两个混合隧道和交叉通风的商业粪肥带层屋的氨浓度和排放

IF 1.4 4区 农林科学 Q3 AGRICULTURAL ENGINEERING
Xinjie Tong, Lingying Zhao, R. Manuzon, M. Darr, R. M. Knight, Chaoyuan Wang, A. Heber, J. Ni
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引用次数: 2

摘要

两个改造后的肥带层屋NH3年平均浓度分别为4.0±3.3和5.2±3.0 ppmv。NH3浓度存在季节和日变化(在寒冷季节和清晨较高)。两层温室年平均NH3排放量分别为0.081±0.004和0.099±0.004 g d-1 hen-1。在NH3排放率的季节或日变化中没有发现一致的模式。对禽舍进行氨排放测量对于评估与禽舍经营有关的空气质量和排放因素是必要的,但尚未报告由高层禽舍改建的粪带层禽舍的数据。两座商业改造的粪带层房(长121.9米,宽19.5米,高7.7米);在俄亥俄州混合使用隧道和交叉通风系统的17万只鸟类(名义容量)连续监测了一年。屋1和屋2排放NH3浓度的日平均值分别为0.03 ~ 17.7 ppmv和0.37 ~ 14.4 ppmv,年平均值(±SD)分别为4.0±3.3和5.2±3.0 ppmv。1号房和2号房全年NH3排放因子分别为0.081±0.004和0.099±0.004 g d-1母鸡-1(12.5±10.1和15.2±10.6 kg d-1母鸡-1或24.9±20.0和31.1±23.4 g d-1 AU-1)。NH3浓度呈冬季较高夏季较低的季节变化趋势。一天内NH3浓度在4:00 ~ 8:00最高,16:00 ~ 20:00最低。NH3排放率的季节或日变化没有一致的模式。由于通风系统的独特配置,与北部和南部排气流相比,在房屋的东部和西部排气流观察到更高的NH3浓度和排放量。NH3排放量与排气绝对湿度、母鸡采食量、采食量和饲料蛋白质率相关。关键词:氨排放因子,日变化,高层,改造鸡舍,季节变化,空间变化
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ammonia Concentrations and Emissions at Two Commercial Manure-Belt Layer Houses with Mixed Tunnel and Cross Ventilation
HighlightsAnnual average NH3 concentrations in two retrofitted manure-belt layer houses were 4.0 ±3.3 and 5.2 ±3.0 ppmv.Seasonal and diurnal variations were observed for NH3 concentrations (higher in colder seasons and early morning).Annual average NH3 emission rates from the two layer houses were 0.081 ±0.004 and 0.099 ±0.004 g d-1 hen-1.No consistent pattern was found for either seasonal or diurnal variations in NH3 emission rates.Abstract. Ammonia emission measurements at poultry houses are necessary to assess air quality and emission factors associated with poultry operations, but no data have been reported for manure-belt layer houses retrofitted from high-rise layer houses. Two commercial retrofitted manure-belt layer houses (both 121.9 m long, 19.5 m wide, and 7.7 m high; 170,000 bird nominal capacity each) in Ohio with mixed usage of tunnel and cross ventilation systems were continuously monitored for one year. The daily averages of the exhaust NH3 concentrations varied from 0.03 to 17.7 ppmv in house 1 and 0.37 to 14.4 ppmv in house 2 with annual means (±SD) of 4.0 ±3.3 and 5.2 ±3.0 ppmv, respectively. The NH3 emission factors based on the full year of data for houses 1 and 2 were 0.081 ±0.004 and 0.099 ±0.004 g d-1 hen-1 (12.5 ±10.1 and 15.2 ±10.6 kg d-1 house-1 or 24.9 ±20.0 and 31.1 ±23.4 g d-1 AU-1), respectively. Seasonal variations were observed for NH3 concentrations, with higher concentrations in winter and lower concentrations in summer. Within a day, NH3 concentrations were highest from 4:00 to 8:00 and lowest from 16:00 to 20:00. No consistent pattern was observed for seasonal or diurnal variations of NH3 emission rates. Higher NH3 concentrations and emissions were observed at the east and west exhaust air streams of the houses compared to the north and south exhaust air streams due to the unique configuration of the ventilation systems. NH3 emission was correlated with exhaust absolute humidity, hen caloric intake, feed consumption, and protein percentage of feed. Keywords: Ammonia emission factor, Diurnal variation, High-rise, Retrofitted poultry house, Seasonal variation, Spatial variation.
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来源期刊
Transactions of the ASABE
Transactions of the ASABE AGRICULTURAL ENGINEERING-
CiteScore
2.30
自引率
0.00%
发文量
0
审稿时长
6 months
期刊介绍: This peer-reviewed journal publishes research that advances the engineering of agricultural, food, and biological systems. Submissions must include original data, analysis or design, or synthesis of existing information; research information for the improvement of education, design, construction, or manufacturing practice; or significant and convincing evidence that confirms and strengthens the findings of others or that revises ideas or challenges accepted theory.
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