Uneingeschränkter Zugang

Analysis of Environmentally Certified Residential Developments in Poland


Zitieren

Adamec, J., Janoušková, S., & Hák, T. (2021). How to measure sustainable housing: A proposal for an indicator-based assessment tool. Sustainability (Basel), 13(3), 1152. https://doi.org/10.3390/su13031152 Search in Google Scholar

Awadh, O. (2017). Sustainablity and green bulding rating systems: LEED, BREEAM, GSAS and Estidama critical analysis. Journal of Building Engineering, 11, 25–29. https://doi.org/10.1016/j.jobe.2017.03.010 Search in Google Scholar

Aydin, E., Brounen, D., & Kok, N. (2020). The capitalization of energy efficiency: Evidence from the housing market. Journal of Urban Economics, 117. ISSN 0094-1190. https://doi.org/10.1016/j.jue.2020.103243 Search in Google Scholar

Biała, A. (2020). Certyfikowana zieleń w architekturze na przykładzie Poznania (Certified greenery in architecture, the case of Poznań). Zeszyty naukowe Politechniki Poznańskiej. Architektura, Urbanistyka. Architektura Wnętrz, 3, 25–36. Search in Google Scholar

Cassells, K. (2021). The global green building leaders: Which countries are leading the way? (uswitch.com) Search in Google Scholar

Cichoń, D. (2010). Zintegrowany system zarządzania nieruchomościami mieszkaniowymi w Polsce (An integrated residential real estate management system in Poland). Akademia Górniczo-Hutnicza (online). https://winntbg.bg.agh.edu.pl/rozprawy2/10348/full10348.pdf Search in Google Scholar

Coma Bassas, E., Patterson, J., & Jones, P. (2020). A review of the evolution of green residential architecture. Renewable & Sustainable Energy Reviews, 125, 109796. https://doi.org/10.1016/j.rser.2020.109796 Search in Google Scholar

De Silva, D. G., Hubbard, T. P., McComb, R. P., & Schiller, A. R. (2017). Entry, growth and survival in the green industry. Regional Studies, 51(12), 1774–1785. https://doi.org/10.1080/00343404.2016.1244333 Search in Google Scholar

Delta Controls. (2021). Certyfikacja wielokryterialna budynków. Summary by Delta Controls (online). http://www.pas4u.eu/uploads/plik/CERTYFIKATY_014_spreads.pdf Search in Google Scholar

Directive 2010/31/EU of the European Parliament and of the Council Official Journal of the European Union, L 153/13, of 19 May 2010 on the energy performance of buildings. Search in Google Scholar

Elliott, R. (2021). Insurance and the temporality of climate ethics: Accounting for climate change in US flood insurance. Economy and Society, 50(2), 173–195. https://doi.org/10.1080/03085147.2020.1853356 Search in Google Scholar

Fuerst, F., & McAllister, P. (2011). Green Noise or Green Vaule? Measuring the Effects of Environmental Certification on Office Values. Real Estate Economics, 39, 45–69. https://doi.org/10.1111/j.1540-6229.2010.00286.x Search in Google Scholar

Furtak, M., Fedorczak-Cisak, M., Różańska, B., Bocheński, P., & Gintowt, J., (2021). Certyfikacja budynków energooszczędnych. (Certification of energy efficient buildings. Construction review). Przegląd budowlany, 92(11/12), 144 - 148. Search in Google Scholar

Isimbi, D., & Park, J., (2022). The analysis of the EDGE certification system on residential complexes to improve sustainability and affordability. Buildings, 12(10), 1729, https://doi.org/10.3390/buildings12101729 Search in Google Scholar

Janicka, K., (2014). Zielone budynki biurowe na rynku nieruchomości w Polsce. (Green office buildings on the real estate market in Poland). Kwartalnik nauk o przedsiębiorstwie, 1, 57-65. Search in Google Scholar

