Ammonia emissions from broiler litter and laying hen manure management systems

被引:79
作者
Nicholson, FA [1 ]
Chambers, J [1 ]
Walker, AW [1 ]
机构
[1] Gleadthorpe Res Ctr, ADAS, Mansfield NG20 9PF, Notts, England
关键词
D O I
10.1016/j.biosystemseng.2004.06.006
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Poultry farming accounted for an estimated 16% of ammonia emissions from UK agriculture in 1999. This study investigated the potential to reduce ammonia emissions by altering the ways in which poultry manures are managed. Ammonia loss measurements were made from complete broiler litter and laying hen manure management cycles (housing --> manure handling --> storage --> land spreading). Ammonia losses were higher (probability P < 0.05) from winter-housed broilers on straw (mean 2.0 g [NH3-N]h(-1) 500 kg(-1) [liveweight - lw]) than from those on woodshavings (mean 1.0 g [NH3-N] h(-1) 500 kg(-1) [lw]), but there were no differences in emissions (P > 0.05) between different litter types/rates during storage and following land spreading. The overall balances of ammonia emissions from broiler litter during housing, storage and following landspreading were, 28, 15 and 57%, respectively. In the laying hen housing studies, ammonia losses from weekly belt-scraping (mean 3.3 g [NH3-N]h(-1) 500 kg(-1)[lw]) were more than double (P < 0.05) those from daily beltscraping(mean 1.3g[NH3-N]h(-1) 500 kg(-1)[lw]), with twice weekly belt-scraping estimated to reduce ammonia losses by ca. 50% compared with weekly cleaning. Ammonia losses from a commercial deep pit house (8.2 g [NH3-N] h(-1) 500 kg(-1)[lw]) were higher (P < 0.05) than from belt-scraped (2.7 g [NH3-N] h(-1) 500 kg(-1) [lw]) or stilt (1.4 g [NH3-N] h(-1) 500 kg(-1)[lw]) houses, but there were no differences between manures from the three housing types (deep-pit, belt-scraped or stilt houses) during storage or following land spreading. The overall balance of ammonia emissions from laying hen manures during housing, storage and land spreading was 51, < 1 and 48%, respectively. These findings indicate that strategies to reduce ammonia emissions from poultry farming would be most effective if focused on housing and land spreading practices where the greatest loss of ammonia occurs. (C) 2004 Silsoe Research Institute. All rights reserved Published by Elsevier Ltd.
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收藏
页码:175 / 185
页数:11
相关论文
共 24 条
[1]  
[Anonymous], 2000, FERTILISER RECOMMEND
[2]  
CHADWICK DR, 2002, P 10 INT C FAO ESCOR, P219
[3]  
Chambers B. J., 1997, P275
[4]   Nitrogen: some practical solutions for the poultry industry [J].
Chambers, BJ ;
Smith, K .
WORLDS POULTRY SCIENCE JOURNAL, 1998, 54 (04) :353-357
[5]  
Chambers BJ, 1999, SOIL USE MANAGE, V15, P137, DOI 10.1111/j.1475-2743.1999.tb00079.x
[6]  
CHAMBERS BJ, 2001, WA0712 DEP ENV FOOD
[7]  
da Borso F., 1999, P 8 INT C FAO ESCORE, P15
[8]  
*EA, 2000, IPPC TECHN GUID NOT
[9]  
ELLIOTT HA, 1982, T ASAE, V25, P413, DOI 10.13031/2013.33545
[10]   Effect of dietary protein content, litter and drinker type on ammonia emission from broiler houses [J].
Elwinger, K ;
Svensson, L .
JOURNAL OF AGRICULTURAL ENGINEERING RESEARCH, 1996, 64 (03) :197-208