Skip to main content
Top

2024 | OriginalPaper | Chapter

4. Nachwachsende Rohstoffe für das Bauwesen

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Zusammenfassung

Die Verwendung nachwachsender Rohstoffe verbessert im Vergleich mit derjenigen konventioneller Baustoffe in vielen Fällen die Treibhausgasbilanzen von Bauwerken über den Lebenszyklus. Das lässt sich sagen, auch wenn es etwa zahleiche definitorische Unschärfen bezüglich der konkurrierenden Konzepte von Klimaneutralität gibt. Durch die Berechnung von Lebenszyklusanalysen (Ökobilanzen) lässt sich der relative Vorteil der nachwachsenden Baurohstoffe belegen. Mit Blick auf die Ressourcenverfügbarkeit und organische Stoffströme bietet sich der zunehmende baustoffliche Gebrauch von Stroh verschiedener Getreide an. Agrarökologische Argumente sprechen für die Feldfrüchte Miscanthus, Hanf und Pappel. Auch Bambus, Flachs, Baumwolle, Kokos, Ananas, Schilf, Rohrkolben, Hopfen, Jute, Brennessel, Zuckerrohr oder Holz vom Kiri-Baum werden für das Bauwesen als Massenbaustoffe für relevant erachtet. Biotechnologisch progressive Anwendungsbeispiele der Lignozellulose-Bioökonomie werden das Bauwesen erreichen. Neben Vollholz spielen Brettschicht- und Brettsperrhölzer eine zunehmend große Rolle. Sie erweitern die Rohstoffbasis auf bislang baulich kaum genutzte Laubhölzer. Strukturelle Veränderungen des Holzes auf Mikro- oder Nanoebene kommen hinzu. Dieses Kapitel gibt einen einführenden Überblick.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
go back to reference Akoto, D. et al. (2020). Towards bamboo agroforestry development in Ghana: Evaluation of crop performance, soil properties and economic benefit. Agroforestry Systems, 94, 1759–1780.CrossRef Akoto, D. et al. (2020). Towards bamboo agroforestry development in Ghana: Evaluation of crop performance, soil properties and economic benefit. Agroforestry Systems, 94, 1759–1780.CrossRef
go back to reference Amziane, S. & Sonebi, M. (2016). Overview on biobased building material made with plant aggregate. RILEM Technical Letters, 1, 31–38.CrossRef Amziane, S. & Sonebi, M. (2016). Overview on biobased building material made with plant aggregate. RILEM Technical Letters, 1, 31–38.CrossRef
go back to reference Banse, M., Brüning, S. et al. (2020), Pilotbericht zum Monitoring der deutschen Bioökonomie. Thünen Institut. Banse, M., Brüning, S. et al. (2020), Pilotbericht zum Monitoring der deutschen Bioökonomie. Thünen Institut. 
go back to reference Bardi, U. (2009). Peak oil: The four stages of a new idea. Energy, 34(3), 323–326.CrossRef Bardi, U. (2009). Peak oil: The four stages of a new idea. Energy, 34(3), 323–326.CrossRef
go back to reference Bastin, J.-F. et al. (2019). The global tree restoration potential. Science, 365(6448), 76–79.CrossRef Bastin, J.-F. et al. (2019). The global tree restoration potential. Science, 365(6448), 76–79.CrossRef
go back to reference Bernard, T. et al. (2014). Bautechnische, ökologische und ökonomische Grundlagen der Planung von Strohballen-Gebäuden – Literaturzusammenstellung und Analyse des thermischen Leitwertes der Gebäudehülle. Bauphysik, 36(3), 134–143.CrossRef Bernard, T. et al. (2014). Bautechnische, ökologische und ökonomische Grundlagen der Planung von Strohballen-Gebäuden – Literaturzusammenstellung und Analyse des thermischen Leitwertes der Gebäudehülle. Bauphysik, 36(3), 134–143.CrossRef
go back to reference Bewg, W. P. et al. (2018). Genome editing in trees: From multiple repair pathways to long-term stability. Frontiers in plant science, 9, 1732.CrossRef Bewg, W. P. et al. (2018). Genome editing in trees: From multiple repair pathways to long-term stability. Frontiers in plant science, 9, 1732.CrossRef
go back to reference Bocco, G. A. (2014). Architect Werner Schmidt’s Straw-Bale Construction. Non-Conventional Materials and Technologies for Sustainable Engineering, 600, 727–738. Bocco, G. A. (2014). Architect Werner Schmidt’s Straw-Bale Construction. Non-Conventional Materials and Technologies for Sustainable Engineering, 600, 727–738.
