Event on the sustainability of natural materials for construction to mark COP30

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By Freya Wise, Alice Moncaster, Hector Archila and Tavs Jorgensen

On the 3rd of December Caber ran an action-packed hybrid event to mark COP30. After a short introduction reflecting on the COP30 outcomes we then had excellent presentations on three natural building materials which UWE researchers are involved with: bamboo, cob and timber. This blog reports the highlights of the session for a wider audience.

Reflection on COP30 by Dr Freya Wise

The reflection on COP30 by Freya highlighted that the overall outcomes were felt to be disappointing and lacked ambition but were not as bad as they could have been and that a range of useful things were achieved. It will be interesting to see if taking forward the fossil fuel and deforestation roadmaps outside the official COP process will actually allow them to be more ambitious and progress more quickly with willing countries.

Concerns were highlighted around a lack of acknowledgement of the latest climate science from the IPCC in the final document and the dropping of language on the need to fight misinformation. From a positive perspective however this was the first COP for several years in a countries where mass protests are possible and had strong civil society and cultural engagement around the city of Belem, including from high numbers of indigenous people.  

Specifically on the built environment, Freya identified a number of initiatives, guides and standards were launched at COP which have positive relevance. These included the Belém health action plan, United Nations Environment Programme (UNEP), ‘Beat the Heat’ initiative, and the Bélem ‘call for action for sustainable and affordable housing’ as well as initiatives on circularity and low carbon materials. If these are enacted, they will have positive implications for decarbonising the built environment and links to all can be seen at the end of the article.

Following on from some of the initiatives at COP around low carbon and biobased materials, we then had three engaging short talks on three different natural materials.

The benefits of Bamboo by Dr Hector Archila

Hector took inspiration for his talk from the ‘BambooBoost Initiative’ from the UN Framework Convention on Climate Change (UNFCC) and the International Network for Bamboo and Rattan (INBAR).

Hector explained that bamboo is a very sustainable material with rapid biomass production which translates to a high yield and excellent CO2 sequestration in both the biomass and the soil. Bamboo, which is actually a grass, is one of the fastest-growing ‘woody’ plants and thrives on degraded land. Over fifty years a tropical bamboo species produces between 5 and 8 times more biomass than Scots Pine and Oak, resulting in 5 to 8 times as much carbon sequestration as those trees over the same period.

Figure 1: Carbon yield for bamboo and selected wood

Hector highlighted that, according to UNFCC, if bamboo were cultivated on around 70-174 million hectares of degraded forestland it could sequester roughly 2 Gt of CO2 annually (for reference Spain and Portugal combined are cover about 68 million hectares). This would equate to 2% of current global greenhouse gas emissions and would also deliver significant net economic benefits. In terms of climate action, it therefore makes a lot of sense to plant bamboo forests which will produce carbon and fibre rich biomass in 4–6-year periods which can then be used in long-lived products to act as carbon stores.

In terms of biodiversity enhancements, Hector suggested that if more bamboo was planted less wood forest would need to be used thus reducing deforestation and providing ecosystem services. Bamboo forests themselves also have good biodiversity with a plethora of animal species. Bamboo can provide ecosystem and community resilience for the many people who rely on solid biomass for cooking such as charcoal or briquettes, with fast growing highly renewable biomass. Bamboo can also be converted to gas or pellets to provide a source of electricity and heating, thus reducing deforestation and use of fossil fuels

Finally, research at UWE by Hector on the project SmartBioC has shown how Biobased Building Systems for UK housing using engineered bamboo as the main structural component can provide better Natural, Human and Social benefits than traditional building systems used in the UK.

Figure 2: One of the biobased systems Hector has developed

Innovative earth building research at UWE by Dr Tavs Jorgensen

Tavs provided an introduction to cob or earth as a local, low carbon building material with a long history of use and increased research interest in recent decades. However, challenges were also highlighted with traditional cob construction around the thicknesses required to meet insulation levels in modern building regulations and the length of time that building traditional cob walls requires.

Tavs then discussed the research that he has been leading at UWE to investigate how to use 3D printing processes to make dies to extrude cob bricks in different shapes, which has the potential to substantially speed up the production process while allowing creativity in the creation of different brick shapes and forms.

