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TEMPERATURE AND HUMIDITY CONDITIONS IN TRUCKS TRANSPORTING PIGS IN TWO SEASONS IN EASTERN AND WESTERN CANADA

机译:加拿大东西部两个季节卡车运输猪的温度和湿度条件

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摘要

Climatic conditions in Canada show extreme seasonal variation, and thermal conditions during transport are known to contribute to mortality during transport. However little information has been published on transport conditions in Canada. In this study, temperature and relative humidity were monitored on commercial livestock trucks transporting pigs to market in eastern and western Canada. In the western trials, pigs traveled for 8 h in a dual-purpose pot-belly (PB) trailer and in the eastern trials pigs were transported for 2 It in either a PB trailer or a double-deck (DD) truck. In the west, three trials were done in winter and five in summer; in the east, six trials were done in both summer and winter. Delta temperature (T) and delta humidity ratio (HR) were calculated versus ambient conditions during transport for each truck compartment. Mixed model analyses of compartment conditions (delta T and delta HR) within each truck showed that significant variation existed between compartments in both the PB trailer and the DD truck (p < 0.0001). For all vehicles, delta T and delta HR were generally higher (p < 0.05) in lower-front compartments and lower (p < 0.05) in upper-rear compartments in both summer and winter The results indicate that transport conditions may be improved by increasing ventilation to targeted compartments in summer, or by a combination of insulation and ventilation in winter. Considering the impact of thermal conditions during transport on pig welfare and mortality, further investigation of truck conditions and ways of ameliorating them is warranted.
机译:加拿大的气候条件显示出极端的季节性变化,已知运输过程中的高温条件会导致运输过程中的死亡。但是,关于加拿大运输条件的信息很少。在这项研究中,对将生猪运往加拿大东部和西部市场的商业牲畜卡车进行了温度和相对湿度的监测。在西方试验中,猪用两用肚兜(PB)拖车行驶了8小时,在东部试验中,猪用PB拖车或双层(DD)卡车运输了2 It。在西部,冬季进行了三项试验,夏季进行了五项试验。在东部,夏季和冬季均进行了六次试验。计算每个卡车车厢在运输过程中的温度差(T)和湿度变化率(HR)与环境条件的关系。每辆卡车内的车厢状况(增量T和增量HR)的混合模型分析表明,PB拖车和DD货车的车厢之间存在显着差异(p <0.0001)。对于所有车辆,夏季和冬季下前车厢中的T和HR增量通常较高(p <0.05),而上后车厢中的Delta T和HR较低(p <0.05)结果表明,运输条件可以通过增加夏季通向目标车厢通风,冬季则采用隔热和通风相结合的方式。考虑到运输过程中的热状况对生猪福利和死亡率的影响,有必要对卡车的状况及其改善方法进行进一步研究。

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