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Dynamic changes in the physicochemical properties of fresh-cut produce wash water as impacted by commodity type and processing conditions

机译:鲜切农产品洗涤水的理化特性的动态变化受到商品类型和加工条件的影响

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摘要

Organic materials in fresh-cut produce wash water deplete free chlorine that is required to prevent pathogen survival and cross-contamination. This research evaluated water quality parameters frequently used to describe organic load for their fitness to predict chlorine demand (CLD) and chemical oxygen demand (COD), which are major needs identified by the industry-led produce food safety taskforce. Batches of romaine lettuce, iceberg lettuce, or carrot of different cut sizes and shapes were washed in 40 liters of water. Physicochemical properties of wash water including CLD, COD, total organic carbon (TOC), total suspended solids (TSS), total dissolved solids (TDS), turbidity, total sugar content, and pH, were monitored. Results indicate that pH is primarily commodity dependent, while organic load is additionally impacted by cutting and washing conditions. Significant linear increases in COD, TOC, CLD, TDS, and turbidity resulted from increasing product-to-water ratio, and decreasing cut size. Physicochemical parameters, excluding pH, showed significant positive correlation across different cut sizes within a commodity. High correlations were obtained between CLD and COD and between COD and TOC for pooled products. The convenient measurement of TDS, along with its strong correlation with COD and CLD, suggests the potential of TDS for predicting organic load and chlorine reactivity. Finally, the potential application and limitation of the proposed models in practical produce processing procedures are discussed extensively.
机译:鲜切物中的有机物质产生的洗涤水会消耗掉游离氯,这是防止病原体生存和交叉污染所必需的。这项研究评估了经常用来描述有机负荷的水质参数,以适应其对需氯量(CLD)和化学需氧量(COD)的适应性预测,这是由行业领导的农产品食品安全工作组确定的主要需求。用40升水洗涤一批生菜,卷心莴苣或切成不同大小和形状的胡萝卜。监测洗涤水的理化性质,包括CLD,COD,总有机碳(TOC),总悬浮固体(TSS),总溶解固体(TDS),浊度,总糖含量和pH。结果表明pH值主要取决于商品,而切割和洗涤条件还会影响有机负荷。 COD,TOC,CLD,TDS和浊度的线性显着增加是由于产品与水的比例增加以及切割尺寸减小所致。理化参数(不包括pH值)在商品内不同切割尺寸之间显示出显着正相关。对于合并产品,在CLD和COD之间以及COD和TOC之间获得了高度相关性。 TDS的便捷测量以及与COD和CLD的强相关性表明TDS在预测有机负荷和氯反应性方面的潜力。最后,广泛讨论了所提出的模型在实际农产品加工过程中的潜在应用和局限性。

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