Date Palm Research Center of Excellence, King Faisal University, Al-Ahsa 31982, Saudi Arabia.
Department of Agricultural and Biosystems Engineering, Faculty of Agriculture, Menoufia University, Shebin El Koum 32514, Egypt.
Sensors (Basel). 2022 Jun 21;22(13):4680. doi: 10.3390/s22134680.
Cold storage is deemed one of the main elements in food safety management to maintain food quality. The temperature, relative humidity (RH), and air quality in cold storage rooms (CSRs) should be carefully controlled to ensure food quality and safety during cold storage. In addition, the components of CSR are exposed to risks caused by the electric current, high temperature surrounding the compressor of the condensing unit, snow and ice accumulation on the evaporator coils, and refrigerant gas leakage. These parameters affect the stored product quality, and the real-time sending of warnings is very important for early preemptive actionability against the risks that may cause damage to the components of the cold storage rooms. The IoT-based control (IoT-BC) with multipurpose sensors in food technologies presents solutions for postharvest quality management of fruits during cold storage. Therefore, this study aimed to design and evaluate a IoT-BC system to remotely control, risk alert, and monitor the microclimate parameters, i.e., RH, temperature, CO, CH, and light and some operating parameters, i.e., the temperature of the refrigeration compressor, the electrical current, and the energy consumption for a modified CSR (MCSR). In addition, the impacts of the designed IoT-BC system on date fruit quality during cold storage were investigated compared with a traditional CSR (TCSR) as a case study. The results showed that the designed IoT-BC system precisely controlled the MCSR, provided reliable data about the interior microclimate atmosphere, applied electrical current and energy consumption of the MCSR, and sent the necessary alerts in case of an emergency based on real-time data analytics. There was no significant effect of the storage time on the most important quality attributes for stored date fruit in the MCSR compared with the TCSR. As a result, the MCSR maintained high-quality attributes of date fruits during cold storage. Based on the positive impact of the designed IoT-BC system on the MCSR and stored fruit quality, this modification seems quite suitable for remotely managing cold storage facilities.
冷藏被认为是食品安全管理的主要因素之一,以维持食品质量。冷藏库 (CSR) 的温度、相对湿度 (RH) 和空气质量应仔细控制,以确保冷藏期间的食品安全。此外,CSR 的组成部分会受到电流、冷凝机组压缩机周围高温、蒸发器盘管上积雪和结冰以及制冷剂气体泄漏等因素的影响。这些参数会影响储存产品的质量,实时发送警告对于针对可能损坏冷藏库组件的风险采取早期先发制人的行动非常重要。基于物联网的控制 (IoT-BC) 结合食品技术中的多用途传感器,为冷藏期间水果的采后质量管理提供了解决方案。因此,本研究旨在设计和评估一种 IoT-BC 系统,以远程控制、风险预警和监测微气候参数,即 RH、温度、CO、CH 和光,以及一些操作参数,即制冷压缩机温度、电流和能耗,用于改造后的冷藏库 (MCSR)。此外,与传统的冷藏库 (TCSR) 作为案例研究相比,研究了设计的 IoT-BC 系统对冷藏期间枣果质量的影响。结果表明,设计的 IoT-BC 系统精确控制了 MCSR,提供了有关内部微气候大气的可靠数据,应用了 MCSR 的电流和能耗,并根据实时数据分析在紧急情况下发送必要的警报。与 TCSR 相比,MCSR 中储存时间对储存枣果最重要的质量属性没有显著影响。因此,MCSR 在冷藏期间保持了枣果的高质量属性。基于设计的 IoT-BC 系统对 MCSR 和储存水果质量的积极影响,这种改造似乎非常适合远程管理冷藏设施。