54 results on '"Purnell, Phil"'
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2. Parametric study on the decarbonization potential of structural system and concrete mix design choices for mid-rise concrete buildings
3. Life Cycle Assessment of Steel Fibre-Reinforced Limestone Calcined Clay Cement Concrete One-Way Slabs
4. Scenarios for reducing the environmental impacts of the UK clothing economy
5. A material flow analysis of the UK clothing economy
6. Meeting sustainable development goals via robotics and autonomous systems
7. A Systems Framework for Infrastructure Business Models for Resilient and Sustainable Urban Areas
8. Mechanical, chemical, biological: Moving towards closed-loop bio-based recycling in a circular economy of sustainable textiles
9. Digitally enabled modular construction for promoting modular components reuse: A UK view
10. Principles for a sustainable circular economy
11. A simplified design approach for predicting the flexural behavior of TRM-strengthened RC beams under cyclic loads
12. Reducing material criticality through circular business models: Challenges in renewable energy
13. A systems thinking approach to understanding the challenges of achieving the circular economy
14. Contributor contact details
15. Highlighting the need to embed circular economy in low carbon infrastructure decommissioning: The case of offshore wind
16. Developing policies for the end-of-life of energy infrastructure: Coming to terms with the challenges of decommissioning
17. Editorial: Resource Recovery From Waste
18. Assessing the role and use of recycled aggregates in the sustainable management of construction and demolition waste via a mini-review and a case study
19. A Call to Integrate Economic, Social and Environmental Motives into Guidance for Business Support for the Transition to a Circular Economy
20. Circular economy and the matter of integrated resources
21. Circulating blame in the circular economy: The case of wood-waste biofuels and coal ash
22. Robotic and autonomous systems for road asset management: a position paper
23. Quality of resources: A typology for supporting transitions towards resource efficiency using the single-use plastic bottle as an example
24. Resource recovery and low carbon transitions: The hidden impacts of substituting cement with imported ‘waste’ materials from coal and steel production
25. Fibre-reinforced cements and concrete
26. The use of smart technologies in enabling construction components reuse: A viable method or a problem creating solution?
27. Co-Producing a Vision and Approach for the Transition towards a Circular Economy: Perspectives from Government Partners
28. Post-consumer plastic packaging waste in England: Assessing the yield of multiple collection-recycling schemes
29. Technical properties of biomass and solid recovered fuel (SRF) co-fired with coal: Impact on multi-dimensional resource recovery value
30. Co-producing a Vision and Approach for the Transition towards a Circular Economy: Perspectives from Government Partners
31. An overview of chemical additives present in plastics: Migration, release, fate and environmental impact during their use, disposal and recycling
32. Fully integrated modelling for sustainability assessment of resource recovery from waste
33. On a voyage of recovery: a review of the UK’s resource recovery from waste infrastructure
34. Metrics for optimising the multi-dimensional value of resources recovered from waste in a circular economy: A critical review
35. Resource Recovery from Waste: Restoring the Balance between Resource Scarcity and Waste Overload
36. Briefing: Resource scarcity and resource security – a suppressed civil engineering challenge
37. Mining the physical infrastructure: Opportunities, barriers and interventions in promoting structural components reuse
38. Is carbon dioxide pricing a driver in concrete mix design?
39. Microstructure of interface between fibre and matrix in 10-year aged GRC modified by calcium sulfoaluminate cement
40. Towards resource-efficient and service-oriented integrated infrastructure operation
41. Low Carbon Technology Performance vs Infrastructure Vulnerability: Analysis through the Local and Global Properties Space
42. Briefing: Infrastructure business models, valuation and innovation for local delivery
43. Assessing the dynamic material criticality of infrastructure transitions: A case of low carbon electricity
44. Managing Critical Materials with a Technology-Specific Stocks and Flows Model
45. The carbon footprint of reinforced concrete
46. Supercritical carbonation of calcareous composites: Influence of curing
47. Supercritical carbonation of calcareous composites: Influence of mix design
48. Critical materials for infrastructure: local vs global properties
49. Embodied carbon dioxide in concrete: Variation with common mix design parameters
50. Response to the Comment on “Material Nature versus Structural Nurture: The Embodied Carbon of Fundamental Structural Elements”
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