go back to reference Bringezu, S. et al. (2020). Pilotbericht zum Monitoring der deutschen Bioökonomie. CESR, Universität Kassel. Bringezu, S. et al. (2020). Pilotbericht zum Monitoring der deutschen Bioökonomie. CESR, Universität Kassel.
go back to reference Calder, B. (2021). Architecture: From prehistory to climate emergency. Pelican. Calder, B. (2021). Architecture: From prehistory to climate emergency. Pelican.
go back to reference Chanoca, A. et al. (2019). Lignin engineering in forest trees. Frontiers in plant science, 10, 912.CrossRef Chanoca, A. et al. (2019). Lignin engineering in forest trees. Frontiers in plant science, 10, 912.CrossRef
go back to reference Chavan, S. B. et al. (2022). Enhancing farm income through boundary plantation of poplar (populus deltoides): An economic analysis. Sustainability, 14, 8663.CrossRef Chavan, S. B. et al. (2022). Enhancing farm income through boundary plantation of poplar (populus deltoides): An economic analysis. Sustainability, 14, 8663.CrossRef
go back to reference Churkina, G. et al. (2020). Buildings as a global carbon sink. Nat Sustain, 3(4), 269–276.CrossRef Churkina, G. et al. (2020). Buildings as a global carbon sink. Nat Sustain, 3(4), 269–276.CrossRef
go back to reference Dehoust, G. & Alwast, H. (2010). Kapazitäten der energetischen Verwertung von Abfällen in Deutschland und ihre zukünftige Entwicklung in einer Kreislaufwirtschaft. Öko-Institut. Dehoust, G. & Alwast, H. (2010). Kapazitäten der energetischen Verwertung von Abfällen in Deutschland und ihre zukünftige Entwicklung in einer Kreislaufwirtschaft. Öko-Institut.
go back to reference Dev, I. et al. (2020). Bamboo-based agroforestry system (Dendrocalamus strictus+ sesame–chickpea) for enhancing productivity in semi-arid tropics of central India. Agroforestry Systems, 94, 1725–1739.CrossRef Dev, I. et al. (2020). Bamboo-based agroforestry system (Dendrocalamus strictus+ sesame–chickpea) for enhancing productivity in semi-arid tropics of central India. Agroforestry Systems, 94, 1725–1739.CrossRef
go back to reference Dumke, H. (2020). Erneuerbare Energien für Regionen: Flächenbedarfe und Flächenkonkurrenzen. TU Wien Academic Press. Dumke, H. (2020). Erneuerbare Energien für Regionen: Flächenbedarfe und Flächenkonkurrenzen. TU Wien Academic Press.
go back to reference Ehling, R. (2020). Strohballenbau. Vergleich dreier Bauvorhaben unter konstruktiven, ausführungstechnischen und bauphysikalischen Aspekten. Masterarbeit Hochschule Leipzig. Ehling, R. (2020). Strohballenbau. Vergleich dreier Bauvorhaben unter konstruktiven, ausführungstechnischen und bauphysikalischen Aspekten. Masterarbeit Hochschule Leipzig.
