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세계 주요 공항의 환경 효율성 분석에 관한 연구
Measuring Environmental Efficiency of International Airports: DEA and DDF Approach 원문보기

한국항만경제학회지 = Journal of Korea Port Economic Association, v.37 no.4, 2021년, pp.51 - 70  

이승은 (미국 Georgia Southern University, Department of Logistics and Supply Chain Management) ,  최정원 (경북대학교 대학원 무역학과) ,  김성룡 (경북대학교 대학원 무역학과) ,  서영준 (경북대학교 대학원 무역학과)

초록
AI-Helper 아이콘AI-Helper

본 연구는 각 공항의 2018년 지속가능성 보고서를 바탕으로 21개 국제 공항의 환경 효율성을 측정하였다. 최근 다양한 산업 분야에서 환경 및 사회적 책임에 관심을 기울여왔는데, 특히 항공 분야의 경우 환경 친화적 및 지속가능성 운영에 관심을 보이는 선도적인 부문 중 하나이다. 그럼에도 불구하고, 공항의 환경적 운영에 관련된 연구는 경제적 또는 운영 효율성 연구에 비하면 매우 부족한 실정이다. 따라서 본 연구는 Directional Distance Function (DDF)의 활용을 통해 공항의 환경 비효율성에 대한 개선 여부를 알아보고, Data Envelopment Analysis (DEA)의 적용을 통해 운영 효율성을 측정하는 것을 목적으로 한다. 연구 결과, 주요 공항들은 설비를 효율적으로 운영하고 있으나, 그들 모두가 공항에서 배출되는 물질을 효율적으로 운영하지는 못했다. 게다가, 많은 공항은 여전히 잠재적으로 CO2와 물 소비량을 감소시킬 수 있는 개선의 여지가 존재하였다. 이를 통해 본 연구는 항공 분야에서 실행가능한 환경적 개선점을 제시하고자 하였다. 더 나아가서, 다른 산업 분야에서도 환경 효율성 개선을 위한 기준으로서 이 연구를 활용할 수 있을 것이다.

Abstract AI-Helper 아이콘AI-Helper

This study measured the environmental efficiency of 21 international airports based on sustainability reports issued by each airport for 2018. As many sectors in the industry paid attention to social and environmental responsibilities, airport operators comprise one of the leading sectors that strea...

주제어

참고문헌 (57)

  1. Atlanta International Airport(2015), Annual Sustainability Report. Atlanta, GA: Author. 

  2. Avkiran, N. K.(2001), Investigating technical and scale efficiencies of Australian universities through data envelopment analysis, Socio-Economic Planning Sciences, 35, 57-80. 

  3. Auckland Airport(2018), Corporate Social Responsibility Report. Auckland, Auckland, NZ: Author. 

  4. Banker, R. D., Charnes, A. and Cooper, W. W.(1984), Some models for estimating technical and scale inefficiencies in data envelopment analysis, Management Science, 30, 1078-1092. 

  5. Barros, C. and Dieke, P.(2007), Performance evaluation of Italian airports: A data envelopment analysis, Journal of Air Transport Management, 13, 184-191. 

  6. Baxter, G., Srisaeng, P. and Wild G.(2019), An assessment of airport sustainability: Part 3-Water management at Copenhagen Airport, Resources, 8(3), 135. 

  7. Baxter, G., Wild G. and Sabatini, R.(2014), A sustainable approach to airport design and operations: Case study of Munich airport, Practical Responses to Climate Change Conference 2014, 227-237. 

  8. Bazargan, M. and Vasigh, B.(2003), Size versus efficiency: a case study of US commercial airports, Journal of Air Transport Management, 9, 187-193. 

  9. Beijing Capital Airport(2018), Corporate Social Responsibility Report. Beijing: Author. 

  10. Bieliatynskyi, A., Osipa, L. and Kornienko, B.(2018), Water-saving processes control an airport, MATEC Web of Conferences, 239. 

  11. Boussofiane, A., Dyson, R. G. and Thanassoulis, E. (1991), Applied data envelopment analysis, European journal of operational research, 52(1), 1-15. 

  12. Brisbane Airport(2019), BAC Sustainability Report. Brisbane, Australia: Author. 

  13. Carvalho, I., Calijuri, M., Assemany, P., Silva, M., Neto, R., Santiago, A. and Souza, M.(2013), Sustainable airport environments: A review of water conservation practices in airports, Resources, Conservation and Recycling, 74, 27-36. 

  14. Chang, Y. H. and Yeh, C. H.(2016), Managing corporate social responsibility strategies of airports: The case of Taiwan's Taoyuan International Airport corporation, Transportation Research Part A: Policy and Practice, 92, 338-348. 

  15. Changi Airport(2017-18), Changi Airport Group Sustainability Report. Singapore: Author. 

  16. Chek lap kok Airport(2017/18), Airport Authority Hong Kong Sustainability Report. Hong Kong, HK: Author. 

  17. Chu, Y., Yu, J. and Huang, Y.(2010), Measuring airport production efficiency based on two-stage correlative DEA, International Conference on Industrial Engineering and Engineering Management, 660-664. 

  18. Chung, Y. H., Fare, R. and Grosskopf, S.(1997), Productivity and undesirable outputs: directional distance function approach, Journal of Environmental Management, 51, 229-240. 

  19. Cooper, W. W., Seiford, M. L. and Zhu, J.(2010), Handbook on data envelopment analysis. New York, NY: Springer Publishing. 

  20. Dallas/Fort Worth Airport(2018), Environmental Social Governance Report. Dallas and Fort Worth, TX: Author. 

  21. Dubai Airport(2017-18), The Emirates Group Environmental Performance Report. Dubai, United Arab Emirates: Author. 

  22. Efthymiou, M. and Papatheodorou, A.(2019), EU Emissions Trading scheme in aviation: Policy analysis and suggestions. Journal of Cleaner Production, 237, 117734. 

