- -

Suitability Evaluation of Multipoint Simultaneous CO2 Sampling Wireless Sensors for Livestock Buildings

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Suitability Evaluation of Multipoint Simultaneous CO2 Sampling Wireless Sensors for Livestock Buildings

Mostrar el registro completo del ítem

Calvet Sanz, S.; Campelo Rivadulla, JC.; Estellés, F.; Perles Ivars, A.; Mercado Romero, R.; Serrano Martín, JJ. (2014). Suitability Evaluation of Multipoint Simultaneous CO2 Sampling Wireless Sensors for Livestock Buildings. Sensors. 14(6):10479-10496. https://doi.org/10.3390/s140610479

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/65108

Ficheros en el ítem

Metadatos del ítem

Título: Suitability Evaluation of Multipoint Simultaneous CO2 Sampling Wireless Sensors for Livestock Buildings
Autor: Calvet Sanz, Salvador Campelo Rivadulla, José Carlos Estellés, F. Perles Ivars, Angel Mercado Romero, Ricardo Serrano Martín, Juan José
Entidad UPV: Universitat Politècnica de València. Departamento de Informática de Sistemas y Computadores - Departament d'Informàtica de Sistemes i Computadors
Universitat Politècnica de València. Departamento de Ciencia Animal - Departament de Ciència Animal
Fecha difusión:
Resumen:
[EN] The environment in livestock buildings must be controlled to ensure the health and welfare of both workers and animals, as well as to restrict the emission of pollutants to the atmosphere. Among the pollutants ...[+]
Palabras clave: Carbon dioxide , Livestock , Ventilation , Wireless sensor network
Derechos de uso: Reconocimiento (by)
Fuente:
Sensors. (issn: 1424-8220 )
DOI: 10.3390/s140610479
Editorial:
MDPI
Versión del editor: https://dx.doi.org/10.3390/s140610479
Código del Proyecto:
info:eu-repo/grantAgreement/UPV//PAID-06-11-2843/
info:eu-repo/grantAgreement/MICINN//CTM2011-29691-C02-01/ES/SENSORIZACION AMBIENTAL SUBACUATICA PARA LA INSPECCION Y MONITORIZACION DE EXPLOTACIONES DE ACUICULTURA MARINA/
info:eu-repo/grantAgreement/MICINN//TIN2011-28435-C03-01/ES/INVESTIGACION EN LA MEJORA DE LA CONFIABILIDAD DE APLICACIONES BASADAS EN WSN MEDIANTE EL DESARROLLO DE UNA PLATAFORMA HIBRIDA DE MONITORIZACION/
Agradecimientos:
This project was supported by the Vicerrectorado de Investigacion of the UPV (Programa de Apoyo a la Investigacion y Desarrollo, PAID-06-11 Program, Project No. 2843) and the Spanish Government under Projects CTM2011-29691-C02-01 ...[+]
Tipo: Artículo

References

C. M. Wathes, J. B. Jones, H. H. Kristensen, E. K. M. Jones, & A. J. F. Webster. (2002). AVERSION OF PIGS AND DOMESTIC FOWL TO ATMOSPHERIC AMMONIA. Transactions of the ASAE, 45(5). doi:10.13031/2013.11067

Homidan, A. A., Robertson, J. F., & Petchey, A. M. (2003). Review of the effect of ammonia and dust concentrations on broiler performance. World’s Poultry Science Journal, 59(3), 340-349. doi:10.1079/wps20030021

Krupa, S. . (2003). Effects of atmospheric ammonia (NH3) on terrestrial vegetation: a review. Environmental Pollution, 124(2), 179-221. doi:10.1016/s0269-7491(02)00434-7 [+]
C. M. Wathes, J. B. Jones, H. H. Kristensen, E. K. M. Jones, & A. J. F. Webster. (2002). AVERSION OF PIGS AND DOMESTIC FOWL TO ATMOSPHERIC AMMONIA. Transactions of the ASAE, 45(5). doi:10.13031/2013.11067

Homidan, A. A., Robertson, J. F., & Petchey, A. M. (2003). Review of the effect of ammonia and dust concentrations on broiler performance. World’s Poultry Science Journal, 59(3), 340-349. doi:10.1079/wps20030021

Krupa, S. . (2003). Effects of atmospheric ammonia (NH3) on terrestrial vegetation: a review. Environmental Pollution, 124(2), 179-221. doi:10.1016/s0269-7491(02)00434-7