go back to reference Espinoza, O. & Buehlmann, U. (2018). Cross-Laminated timber in the USA: Opportunity for hardwoods? Current Forestry Reports, 4(1), 1–12.CrossRef Espinoza, O. & Buehlmann, U. (2018). Cross-Laminated timber in the USA: Opportunity for hardwoods? Current Forestry Reports, 4(1), 1–12.CrossRef
go back to reference EU- Kommission (2019). Farm to fork strategy, For a fair, healthy and environmentally-friendly food system. Brüssel, S. 16–19. EU- Kommission (2019). Farm to fork strategy, For a fair, healthy and environmentally-friendly food system. Brüssel, S. 16–19.
go back to reference EU Kommission (2022). Europäische Kommission: Neue EU-Waldstrategie für 2030. Pressemeldung. EU Kommission (2022). Europäische Kommission: Neue EU-Waldstrategie für 2030. Pressemeldung.
go back to reference FAO (2015). Report of the regional meeting on agroecology in sub-saharan Africa. FAO (2015). Report of the regional meeting on agroecology in sub-saharan Africa.
go back to reference FAO (2020). Global forest resource assessment, Rom. FAO (2020). Global forest resource assessment, Rom.
go back to reference Fladung, M. & Kersten, B. (2022). Tree genetic engineering, genome editing and genomics. International Journal of Molecular Sciences, 23, 22.CrossRef Fladung, M. & Kersten, B. (2022). Tree genetic engineering, genome editing and genomics. International Journal of Molecular Sciences, 23, 22.CrossRef
go back to reference Fortier, J. et al. (2016). Potential for hybrid poplar riparian buffers to provide ecosystem services in three watersheds with contrasting agricultural land use. Forests, 7(2), 37.CrossRef Fortier, J. et al. (2016). Potential for hybrid poplar riparian buffers to provide ecosystem services in three watersheds with contrasting agricultural land use. Forests, 7(2), 37.CrossRef
go back to reference Götzberger, A. & Zastrow. A. (1981). Kartoffeln unter dem Kollektor. Sonnenenergie, 3, 19–22. Götzberger, A. & Zastrow. A. (1981). Kartoffeln unter dem Kollektor. Sonnenenergie, 3, 19–22.
go back to reference Göswein, V. et al. (2021). Land availability in Europe for a radical shift toward bio-based construction. Sustainable Cities and Society, 70. 102929. Göswein, V. et al. (2021). Land availability in Europe for a radical shift toward bio-based construction. Sustainable Cities and Society, 70. 102929.
go back to reference Greene, C. H. & Scott-Buechler, C. M. (2022). Algal solutions: Transforming marine aquaculture from the bottom up for a sustainable future. PLoS Biology, 20, 10.CrossRef Greene, C. H. & Scott-Buechler, C. M. (2022). Algal solutions: Transforming marine aquaculture from the bottom up for a sustainable future. PLoS Biology, 20, 10.CrossRef
go back to reference Grossarth, J. (2023). Agrarische Biomasse für den klimagerechten Bau, Ein Überblick über Nachhaltigkeitspotenziale Ressourcenpotenziale, Klimaschutzbeiträge, Anwendungen und Zielkonflikte. nbau Nachhaltig bauen, 2(2), 35–44. Grossarth, J. (2023). Agrarische Biomasse für den klimagerechten Bau, Ein Überblick über Nachhaltigkeitspotenziale Ressourcenpotenziale, Klimaschutzbeiträge, Anwendungen und Zielkonflikte. nbau Nachhaltig bauen, 2(2), 35–44.
go back to reference Grossarth, J. (2019). Future Food, Die Zukunft der Welternährung. wbg Theiss. Grossarth, J. (2019). Future Food, Die Zukunft der Welternährung. wbg Theiss.
go back to reference Grossarth, J. (2018). Die Vergiftung der Erde, Metaphern und Symbole agrarpolitischer Diskurse seit Beginn der Industrialisierung, Frankfurt/New York, Darin: Die kulturelle Wende der Agrarökologe. Campus, 159–166. Grossarth, J. (2018). Die Vergiftung der Erde, Metaphern und Symbole agrarpolitischer Diskurse seit Beginn der Industrialisierung, Frankfurt/New York, Darin: Die kulturelle Wende der Agrarökologe. Campus, 159–166.
