R
Richard Fenner
Researcher at University of Cambridge
Publications - 136
Citations - 2851
Richard Fenner is an academic researcher from University of Cambridge. The author has contributed to research in topics: Sustainable development & Sustainability. The author has an hindex of 27, co-authored 130 publications receiving 2411 citations. Previous affiliations of Richard Fenner include University of Hertfordshire & Khon Kaen University.
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Journal Article
Embedding sustainable development at Cambridge University Engineering Department
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Embedding sustainable development at Cambridge University Engineering Department
TL;DR: In this paper, the authors examine the latest stage in a process of change aimed at introducing concepts of sustainable development into the activities of the Department of Engineering at Cambridge University, UK, and observe that the ability to effectively initiate a change process is a vital skill which must be formally developed in those engineers wishing to seek sustainable solutions from within the organisations for which they will work.
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Approaches to sewer maintenance: a review
TL;DR: In this paper, the authors compare the approaches that focus on a predefined subset of strategic sewers and those that consider proactive maintenance of the whole system to address the wider consequences of failure such as customer satisfaction, social disruption and environmental damage.
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Assessment of odours from sewage treatment works by an electronic nose, H2S analysis and olfactometry
TL;DR: In this paper, an electronic nose based on a non-specific conducting polymer array was evaluated against sewage odour concentrations from ten sewage treatment works, and the results demonstrated the ability of an e-nose to respond to sewage odours over a range of odour levels.
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System interactions of stormwater management using sustainable urban drainage systems and green infrastructure
L Hoang,Richard Fenner +1 more
TL;DR: In this article, the authors explored system interactions of stormwater management solutions using sustainable urban drainage system (SuDS) and green infrastructure (GI) within the wider urban landscape.