Kaye, J., Buchanan, F., Kendrick, A., Johnson, P., Lowry, C., Bailey, J., … Lightman, S. (2004). Acute Carbon Dioxide Exposure in Healthy Adults: Evaluation of a Novel Means of Investigating the Stress Response. Journal of Neuroendocrinology, 16(3), 256-264. doi:10.1111/j.0953-8194.2004.01158.x

Ni, J.-Q., & Heber, A. J. (2008). Sampling and Measurement of Ammonia at Animal Facilities. Advances in Agronomy, 201-269. doi:10.1016/s0065-2113(08)00204-6

Ogink, N. W. M., Mosquera, J., Calvet, S., & Zhang, G. (2013). Methods for measuring gas emissions from naturally ventilated livestock buildings: Developments over the last decade and perspectives for improvement. Biosystems Engineering, 116(3), 297-308. doi:10.1016/j.biosystemseng.2012.10.005

Calvet, S., Gates, R. S., Zhang, G., Estellés, F., Ogink, N. W. M., Pedersen, S., & Berckmans, D. (2013). Measuring gas emissions from livestock buildings: A review on uncertainty analysis and error sources. Biosystems Engineering, 116(3), 221-231. doi:10.1016/j.biosystemseng.2012.11.004

Phillips, V. R., Holden, M. R., Sneath, R. W., Short, J. L., White, R. P., Hartung, J., … Wathes, C. M. (1998). The Development of Robust Methods for Measuring Concentrations and Emission Rates of Gaseous and Particulate Air Pollutants in Livestock Buildings. Journal of Agricultural Engineering Research, 70(1), 11-24. doi:10.1006/jaer.1997.0283

Calvet, S., Cambra-López, M., Estellés, F., & Torres, A. G. (2011). Characterization of gas emissions from a Mediterranean broiler farm. Poultry Science, 90(3), 534-542. doi:10.3382/ps.2010-01037

Calvet, S., Cambra-López, M., Estellés Barber, F., & Torres, A. G. (2011). Characterization of the indoor environment and gas emissions in rabbit farms. World Rabbit Science, 19(1). doi:10.4995/wrs.2011.802

Wathes, C. M., Holden, M. R., Sneath, R. W., White, R. P., & Phillips, V. R. (1997). Concentrations and emission rates of aerial ammonia, nitrous oxide, methane, carbon dioxide, dust and endotoxin in UK broiler and layer houses. British Poultry Science, 38(1), 14-28. doi:10.1080/00071669708417936

Pedersen, S., Takai, H., Johnsen, J. O., Metz, J. H. M., Groot Koerkamp, P. W. G., Uenk, G. H., … Wathes, C. M. (1998). A Comparison of Three Balance Methods for Calculating Ventilation Rates in Livestock Buildings. Journal of Agricultural Engineering Research, 70(1), 25-37. doi:10.1006/jaer.1997.0276

Yasuda, T., Yonemura, S., & Tani, A. (2012). Comparison of the Characteristics of Small Commercial NDIR CO2 Sensor Models and Development of a Portable CO2 Measurement Device. Sensors, 12(3), 3641-3655. doi:10.3390/s120303641

Low-Power SoC (System-on-Chip) with MCU, Memory, Sub-1 GHz RF Transceiver, and USB Controllerwww.ti.com/product/cc1110f32

Sensirion. SHT11: Digital Humidity Sensor (RH&T)http://www.sensirion.com/en/products/humidity-temperature/humidity-sensor-sht11/

Bjerg, B., Zhang, G., Madsen, J., & Rom, H. B. (2011). Methane emission from naturally ventilated livestock buildings can be determined from gas concentration measurements. Environmental Monitoring and Assessment, 184(10), 5989-6000. doi:10.1007/s10661-011-2397-8

Kaasik, A., & Maasikmets, M. (2013). Concentrations of airborne particulate matter, ammonia and carbon dioxide in large scale uninsulated loose housing cowsheds in Estonia. Biosystems Engineering, 114(3), 223-231. doi:10.1016/j.biosystemseng.2013.01.002

Hodgkinson, J., Smith, R., Ho, W. O., Saffell, J. R., & Tatam, R. P. (2013). Non-dispersive infra-red (NDIR) measurement of carbon dioxide at 4.2μm in a compact and optically efficient sensor. Sensors and Actuators B: Chemical, 186, 580-588. doi:10.1016/j.snb.2013.06.006

Zosel, J., Oelßner, W., Decker, M., Gerlach, G., & Guth, U. (2011). The measurement of dissolved and gaseous carbon dioxide concentration. Measurement Science and Technology, 22(7), 072001. doi:10.1088/0957-0233/22/7/072001

[-]

recommendations

 

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro completo del ítem