Adhikari Achyut, Parraga Estrada Katheryn J, Chhetri Vijay S, Janes Marlene, Fontenot Kathryn, Beaulieu John C
School of Nutrition and Food Sciences Louisiana State University Agricultural Center Baton Rouge LA USA.
School of Plant, Environmental and Soil Sciences Louisiana State University Agricultural Center Baton Rouge LA USA.
Food Sci Nutr. 2020 Jan 14;8(2):1237-1243. doi: 10.1002/fsn3.1412. eCollection 2020 Feb.
Produce growers using surface or well water to irrigate their crops may require an appropriate water treatment system in place to meet the water quality standard imposed by FSMA Produce Safety Rule. This study evaluated the potential of using ultraviolet (UV-C) treatment in reducing the microbial population in agricultural water. Waters with turbidity levels ranging from 10.93 to 23.32 Nephelometric Turbidity Units (NTU) were prepared by mixing pond water and well water. The waters were inoculated with a cocktail of generic (ATCC 23716, 25922, and 11775) and then treated with UV-C light (20-60 mJ/cm). All tested doses of the UV-C treatment reduced the levels significantly ( < .05) in the water samples with the turbidity levels up to 23.32 NTU. The decrease in the turbidity from 23.32 to 10.93 NTU increased the level of reduction by more than 2.15 log most probable number (MPN)/100 ml). UV-C treatment effectively reduces microbial load in agriculture water; however, turbidity of water may significantly affect the disinfection efficacy. The study also demonstrated that sprinkler system resulted in a higher level of contamination of cantaloupes compared with drip irrigation. The results indicated that UV-C treatment could be a promising strategy in reducing the produce safety risks associated with irrigation water.
使用地表水或井水灌溉作物的农产品种植者可能需要配备适当的水处理系统,以满足美国食品药品监督管理局(FDA)《农产品安全规则》规定的水质标准。本研究评估了使用紫外线(UV-C)处理降低农业用水中微生物数量的潜力。通过混合池塘水和井水制备浊度范围为10.93至23.32散射浊度单位(NTU)的水。向这些水中接种了一组通用菌(美国典型培养物保藏中心23716、25922和11775),然后用UV-C光(20 - 60 mJ/cm)进行处理。对于浊度高达23.32 NTU的水样,所有测试剂量的UV-C处理均显著降低了菌水平(P < 0.05)。浊度从23.32 NTU降至10.93 NTU使降低水平增加了超过2.15对数最可能数(MPN)/100 ml)。UV-C处理可有效降低农业用水中的微生物负荷;然而,水的浊度可能会显著影响消毒效果。该研究还表明,与滴灌相比,喷灌系统导致哈密瓜的污染水平更高。结果表明,UV-C处理可能是降低与灌溉水相关的农产品安全风险的一种有前景的策略。