go back to reference Hartmann, H. et al. (2022). Climate change risks to global forest health: Emergence of unexpected events of elevated tree mortality worldwide. Annual Review of Plant Biology, 73, 673–702.CrossRef Hartmann, H. et al. (2022). Climate change risks to global forest health: Emergence of unexpected events of elevated tree mortality worldwide. Annual Review of Plant Biology, 73, 673–702.CrossRef
go back to reference HLPE (2019). Agroecological and other innovative approaches for sustainable agriculture and food systems that enhance food security and nutrition. Rom. HLPE (2019). Agroecological and other innovative approaches for sustainable agriculture and food systems that enhance food security and nutrition. Rom.
go back to reference Holzmann, G., et al. (2009). Natürliche und pflanzliche Baustoffe. Springer. Holzmann, G., et al. (2009). Natürliche und pflanzliche Baustoffe. Springer.
go back to reference Ikromov, I. & Kadamov. A. (2021). Agroforestry against wind erosion damage: A case study in Tajikistan. In L. Müller (Hrsg.), Exploring and optimizing agricultural landscapes. Springer, S. 693–705. Ikromov, I. & Kadamov. A. (2021). Agroforestry against wind erosion damage: A case study in Tajikistan. In L. Müller (Hrsg.), Exploring and optimizing agricultural landscapes. Springer, S. 693–705.
go back to reference Illampas, R. et al. (2014). Adobe bricks under compression: Experimental investigation and derivation of stress–strain equation. Construction and Building Materials, 53, 83–90.CrossRef Illampas, R. et al. (2014). Adobe bricks under compression: Experimental investigation and derivation of stress–strain equation. Construction and Building Materials, 53, 83–90.CrossRef
go back to reference Jang, H.-A., et al. (2021). CRISPR-knockout of CSE gene improves saccharification efficiency by reducing lignin content in hybrid poplar. International Journal of Molecular Sciences, 22, 18. 9750. Jang, H.-A., et al. (2021). CRISPR-knockout of CSE gene improves saccharification efficiency by reducing lignin content in hybrid poplar. International Journal of Molecular Sciences, 22, 18. 9750.
go back to reference Knaack, U. et al. (2022). Bauen mit Papier, Architektur und Konstruktion. Birkhauser. Knaack, U. et al. (2022). Bauen mit Papier, Architektur und Konstruktion. Birkhauser.
go back to reference Kosiński, P. et al. (2022). Thermal Properties of Hemp Shives Used as Insulation Material in Construction Industry. Energies, 15, 7. 2461.CrossRef Kosiński, P. et al. (2022). Thermal Properties of Hemp Shives Used as Insulation Material in Construction Industry. Energies, 15, 7. 2461.CrossRef
go back to reference Kumar, D. & Mandal A. (2022). Review on manufacturing and fundamental aspects of laminated bamboo products for structural applications. Construction and Building Materials, 348. 128691. Kumar, D. & Mandal A. (2022). Review on manufacturing and fundamental aspects of laminated bamboo products for structural applications. Construction and Building Materials, 348. 128691.
