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1.
试验旨在对商品肉鸡层叠式立体养殖模式的环境参数进行监控,分析不同季节笼养肉鸡环境参数的差异,为科学养殖提供数据支撑。选择规模化肉鸡养殖场的同一栋鸡舍,在秋季和冬季饲养周期中,采用分次多点测量法,连续监测3~6周龄肉鸡舍内温度、湿度和空气质量,测定点均匀分布在舍内4个位置,比较秋季和冬季舍内环境参数的变化。结果显示,在肉鸡生长后期,冬季舍内环境温度略高于秋季,差异不显著(P>0.05);秋季舍内湿度显著高于冬季(P<0.05),两个季节的温湿度均可满足不同日龄肉鸡生长需求。有害气体和微生物检测结果显示,冬季舍内氨气浓度略高于秋季,差异不显著(P>0.05);冬季舍内二氧化碳浓度显著高于秋季(P<0.05);同时冬季舍内空气微生物总菌数显著高于秋季(P<0.05)。层叠式立体笼养肉鸡舍内温度在不同季节可保持恒定;在冬季饲养期,舍内湿度降低,二氧化碳浓度升高,空气微生物总菌数升高。因此,冬季饲养肉鸡在做好保温的同时应适当增加通风换气。  相似文献   

2.
试验旨在比较分析南方地区发酵床奶牛舍四个季节舍内环境卫生指标。主要测定了舍内温度、相对湿度、噪音、细菌密度、氨气浓度和温湿度指数等指标并分析了其间的相关性。结果表明:温度在四季间差异显著(P<0.05),夏季高达32.43℃,冬季低至1.53℃;春季、夏季和秋季的相对湿度显著高于冬季(P<0.05);温湿度指数(THI)在四季间差异显著(P<0.05);夏季和冬季的噪音显著高于春季和秋季(P<0.05);春季和秋季的细菌密度显著高于夏季和冬季(P<0.05);夏季氨气浓度为3.92 mg/m^3,显著高于其他季节的(P<0.05)。相关分析表明,一年中,牛舍温度与THI呈正高度相关关系(P<0.01),其余指标间相关性不高(|r|<0.70)或不相关(P>0.05)。另外,季节内的环境指标相关性分析表明:秋、冬季的温度和THI间皆呈正相关(P<0.01),冬季的温度与细菌密度呈正相关(P<0.05);春季的THI、噪音和细菌密度三者之间均呈正相关(P<0.05);秋季的氨气浓度与噪音高度也呈正相关关系(P<0.01)。综上,南方地区发酵床奶牛舍内,四季的环境卫生指标均达到了卫生标准,但夏季THI较高为85.36,奶牛易处于中度热应激状态。  相似文献   

3.
北京地区发酵床养猪方式冬夏季环境状况测试与分析   总被引:1,自引:0,他引:1  
本试验在冬、夏两季选取北京某猪场有窗密闭式和塑料大棚式2种样式、漏缝地板和发酵床2种地面形式的育肥猪舍进行环境监测,综合评价不同季节、不同建筑样式下发酵床在减少猪舍有害气体、调节温湿度等方面的效果。结果表明:冬季用简易热风炉供暖的有窗密闭漏缝地板猪舍日平均温度、氨气和硫化氢的浓度与不供暖的有窗密闭发酵床舍无显著差异(P>0.05),但发酵床舍二氧化碳含量较高(P<0.05),夏季时,发酵床能显著降低舍内氨气和硫化氢浓度(P<0.05),但床面日平均温度、猪舍空气日平均温度和日最高温度均极显著地高于有窗密闭漏缝地板舍(P<0.01),猪的增重明显低于漏缝地板舍,大棚式发酵床舍空气日平均温度和日最高温度又显著高于有窗密闭发酵床舍(P<0.05),有窗密闭发酵床舍又显著高于有窗实体地面舍(P<0.05)。因此,做好冬,夏季发酵床的管理以及选择与发酵床相配套的猪舍类型和环境调控措施非常关键。  相似文献   

