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Post-harvest conservation of “Benitaka” table grapes with different SO 2?generating pads and plastic liners under cold storage

机译:冷藏条件下不同SO 2 生成垫和塑料衬里的“ Benitaka”鲜食葡萄的采后保护

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This work aimed at evaluating the post-harvest conservation of “Benitaka” table grape by using different types of SO_(2)-generating pads and perforated plastic liners under cold storage. The grapes were harvested from off-season crop 2018 in a commercial vineyard located at Cambira, PR, Brazil. The completely randomized design was used with four replications in a 2-factor arrangement with an additional treatment [(4 × 3) + 1], and the following factors were evaluated: a) SO_(2)-generating pads (slow release containing 7?g of active ingredient – a.i.; slow release containing 4?g of a.i.; dual release containing 5?g of a.i.; and dual release containing 8?g of a.i.); and b) perforated plastic liners (0.3%, 0.9% and 1.0% of ventilation areas). The additional treatment did not contain any type of SO_(2)-generating pad, only standard microperforated plastic liner (1% of ventilation area). The bunches were packed in 0.5?kg-capacity plastic clamshells, which were placed in a corrugated carton box with the different combinations of SO_(2)-generating pads and plastic liners under cold storage at 1?~(°)C with high relative humidity (>90%). The treatments were evaluated at 30 and 45 days after the beginning of the cold storage, recording the incidence of gray mold, shattered berries, stem browning, mass loss and berry firmness. The data were submitted to analysis of variance and the means were compared by Tukey's test at 5%. The use of dual release SO_(2)-generating pads containing 5 g or 8?g of a.i., as well the slow release pads with 7?g of a.i., are efficient to control the incidence of gray mold in “Benitaka” table grapes packaged in plastic clamshells and kept under cold storage at 1?~(°)C up to 45 days. In these storage conditions, the use of perforated plastic liners with 0.3% of ventilation area or the micro perforated with 1.0% of ventilation area, result in the lowest bunch mass loss and shattered berries.
机译:这项工作旨在通过在冷藏条件下使用不同类型的产生SO_(2)的垫和穿孔的塑料衬里来评估“贝尼塔卡”食用葡萄的采后保存。这些葡萄是从2018年淡季作物中收获的,位于巴西PR坎比拉的一家商业葡萄园中。完全随机的设计以2因子的排列方式进行了四次复制,并进行了额外处理[(4×3)+1],并评估了以下因素:a)产生SO_(2)的护垫(缓释剂,含7种微克活性成分-ai;缓释包含4微克ai;双释包含5微克ai;双释包含8微克ai); b)穿孔的塑料衬里(通风面积的0.3%,0.9%和1.0%)。附加处理不包含任何类型的SO_(2)生成垫,仅包含标准的微孔塑料衬里(通风面积的1%)。将这些束包装在容量为0.5?kg的塑料翻盖中,然后将其放置在瓦楞纸箱中,该箱具有不同的SO_(2)产生垫和塑料衬里的组合,并在1?〜(°)C的冷藏温度下相对较高湿度(> 90%)。在冷藏开始后的30天和45天对处理进行评估,记录灰霉病,浆果破碎,茎褐变,质量损失和浆果硬度的发生率。将数据提交给方差分析,并以5%的Tukey检验比较均值。使用含有5 g或8?g ai的双释放SO_(2)产生垫,以及具有7?g ai的缓释垫,可有效控制“ Benitaka”食用葡萄中灰霉病的发生包装在塑料翻盖中,并在1?〜(°C)的温度下冷藏保存长达45天。在这些存储条件下,使用通风面积为0.3%的穿孔塑料衬里或通风面积为1.0%的微穿孔衬里,可使捆束质量损失和浆果破碎最少。

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