go back to reference Landgraf, D. et al. (2020). Biomass yield of 37 different SRC poplar varieties grown on a typical site in North Eastern Germany. Forests, 11, 10. 1048.CrossRef Landgraf, D. et al. (2020). Biomass yield of 37 different SRC poplar varieties grown on a typical site in North Eastern Germany. Forests, 11, 10. 1048.CrossRef
go back to reference Lehmann, L. et al. (2020). Productivity and economic evaluation of agroforestry systems for sustainable production of food and non-food products. Sustainability, 12, 13. 5429.CrossRef Lehmann, L. et al. (2020). Productivity and economic evaluation of agroforestry systems for sustainable production of food and non-food products. Sustainability, 12, 13. 5429.CrossRef
go back to reference Li, Q. et al. (2022). CRP Involved in Nile Tilapia (Oreochromis niloticus) against Bacterial Infection. Biology, 11, 8. 1149.CrossRef Li, Q. et al. (2022). CRP Involved in Nile Tilapia (Oreochromis niloticus) against Bacterial Infection. Biology, 11, 8. 1149.CrossRef
go back to reference Lippe M., et al. (2017). Die Herkunft der Biomasse. In J. Pietzsch (Hrsg.), Bioökonomie für Einsteiger. Springer, 11–66. Lippe M., et al. (2017). Die Herkunft der Biomasse. In J. Pietzsch (Hrsg.), Bioökonomie für Einsteiger. Springer, 11–66.
go back to reference Lutter, R. et al. (2021). Climate benefit of different tree species on former agricultural land in northern Europe. Forests, 12. 1810. Lutter, R. et al. (2021). Climate benefit of different tree species on former agricultural land in northern Europe. Forests, 12. 1810.
go back to reference Lützkendorf, T. & Frischknecht, R. (2020). (Net-) zero-emission buildings: A typology of terms and definitions. Buildings and Cities, 1, 1. Lützkendorf, T. & Frischknecht, R. (2020). (Net-) zero-emission buildings: A typology of terms and definitions. Buildings and Cities, 1, 1.
go back to reference LWF Freising (2003). Der Energiegehalt von Holz und seine Bewertung. LWF Merkblatt, 12. LWF Freising (2003). Der Energiegehalt von Holz und seine Bewertung. LWF Merkblatt, 12.
go back to reference Maalouf, C. et al. (2018). An energy and carbon footprint assessment upon the usage of hemp-lime concrete and recycled-PET façades for office facilities in France and Italy. Journal of Cleaner Production, 170, 1640–1653.CrossRef Maalouf, C. et al. (2018). An energy and carbon footprint assessment upon the usage of hemp-lime concrete and recycled-PET façades for office facilities in France and Italy. Journal of Cleaner Production, 170, 1640–1653.CrossRef
go back to reference Mamanpush, S. H. et al. (2023). The impact of wood fibers in composite panels made from recycled fiberglass wind turbine blades. Waste and Biomass Valorization, 14, 2957–2964. Mamanpush, S. H. et al. (2023). The impact of wood fibers in composite panels made from recycled fiberglass wind turbine blades. Waste and Biomass Valorization, 14, 2957–2964.
go back to reference Marcar, N. E. (1987). Salt tolerance in the genus Lolium (ryegrass) during germination and growth. Australian Journal of Agricultural Research, 38(2), 297–307.CrossRef Marcar, N. E. (1987). Salt tolerance in the genus Lolium (ryegrass) during germination and growth. Australian Journal of Agricultural Research, 38(2), 297–307.CrossRef
go back to reference Marko, G. et al. (2016). Cross-laminated timber made of Hungarian raw materials. IOP Conference Series in Materials Science Engineering, 123, 12059.CrossRef Marko, G. et al. (2016). Cross-laminated timber made of Hungarian raw materials. IOP Conference Series in Materials Science Engineering, 123, 12059.CrossRef
go back to reference Meyer, M. et al. (2021). Sustainable biomass value chains based on poplar plantations in european rural areas. BioEnergy Research, 14(2), 355–356.CrossRef Meyer, M. et al. (2021). Sustainable biomass value chains based on poplar plantations in european rural areas. BioEnergy Research, 14(2), 355–356.CrossRef
go back to reference Mohanty A. K., et al. (2022). Sustainable polymers. Nature Reviews Methods Primers, 2(1), 46.CrossRef Mohanty A. K., et al. (2022). Sustainable polymers. Nature Reviews Methods Primers, 2(1), 46.CrossRef
go back to reference Moshelion, M. (2020). The dichotomy of yield and drought resistance: Translation challenges from basic research to crop adaptation to climate change. EMBO reports, 21, 12. e51898.CrossRef Moshelion, M. (2020). The dichotomy of yield and drought resistance: Translation challenges from basic research to crop adaptation to climate change. EMBO reports, 21, 12. e51898.CrossRef
go back to reference Neugebauer, R. (Hrsg.) (2019). Biologische Rransformation. Springer. Neugebauer, R. (Hrsg.) (2019). Biologische Rransformation. Springer.