4.
为研究夏季大型立体笼养肉鸡舍养殖环境参数变化规律,确立大型肉鸡舍的最佳环境管理模式,选取山西省晋中地区单栋饲养量为41 280只的密闭式肉鸡舍一栋,进行温度、湿度、CO2浓度、O2含量、风速等环境参数的分点多次检测与统计分析。结果显示:不同笼列位置,温度前端和末端与其它位置差异显著(P<0.05),位置L2、L21和L40差异不显著,温差在0.8℃左右;各位置湿度差异不显著(P>0.05),CO2浓度前端、L2和末端与L21、L40差异显著(P<0.05),O2含量末端与其它位置差异显著(P<0.05),风速差异显著(P<0.05)。不同笼层,温度、湿度和O2含量差异不显著(P>0.05);CO2浓度上层和下层差异显著(P<0.05),随着笼层增高浓度逐渐降低;风速上层显著高于中层和下层(P<0.05),随着笼层增高呈递增趋势。研究表明:炎热夏季该模式鸡舍内随着风速加大(减少),可以增加(降低)舍温和舍内氧气含量,降低(升高)CO2浓度和相对湿度,舍内环境参数适宜肉鸡生长。  相似文献   

5.
河北省不同建筑类型羊舍环境参数的检测与分析   总被引:1,自引:0,他引:1  
试验选择3种建筑类型羊舍(有窗封闭舍、半开放舍和棚舍),对羊舍温度、二氧化碳(CO2)、氨气(NH3)、风速和光照进行定点定时检测,分析冬夏季节河北省不同建筑类型的羊舍环境,为标准化羊舍的建设提供依据。结果表明,冬季不同类型羊舍的温度表现为显著性差异(P<0.05),有窗舍最高,棚舍最低(早-4.13℃),有窗舍均温分别比棚舍和半开放舍高4.26和2.95℃,夏季不同舍温度未表现出显著性差异(P>0.05),早、午和晚分别达25.12、32.48和29.71℃,热应激明显;从有害气体结果可以看出,羊舍CO2含量分别为411.0~995.2 mg/m^3(夏)和402.9~2336.8 mg/m^3(冬),两季CO2日均含量有窗舍均最高,棚舍最低,不同舍CO2日均含量差异显著(P<0.01),有窗舍冬季早上含量高达2336.8 mg/m^3,已超国标。另外,所有羊舍未检测出NH 3。从风速结果可以看出,两季风速分别为0.06~0.36 m/s(夏)和0.03~0.26 m/s(冬),两季有窗舍的风速均显著低于其他两类舍(P<0.01)。从光照强度来看,棚舍光照强度显著高于其他两类舍(P<0.01),均符合国标。可见,冬季有窗羊舍虽然温度较高,但空气质量差,CO2含量超标,应加强通风换气,兼顾保温;夏季不管哪种类型舍,均应隔热降温以缓解热应激。  相似文献   

6.
[目的] 探讨空间电场对冬春季畜舍内温室气体的净化效果以及对舍内温湿度的影响。[方法] 在畜舍内安装空间电场净化设备和温湿度监测仪,舍内外均设置3个取气点,每个取气点分0 m、0.5 m、1.0 m和1.5 m 4个采集高度,系统监测冬春季畜舍温室气体浓度以及温湿度变化情况。[结果] 空间电场显著(P<0.05或P<0.000 1)降低了冬春季畜舍内CH4、NH3和CO2气体的浓度,降低幅度分别可达39.8%、26.3%和24.0%。空间电场可显著(P<0.05)降低冬季舍内20:00—8:00和12:00—15:00的环境湿度,分别降低了4.5%和15.3%。春季湿度在9:00—17:00降低了31.9%(P<0.05)。[结论] 空间电场可有效地降低冬春季畜舍内CH4、NH3和CO2气体浓度,同时显著降低畜舍内不同时间段的环境湿度。  相似文献   

