2011Acta Agriculturae Scandinavica Section A – Animal ScienceRequires access

Stepwise chilling adapted to commercial conditions – Improving tenderness of pork without compromising water-holding capacity

Katja Rosenvold, U. Borup

Open publisher page 3 citations

Abstract

The possibility of commercially implementing a stepwise chilling process to improve tenderness without compromising the water-holding capacity (WHC) of pork was investigated in this study. A stepwise chilling process, Step10; tunnel chilling at −23°C/3 ms−1 to reach 10°C carcass temperature, a 6-h holding period at 10°C followed chilling at 4°C; n=28, was compared with conventional tunnel chilling (n=28). Substantial temperature differences between Step10 and control carcasses were obtained in the M. longissimus dorsi at 8-h post mortem .Tenderness was more than two sensory units higher (more tender) in the Step10 carcasses than in the control carcasses (P<0.001) without compromising drip loss or colour. In conclusion, the tested stepwise chilling process improved tenderness without compromising WHC under potential commercial conditions.

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What this paper is about

The possibility of commercially implementing a stepwise chilling process to improve tenderness without compromising the water-holding capacity (WHC) of pork was investigated in this study. A stepwise chilling process, Step10; tunnel chilling at −23°C/3 ms−1 to reach 10°C carcass temperature, a 6-h holding period at 10°C followed chilling at 4°C; n=28, was compared with conventional tunnel chilling (n=28). Substantial temperature differences between Step10 and control carcasses were obtained in the M. longissimus dorsi at 8-h post mortem .Tenderness was more than two sensory units higher (more tender) in the Step10 carcasses than in the control carcasses (P<0.001) without compromising drip loss or colour. In conclusion, the tested stepwise chilling process improved tenderness without compromising WHC under potential commercial conditions.

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Available abstract

The possibility of commercially implementing a stepwise chilling process to improve tenderness without compromising the water-holding capacity (WHC) of pork was investigated in this study. A stepwise chilling process, Step10; tunnel chilling at −23°C/3 ms−1 to reach 10°C carcass temperature, a 6-h holding period at 10°C followed chilling at 4°C; n=28, was compared with conventional tunnel chilling (n=28). Substantial temperature differences between Step10 and control carcasses were obtained in the M. longissimus dorsi at 8-h post mortem .Tenderness was more than two sensory units higher (more tender) in the Step10 carcasses than in the control carcasses (P<0.001) without compromising drip loss or colour. In conclusion, the tested stepwise chilling process improved tenderness without compromising WHC under potential commercial conditions.

Key concepts: Tenderness, Water holding capacity, Longissimus dorsi, Chemistry, Animal science, Food science, Biology

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