go back to reference Nkeuwa, W. et al. (2022). Bamboo-based composites: A review on fundamentals and processes of bamboo bonding. Engineering, 235, 109776. Nkeuwa, W. et al. (2022). Bamboo-based composites: A review on fundamentals and processes of bamboo bonding. Engineering, 235, 109776.
go back to reference NL Agency (2013). Bamboo. Analyzing the potential of bamboo feedstock for the biobased economy. o. O. NL Agency (2013). Bamboo. Analyzing the potential of bamboo feedstock for the biobased economy. o. O.
go back to reference Papiertechnische Stiftung PTS (2015). Faser und Papier 2030. o. O. Papiertechnische Stiftung PTS (2015). Faser und Papier 2030. o. O.
go back to reference Pearson, R. G. (2006). Climate change and the migration capacity of species. Trends in ecology & evolution, 21(3), 111–113.CrossRef Pearson, R. G. (2006). Climate change and the migration capacity of species. Trends in ecology & evolution, 21(3), 111–113.CrossRef
go back to reference Pietzsch, J. & Schurr, U. (2017). Einführung. In J. Pietzsch & U. Schurr (Hrsg.), Bioökonomie für Einsteiger. Springer, 1–10. Pietzsch, J. & Schurr, U. (2017). Einführung. In J. Pietzsch & U. Schurr (Hrsg.), Bioökonomie für Einsteiger. Springer, 1–10.
go back to reference Pillen, K. et al. (2020). Pflanzenbasierte Bioökonomie. In Thrän, D. & Moesenfechtel, U. (Hrsg.), Das System Bioökonomie. Springer, 35–49. Pillen, K. et al. (2020). Pflanzenbasierte Bioökonomie. In Thrän, D. & Moesenfechtel, U. (Hrsg.), Das System Bioökonomie. Springer, 35–49.
go back to reference Poganietz, W.-R. et al. (2020). Zukünfte der Bioökonomie: Eine modellbasierte Analyse möglicher Transformationspfade. In W. Konrad (Hrsg.), Bioökonomie nachhaltig gestalten: Perspektiven für ein zukunftsfähiges Wirtschaften. Springer, 187–222. Poganietz, W.-R. et al. (2020). Zukünfte der Bioökonomie: Eine modellbasierte Analyse möglicher Transformationspfade. In W. Konrad (Hrsg.), Bioökonomie nachhaltig gestalten: Perspektiven für ein zukunftsfähiges Wirtschaften. Springer, 187–222.
go back to reference Pörtner, H.-O. et al. (2022). Climate change 2022: Impacts, adaptation and vulnerability. IPCC, Genf. Pörtner, H.-O. et al. (2022). Climate change 2022: Impacts, adaptation and vulnerability. IPCC, Genf.
go back to reference Ratner, H. K. et al. (2016). Overview of CRISPR–Cas9 biology. Cold Spring Harbor Protocols, 12. pdb-top088849. Ratner, H. K. et al. (2016). Overview of CRISPR–Cas9 biology. Cold Spring Harbor Protocols, 12. pdb-top088849.
go back to reference Röck, M. et al. (2020). Embodied GHG emissions of buildings – The hidden challenge for effective climate change mitigation. Applied Energy, 258. 114107. Röck, M. et al. (2020). Embodied GHG emissions of buildings – The hidden challenge for effective climate change mitigation. Applied Energy, 258. 114107.