7.
试验通过可拆迁式猪舍与传统(固定)猪舍的饲养对比试验,研究了冬季可拆迁式猪舍对生长肥育猪的生长性能及舍内温度和相对湿度的影响。选取同期转群、体重30 kg左右杜大长生长猪216头,随机分成可拆迁式猪舍组和传统猪舍组,每组3个重复,每个重复36头。试验至猪体重达到100 kg左右出栏结束。结果表明:可拆迁式猪舍组试猪的平均日增重和平均日采食量分别比传统猪舍组提高17.28%(P0.01)和12.13%(P0.01),饲料料增重比降低7.00%(P0.05);可拆迁式猪舍的舍内平均温度为20.33℃,比固定猪舍的16.86℃高3.47℃,比室外的15.15℃高5.18℃,差异均极显著(P0.01)。试验结果表明,可拆迁式猪舍对生长育肥的生长性能和室内环境控制优于传统猪舍。  相似文献   

8.
1. We examined the effect of density (5, 7, 9 and 11 birds/m2) and season (summerand winter; different hens each season) on stress and behaviour in two flocks of 64 broiler breeder females divided among 8 pens. 2. The hens, approximately the same age and body mass in each season, were maintained on hard-packed ground, without litter, in an open-sided chicken house and were offered the same amount of food each season. 3. Mean house max/min temperatures varied between 18 and 33 degrees C in summer and 7 and 17 degrees C in winter. Mean relative humidity in summer varied between 68% at 08:00 h and 42% at 14:00 h and in winter was 64% at 08:00 h and 47% at 14:00 h. 4. No difference was found in heterophil:lymphocyte ratios among densities and between seasons; however, basophil numbers were higher in winter than in summer indicating prolonged stress in winter. 5. Stereotyped pecking increased with an increase in density and was higher in winter than in summer. Pecking on the ground was higher in winter, but was not affected by density. 6. In summer the hens spent more time lying and eating than in winter, whereas in winter the hens spent more time walking, preening and drinking than in summer. They spent the same amount of time standing in both seasons. None of these behaviours was density dependent. 7. We conclude that season had more of an effect than density on stress and behaviour in broiler breeder hens under the conditions of our study.  相似文献   

9.
通过检测河北省不同地区6个有代表性的肉牛场合内外空气温度和湿度,对冬季肉牛舍的温湿环境进行分析。结果表明,多数牛舍内气温偏低,尤其是早晚,分别达到-0.4~1.7℃和0.8~5.3℃。除平原丘陵地区的敞棚舍,各种封闭性较强的牛舍(半开放舍、有窗舍和塑料暖棚舍)内外气温差异显著(P〈0.05),尤其是承德山区牛舍,舍内外气温差可高达11.6℃。另外,各牛舍早晚湿度较大,尤其是承德山区,牛舍内湿度明显高于舍外,达到78%~81%,而平原丘陵地区的多数牛舍内外湿度差不明显,舍内早晚湿度分别达到65.0%~72.0%和59.0%~71.0%。综合温湿度分析,河北省多数肉牛舍冬季处于寒冷状态,需要加强牛舍保温。  相似文献   

10.
城市沿河不同垂直结构绿带四季温湿效应的研究   总被引:1,自引:0,他引:1  
纪鹏  朱春阳  李树华 《草地学报》2012,20(3):456-463
选择北京北五环清河两侧不同垂直结构类型的绿地作为研究对象,利用小尺度定量测定技术方法,分析城市河流廊道绿地不同垂直结构绿地的温湿效应,为河流廊道绿带的建设提供科学依据。结果表明:春、夏、秋3季具有降温增湿效应,其中夏季降温增湿效应最强,春、秋2季降温增湿效应差别不大;绿地的降温增湿能力与环境温度相关,3季日间降温增湿效应最强时段均在环境温度最高时段的14:00-16:00。春、夏、秋3季不同结构绿地类型降温增湿幅度排序为乔-灌-草>乔-草>灌-草>草地,而冬季绿地除草地外,其余3种绿地均具有保温降湿效应,其中乔-灌-草绿地保温降湿效应最强,乔-草和灌-草型绿地差别不大;草地在冬季表现为降温增湿效应。  相似文献   

