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Titlebook: Biotechnologies and Biomimetics for Civil Engineering; Fernando Pacheco Torgal,J. A. Labrincha,H. K. Lee Book 2015 Springer International

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Can Biomimicry Be a Useful Tool for Design for Climate Change Adaptation and Mitigation?,sed and categorised, and a series of case study examples illustrate the benefits and drawbacks of each approach. In light of the conclusions reached during the course of the research, it is argued that design that mimics ecosystems and utilises synergies between mitigation and adaptation strategies
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Bio-inspired Adaptive Building Skins,fficiency with a focus on improving indoor environmental quality. The chapter concludes with an outlook of design support methodologies that can potentially incite the practical uptake of bio-inspired adaptive building skins in the future.
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A Green Building Envelope: A Crucial Contribution to Biophilic Cities,. This movement from a biophilic perspective point of view includes combining nature and natural elements in the built environment to ameliorate the negative impact of climate change as for example loss of biodiversity, mitigation of urban heat, or air pollution reduction.
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Bioinspired Self-cleaning Materials,urface nanometric protrusions, preventing the liquid from wetting it. This chapter is dedicated to the mechanisms underlying bioinspired self-cleaning and to the fields of application of these effects.
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Bacteria for Concrete Surface Treatment,ability of concrete materials and structures. Biodeposition make bacterial concrete, a novel most important metabolic byproduct, can remediate concrete structures. This chapter reviews the main mechanisms of the process and literature on biodeposition carbonates as surface treatment agents for the d
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A Case Study: Bacterial Surface Treatment of Normal and Lightweight Concrete,good durability, as the durability of lightweight concrete is generally lower than that of normal concrete. In the present chapter, a previous work of the authors, a study of the bacterial surface treatment of normal and lightweight concrete (Kim et al. .) is reviewed and summarized. The surfaces of
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Microbial Fuel Cells for Wastewater Treatment,exities of MFC biofilm communities. Yet, our understanding of electrochemically active microbes is still in its infancy, as the diverse communities have a multitude of undiscovered populations in different MFC applications. Further study is warranted to optimize design, materials, and microbiology t
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