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
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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
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