11.
To investigate seasonal variations in the digestive functions of sika deer, five female sika deer were provided with an amount of alfalfa hay cubes equivalent to voluntary food intake during winter. We measured the rate at which the food passed through the digestive tract, digestibility and rumen fermentation during the summer (August), autumn (November), winter (February) and spring (May). Total mean retention time in the digestive tract during summer and autumn was numerically longer than that in winter and spring, but the difference did not reach significance. Organic matter and fiber were less digestible in summer and autumn than in winter and spring (P < 0.05), whereas the digestibility of the dry matter tended to vary with the seasons (P < 0.1). Ruminal pH values seasonally changed (P < 0.01), and were the lowest in autumn. The concentration of ruminal ammonia‐nitrogen differed significantly among the seasons (P < 0.05), increasing in winter and decreasing during spring and summer. The numbers of protozoa changed significantly among the seasons (P < 0.05), being higher in autumn than in winter and spring, and intermediate in summer. The concentration of total volatile fatty acids was not seasonally affected, but the molar percentages of propionic acid and butyric acid significantly changed according to season (P < 0.05 and P < 0.01, respectively), and the ratio of acetic to propionic acid tended to change with the seasons (P < 0.1). The results of this study suggested that the digestive functions in sika deer, fed a commercial diet at a restricted level, differed notably among the seasons and these variations might partially be due to environmental effects.  相似文献   

12.
鸡舍内粉尘浓度过高,会危害饲养员的健康和家禽的生产力,还会对周围环境造成污染。了解鸡舍内粉尘浓度空间变化情况,有助于进一步分析粉尘释放和变化规律,为开发更有效的除尘方法,试验测定了规模化养鸡场一年四季鸡舍门口和鸡舍中央的粉尘含量。结果表明,鸡舍中央位点全尘春季与冬季、秋季与冬季差异显著(P<0.05),夏季与冬季差异极显著(P<0.01);呼吸性粉尘PM10夏季与秋季差异显著(P<0.05),春季与冬季、秋季与冬季差异极显著(P<0.01);四季呼吸性粉尘PM10鸡舍中央位点与鸡舍门口差异不显著(P>0.05);全尘TSP鸡舍中央位点与鸡舍门口差异也不显著(P>0.05)。  相似文献   

13.
青海海南州土-草-畜系统中钼、硒的季节变化研究   总被引:1,自引:0,他引:1  
结果表明:土壤和牧草中钼浓度秋季最高;血清中钼浓度的季节间差异不显著(P>0.05),秋季最高,夏季最低;被毛中钼浓度夏季极显著高于冬春季和秋季(P<0.01);日摄入量夏季极显著高于秋季(P<0.01),秋季极显著高于冬春季(P<0.01).土壤和被毛中硒浓度在三季间差异不显著(P>0.05);牧草硒夏季最高;绵羊血清硒冬春季显著低于秋季(P<0.05);被毛中硒在季节间差异不显著(P>0.05);硒的日摄入量夏季极显著高于秋季(P<0.01),秋季极显著高于冬春季(P<0.01).  相似文献   

14.
The purpose of this study was to evaluate thermal environment of cowshed in four seasons in central plain of Hebei,and analyze the correlation between the temperature parameters and physiological indexes of dairy cows.Three dairy cow houses with different building structures were selected,the thermal parameters (ambient temperature (Ta) and relative humidity (RH)) and physiological parameters (respiratory rate,rectal temperature and body surface temperature) were detected.The results showed that the Ta,RH and index of temperature and humidity (THI) changed significantly in four seasons (P<0.05),the average daily temperature in summer was the highest (28.59 ℃),and the average daily temperature in winter was the lowest (1.55 ℃).In summer,dairy cows were suffering from mild heat stress for 15.5 h every day,and from moderate heat stress for 6.0 h.In winter,dairy cows were under mild cold stress for an average of 12.0 h per day.The Ta and THI of three cowsheds in each season had no significant differece (P>0.05),except for that in winter.Compared with the cowshed with low wall or roller blind,the average Ta in the cowshed with only roof was 0.80-1.27 ℃ higher in summer and 1.36-1.84 ℃ lower in winter.In addition,the physiological parameters of dairy cows were extremely significantly higher in summer than those in other seasons (P<0.01).The respiration frequency or rectal temperature of cows among cowsheds in summer were significantly different (P<0.05),and the seasonal difference in body surface temperature was significant (P<0.05).Correlation analysis of thermal parameters and cow physiological parameters showed that the respiratory frequency,rectal temperature and body surface temperature were positively correlated with THI and Ta (P<0.05).However,there was no significant correlation between physiological parameters and RH (P>0.05).The results provided scientific basis for environment evaluation of cows,and physiological status of dairy cows were inferred according to environmental thermal parameters,which provided data for occurrence and early warning of stress.  相似文献   

