Mabusela Bongolwethu P, Belay Zinash A, Godongwana Buntu, Caleb Oluwafemi James
Agri-Food Systems and Omics Laboratory, Post-Harvest and Agro-Processing Technologies (PHATs), Agricultural Research Council (ARC) Infruitec-Nietvoorbij, Stellenbosch, 7599 South Africa.
Department of Chemical Engineering, Cape Peninsula University of Technology, P.O Box 1906, Bellville, 7535 South Africa.
J Food Sci Technol. 2023 Oct;60(10):2557-2567. doi: 10.1007/s13197-023-05775-3. Epub 2023 Jun 7.
Accumulated ethylene in fruit storage/transportation causes rapid senescence resulting in reduced shelf-life and postharvest losses. The aim of this study was to investigate the application of vacuum ultraviolet (VUV) photolysis modular reactor for fruit storage. The first experiment compared the effectiveness of VUV photolysis reactor with the standard fruit industry adsorbent (potassium permanganate, KMnO) on the removal of ethylene from mixed-fruit loading of apples, banana, and pears stored at ambient temperature (16 °C) for 6 days. Second study evaluated the impact of direct VUV radiation on quality attributes of apples stored at 10 °C for 21 days. Results showed that ethylene produced in mixed-fruit loading storage significantly ( < 0.05) reduced by 86.9% in the storage chamber connected to VUV modular reactor compared to 25.4% for storage under potassium permanganate. Direct exposure of apples to VUV radiation successfully reduced both ethylene and respiration rate but damaged the skin of the apples. Hue angle and lightness (*) for apples exposed to VUV radiation declined significantly ( < 0.05) from 60.7 ± 1.09 to 33.5 ± 9.51 and 58.1 ± 3.60 to 50.4 ± 1.13, respectively. This study showed the potential of VUV photolysis as an innovative technique for removing ethylene from storage facility.
水果储存/运输过程中积累的乙烯会导致快速衰老,从而缩短货架期并造成采后损失。本研究的目的是探讨真空紫外(VUV)光解模块化反应器在水果储存中的应用。第一个实验比较了VUV光解反应器与标准水果行业吸附剂(高锰酸钾,KMnO₄)在去除苹果、香蕉和梨的混合水果装载物在室温(16℃)下储存6天过程中乙烯的效果。第二项研究评估了直接VUV辐射对在10℃下储存21天的苹果品质属性的影响。结果表明,与高锰酸钾储存下的25.4%相比,连接VUV模块化反应器的储存室中混合水果装载物储存产生的乙烯显著(P<0.05)减少了86.9%。苹果直接暴露于VUV辐射下成功降低了乙烯和呼吸速率,但损坏了苹果的表皮。暴露于VUV辐射下的苹果的色相角和明度(*)分别从60.7±1.09显著(P<0.05)下降到33.5±9.51和从58.1±3.60下降到50.4±1.13。本研究表明VUV光解作为一种从储存设施中去除乙烯的创新技术具有潜力。