Figure 3: Extrusion equipment and extruded cob bricks

Work has taken place to engage students in this research through competitions and a ‘Cob Club’ as well as a number of wider hands-on workshops exploring the qualities of different earth and the potential of the material. A ‘Cob Comp’ (cob competition) in 2024 enabled UWE students to explore extruded cob block technology and the winners’ ideas were used to successfully build a shelter on the University grounds.

Figure 4: The bricks and the shelter created by Cob-Comp in 2025

Tavs also took the opportunity to launch this year’s iteration of the competition, Cob Comp 2: Earthly Enquiries. This is an ideas competition to design a structure built from pressed earth brick units of students’ own ingenious designs and from materials found only within the boundaries of UWE’s Frenchay Campus. The competition aims to explore the structural capacities and concepts of making and building with compressed earth. There are plans to build the winning design in summer 2026.

Tavs therefore highlighted both the benefits of innovative methods for cob and the importance of engaging students in hands-on research and creativity.

Sustainable timber and biogenic carbon standards by Professor Alice Moncaster

Alice highlighted the new principles for Sustainable Timber Construction and which were officially launched at COP30 (see link below). Alice then went on to give a quick introduction to lifecycle assessment (LCA) which measures the carbon emissions associated with the whole life of a material including its extraction, manufacture, transport, installation, maintenance and end of life disposal.

Figure 5: Lifecycle stages

She then discussed how the biogenic carbon stored in natural materials (and then released back into the atmosphere at the end of the of the material’s lifespan), is treated in a range of national and international standards on whole life carbon reporting. Biogenic carbon storage is one of the key benefits of natural materials and is particularly valuable in buildings as they theoretically last a long time, thus storing carbon for many decades (but not permanently). For a full LCA, the biogenic storage in phases A1-A3 is then reemitted in phase C, while most standards currently require that if only upfront carbon is assessed, biogenic carbon is reported separately.

Alice discussed multiple standards and reported on discussions at a recent meeting of International Energy Agency (IEA) Energy in Buildings and Communities (EBC) Annex 89, ‘Ways to implement net-zero whole life carbon buildings’. Climate science says that biogenic carbon is not equivalent to fossil carbon and cannot be added together. The discussions therefore focussed on whether biogenic carbon should be reported separately throughout all LCAs. This does not mean that the biogenic storage of natural materials is not useful and positive but does highlight that it is not a simple silver bullet and cautions against some of the evangelical calls for over-building with timber as a form of carbon removal from the atmosphere.

Alice therefore opened the discussion and posed some questions on how we should be reporting sustainable timber use for everyone to consider. 

Summary

The session was well received the main concern seemed to be that we would all have enjoyed more time for discussion! During the questions Hector made a very good point that no natural material is ‘The Solution’ on its own and what is actually needed is a balanced diet or menu of the most appropriate materials for different scenarios and locations. We look forward to continuing the discussion.

Links to further information from all the presentations

COP30 reflections and initiatives

Bamboo

 Earth Buildings

Sustainable Timber and biogenic carbon

CABER members can view the recording of the event on Teams

Introducing the new co-Directors of CABER, Professors Alice Moncaster and Patrick Manu

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Alice Moncaster and Patrick Manu applied to be co-Directors of CABER, and were appointed in February 2025, taking over from the previous director Lamine Mahdjoubi. These are our personal stories.

Alice’s story:

I grew up in an Elizabethan (1560s) house in rural Essex, and a love of historic buildings has stayed with me ever since.  My girls’ grammar school in Colchester encouraged me to study my favourite subjects at A levels of Maths, Physics, English Literature and Art. However when I applied to Cambridge to study engineering they said that neither English nor Art were relevant (I disagree), so in the final year I had to swap Art for Further Maths.

Engineering at Cambridge in the early 90s was tough, and about 90% male, but luckily I was at an all women’s college, Newnham (also the prettiest of the Cambridge colleges) so I survived. Back then Cambridge only awarded Bachelor of Arts (BA) degrees, and a Master of Arts (MA) was awarded automatically seven years after you ‘matriculate’ (first join the university) so long as you stayed out of prison.  So despite having had to give up art, I officially have a BA and MA in Engineering.

