TY - JOUR
T1 - Evaluation of sampling strategies for estimating ammonia emission factors for pig fattening facilities
AU - Ulens, Tim
AU - Daelman, Matthijs R.J.
AU - Mosquera Losada, Julio
AU - Millet, Sam
AU - van Loosdrecht, Mark C.M.
AU - Volcke, Eveline I.P.
AU - Van Langenhove, Herman
AU - Demeyer, Peter
PY - 2015/12/1
Y1 - 2015/12/1
N2 - Determining ammonia emission factors (EF) for fattening pig facilities is important from both a regulatory and a research point of view. However, measurements to determine an EF can be time consuming and costly. Several reduced sampling strategies were developed in the past to reduce the costs and measuring time, by taking into account parameters that influence NH3 emissions. A methodology to evaluate the precision and accuracy of estimated EFs solely as a function of the sampling frequency and strategy is demonstrated. This evaluation was done by using two long-term, high frequency datasets which both contained measurements during two consecutive pig fattening periods. These datasets were subjected to simulated sampling strategies. Long-term, low-frequency grab sampling proved to be more accurate than short-term monitoring. Repetitive short-term sampling events result in increased precision, but as this entails higher investment in time and money it is imperative to strike the balance between desired precision and available resources. A method to help as set guidelines to decide upon the number of short-term sampling events or the length of a long-term, low-frequency monitoring strategy is presented.
AB - Determining ammonia emission factors (EF) for fattening pig facilities is important from both a regulatory and a research point of view. However, measurements to determine an EF can be time consuming and costly. Several reduced sampling strategies were developed in the past to reduce the costs and measuring time, by taking into account parameters that influence NH3 emissions. A methodology to evaluate the precision and accuracy of estimated EFs solely as a function of the sampling frequency and strategy is demonstrated. This evaluation was done by using two long-term, high frequency datasets which both contained measurements during two consecutive pig fattening periods. These datasets were subjected to simulated sampling strategies. Long-term, low-frequency grab sampling proved to be more accurate than short-term monitoring. Repetitive short-term sampling events result in increased precision, but as this entails higher investment in time and money it is imperative to strike the balance between desired precision and available resources. A method to help as set guidelines to decide upon the number of short-term sampling events or the length of a long-term, low-frequency monitoring strategy is presented.
KW - Ammonia
KW - Animal housing
KW - Emission factor
KW - Monitoring
KW - Pig husbandry
KW - Sampling strategy
U2 - 10.1016/j.biosystemseng.2015.09.009
DO - 10.1016/j.biosystemseng.2015.09.009
M3 - Article
AN - SCOPUS:84945187842
SN - 1537-5110
VL - 140
SP - 79
EP - 90
JO - Biosystems Engineering
JF - Biosystems Engineering
ER -