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The novel solution for acid whey permeate application in animal feeding Texte intégral
2020
Lakstina, J., Tukuma piens, SC, Tukums (Latvia) | Aboltina, I., Dairy laboratory, Ltd., Ulbroka, Stopiņi Municipality (Latvia) | Vanaga, L., Livestock Experimental Station “Jaunpils”, SC, Jaunpils, Jaunpils Parish (Latvia) | Jonkus, D., Latvia Univ. of Life Sciences and Technologies, Jelgava (Latvia) | Zagorska, J., Latvia Univ. of Life Sciences and Technologies, Jelgava (Latvia) | Cinkmanis, I., Latvia Univ. of Life Sciences and Technologies, Jelgava (Latvia)
The novel solution for acid whey permeate application in animal feeding Texte intégral
2020
Lakstina, J., Tukuma piens, SC, Tukums (Latvia) | Aboltina, I., Dairy laboratory, Ltd., Ulbroka, Stopiņi Municipality (Latvia) | Vanaga, L., Livestock Experimental Station “Jaunpils”, SC, Jaunpils, Jaunpils Parish (Latvia) | Jonkus, D., Latvia Univ. of Life Sciences and Technologies, Jelgava (Latvia) | Zagorska, J., Latvia Univ. of Life Sciences and Technologies, Jelgava (Latvia) | Cinkmanis, I., Latvia Univ. of Life Sciences and Technologies, Jelgava (Latvia)
The experiment was conducted to analyse the effect of fermented acid whey permeate on milk yield and composition in the lactating cows. Propionic acid bacteria and their metabolites have been used in the lactating cows feeding over decades, primarily to improve growth performance, feed conversation and milk production efficiency. Two groups of the lactating cows were arranged in the study: control group (n=50) and experimental group (n=50). Experimental group’s animals received 0.5 L of fermented whey permeate daily. Acid whey permeate was inoculated with the freeze-dried PS-4 (Propionibacterium freudenreichii subsp. shermanii, Chr.Hansen, Denmark) starter and fermented anaerobically for 48 hours at 20±2 ºC. Fat, protein, lactose and total solids concentration in acid whey permeate and fermented acid whey permeate was analysed by the standard methods, but propionic acid was detected by HPLC. Milk composition and quality indices were determined at the beginning of the study and each month during 6 months period. At the end of the study the feeding of fermented acid whey permeate was stopped, but milk composition and quality data were monitored additionally after one month. Milk fat, protein, lactose, total solids, urea concentration and somatic cell count were analysed by a near infrared spectroscopy. The variability in milk composition and quality data across trial was greater in the experiment group than in the control. Milk fat and somatic cell count were significantly different (p is less than 0.05) than other studied parameters in the experimental group cows’ milk. Milk yield and lactose concentration were tended to increase during feeding of fermented acid whey permeate in the lactating cows without significant differences between control and experimental groups. Fermented acid whey permeate as feed supplement improves energy metabolism for dairy cows which results in the higher milk yield and fat concentration.
Afficher plus [+] Moins [-]The Novel Solution for Acid Whey Permeate Application in Animal Feeding Texte intégral
2020
The experiment was conducted to analyse the effect of fermented acid whey permeate on milk yield and composition in the lactating cows. Propionic acid bacteria and their metabolites have been used in the lactating cows feeding over decades, primarily to improve growth performance, feed conversation and milk production efficiency. Two groups of the lactating cows were arranged in the study: control group (n=50) and experimental group (n=50). Experimental group’s animals received 0.5 L of fermented whey permeate daily. Acid whey permeate was inoculated with the freeze-dried PS-4 (Propionibacterium freudenreichii subsp. shermanii, Chr.Hansen, Denmark) starter and fermented anaerobically for 48 hours at 20±2 ᵒC. Fat, protein, lactose and total solids concentration in acid whey permeate and fermented acid whey permeate was analysed by the standard methods, but propionic acid was detected by HPLC. Milk composition and quality indices were determined at the beginning of the study and each month during 6 months period. At the end of the study the feeding of fermented acid whey permeate was stopped, but milk composition and quality data were monitored additionally after one month. Milk fat, protein, lactose, total solids, urea concentration and somatic cell count were analysed by a near infrared spectroscopy. The variability in milk composition and quality data across trial was greater in the experiment group than in the control. Milk fat and somatic cell count were significantly different (p<0.05) than other studied parameters in the experimental group cows’ milk. Milk yield and lactose concentration were tended to increase during feeding of fermented acid whey permeate in the lactating cows without significant differences between control and experimental groups. Fermented acid whey permeate as feed supplement improves energy metabolism for dairy cows which results in the higher milk yield and fat concentration.
Afficher plus [+] Moins [-]The quality function in determining the effectiveness of example bioeconomics tasks Texte intégral
2022
Levkin, Artur | Abuselidze, George | Berezhna, Natalija | Levkin, Dmytro | Volkova, Tetiana | Kotko, Yana
The aim of the publication is to develop theoretical and methodological foundations and practical recommendations for determining the efficiency of biotechnological processes with the subsequent justification of technical parameters to ensure a high level of viability of bio-objects. In the course of the conducted scientific research, the criteria of quality function were defined and formalised, in accordance with which the conditions of biotechnological processes of laser division of embryo were formulated as a single case in the realisation of the economic mechanism of biotechnology. This makes it possible to ensure a high level of cattle (cattle) productivity, reduce the time for the reproduction of livestock and reduce the costs of movement, trade and transportation of cattle. The quality function of the biotechnological process of laser division of embryo is formulated on the basis of criterion of non-exceeding of the temperature field in cells of blastomeres and the predetermined acceptable value that allowed one to take into account the main parameters and to propose the criterion of biotechnological process optimisation. As a promising task for the development of the bioeconomy as an economic mechanism in implementing biotechnologies, the necessity of determining the quality function by formalising the integral indicator of efficiency has been established, This enables one to ensure a high level of commercialisation of biotechnologies, to increase the productivity of agricultural animals, and to suggest alternative methods for the quick renewal of livestock.
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