Jański, M. (2021). Czy certyfikacja budynków mieszkalnych stanie się standardem? (Will the certification of residential buildings become the standard?) (online). CEBRE, https://www.cbre.pl/insights/articles/certyfikacja-zielone-certyfikaty Search in Google Scholar

Juchimiuk, J. (2011). Certyfikacja ekologiczna BREEAM w warunkach polskich - trzy budynki biurowe Trinity Park III, Crown Square, Katowice Business Point (BREEAM ecological certification in Polish conditions – three office buildings Trinity Park III, Crown Square, Katowice Business Point). Przegląd budowlany (online), 82(5), 88-95. Search in Google Scholar

Jurczak, A., Kuczera, A., & Stasiak, A. & Szczepanik, M., (2021). Certyfikacja zielonych budynków w liczbach. Raport 2021 (Green building certification in numbers. Report 2021). Gliwice: Polskie Stowarzyszenie Budownictwa Ekologicznego (online). https://plgbc.org.pl/wp-content/uploads/2021/04/Certyfikacja-zielonych-budynkow-2021.pdf Search in Google Scholar

Kim, J. L., Greene, M., & Kim, S. (2014). Cost comparative analysis of a new green building code for residential project development. Journal of Construction Engineering and Management, 140(5), 05014002. https://doi.org/10.1061/(ASCE)CO.1943-7862.0000833 Search in Google Scholar

Kohler, A. & Rydholm, J., (2021). Empricial study of the impact of green certification on the rental income. Do green certifications add value to office buildings? Stockholm: School of Architecture and the Built Enviromental.(online), https://www.divaportal.org/smash/get/diva2:1576943/FULLTEXT01.pdf Search in Google Scholar

Kontkiewicz-Studzińska, J., & Nogaj, P. (2019). Raport. Budownictwo. Innowacje. Wizja liderów branży 2025 (Report. Construction. Innovations. Vision of industry leaders 2025). ASM- Centrum Badań i Analiz Rynku. https://unibep.pl/attachments/article/3296/Budownictwo.%20Innowacje.%20Wizja%20lider%C3%B3w%20bran%C5%BCy%202025.pdf Search in Google Scholar

Kopeva, A., Ivanova, O., & Khrapko, O. (2018). Green infrastructure in high-rise residential development on steep slopes in city of Vladivostok. In E3S Web of Conferences (33). EDP Sciences. https://doi.org/10.1051/e3sconf/20183301004 Search in Google Scholar

Kuczera, A. (2018). Ceryfikacja zielonych budynków w liczbach. PLGBC, Raport 2018 (Green building certification in numbers. PLGBC, Report 2018). Gliwice: Polskie Stowarzyszenie Budownictwa Ekologicznego (online). Retrieved from: https://plgbc.org.pl/wp-content/uploads/2020/05/Certyfikacja-zielonych-budynkow-w-liczbach-2018.pdf Search in Google Scholar

Kuczera, A. (2022). Zrównoważone certyfikowane budynki. PLGBC. Raport 2022 (Sustainable certified buildings. PLGBC. Report 2022). Gliwice: Polskie Stowarzyszenie Budownictwa Ekologicznego (online). Retrieved from: https://plgbc.org.pl/wp-content/uploads/2022/04/Zrownowazone-certyfikowane-budynki-2022.pdf Search in Google Scholar

Lewandowska, A., Rogatka, K., & Wylon, M. (2019). Wybrane aspekty zielone budownictwa w Polsce w kontekście systemów certyfikacji budynków ekologicznych (Selected aspects of green construction in Poland in the context of ecological building certification systems). Studia Ecologiae et Bioethicae, 17(3), 35–44. https://doi.org/10.21697/seb.2019.17.3.04 Search in Google Scholar

Mokrzecka, M. (2015). Międzynarodowe systemy certyfikacji LEED, BREEAM i DGNB. Wstępna analiza porównawcza poparta studium przypadków (International LEED, BREEAM and DGNB certification systems. Initial comparative analysis supported by case studies). Czasopismo Inzynierii Ladowej, Srodowiska i Architektury, XXXII(2/2015), 311–322. https://doi.org/10.7862/rb.2015.60 Search in Google Scholar