After university I worked as a civil engineer for Balfour Beatty in Exeter and Sidcup, including roads, dams, sewerage treatment works, and a small geotechnical investigation for the new Channel Tunnel.  But the UK was in recession and work was slow, and I was tempted by a job in the Earthquake Engineering Research Centre at Bristol University.  Therefore I first moved to Bristol in 1994, helping first to design and build a ‘shear stack’ – a huge wobbly box sat on the shaking table filled with sand – and then my own laboratory research project using piezoelectric bender elements to measure the shear modulus of sand at very small strains, for which I was awarded an MSc. I also met my husband working at Bristol University, and when he got a new job at the British Antarctic Survey moved with him back across the country to Cambridge.

Here I moved back into industry for a few years, designing buildings at Harris and Sutherland (part of the Babtie Group at the time) and then at Mott MacDonald, while we juggled life, now with two young daughters. But I was becoming increasingly concerned about climate change and the impact of construction, and once the girls were in primary school I left Mott MacDonald, designed a low carbon extension, and wrote a research proposal. I was very fortunate to be offered PhD funding in 2007 to undertake this by Professor Jacquie Burgess in the School of Environmental Sciences at UEA. It was EPSRC funding, but Jacquie and Peter Simmons, who became my principal supervisor, were social scientists, and I am eternally grateful to them for introducing me to a whole new way of understanding the world.

Shortly after starting my PhD I was also offered a research post by Professor Peter Guthrie at the Centre for Sustainable Development at Cambridge University. I then also added two more roles at Cambridge, Deputy Director of the Interdisciplinary Design for the Built Environment programme, and Director of Studies for engineering undergraduates at my old college. It therefore took me until 2012 to finish my PhD, and is not an approach I’d recommend!

I was made a lecturer at Cambridge in 2014, and also Director of the IDBE. However new master’s courses in both the Architecture and Engineering Departments threatened the IDBE with closure, despite being much-loved by industry, so I was asked to review it, identifying the solution to move it into the Cambridge Institute for Sustainability Leadership where it still lives.

In 2017 I moved to the Open University as a Senior Lecturer. I joined the friendly and wonderfully multi-disciplinary Design Group, and also instigated the first Built Environment research cluster, and was then appointed the first cross-university Sustainability Lead for their new Open Societal Challenges research initiative.  I remain a Visiting Professor at the OU (and still miss my colleagues there). However I couldn’t turn down the opportunity in 2023 to return to Bristol at long last, to a professorship at UWE in the School of Architecture and Environment. I had long known of UWE for its strong focus on built environment research, and this suited my interdisciplinary background perfectly. 

In summer 2023 we moved partly to a flat in Bristol, and after 2 years living in both the East and West of the country are at last on the verge of buying a house here and moving completely.   It seemed only fair that this time my husband moved for my job, and he is now enjoying his new job at Everoze. One daughter has stayed in Cambridge for now, and the other is in Edinburgh, and we are discovering that the trains are not very quick!

I choose to work in academia because of the many things I love and value about it: working with inspiring and thoughtful colleagues, from all disciplines and all backgrounds; the opportunity to think deeply about a problem, often working with others to together create genuinely new insights and ways forward; and the chance to make a difference in the world, however small. I continue to be incredibly impressed with the excellent research achieved by our UWE and CABER colleagues, and together I believe we can develop existing and new areas of excellence in built environment research, building on CABER’s deserved reputation. I hope that CABER as a Centre can help support all its members to fulfil their research potential, and that we can help to make our built environment fit for a better future for all.

Patrick’s story:

I am Professor of Innovative Construction and Project Management in the School of Architecture and Environment at the University of the West of England. I have expertise in construction management (CM), project management (PM), and quantity surveying (QS) research, teaching, and practice. I hold BSc in Building Technology (1st Class honours), PGCert. (with Distinction) in Academic Practice, PhD in Construction Project Management, Fellowship of the UK Higher Education Academy (now Advanced HE), and chartered membership of the Chartered Institute of Building.