go back to reference Rüther, N. (2022). Naturfaserdämmstoffe, Bauphysik Kalender 2022: Holzbau. Wiley, 121–137. Rüther, N. (2022). Naturfaserdämmstoffe, Bauphysik Kalender 2022: Holzbau. Wiley, 121–137.
go back to reference San Miguel, G. et al. (2015). Environmental, energy and economic analysis of a biomass supply chain based on a poplar short rotation coppice in Spain. Journal of Cleaner Production, 94, 93–101.CrossRef San Miguel, G. et al. (2015). Environmental, energy and economic analysis of a biomass supply chain based on a poplar short rotation coppice in Spain. Journal of Cleaner Production, 94, 93–101.CrossRef
go back to reference Santolin, L. et al. (2021), Substrate-flexible two-stage fed-batch cultivations for the production of the PHA copolymer P (HB-co-HHx) with Cupriavidus necator Re2058/pCB113. Frontiers in Bioengineering and Biotechnology, 9, 623890. Santolin, L. et al. (2021), Substrate-flexible two-stage fed-batch cultivations for the production of the PHA copolymer P (HB-co-HHx) with Cupriavidus necator Re2058/pCB113. Frontiers in Bioengineering and Biotechnology, 9, 623890.
go back to reference Schäfer, D. (2021). Wellerlehm. In D. Schäfer (Hrsg.), Massivbauweise mit Lehm. Springer, 47–57. Schäfer, D. (2021). Wellerlehm. In D. Schäfer (Hrsg.), Massivbauweise mit Lehm. Springer, 47–57.
go back to reference Schänzlin, J. & Grossarth, J. (2022). unveröffentlichter Forschungsantrag, Arbeitstitel: RePop. Institut für Holzbau der Hochschule Biberach. Schänzlin, J. & Grossarth, J. (2022). unveröffentlichter Forschungsantrag, Arbeitstitel: RePop. Institut für Holzbau der Hochschule Biberach.
go back to reference Schellnhuber, H.-J. (2021). Vortrag gehalten auf dem Zukunftsforum Bau. Bonn, 18(11), 21. Schellnhuber, H.-J. (2021). Vortrag gehalten auf dem Zukunftsforum Bau. Bonn, 18(11), 21.
go back to reference Solomon, T. et al. (2020). Promoting bamboo-based agroforestry for enhancing ecosystem services from degraded lands. Agroforestry for Degraded Landscapes: Recent Advances and Emerging Challenges, 2, 423–444.CrossRef Solomon, T. et al. (2020). Promoting bamboo-based agroforestry for enhancing ecosystem services from degraded lands. Agroforestry for Degraded Landscapes: Recent Advances and Emerging Challenges, 2, 423–444.CrossRef
go back to reference Stolarski, M. et al. (2020). Energy value of yield and biomass quality of poplar grown in two consecutive 4-year harvest rotations in the north-east of Poland. Energies, 13(6), 1495.CrossRef Stolarski, M. et al. (2020). Energy value of yield and biomass quality of poplar grown in two consecutive 4-year harvest rotations in the north-east of Poland. Energies, 13(6), 1495.CrossRef
go back to reference Tol, R. (2002). Estimates of the damage costs of climate change, Part II Dynamic estimates. Environmental and resource Economics, 21, 2. 135-160. Tol, R. (2002). Estimates of the damage costs of climate change, Part II Dynamic estimates. Environmental and resource Economics, 21, 2. 135-160.
go back to reference Trommsdorff, M. et al. (2021). Combining food and energy production: Design of an agrivoltaic system applied in arable and vegetable farming in Germany. Renewable and Sustainable Energy Reviews, 140. 110694. Trommsdorff, M. et al. (2021). Combining food and energy production: Design of an agrivoltaic system applied in arable and vegetable farming in Germany. Renewable and Sustainable Energy Reviews, 140. 110694.
go back to reference UBA (2022a). Treibhausgasminderungsziele Deutschlands. o. O. UBA (2022a). Treibhausgasminderungsziele Deutschlands. o. O.
