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J. Salinas-Chavira,C. Arzola,V. Gonzalez-Vizcarra,O.M. Manriquez-Nunez,M.F. Montano-Gomez,J.D. Navarrete-Reyes,C. Raymundo,R.A. Zinn 아세아·태평양축산학회 2015 Animal Bioscience Vol.28 No.9
In experiment 1, eighty crossbred steers (239±15 kg) were used in a 229-d experiment to evaluate the effects of increasing levels of enzymatically hydrolyzed yeast (EHY) cell wall in diets on growth performance feedlot cattle during periods of elevated ambient temperature. Treatments consisted of steam-flaked corn-based diets supplemented to provide 0, 1, 2, or 3 g EHY/hd/d. There were no effects on growth performance during the initial 139-d period. However, from d 139 to harvest, when 24-h temperature humidity index averaged 80, EHY increased dry matter intake (DMI) (linear effect, p<0.01) and average daily gain (ADG) (linear effect, p = 0.01). There were no treatment effects (p>0.10) on carcass characteristics. In experiment 2, four Holstein steers (292±5 kg) with cannulas in the rumen and proximal duodenum were used in a 4×4 Latin Square design experiment to evaluate treatments effects on characteristics of ruminal and total tract digestion in steers. There were no treatment effects (p>0.10) on ruminal pH, total volatile fatty acid, molar proportions of acetate, butyrate, or estimated methane production. Supplemental EHY decreased ruminal molar proportion of acetate (p = 0.08), increased molar proportion of propionate (p = 0.09), and decreased acetate:propionate molar ratio (p = 0.07) and estimated ruminal methane production (p = 0.09). It is concluded that supplemental EHY may enhance DMI and ADG of feedlot steers during periods of high ambient temperature. Supplemental EHY may also enhance ruminal fiber digestion and decrease ruminal acetate:propionate molar ratios in feedlot steers fed steam-flaked corn-based finishing diets.
Instantaneous Compensation in Three-Phase Four-Wire Systems: Line Power Loss Analysis
J.C. Montano,P. Salmeron,J. Prieto,H. Kim 전력전자학회 2004 ICPE(ISPE)논문집 Vol.- No.-
This paper discusses on the supply-line cable losses of shunt type active power filters (APF) in three-phase four-wire systems according to instantaneous compensation methods whether or not compensating the neutral current. According to instantaneous power compensation theory, the instantaneous-reactive current can be reduced without altering the instantaneous active power. Two compensation approaches are considered in this paper: 1) for eliminating the total instantaneous-reactive current where the neutral current can still flow; 2) for eliminating the modified instantaneous-reactive current where the neutral current is compensated at zero. It demonstrates that, in common situations of medium and low relative-values of the zerosequence voltage, the total cable losses (line and neutral) obtained with the second approach are lower than those obtained with the first approach. Simulation results confirm the theoretical analysis and show the compensator performance.
Salinas-Chavira, J.,Arzola, C.,Gonzalez-Vizcarra, V.,Manriquez-Nunez, O.M.,Montano-Gomez, M.F.,Navarrete-Reyes, J.D.,Raymundo, C.,Zinn, R.A. Asian Australasian Association of Animal Productio 2015 Animal Bioscience Vol.28 No.9
In experiment 1, eighty crossbred steers ($239{\pm}15kg$) were used in a 229-d experiment to evaluate the effects of increasing levels of enzymatically hydrolyzed yeast (EHY) cell wall in diets on growth performance feedlot cattle during periods of elevated ambient temperature. Treatments consisted of steam-flaked corn-based diets supplemented to provide 0, 1, 2, or 3 g EHY/hd/d. There were no effects on growth performance during the initial 139-d period. However, from d 139 to harvest, when 24-h temperature humidity index averaged 80, EHY increased dry matter intake (DMI) (linear effect, p<0.01) and average daily gain (ADG) (linear effect, p = 0.01). There were no treatment effects (p>0.10) on carcass characteristics. In experiment 2, four Holstein steers ($292{\pm}5kg$) with cannulas in the rumen and proximal duodenum were used in a $4{\times}4$ Latin Square design experiment to evaluate treatments effects on characteristics of ruminal and total tract digestion in steers. There were no treatment effects (p>0.10) on ruminal pH, total volatile fatty acid, molar proportions of acetate, butyrate, or estimated methane production. Supplemental EHY decreased ruminal molar proportion of acetate (p = 0.08), increased molar proportion of propionate (p = 0.09), and decreased acetate:propionate molar ratio (p = 0.07) and estimated ruminal methane production (p = 0.09). It is concluded that supplemental EHY may enhance DMI and ADG of feedlot steers during periods of high ambient temperature. Supplemental EHY may also enhance ruminal fiber digestion and decrease ruminal acetate:propionate molar ratios in feedlot steers fed steam-flaked corn-based finishing diets.