Ammonia Emission Estimation of Biogas Production Facilities in South Korea: Consideration of the Emission Factor Development

Author:

Kang Seongmin1ORCID,Kim Goeun2,Jeon Eui-Chan3ORCID

Affiliation:

1. Climate Change & Environment Research Center, Sejong University, Seoul 05006, Republic of Korea

2. Department of Climate and Energy, Sejong University, Seoul 05006, Republic of Korea

3. Department of Climate and Environment, Sejong University, Seoul 05006, Republic of Korea

Abstract

This study identified the need to develop ammonia (NH3) emission factors for biogas production facilities in Korea and examined the base unit that should be considered when developing emission factors. The analysis showed that the ammonia concentration of three biogas production facilities ranged from approximately 0.04 to 8 ppm. The NH3 emission factors were found to be 0.005 kg NH3 ton-waste and 0.150 kg NH3/10−3 Nm3-biogas. The estimated emission factors were also used to calculate the total emissions, which were found to be small. The uncertainty of the emission factors ranged from approximately −5% to +8% for the waste-based emission factors and approximately −5% to +7% for the biogas-based emission factors. Although the uncertainty of the emission factor differences is not large, it is low compared to the international emission factor uncertainty (maximum 191%, minimum −40.7%). Considering the development of waste-based and biogas-based emission factors, there is not much difference in terms of uncertainty of emission factors, so it is judged that it will be easier to develop emission factors based on biogas production in terms of securing and managing overall data.

Funder

Korea Ministry of Environment (MOE) as “Graduate School specialized in Climate Change”

Korea Environment Corporation

National Institute of Environmental Science (NIER) “Ammonia Emission Source Survey and Emission Factor Development (IV)—Ammonia Survey at Waste Treatment (Other Waste Treatment Facilities)”

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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4. National Institute of Environmental Research (2018). A Study on Improving the Reliability and Accuracy of Air Pollutant Emissions.

5. Review of the Special Act on the Seoul Metropolitan Air Improvement: The Total Mass emissions Managements and the Tradable Permit Programs;Rhee;Public Law J.,2007

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