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Decontamination of chilli flakes in a fluidized bed using combined technologies: Infrared, UV and ozone

机译:使用组合技术净化在流化床中的辣椒片:红外,紫外线和臭氧

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An initial study of the combination of IR, UV and ozone on treating raw and artificially inoculated chilli flakes (CF, Capsicum annum L) was assessed using a specially designed fluidised bed system, in a fused quartz tube, using a distributor plate and filtered air, to keep the CF in an air suspension. The untreated samples, as bought, were contaminated with similar to 1 x 10(6) cfu/g, they were subsequently autoclaved, and inoculated with Escherichia coli (MG1655). The individual treatments were all effective in reducing the bioburden with log reduction and treatment times similar to 6 logs (cfu/g) in <= 20 min for ozone (300 mgO(3)hr(-) (>) (1)); similar to 7 logs (cfu/g) in <= 40 min, for UV (4 W); and similar to 7 logs (cfu/g) in <= 20 min, for IR (100 W); for stationary air with ozone, and an airflow of 108 Lmin(-) (>) (1) with UV and IR treatment. The IR was modulated so that the external tube temperature was 58-60 degrees C. The treatment order was more effective for the IR and UV followed by ozone, than ozone followed by UV and IR (ozone, 10 min, UV and IR 10 min combined), this was due to the higher intial reduction of the UV and IR (0.80 log (cfu/g)) than with ozone first (0.13 log (cfu/g)). Such decontamination systems could be used efficiently when conveying the spices, just prior to aseptic packaging.
机译:使用分配板和过滤空气,使用特殊设计的流化床系统评估IR,UV和臭氧的组合对处理原料和人工接种的辣椒薄片(CF,CAPSICUM L)的初步研究。 ,将CF保持在空气悬架中。被购买的未经处理的样品被污染,含有类似于1×10(6)CFU / g,它们随后高压灭菌,并用大肠杆菌(Mg1655)接种。各种治疗在臭氧中<= 20分钟中的测井量和处理时间(300 mgO(3)HR(>)(1))中的测数减少和治疗时间(CFU / g)相似的处理时间而有效地减少生物上。类似于<= 40分钟的7个日志(CFU / g),用于UV(4 W);和IR(100 w)类似于<= 20 min的7个日志(cfu / g);对于具有臭氧的固定空气,以及108 Lmin( - )(>)(1)的气流,具有UV和IR处理。调节IR,使外部管温度为58-60℃。治疗顺序对IR和UV更有效,然后是臭氧,而不是臭氧,其次是UV和IR(臭氧,10分钟,UV和IR 10分钟组合),这是由于UV和IR的势差,而不是臭氧的较高(0.80 log(CFU / g)(0.13对数(CFU / G))。在无菌包装之前,可以在输送香料时有效地使用这种净化系统。

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