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Food Safety in the Domestic Environment: An Interdisciplinary Investigation of Microbial Hazards During Food Preparation

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Listed:
  • Arnout R. H. Fischer
  • Aarieke E. I. De Jong
  • Esther D. Van Asselt
  • Rob De Jonge
  • Lynn J. Frewer
  • Maarten J. Nauta

Abstract

It has been established that, to a considerable extent, the domestic hygiene practices adopted by consumers can result in a greater or lesser microbial load in prepared meals. In the research presented here, an interdisciplinary study is reported in which interviews, observations of consumers preparing a recipe, and microbial contamination of the finished meals were compared. The results suggest that, while most consumers are knowledgeable about the importance of cross‐contamination and heating in preventing the occurrence of foodborne illness, this knowledge is not necessarily translated into behavior. The adoption of habitual cooking practices may also be important. Potentially risky behaviors were, indeed, observed in the domestic food preparation environment. Eighteen of the participants made errors in food preparation that could potentially result in cross‐contamination, and seven participants allowed raw meat juices to come in contact with the final meal. Using a tracer microorganism the log reduction as a result of consumer preparation was estimated at an average of log 4.1 cfu/salad. When combining these findings, it was found that cross‐contamination errors were a good predictor for log reduction. Procedural food safety knowledge (i.e., knowledge proffered after general open questions) was a better predictor of efficacious bacterial reduction than declarative food safety knowledge (i.e., knowledge proffered after formal questioning). This suggests that motivation to prepare safe food was a better indicator of actual behavior than knowledge about food safety per se.

Suggested Citation

  • Arnout R. H. Fischer & Aarieke E. I. De Jong & Esther D. Van Asselt & Rob De Jonge & Lynn J. Frewer & Maarten J. Nauta, 2007. "Food Safety in the Domestic Environment: An Interdisciplinary Investigation of Microbial Hazards During Food Preparation," Risk Analysis, John Wiley & Sons, vol. 27(4), pages 1065-1082, August.
  • Handle: RePEc:wly:riskan:v:27:y:2007:i:4:p:1065-1082
    DOI: 10.1111/j.1539-6924.2007.00944.x
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    References listed on IDEAS

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    1. Arnout R. H. Fischer & Aarieke E. I. De Jong & Rob De Jonge & Lynn J. Frewer & Maarten J. Nauta, 2005. "Improving Food Safety in the Domestic Environment: The Need for a Transdisciplinary Approach," Risk Analysis, John Wiley & Sons, vol. 25(3), pages 503-517, June.
    2. P. F. M. Teunis & A. H. Havelaar, 2000. "The Beta Poisson Dose‐Response Model Is Not a Single‐Hit Model," Risk Analysis, John Wiley & Sons, vol. 20(4), pages 513-520, August.
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    1. Ewen Todd, 2020. "Food-Borne Disease Prevention and Risk Assessment," IJERPH, MDPI, vol. 17(14), pages 1-13, July.
    2. Maarten J. Nauta & Arnout R. H. Fischer & Esther D. Van Asselt & Aarieke E. I. De Jong & Lynn J. Frewer & Rob De Jonge, 2008. "Food Safety in the Domestic Environment: The Effect of Consumer Risk Information on Human Disease Risks," Risk Analysis, John Wiley & Sons, vol. 28(1), pages 179-192, February.
    3. Carol Byrd-Bredbenner & Jacqueline Berning & Jennifer Martin-Biggers & Virginia Quick, 2013. "Food Safety in Home Kitchens: A Synthesis of the Literature," IJERPH, MDPI, vol. 10(9), pages 1-26, September.
    4. Esther Van Asselt & Arnout Fischer & Aarieke E. I. De Jong & Maarten J. Nauta & Rob De Jonge, 2009. "Cooking Practices in the Kitchen—Observed Versus Predicted Behavior," Risk Analysis, John Wiley & Sons, vol. 29(4), pages 533-540, April.

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