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Greenhouse Gas Emissions from Beef Feedlot Surface Materials as Affected by Diet, Moisture, Temperature, and Time

机译:受牛皮饲料表面材料的温室气体排放,受饮食,水分,温度和时间影响

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摘要

A laboratory study was conducted to measure the effects of diet, moisture, temperature, and time on greenhouse gas (GHG) emissions from feedlot surface materials (FSM). The FSMwere collected from open-lot pens where beef cattle were fed either a dry-rolled corn (DRC) diet containing no wet distillers grains with solubles (WDGS) or a DRC diet containing 35% WDGS. The FSMwere collected, air-dried or mixed with 3.0 L of water to represent dry or wet conditions, and then incubated at temperatures of 5°C, 15°C, 25°C, or 35°C. Static flux chambers were used to quantify GHG emissions over a 14-day period. Flux data for each diet xmoisture combination were analyzed using repeated measures in time. The largest GHG emissions occurred under wet conditionsat temperatures of 25°C and 35°C. Flux values for these conditions typically were significantly greater than measurements obtained on the same day at 5°C and 15°C. Mean emissions under wet conditions for CO2, CH4, and N2O were 35, 121, and 278 timesgreater, respectively, than emissions from dry FSM. The 0% WDGS diet produced mean CO2 and N2O flux measurements that were 1.8 and 1.5 times greater, respectively, than those obtained for the 35% WDGS diet. The 35% WDGS diet, in contrast, produced a meanCH4 emission rate that was 6 times greater than the 0% WDGS diet. Management for GHG mitigation should include design and/or maintenance of pen drainage to speed drying as well as the use of modified animal diets.
机译:进行了实验室研究,以测量饮食,水分,温度和时间对来自饲料表面材料(FSM)的温室气体(GHG)排放的影响。从开放批次收集的FSMWERE,牛肉牛喂食干轧玉米(DRC)饮食,不含湿蒸馏器谷物,含有可溶物(WDG)或含有35%WDG的DRC饮食。收集的FSMWERE收集,风干或与3.0L水混合以表示干燥或湿润的条件,然后在5℃,15℃,25℃或35℃的温度下孵育。静态通量室用于量化14天的温室气体排放量。使用重复措施及时分析每种饮食XMoisture组合的助焊剂数据。在25°C和35°C的湿条件温度下发生最大的温室气体排放。这些条件的助焊剂值通常大于在5℃和15℃下在同一天获得的测量值。 CO 2,CH 4和N2O的湿条件下的平均排放分别为35,121和278次次数,而不是干FSM的排放。 0%WDGS饮食产生的平均二氧化碳和N2O助熔剂测量分别比为35%WDGS饮食所获得的1.5倍。相比之下,35%的WDGS饮食产生了5倍的发射率,比0%WDGS饮食大6倍。 GHG缓解的管理应包括笔引流的设计和/或维护,以速度干燥以及改性动物饮食的使用。

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