  23. Fare, R., Grosskopf, S., Lovell, C. and Pasurka, C.(1989), Multilateral Productivity Comparisons When Some Outputs are Undesirable: A Nonparametric Approach, The Review of Economics and Statistics, 71, 90-98. 

  24. Fare, R., Grosskopf, S. and Pasurka, C.(2007), Environmental production functions and environmental directional distance functions, Energy, 32, 1055-1066. 

  25. Fernandes, E. and Pacheco, R. R.(2002), Efficient use of airport capacity, Transportation Research Part A: Policy and Practice, 36, 225-238. 

  26. Ferrulli, P.(2016), Green Airport Design Evaluation (GrADE)-methods and tools improving infrastructure planning, Transportation Research Procedia, 14, 3781-3790. 

  27. Fitzsimmons, J. A. and Fitzsimmons, M. J.(1994), Service management for competitive advantage, New York, NY: McGraw-Hill. 

  28. Fraport A. G.(2018), Fraport Sustainability Report. Frankfurt, Germany: Author. 

  29. Global Reporting Initiative(GRI)(2014), G4 airport operators sector disclosures. Amsterdam: Author. 

  30. Hamad International Airport(2018), Qatar Airways Group Sustainability Report. Doha: Author. 

  31. Heathrow Airport Limited(2018), Heathrow 2.0 Sustainability Progress. London, UK: Author 

  32. ICAO(2018), The world of air transport in 2018. Retriev ed from https://www.icao.int/annual-report-2018/Pages/the-world-of-air-transport-in-2018.aspx 

  33. Incheon International Airport Corporation(2018), Green Report. Incheon, Republic of Korea: Author. 

  34. Indira Gandhi Airport(2018), DIAL Renewable Energy Program, New Delhi: Author. 

  35. Jones, S., Richardson, N., Bennett, M. and Hoon, S. R.(2015), The application of magnetic measurements for the characterization of atmospheric particulate pollution within the airport environment, Science of the Total Environment, 502, 385-390. 

  36. Kamal, B. and Kutay, S.(2021), Assessment of causal mechanism of ship bunkering oil pollution, Ocean & Coastal Management, 215, 105939. 

  37. Kilkis, B.(2014), Energy consumption and CO 2 emission responsibilities of terminal buildings: A case study for the future Istanbul International Airport, Energy and Buildings, 76, 109-118. 

  38. Lee, J. D. and Oh, D. H.(2010), Efficiency Analysis Theory DEA: Data Envelopment Analysis. Seoul: iB BOOK Publishing. 

  39. Li, L. L., Seo, Y. J. and Ha, M. H.(2021), The efficiency of major container terminals in China: super-efficiency data envelopment analysis approach, Maritime Business Review, 6, 173-187. 

  40. Los Angeles Airport(2018), LAWA Sustainability Report. Los Angeles, CA: Author. 

  41. Lozano, S. and Gutierrez, E.(2011), Slack-based measure of efficiency of airports with airplanes delays as undesirable outputs, Computers & Operations Research, 38, 131-139. 

  42. Lozano, S., Gutierrez, E. and Moreno, P.(2013), Network DEA approach to airports performance assessment considering undesirable outputs, Applied Mathematical Modelling, 37, 1665-1676. 

  43. Martin, J. and Roman, C.(2001), An application of DEA to measure the efficiency of Spanish airports prior to privatization, Journal of Air Transport Management, 7, 149-157. 

  44. Meleo, L., Nava, C. R. and Pozzi, C.(2016), Aviation and the costs of the European Emission Trading Scheme: The case of Italy, Energy Policy, 88, 138-147. 

  45. Mumbai International Airport Limited(2018), GVK Sustainability Report. Mumbai, India: Author. 

  46. Munich Airport(2019), Environmental Statement. Munich, Germany: Author. 

  47. Narita Airport(2018), Narita International Airport Environmental Report. Tokyo: Author. 

  48. Park, J. S., Seo, Y. J. and Ha, M. H.(2019), The role of maritime, land, and air transportation in economic growth: Panel evidence from OECD and non-OECD countries, Research in Transportation Economics, 78, 100765. 

  49. Pels, E., Nijkamp, P. and Rietveld, P.(2001), Relative efficiency of European airports, Transport Policy, 8, 183-192. 

  50. Schiphol Airport(2018), Royal Schiphol Group Annual Report. Amsterdam: Author. 

  51. Seo, Y. J., Ryoo, D. K. and Aye, M. N.(2012), An analysis of container terminal efficiency in ASEAN, Journal of Navigation and Port Research, 36, 535-544. 

  52. Soekarno-Hatta Airport(2018), Laporan Keberlanjutan Sustainability Report. Jakarta: Author. 

  53. Stettler, M. E. J., Eastham, S. and Barrett S. R. H.(2011), Air quality and public health impacts of UK airports. Part I: Emissions, Atmospheric Environment, 45, 5415-5424. 

  54. Suvarnabhumi Airport(2018), Sustainable Development Report. Bangkok: Author. 

  55. Sydney Airport(2018), Sustainability Report. Sydney, Australia: Author. 

  56. Tsui, W., Balli, H., Gilbey, A. and Gow, H.(2014), Operational efficiency of Asia-Pacific airports, Journal of Air Transport Management, 40, 16-24. 

  57. Wanke, P., Barros, C. P. and Nwaogbe O. R.(2016), Assessing productive efficiency in Nigerian airports using Fuzzy-DEA. Transport Policy, 49, 9-19. 

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