Nguyen, B. K., & Altan, H. (2011). Comparative review of five sustainable rating systems. Procedia engineering. Procedia Engineering, 21, 376–386. https://doi.org/10.1016/j.proeng.2011.11.2029 Search in Google Scholar

Piepiora, Z. (2019). Ekonomiczna efektywność strukturalnej ochrony przeciwpowodziowej w Polsce (Economic effectiveness of structural flood protection in Poland). Monografie CCXV, Wydawnictwo Uniwersytetu Przyrodniczego we Wrocławiu, Wrocław, ISSN 2083-5531, ISBN 978-83-7717-303-9, www.dbc.wroc.pl/dlibra/publication/107718/edition/61315 Search in Google Scholar

Piepiora, Z., Babczuk, A., & Kachniarz, M. (2016). Active Natural Disasters Policy in Poland, Proceedings of the 2016 International Conference on Intelligent Control and Computer Application in Advances in Computer Science Research. Atlantis Press, Paris-Amsterdan-Beijing, ISBN 978-94-6252-154-4, ISSN 2352-538X Vol. 30, http://www.atlantispress.com/php/pub.php?publication=icca-16, pp. 194-197. Search in Google Scholar

Scofield, J. (2009). Do LEED-certified buildings save energy? Not really... Energy and Building, 41, 1386–1390. https://doi.org/10.1016/j.enbuild.2009.08.006 Search in Google Scholar

Sirazetdinov, R., Mavliutova, A., & Zagidullina, G. (2018). Enviromental standarization of residential real estateaccording “Green standards”. MATEC Web of Conferences, Vol. 193, Nr 16, pp. 1-16. doi.org/https://doi.org/10.1051/matecconf/201819303001 Search in Google Scholar

Taczalska-Ryniak, A. (2019). Wielokryterialna certyfikacja budynków biurowych jako wyznacznik nowoczesności i jakości pracy (Multi-criteria certification of office buildings as an indicator of modernity and quality of work). Zeszyty Naukowe Małopolskiej Wyższej Szkoły Ekonomicznej w Tarnowie, 41(1), 103-124. doi.org/https://doi.org/10.25944/znmwse.2019.01.103124 Search in Google Scholar

Tupenaite, L., Lill, I., Geipele, I., & Naimaviciene, J. (2017). Ranking of sustainability indicators for assessment of the new housing development projects: Case of the Baltic States. Resources, 6(4), 55. Advance online publication. https://doi.org/10.3390/resources6040055 Search in Google Scholar

Ustawa z dnia 29 sierpnia 2014 r. o charakterystyce energetycznej budynków (Act of August 29, 2014 on the energy performance of buildings) Search in Google Scholar

USWITCH. (2023). https://www.uswitch.com/gas-electricity/globalgreen-building-leaders/ Search in Google Scholar

White Paper on Sustainability. (2003). In Building Design and Construction, November 2003, www.bdcnetwork.com Search in Google Scholar

Yang, X. (2013). Measuring the effects of environmental certification on residential.property values-evidence from green condominiums in Portland. Portland State University., https://doi.org/10.15760/etd.1113 Search in Google Scholar

Yang, X., Zhang, J., & Zhao, X. (2018). Factors affecting green residential building development: Social network analysis. Sustainability (Basel), 10(5), 1389. https://doi.org/10.3390/su10051389 Search in Google Scholar

https://www.consilium.europa.eu/pl/policies/green-deal/fit-for-55-the-eu-plan-for-a-green-transition/ Search in Google Scholar

https://www.unep.org/sbci/pdfs/greening_the_supply_chain_report.pdf Search in Google Scholar

eISSN:
2300-5289
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Wirtschaftswissenschaften, Volkswirtschaft, andere