15.
试验旨在评价冀中平原地区四季奶牛舍的温热环境,并分析温热参数与奶牛生理指标的相关性。选择3栋不同建筑结构的奶牛舍,对各舍温湿度和奶牛的呼吸频率、直肠温度和体表温度等生理指标进行检测。结果显示,奶牛舍四季环境温湿度和温湿指数(THI)变化显著(P<0.05),其中夏季日均温最高,为28.59 ℃;冬季日均温最低,为1.55 ℃。奶牛夏季每天平均15.5 h遭受轻度热应激,6.0 h遭受中度热应激;冬季每天平均12.0 h遭受轻度冷应激。除冬季外,各季节不同牛舍的温度和THI均未表现出显著差异(P>0.05)。相比带矮墙或卷帘的棚舍,仅设顶子的棚舍夏季平均温度要高0.80~1.27 ℃,冬季低1.36~1.84 ℃。另外,夏季奶牛各项生理指标极显著高于其他季节(P<0.01),且夏季不同舍奶牛的呼吸频率和直肠温度均表现出显著差异(P<0.05),体表温度各季节差异均达显著水平(P<0.05)。从环境温湿参数与奶牛生理参数的相关性分析可看出,各项生理参数(呼吸频率、直肠温度和体表温度)与THI、环境温度均呈显著正相关(P<0.05),但与湿度未表现出显著相关性(P>0.05)。本研究可为奶牛舍环境的评价提供科学依据,并通过环境温热参数的检测推断奶牛生理状况,为应激的发生及预警提供数据。  相似文献   

16.
Oestrus and calving records of Anatolian buffaloes were analyzed to investigate influence of climatic conditions on oestrus occurrence and postpartum period. Oestrus records showed a seasonal pattern concentrated between July and September which is the warmest period of the year. Likewise, more than half (52.7%) of the total calvings occurred between May and August. Month of calving significantly influenced the length of calving to first oestrus interval and open period (P < 0.01). The average length of open period was significantly shorter in autumn and summer calvers compared to those calved in spring and winter (P < 0.05) during long days. The humidity rate was negatively correlated with both calving to first oestrus interval and open period (P < 0.05). In conclusion, exposure to high environmental temperatures around 20 degrees C exerted no suppressive influence on ovarian activity in Anatolian buffaloes. Although humidity rate (P < 0.05) and ambient temperature (P < 0.01) was found to be correlated with the duration of postpartum period, day length might be the main factor regulating reproductive biorhythm and postpartum events in Anatolian buffalo cows.  相似文献   

17.
旨在研究河北省规模化羊场冬季羊舍外围护内表面温度的分布规律。选择规模化羊场的6栋羊舍,采用定点定时的检测方法,分别于早、午、晚对各舍外围护内表面(屋顶2个坡、墙4个侧面和地面料道两侧)温度及舍内温湿度进行检测。结果表明,外围护结构内表面温度与舍内环境温度呈显著的线性正相关关系(P<0.01,r=0.94),回归方程为y=0.931x+0.5697。不同时间段和不同外围护部位的内表面温度均表现出显著性差异(P<0.01),且时段与部位存在交互效应(P<0.01)。3个时段中,早上外围护结构均温最低(P<0.01),仅-4.93~-1.03℃,尤其是屋顶,早午温差值显著高于墙体和地面(P<0.05),需加强早上羊舍的保温。研究也表明,羊舍类型、建筑材料和朝向均影响外围护内表面温度,有窗舍外围护内表面均温显著高于敞棚舍(P<0.01),复合彩钢板屋顶舍的外围护内表面均温显著高于单层彩钢舍(P<0.01),尤其是舍北侧结构(北侧地面、北坡顶和北墙)内表面温度均显著高于单彩钢舍(P<0.05)。另外,南北朝向舍的两坡屋顶温度差异显著(P<0.05),而东西朝向两坡屋顶温度未表现出显著性差异(P>0.05),建议冀中南地区羊舍宜东西朝向,但应注意外围护整体结构的保温隔热性。该结果可为羊舍的环境改善及标准化设计提供依据。  相似文献   

