Övriga publikationer
[1]
K. Pereverza och H. Ho,
"Transdisciplinary Sustainability Courses : Design principles and facilitation techniques to aid remote and hybrid learning environments,"
i The Routledge Handbook of Global Sustainability Education and Thinking for the 21st Century, Michele John red., : Routledge, 2025, s. 272-287.
[2]
[3]
F. Mazzeo Rinaldi et al.,
"A classification algorithm to link official documents to Sustainable Development Goals,"
i Towards Sustainable Futures: The Role of Evaluation, : Informa UK Limited, 2024, s. 166-185.
[4]
[5]
J. Lehmann et al.,
"Persistence of biochar: Mechanisms, measurements, predictions,"
i Biochar for Environmental Management: Science, Technology and Implementation, : Taylor and Francis, 2024, s. 277-311.
[6]
C. Sundberg och E. S. Azzi,
"Biochar sustainability,"
i Biochar for Environmental Management: Science, Technology and Implementation, : Informa UK Limited, 2024, s. 785-804.
[7]
Z. Kalantari, C. S. Ferreira och O. Rahmati,
"Water and Cities: Natural Solutions to the Urban Challenges,"
i Elgar Encyclopedia of Water Policy, Economics and Management, : Edward Elgar Publishing Ltd., 2024, s. 312-314.
[8]
M. Larsson och G. Finnveden,
"Rimlig slutsats att regeringen saknar plan för att nå klimatmålen.,"
, 2024.
[9]
P. Bhattacharya et al.,
"Safe and sustainable drinking water availability (SDG 6.1),"
i Water Matters: Achieving the Sustainable Development Goals, : Elsevier, 2024, s. 55-67.
[10]
C. S. S. Ferreira et al.,
"Soil Degradation in the Mediterranean Region: Drivers and Future Trends,"
i Springer Geography, : Springer Science and Business Media Deutschland GmbH, 2024, s. 81-112.
[11]
C. S. S. Ferreira et al.,
"Freshwater: Management Principles for Sustainability Under the Climate Emergency,"
i Springer Geography, : Springer Science and Business Media Deutschland GmbH, 2024, s. 113-148.
[12]
N. Johansson,
"Grönmålning,"
i ORDBOK för framtidens resande i städer, Dalia Mukhtar-Landgren, Lina Berglund-Snodgrass, Sara Ringvall-Sundkvist red., Lund : Lund University Press, 2024, s. 47-47.
[13]
Y. Dadrasajirlou et al.,
"A new framework for urban flood volume estimation using low-impact development methods and intelligent models,"
i Nature-Based Solutions in Supporting Sustainable Development Goals: Theory and Practice, : Elsevier BV, 2024, s. 83-109.
[14]
E. Ekström, L. Brandimarte och C. S. S. Ferreira,
"Flood mitigation at catchment scale : assessing the effectiveness of constructed wetlands,"
i Nature-Based Solutions in Supporting Sustainable Development Goals : Theory and Practice, : Elsevier BV, 2024, s. 53-81.
[15]
J. Page, V. Kareflod och E. Kåresdotter,
"Forests for climate change mitigation: Temporal dynamics of carbon sequestration in the forests of Stockholm County,"
i Nature-Based Solutions in Supporting Sustainable Development Goals: Theory and Practice, : Elsevier BV, 2024, s. 3-24.
[16]
H. Pan et al.,
Nature-Based Solutions in Supporting Sustainable Development Goals: Theory and Practice.
Elsevier, 2024.
[17]
H. Pan et al.,
"Introduction: Nature-based solutions in supporting sustainable development goals,"
i Nature-Based Solutions in Supporting Sustainable Development Goals: Theory and Practice, : Elsevier BV, 2024, s. xv-xxvi.
[18]
C. S. S. Ferreira, G. Destouni och Z. Kalantari,
"Introduction: The Mediterranean Region,"
i Springer Geography, : Springer Science and Business Media Deutschland GmbH, 2024, s. 1-8.
[19]
G. Finnveden och M. Larsson,
"Så kan Elisabeth Svantesson finansiera reformerna och omställningen,"
, 2024.
[20]
A. Cowie et al.,
"Biochar, greenhouse gas accounting, and climate change mitigation,"
i Biochar for Environmental Management: Science, Technology and Implementation, : Informa UK Limited, 2024, s. 759-784.