The objective of this study was to evaluate the effect of orally administered
ammonium chloride (NH4CL) on pH and specific gravity of urine, overall gain, and
water consumption in mature wethers on a grower/finisher ration. Obstructive
urolithiasis, or urinary calculi, is a common problem in sheep and goat production
systems utilizing a high grain diet, particularly one high in magnesium. Maintaining
animals on a 70 to 90% concentrate ration is most conducive to the formation of urinary
calculi. Boer cross wethers (n = 24) were stratified by body weight and randomly
assigned within strata to one of three treatment groups. Wethers were placed on a
common diet containing 2% NH4Cl during the three week collection period. Treatment
consisted of daily oral dosages of 0g NH4CL (CON), 5.85 g NH4CL (TRT 1), or 13.8g
NH4CL (TRT 2). Urine collected from TRT2 tested more acidic on the second and
fourth collections before coming back linear constant with both the control (CON) and
TRT1 . There was no effect of treatment (P < 0.001) on specific gravity of urine.
Weight gain was greater (P < 0.01) in TRT1 (4.15 kg) and TRT2 (4.48 kg) as compared
to CON wethers (2.95 kg). Water consumption was the most variable of all investigated objectives; all groups began with a linear increase for the first 4 d. Treatment 2 (P <
0.001) then showed significant increase at collections 2 and 4. Treatment 1 stayed more
linear with the control with minimal increases (P < 0.001) occurring at periods of more
acidic urine.
This study indicates that administration of NA4Cl had minimal effect on urine
pH, water consumption, and overall gain, but no effect on specific gravity.
Identifer | oai:union.ndltd.org:tamu.edu/oai:repository.tamu.edu:1969.1/ETD-TAMU-2641 |
Date | 15 May 2009 |
Creators | Kennedy, Matthew joseph |
Contributors | Ramsey, Wesley S. |
Source Sets | Texas A and M University |
Language | en_US |
Detected Language | English |
Type | Book, Thesis, Electronic Thesis, text |
Format | electronic, application/pdf, born digital |
Page generated in 0.0022 seconds