Functional Classification of Swine Manure Management Systems Based on Effluent and Gas Emission Characteristics
- 1 March 2001
- journal article
- Published by Wiley in Journal of Environmental Quality
- Vol. 30 (2) , 635-647
- https://doi.org/10.2134/jeq2001.302635x
Abstract
Gaseous emissions from swine (Sus scrofa) manure storage systems represent a concern to air quality due to the potential effects of hydrogen sulfide, ammonia, methane, and volatile organic compounds on environmental quality and human health. The lack of knowledge concerning functional aspects of swine manure management systems has been a major obstacle in the development and optimization of emission abatement technologies for these point sources. In this study, a classification system based on gas emission characteristics and effluent concentrations of total phosphorus (P) and total sulfur (S) was devised and tested on 29 swine manure management systems in Iowa, Oklahoma, and North Carolina in an effort to elucidate functional characteristics of these systems. Four swine manure management system classes were identified that differed in effluent concentrations of P and S, methane (CH4) emission rate, odor intensity, and air concentration of volatile organic compounds (VOCs). Odor intensity and the concentration of VOCs in air emitted from swine manure management systems were strongly correlated r2=0.88 The concentration of VOC in air samples was highest with outdoor swine manure management systems that received a high input of volatile solids (Type 2). These systems were also shown to have the highest odor intensity levels. The emission rate for VOCs and the odor intensity associated with swine manure management systems were inversely correlated with CH4 and ammonia (NH3) emission rates. The emission rates of CH4, NH3, and VOCs were found to be dependent upon manure loading rate and were indirectly influenced by animal numbers.Keywords
Funding Information
- National Pork Producers Council
This publication has 30 references indexed in Scilit:
- Correlation of Human Olfactory Responses to Airborne Concentrations of Malodorous Volatile Organic Compounds Emitted from Swine EffluentJournal of Environmental Quality, 2001
- Fate of Pig Sludge Liquid Fraction in Calcareous Soil: Agricultural and Environmental ImplicationsJournal of Environmental Quality, 1998
- Comparison of Closed‐Chamber and Bowen‐Ratio Methods for Determining Methane Flux from Peatland SurfacesJournal of Environmental Quality, 1998
- Characterization of Volatile Organic Emissions and Wastes from a Swine Production FacilityJournal of Environmental Quality, 1997
- Pathways of energy conservation in methanogenic archaeaArchiv für Mikrobiologie, 1996
- Tunable diode laser measurements of methane fluxes from an irrigated rice paddy field in the PhilippinesJournal of Geophysical Research: Atmospheres, 1995
- Assessment of Odours from Livestock Wastes by a Photoionization Detector, an Electronic Nose, Olfactometry and Gas Chromatography-Mass SpectrometryJournal of Agricultural Engineering Research, 1995
- A comparison of the aerodynamic and the theoretical-profile-shape methods for measuring pesticide evaporation from soilAtmospheric Environment (1967), 1989
- Estimation of the rate of gaseous mass transfer from a surface source plot to the atmosphereAtmospheric Environment (1967), 1982
- The surprising simplicity of sensory metrics.American Psychologist, 1962