2020
DOI: 10.1021/acssuschemeng.0c01769
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Struvite Mineralized Wood as Sustainable Building Material: Mechanical and Combustion Behavior

Abstract: A more extensive use of wood can reduce the environmental and climatic impact of the building industry. However, flammability limits the application of wood in multi-story and high rise timber buildings. Struvite mineralization has been shown to be a green solution for fire-resistant timber, but the influence of struvite minerals on the mechanical and gluing properties of wood as well as the combustion behavior have not been studied yet. In this work, we investigate the mechanical properties of mineralized woo… Show more

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Cited by 37 publications
(24 citation statements)
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“…Finnemore et al [ 8 ] constructed organic–inorganic composite biomaterials using polymer‐mediated mineral growth interactions via a biomimetic approach, simulating layer‐by‐layer self‐assembly in nature, and prepared artificial nacres with flame retardancy and excellent mechanical properties. Guo et al [ 9 ] studied how struvite minerals affect the mechanical properties and bonding properties and flame retardancy properties of wood using struvite mineralized wood and identified an a potential choice for mineralized wood as a green and environment‐friendly building material.…”
Section: Introductionmentioning
confidence: 99%
“…Finnemore et al [ 8 ] constructed organic–inorganic composite biomaterials using polymer‐mediated mineral growth interactions via a biomimetic approach, simulating layer‐by‐layer self‐assembly in nature, and prepared artificial nacres with flame retardancy and excellent mechanical properties. Guo et al [ 9 ] studied how struvite minerals affect the mechanical properties and bonding properties and flame retardancy properties of wood using struvite mineralized wood and identified an a potential choice for mineralized wood as a green and environment‐friendly building material.…”
Section: Introductionmentioning
confidence: 99%
“…The contemporary studies hence focus on novel treatments that combine both efficient fire retardancy and low risk for detrimental emissions. Some of the recent successes include the use of modified lignin [21], natural proteins [22], minerals [23,24], and even modified nanocelluloses [25,26].…”
Section: Introductionmentioning
confidence: 99%
“…In nature, through the ingenious design of biomineralization, organic molecules and inorganic minerals were closely combined to construct functional biomaterials with special mechanics. Inspired by this, the biomineralization strategy is considered to be one of the most efficient ways to synthesize high-performance materials . However, it is an insurmountable challenge to assemble organic and inorganic phases on the molecular scale due to uncontrolled polymerization and phase separation .…”
Section: Introductionmentioning
confidence: 99%