1969British Journal Of NutritionOpen access

The rumen buffering system of sheep fed pelleted roughage–concentrate rations

Bijan Emmanuel, M. J. Lawlor, Dermot McAleese

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Abstract

1. Three wethers fitted with permanent rumen cannulas were given a pelleted roughage–concentrate ration containing 45% ground barley straw as roughage. The animals were given 1 kg of the diet at 08.00 h and 500 g at 17.00 h. 2. The measurements made to determine the buffering components of the rumen fluid were: rumen pH, buffering capacity value (β), total volatile fatty acids (VFA), CO2and inorganic phosphorus concentrations.βwas expressed as the quantity of titrant (m-equiv./l.) required to bring about 2 unit changes in rumen fluid pH. The pH ranges in which theβvalues were measured were 4–6, 5–7 and 6–8. All measurements were made at hourly intervals over a 9 h period commencing 1 h before feeding. 3. Rumen pH values were high before feeding, decreased to a minimum 2 h after feeding and then increased to approximately the original values. The concentrations of total VFA followed an inverse pattern. There was diurnal variation in the concentrations of CO2but inorganic P levels varied very little throughout the day. 4. Significant correlations were obtained between VFA, inorganic P and CO2levels and theβvalues. It would appear that the bicarbonate and phosphate buffers were not effective in regulating the rumen pH when sheep were given a roughage–concentrate ration.

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1. Three wethers fitted with permanent rumen cannulas were given a pelleted roughage–concentrate ration containing 45% ground barley straw as roughage. The animals were given 1 kg of the diet at 08.00 h and 500 g at 17.00 h. 2. The measurements made to determine the buffering components of the rumen fluid were: rumen pH, buffering capacity value (β), total volatile fatty acids (VFA), CO2and inorganic phosphorus concentrations.βwas expressed as the quantity of titrant (m-equiv./l.) required to bring about 2 unit changes in rumen fluid pH. The pH ranges in which theβvalues were measured were 4–6, 5–7 and 6–8. All measurements were made at hourly intervals over a 9 h period commencing 1 h before feeding. 3. Rumen pH values were high before feeding, decreased to a minimum 2 h after feeding and then increased to approximately the original values. The concentrations of total VFA followed an inverse pattern. There was diurnal variation in the concentrations of CO2but inorganic P levels varied very little throughout the day. 4. Significant correlations were obtained between VFA, inorganic P and CO2levels and theβvalues. It would appear that the bicarbonate and phosphate buffers were not effective in regulating the rumen pH when sheep were given a roughage–concentrate ration.

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Available abstract

1. Three wethers fitted with permanent rumen cannulas were given a pelleted roughage–concentrate ration containing 45% ground barley straw as roughage. The animals were given 1 kg of the diet at 08.00 h and 500 g at 17.00 h. 2. The measurements made to determine the buffering components of the rumen fluid were: rumen pH, buffering capacity value (β), total volatile fatty acids (VFA), CO2and inorganic phosphorus concentrations.βwas expressed as the quantity of titrant (m-equiv./l.) required to bring about 2 unit changes in rumen fluid pH. The pH ranges in which theβvalues were measured were 4–6, 5–7 and 6–8. All measurements were made at hourly intervals over a 9 h period commencing 1 h before feeding. 3. Rumen pH values were high before feeding, decreased to a minimum 2 h after feeding and then increased to approximately the original values. The concentrations of total VFA followed an inverse pattern. There was diurnal variation in the concentrations of CO2but inorganic P levels varied very little throughout the day. 4. Significant correlations were obtained between VFA, inorganic P and CO2levels and theβvalues. It would appear that the bicarbonate and phosphate buffers were not effective in regulating the rumen pH when sheep were given a roughage–concentrate ration.

Key concepts: Rumen, Animal science, Straw, Chemistry, Bicarbonate, Phosphorus, Agronomy, Biology

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