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1.
Arq. bras. med. vet. zootec. (Online) ; 73(4): 966-974, Jul.-Aug. 2021. tab
Article in English | LILACS, VETINDEX | ID: biblio-1285285

ABSTRACT

The present study was conducted to investigate the effect of electrical and thermal systems optimization on energy consumption in broiler farms. Experiments were conducted in 4 different climates (cold, hot, dry, and temperate) with four treatments (4 broiler farms in each region) and 5 iterations (5 rearing periods per farm) on the Ross 308 strain of broiler chicken in a completely randomized basic design. The results showed that the solutions applied in cold and dry climates had a significant effect on reducing energy consumption (P<0.05). In the hot climate, although the reduction in energy consumption was observed after the application of the solutions, the difference was not statistically significant (P>0.05). Also, the application of solutions in temperate climates created a significant difference in the specific amount of thermal energy consumption per kilo of meat and total energy (P<0.05). Overall, the results of the present experiment showed that optimizing the electrical and thermal systems of broiler houses could reduce energy consumption in all climates.(AU)


O presente estudo foi realizado para investigar o efeito da otimização de sistemas elétricos e térmicos no consumo de energia em fazendas de frangos de corte. Foram realizadas experiências em 4 climas diferentes (frio, quente, seco e temperado) com quatro tratamentos (4 granjas de frangos de corte em cada região) e 5 iterações (5 períodos de criação por granja) na cepa Ross 308 de frangos de corte em um projeto básico completamente aleatório. Os resultados mostraram que as soluções aplicadas em climas frios e secos tiveram um efeito significativo na redução do consumo de energia (P<0,05). No clima quente, embora a redução no consumo de energia tenha sido observada após a aplicação das soluções, a diferença não foi estatisticamente significativa (P>0,05). Além disso, a aplicação de soluções em climas temperados criou uma diferença significativa na quantidade específica de consumo de energia térmica por quilo de carne e energia total (P<0,05). Em geral, os resultados do presente experimento mostraram que a otimização dos sistemas elétricos e térmicos das casas de frangos de corte poderia reduzir o consumo de energia em todos os climas.(AU)


Subject(s)
Animals , Chickens/physiology , Thermal Energy/methods , Energy Consumption/methods , Energy Consumption/prevention & control , Process Optimization/methods , Farms/organization & administration
2.
Arq. bras. med. vet. zootec. (Online) ; 72(6): 2355-2364, Nov.-Dec. 2020. tab, graf, ilus
Article in English | LILACS, VETINDEX | ID: biblio-1142319

ABSTRACT

The aim of this study was to evaluate thermal energy consumption in broiler farms and provide solutions to reduce it. This study was performed with a completely randomized design under 4 climatic conditions, including Ardabil (cold climate representative), Khuzestan (warm climate representative), Isfahan (dry climate representative) and Guilan (temperate climate representative) in 4 replicates (4 broiler farms in each climate) and with 5 repetitions (5 periods of breeding per unit) and a capacity of 492,700, Ross 308 broiler in each breeding period. According to the results, in all climates, the proposed solutions to save thermal energy were able to create a significant difference (P<0.05). The experimental results also showed that the difference in thermal energy consumption in cold and dry climates wasmuch higher than in temperate and warm climates (P<0.05). Overall, the results of the present study show that, by optimizing andmodernizing construction equipment in broiler farms, thermal energy losses can be reduced in all climatic conditions.(AU)


O objetivo do presente estudo foi avaliar o consumo de energia térmica em granjas de frangos de corte e fornecer soluções para reduzi-lo. Este estudo foi realizado com um desenho inteiramente casualizado em 4 condições climáticas, incluindo Ardabil (representante do clima frio), Khuzestan (representante do clima quente), Isfahan (representante do clima seco) e Guilan (representante do clima temperado) em 4 réplicas (4 granjas de frangos em cada clima), com 5 repetições (5 períodos de criação por unidade) e capacidade de 492.700 frangos Ross 308 em cada período de criação. De acordo com os resultados, em todos os climas, as soluções propostas para economizar energia térmica criaram diferença significativa (P <0,05). Os resultados experimentais também mostraram que a diferença no consumo de energia térmica em climas frios e secos foi muito maior do que em climas temperados e quentes (P <0,05). De forma geral, os resultados do presente estudo mostram que, com a otimização e modernização dos equipamentos de construção em granjas de frangos, as perdas de energia térmica podem ser reduzidas em todas as condições climáticas.(AU)


Subject(s)
Animals , Chickens/physiology , Thermal Energy/economics , Housing, Animal/economics , Temperature
3.
Iran J Vet Res ; 16(1): 59-62, 2015.
Article in English | MEDLINE | ID: mdl-27175152

ABSTRACT

Using probiotics can control pathogens by a variety of mechanisms. Probiotics can promote growth performance and have, therefore, become increasingly important in the aquaculture industry. Convict Cichlid belongs to the family of Cichlidae and is known for its rapid development in laboratory conditions and is suitable for behavioral examinations. The aim of this study was to evaluate the effects of Saccharomyces cerevisiae on growth performance, survival rate and body composition of Convict Cichlids (Amatitlania nigrofasciata). One hundred sixty eight Convict Cichlids (mean weight: 2.1 ± 0.12 g and mean length: 2.2 ± 0.05 cm) were fed by commercial diets with different concentrations of S. cerevisiae (0, 0.5%, 1%, 2%). At the end of the experiment, survival rate and growth indices were measured. Based on the results, growth performance significantly increased with probiotic, S. cerevisiae, specially, at the 2% probiotic level of concentration. In the present study, the best FCR (feed conversion rate), SGR (specific growth rate), CF (condition factor) and BWG (body weight gain) values were observed in a 2% concentration of S. cerevisiae. The results suggest that this yeast could improve feed utilization in this fish species.

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