青霉孢子的效果。清洗处理方法包括水、酸化水(pH 6.5)、酸化次氯酸钠(pH 6.5)、非酸化次氯酸钠(pH 8.8、9.3和9.7;分别为50、100和200 ppm)以及过氧乙酸(50和80 ppm)。在将扩展青霉孢子暴露于不同的消毒剂溶液之前,先将其在苹果表面干燥2小时。每个苹果在100毫升每种处理溶液中浸泡30秒,然后回收并计数剩余的孢子数量。通过将pH值降至6.5,氯溶液的效果得到增强(根据苹果品种,最多可减少5个对数级)。过氧乙酸溶液(50和80 ppm)导致每克孢子减少量少于2个对数级,并且与非酸化氯溶液(50、100和200 ppm)具有相同的效果(P≤0.05)。对照水溶液使每克孢子减少1.34个对数级。对于所有测试的苹果品种,pH 6.5的氯溶液导致扩展青霉孢子减少量最大。

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