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49 articles
Editorial 22 Dec 2022
Highlights of Sustainability Editorial Office
3231 Views628 Downloads
Article 21 Oct 2022
Elena Bulmer, Magali Riera Roca and Julio Blas
Adopting a long-term perspective has helped companies survive in difficult times and overcome economic crises, recessions, and pandemics such as the current COVID-19. At present, the project management approach is changing from more authoritarian management models
Adopting a long-term perspective has helped companies survive in difficult times and overcome economic crises, recessions, and pandemics such as the current COVID-19. At present, the project management approach is changing from more authoritarian management models to frameworks that are based on the management of people and society. This article researches the concept of sustainable leadership in the project management profession. It evaluates the level of sustainable leadership among project managers in Spain using the Avery and Bergsteiner’s (2011) model of bees and locusts as a reference framework (Bee and Locust Sustainable Leadership Model). A qualitative study was carried out based on the analysis of the responses given by sixty-eight project managers in Spain who answered a 52-point ques-tionnaire. The findings yielded interesting results. It was found that in projects considered as temporal organizations, companies tended to employ a mixture of bee and locust’s leadership elements. Respondents recognized the importance of employee training and development, and most considered that it was essential to consider the environment when determining the organization’s commercial objectives. However, based on this study’s findings, the project management profession still has a long way to go as regards the practical implementation of sustainable leadership.
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Highlights of Sustainability
Volume 1 (2022), Issue 4, pp. 224–232
Volume 1 (2022), Issue 4, pp. 224–232
5468 Views2482 Downloads8 Citations
Article 8 Sep 2022
Annalisa Stacchini, Andrea Guizzardi and Michele Costa
Highlights of Sustainability
Volume 1 (2022), Issue 3, pp. 202–223
Volume 1 (2022), Issue 3, pp. 202–223
7313 Views1782 Downloads9 Citations
Review 8 Aug 2022
Ambe J. Njoh, Ijang B. Ngyah-Etchutambe, Fri C. Soh-Agwetang, Pascar T. Tah, Mah O. Tarke and Fotoh J. Asah
Highlights of Sustainability
Volume 1 (2022), Issue 3, pp. 159–170
Volume 1 (2022), Issue 3, pp. 159–170
3674 Views1850 Downloads2 Citations
Article 7 Jul 2022
Ogenis Brilhante and Julia Skinner
Highlights of Sustainability
Volume 1 (2022), Issue 3, pp. 113–128
Volume 1 (2022), Issue 3, pp. 113–128
5730 Views2166 Downloads
Article 6 May 2022
Marjan Marjanović, Wendy Wuyts, Julie Marin and Joanna Williams
Highlights of Sustainability
Volume 1 (2022), Issue 2, pp. 65–87
Volume 1 (2022), Issue 2, pp. 65–87
6373 Views1834 Downloads16 Citations
Article 29 Apr 2022
Richard W. Butler and Rachel Dodds
Highlights of Sustainability
Volume 1 (2022), Issue 2, pp. 54–64
Volume 1 (2022), Issue 2, pp. 54–64
9537 Views5724 Downloads16 Citations
Article 28 Mar 2022
Reza Heydari, Mohammad Keshtidar, Haywantee Ramkissoon, Mahdi Esfahani and Ehsan Asadollahi
Highlights of Sustainability
Volume 1 (2022), Issue 2, pp. 41–53
Volume 1 (2022), Issue 2, pp. 41–53
5379 Views1809 Downloads4 Citations
Review 8 Mar 2022
Hwang Yi and Abhishek Mehrotra
Highlights of Sustainability
Volume 1 (2022), Issue 1, pp. 12–40
Volume 1 (2022), Issue 1, pp. 12–40
3813 Views1367 Downloads1 Citations
Review 8 Mar 2022
Hwang Yi and Abhishek Mehrotra
Sustainable buildings tend to maximize power and information rather than efficiency. The multidimensional concepts and tools provided by systems ecology and thermodynamics aid the understanding of building performance and sustainability as part of the global and
Sustainable buildings tend to maximize power and information rather than efficiency. The multidimensional concepts and tools provided by systems ecology and thermodynamics aid the understanding of building performance and sustainability as part of the global and complex thermodynamic phenomena in living systems—energy is not concentrated, but it flows, increasing the flow rate of useful energy. From such an extended macroscopic perspective, this paper addresses holistic eco-systemic criteria of building performance evaluation, focusing on emergy (spelled with an “m”) and information—the two critical indices of extensive and intensive analysis. Emergy aggregates the utmost and upstream energetic impacts, whereas information evaluates the structural pattern of the energy-flow distribution. These indices are theoretically correlated under the principles of ecological energy transformation and are often practically compatible. To clarify the definitions and appropriate scientific contexts of the new indices for environmental building studies, we review information theory, ecological theorems, and a few pioneering studies. Emergy and information have a great potential for advanced environmental building analysis, but building-scale implementation of emergy, information, and system principles remains a scientific challenge. The findings call for further research into the improvement of building-specific emergy/information data and reliable evidence of the analogy between building and open living systems.
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Highlights of Sustainability
Volume 1 (2022), Issue 1, pp. 12–40
Volume 1 (2022), Issue 1, pp. 12–40
3813 Views1367 Downloads1 Citations

Volume 1 (2022), Issue 4, pp. 253–254