18.
旨在分析卷帘舍环境参数与奶牛泌乳性能及行为的相关性。本研究选择南北纵墙安装自动卷帘的全舍饲奶牛舍,存栏约200头5~6岁经产的健康荷斯坦泌乳奶牛(3~4胎,体重(650±100) kg)。通过检测该卷帘舍一个自然年度的环境参数,研究温热参数(温、湿度和风速)、气载微生物(细菌和真菌)、粉尘(PM2.5和PM10)和有害气体(二氧化碳(CO2)和氨气(NH3))与泌乳性能和行为的相关性。结果表明:1)各项环境参数均表现出季节性规律。真菌(1 049.91 cfu·m-3)和两种粉尘(PM2.5=17.86μg·m-3;PM10=193.07μg·m-3)含量夏季最高,细菌含量秋季最高(1.11×104 cfu·m-3),而CO2和NH3浓度冬季最高(1 302.85 mg·m-3;2....  相似文献   

19.
季节变化对不同品种种公牛精液品质及产能的影响   总被引:1,自引:0,他引:1  
选择年龄在3~4.5岁的不同品种的种公牛20头,观察四季变化对其精液次均采集量、平均密度、平均活力、精液利用率及制冻数量的影响。结果显示,在四个季节中,鲁西牛春、夏季的精液密度极显著高于其他季节(P<0.01),秋季精子活力极显著低于春季(P<0.01),夏、秋季的精液利用率及制冻数量显著低于春季(P<0.05);蒙贝利亚牛在夏季的精液采集量显著高于其他季节(P<0.05),夏、秋季精液密度均显著低于春季(P<0.05,P<0.01),夏季精子活力显著低于春季(P<0.05),夏、秋两季精液利用率及制动数量显著低于春季(P<0.05);德系西门塔尔牛夏季精液采集量有明显上升,显著高于冬季(P<0.05),秋季的精液密度显著低于春季(P<0.05),而夏、秋季精子活力显著低于春、冬季(P<0.01,P<0.05),春季的精液利用率及制冻数量显著高于冬季与夏、秋季(P<0.05,P<0.01)。综上所述,季节变化均会对各品种公牛精液指标产生不同程度的影响,其中对鲁西牛的影响较小。  相似文献   

20.
甘南玛曲不同年龄欧拉型藏羊放牧采食量季节动态研究   总被引:1,自引:0,他引:1  
为确立高寒地区天然草地欧拉型藏羊放牧采食量的季节动态变化,本试验采用TiO2外源指示剂法和瘤胃尼龙袋法分别测定欧拉型藏羊不同季节排粪量和牧草消化率从而计算放牧采食量。结果表明:玛曲高寒草地牧草干物质消化率(DMD)和粗蛋白(CP)含量夏季显著(P < 0.05)高于冬春季与秋季;欧拉型藏羊各年龄段排粪量3季差异显著(P < 0.05)且秋季 > 夏季 > 冬春季;随着年龄增长,欧拉型藏羊三季牧草采食量均有增大的趋势,同年龄段不同季节的藏羊采食量和代谢采食量(除4岁母羊)差异显著(P < 0.05)且秋季 > 夏季 > 冬春季;各年龄段藏羊累计牧草消耗量(AFC)差异显著(P < 0.05)分别为339.37,757.58,1185.93和1655.61 kg。由此可见,牧草干机物质消化率、排粪量和采食量夏秋季较高、冬春季较低,随着年龄增大排粪量和采食量有增高的趋势。因此,在高寒牧区应提倡草地季节性畜牧业,充分考虑牧草营养与动物营养需求之间的耦合性来提高经济和生态效益。  相似文献   

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