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February 12, 2026New Zealand Journal of Agricultural Research1 citations

Chemical Composition and In Sacco Degradation Kinetics of Four Common Biowastes in Canterbury

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AOAntonia S. E. OlszewskiMMM.C. MangweBRBrett Robinson

Key Points

  • This research aims to quantify the chemical makeup and degradation rates of various biowastes.
  • Utilized the in sacco nylon bag technique for degradation assessment.
  • Incubated biowaste samples in the rumens of four cows for multiple time points including 0 h to 72 h.
  • Analyzed soluble fractions of dry matter and crude protein degradation rates for each biowaste.
  • Brewer's grains had the lowest soluble fraction at 8.4%, while apple pomace had the highest at 54.7%.
  • Degradation rates for crude protein varied significantly, with potato waste at 21.1%/h and palm kernel expeller at 0.1%/h.
  • Findings highlight the variability between local and imported biowastes, useful for diet formulation.

Abstract

This research aimed to quantify the chemical composition and rumen degradation kinetics of three local and one imported biowaste using the in sacco nylon bag technique. Triplicate samples of oven‐dried biowastes ground to 4 mm were incubated in the rumens of four cows for 0 h, 2 h, 4 h, 6 h, 12 h, 24 h and 72 h. Bags attached to chains in descending order were placed in the ventral sac of the rumens. The soluble fractions (0 h) of dry matter were lowest for brewer's grains (BG) with 8.4% ± 0.88%, followed by palm kernel expeller (PKE) and potato waste (PW) with 25.4% ± 0.27% and 29.9% ± 1.08%, respectively. Apple pomace (AP) had the highest soluble fraction (54.7% ± 1.11%). For crude protein (CP), the rate of degradation was 9.5% ± 1.0%/h for BG, 5.0% ± 1.1%/h for AP, 0.1% ± 0.0%/h for PKE and 21.1% ± 2.0%/h for PW. These findings demonstrate the variability of local and imported biowastes and provide useful information on degradation kinetics which can be used for formulating diets.

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Cite This Study

Olszewski et al. (2026) studied this question.

synapsesocial.com/papers/698d6d9f5be6419ac0d52b46https://doi.org/10.1002/jag2.70010
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