go back to reference Unnerstall, T. (2021). Faktencheck Nachhaltigkeit. Springer. Unnerstall, T. (2021). Faktencheck Nachhaltigkeit. Springer.
go back to reference van der Lugt, P. et al. (2018). Carbon sequestration and carbon emissions reduction through bamboo forests and products, International Bamboo and Rattan Organisation. TU Delft Working Paper. van der Lugt, P. et al. (2018). Carbon sequestration and carbon emissions reduction through bamboo forests and products, International Bamboo and Rattan Organisation. TU Delft Working Paper.
go back to reference Vanhercke, T. & Colgrave, M. (2022). Future food production: What’s brewing? Precision food proteins from fermentation. Food Australia, 74(1), 23–25. Vanhercke, T. & Colgrave, M. (2022). Future food production: What’s brewing? Precision food proteins from fermentation. Food Australia, 74(1), 23–25.
go back to reference Veste, M. & Böhm, C. (Hrsg.). (2018). Agrarholz – Schnellwachsende Bäume in der Landwirtschaft. Biologie – Ökologie – Management. Springer. Veste, M. & Böhm, C. (Hrsg.). (2018). Agrarholz – Schnellwachsende Bäume in der Landwirtschaft. Biologie – Ökologie – Management. Springer.
go back to reference Vieira, F. R. et al. (2022). Lignin as a renewable building block for sustainable polyurethanes. Materials, 15(17), 6182.CrossRef Vieira, F. R. et al. (2022). Lignin as a renewable building block for sustainable polyurethanes. Materials, 15(17), 6182.CrossRef
go back to reference von Braun, J. et al. (2023). Science for transformation of food systems: Opportunities for the UN Food Systems Summit. Science and Innovations for Food Systems Transformation. 921. von Braun, J. et al. (2023). Science for transformation of food systems: Opportunities for the UN Food Systems Summit. Science and Innovations for Food Systems Transformation. 921.
go back to reference Wei, P. et al. (2019). An exploratory study of composite cross-laminated timber (CCLT) made from bamboo and hemlock-fir mix. BioResources, 14(1), 2160–2170.CrossRef Wei, P. et al. (2019). An exploratory study of composite cross-laminated timber (CCLT) made from bamboo and hemlock-fir mix. BioResources, 14(1), 2160–2170.CrossRef
go back to reference Wezel, A. et al. (2009). Agroecology as a science, a movement and a practice. A review. Agronomy for sustainable development, 29(4), 503–515.CrossRef Wezel, A. et al. (2009). Agroecology as a science, a movement and a practice. A review. Agronomy for sustainable development, 29(4), 503–515.CrossRef
go back to reference Wu, M. et al. (2020). The moso bamboo drought-induced 19 protein PheDi19-8 functions oppositely to its interacting partner, PheCDPK22, to modulate drought stress tolerance. Plant Science, 299, 110605.CrossRef Wu, M. et al. (2020). The moso bamboo drought-induced 19 protein PheDi19-8 functions oppositely to its interacting partner, PheCDPK22, to modulate drought stress tolerance. Plant Science, 299, 110605.CrossRef
go back to reference Xu, X. et al. (2021). Where and when are plantations established? Land-use replacement patterns of fast-growing plantations on agricultural land. Biomass and Bioenergy, 144, 105921.CrossRef Xu, X. et al. (2021). Where and when are plantations established? Land-use replacement patterns of fast-growing plantations on agricultural land. Biomass and Bioenergy, 144, 105921.CrossRef
go back to reference Yan, X. I. A. O. et al. (2022). Research progress of cross-laminated timber and bamboo (CLBT). Journal of Building Structures, 43(11), 126. Yan, X. I. A. O. et al. (2022). Research progress of cross-laminated timber and bamboo (CLBT). Journal of Building Structures, 43(11), 126.
Metadata
Title
Nachwachsende Rohstoffe für das Bauwesen
Author
Jan Grossarth
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-658-40198-6_4