I grew up in my home country Ghana where I did my basic and secondary education. While I was not the “sharpest” in my school, I was considered one the sharpest in my year group, and so at a point I was nicknamed, “Archimedes” or “Archi” for short, by my mates in secondary school who thought I was good at physics. My academic career started at the Kwame Nkrumah University of Science and Technology (Ghana) as a teaching assistant (TA) in 2005 after obtaining my BSc from the university. My academic career took a break at the end of my TA post in 2006, and I worked as a contractor’s quantity surveyor providing project management support on several building projects of varying scale and complexity. During that period, I led and won bids for my employers, and I also developed my own spreadsheets for project cost estimating and cashflow analyses, which I subsequently gave to QS professionals for a fee but gladly gave it to my then father-in-law to-be (a quantity surveyor) for free – a fantastic future investment! I also developed spreadsheets to help university students to plan their studies and predict their academic performance – haha! I was just fascinated with numbers and MS Excel.

My journey towards becoming a lecturer continued when I enrolled on a PhD programme at the University of Wolverhampton (UK) on a studentship in 2009 and completed in 2012. From that period, I have held academic posts at the University of Wolverhampton, University of West London, City University London (now City St George’s, University of London), University of the West of England (UWE Bristol), and more recently University of Manchester where I was a Reader and School Deputy Head of Research before rejoining UWE in 2023.

Construction is one of the most hazardous industries worldwide, and this fuels my passion for construction safety, health, and well-being research to make construction safer. Besides occupational safety, health, and well-being, I am also interested in the application of digital technologies in construction. I have been involved as principal investigator (PI) and co-investigator in several research projects funded by organisations including government agencies and charities such as Engineering and Physical Sciences Research Council (EPSRC), Innovate UK, Lloyd’s Register Foundation, Health and Safety Executive, British Council, Academy of Medical Sciences, and Malaysian Industry-Government Group for High Technology (MIGHT). I led (as PI) a large international consortium to develop the first web-based application for assessing design for occupational safety and health organisational capability, which won an innovation award from HS2 Ltd. Additionally, I was co-investigator of the novel BIM-based risk library which has been awarded two prestigious industry awards (i.e., the buildingSMART International Awards 2020, and the Health and Safety Software of the Year – Construction Computing Awards 2021).

I enjoy writing about my research and I have over 150 publications including articles in leading Q1 journals. I led an international initiative to publish the first book on construction health and safety in developing countries, which won the 2019 Taylor & Francis Outstanding Book and Digital Product Award within the best monograph in engineering category. Subsequently, I have led international initiatives to produce two novel books titled: (1) Handbook of Construction Safety, Health and Well-being in the Industry 4.0 Era; and (2) Construction Safety, Health and Well-being in the COVID-19 Era.

I love teaching and supporting the development of others including students and colleagues to enable them to excel in their academic and career paths. Across my career I have taught, assessed and mentored over 3,000 students in higher education including supervising dissertations, undertaking assessments, and supervising and examining doctoral candidates in UK and overseas universities. I have had the privilege of publishing exciting articles with several of my students.

Beyond publications and involvement in research projects, over the years my contribution to the research and knowledge exchange has included serving as: associate editor for three journals (i.e., Safety Science; Heliyon; and ICE Management Procurement and Law of Heliyon); a member of the EPSRC peer review college; a detailed assessor for the Australian Research Council; a member of British Council Newton Fund Engineering and Physical Sciences Panel; a member of the Association of Researchers in Construction Management (ARCOM) committee; and a member of the standard setting committee and co-author of the International Construction Measurement Standards (ICMS). Additionally, I review for several built environment and multidisciplinary journals and conferences. I have delivered talks and keynote lectures at major academic and practitioner conferences and events in UK and overseas.

In case you are wondering what I do when I don’t have my academic hat on, well, I have a lovely family – a wife and three kids (including a baby) – who keep me occupied. Helping with kids’ homework is a big thing. I once read that if you are a kid and you think you hate homework, wait till you become an adult with kids, and you’ll hate it even more! I couldn’t agree more, but it’s not all gloomy as I get to occasionally play video games and enjoy movie nights with the kids and their friends. “Puss in Boots” (El Macho Gato) is one of my favourites.

As I conclude, I wish to note that all that I have achieved till date has been enabled by others – my parents, pastors, teachers, collaborators, colleagues, mentors, managers, students, friends, family, and more. Thanks to them all and thanks to CABER!

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