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Ammonia emissions in poultry houses and microbial nitrification as a promising reduction strategy

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 781, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2021.146978

关键词

Microbial nitrification; NH3 emission; NH3 toxicity and management

资金

  1. Deputyship for Research & Innovation, Ministry of Education in Saudi Arabia [IFKSURP215]

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High levels of ammonia in poultry houses have negative effects on birds' growth and immune systems, while factors affecting the volatility rate of ammonia are pH, humidity, and manure nitrogen content. High ammonia levels increase the risk of respiratory infections in birds.
High ammonia (NH3) levels (>25 ppm) in poultry houses reduce the body weight gain, feed conversion, survival ability, carcass conviction rate, and immune system of birds. High NH3 levels can also cause pain, eye- inflammation, and increased oxidative stress. The volatility rate of NH3 in poultry litter depends on the pH, humidity, ventilation rate, air velocity, manure nitrogen (N) content, and temperature. The litter's pH is a major factor regulating the volatilization of NH3 because it specifies the volatile ammonium (NH4+)/NH3 ratio between their ionic and nonvolatile forms. High NH3 levels damage birds' respiratory systems' mucous membranes, thereby increasing their susceptibility to respiratory infections, particularly to Escherichia coli infection. In this review, the existing knowledge on soil-nitrifying bacteria and NH3 nitrification approaches for advancing poultry manure microbial nitrification and environmental implications of using various NH3 emission control techniques were summarized. Although few studies have focused on reducing NH3 volatilization by nitrification, nitrification is deemed a sustainable approach for reducing N excretions and controlling NH3 emissions in poultry houses. However, further studies are required to determine the most suitable soil nitrification bacteria to increase microbial nitrification. (C) 2021 Elsevier B.V. All rights reserved.

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