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在线测量温度和相对湿度作为洋葱鳞茎在贮藏过程中质量变化的标记工具。

Online measurement of temperature and relative humidity as marker tools for quality changes in onion bulbs during storage.

机构信息

Department of Food Science, Aarhus University, Aarslev, Denmark.

Danish Technological Institute, Taastrup, Denmark.

出版信息

PLoS One. 2019 Jan 17;14(1):e0210577. doi: 10.1371/journal.pone.0210577. eCollection 2019.

Abstract

A long shelf life of onions (Allium cepa L.) is of high importance in the onion industry. Onions are dried and stored in large wooden boxes that are difficult to access. Monitoring temperature and relative humidity during these processes is challenging. Moreover, quality may change in storage without being noticed. Therefore, there is a need to find alternative methods for monitoring and controlling the drying and storage processes of onions and to identify early changes in quality during storage. The potential use of online measurements of temperature and relative humidity (RH) in the vicinity of onions was evaluated during drying and long-term storage of six onion batches (four cultivars and three selections of one of the cultivars) in commercial storage. The batches varied in bulb weight, dry matter content, firmness and disease incidence. The dry matter content and firmness decreased during storage, while the respiration rate and incidences of individual and total disease increased. Two of the batches had low storability with high disease incidences and high average temperatures and variations in the RH. The results showed that tracking the temperature and RH in the vicinity of the onions is a promising tool for improving the drying and storage processes in commercial storage and for identifying onion batches with reduced storability early in storage.

摘要

洋葱(Allium cepa L.)具有较长的货架期,这对洋葱产业非常重要。洋葱经过干燥并储存在大型木盒中,这些木盒难以进入。在这些过程中监测温度和相对湿度具有挑战性。此外,在储存过程中,即使质量发生变化也可能不会被注意到。因此,需要找到替代方法来监测和控制洋葱的干燥和储存过程,并在储存过程中尽早发现质量变化。在商业储存中,评估了在 6 批洋葱(4 个品种和 3 个同一品种的选择)的干燥和长期储存过程中,在线测量附近洋葱的温度和相对湿度(RH)的潜在用途。批次之间的鳞茎重量、干物质含量、硬度和疾病发生率存在差异。在储存过程中,干物质含量和硬度下降,而呼吸速率和个体及总疾病发生率增加。其中两批具有较低的储存能力,发病率高,平均温度高,相对湿度变化大。结果表明,跟踪附近洋葱的温度和 RH 是一种很有前途的工具,可以改进商业储存中的干燥和储存过程,并尽早识别出储存能力降低的洋葱批次。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f36e/6336314/61371434c883/pone.0210577.g001.jpg

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