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Title One story as part of the Global Conversation on Sustainability: dye adsorption studies using a novel bio-derived calcite material
ID_Doc 15593
Authors Christian-Robinson, S; Kerton, FM
Title One story as part of the Global Conversation on Sustainability: dye adsorption studies using a novel bio-derived calcite material
Year 2024
Published
DOI 10.1515/pac-2024-0209
Abstract Many of the United Nations' Sustainable Development Goals (SDGs) can be addressed through chemistry. Researchers at Memorial University of Newfoundland, Canada, have been sharing their stories on September 25 for the past two years through the Global Conversation on Sustainability. This article describes the details of one of these stories. As the global population increases, food production including aquaculture is increasing to provide for this. At the same time, this means more waste is produced. Waste from aquaculture is often overlooked as a source of valuable chemicals. By-products from farming blue mussels (Mytilus edulis)is dominated by shells rich in calcite. A 'soft' calcite material prepared from waste mussels, via a combination of heat and acetic acid treatment, was investigated for its adsorptive properties and its possible use in waste water remediation. The adsorption of two cationic dyes, methylene blue and safranin-O, on this material were evaluated through isothermal and kinetic modelling. The adsorption systems for both methylene blue and safranin-O can best be described using Langmuir isotherms and the respective adsorption capacities were 1.81 and 1.51 mg/g. The adsorption process was dominated by pseudo-second order rate kinetics. Comparisons are made with other mollusc-derived materials reported to date.
Author Keywords Biomass; biomineral; calcium carbonate; circular economy; food waste; isotherms; SDG 6 Clean Water; SDG 13 Climate Action; SDG 14 Life Below Water; SDG 12 Responsible Consumption and Production; SDG 2 Zero Hunger; water treatment
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:001210979800001
WoS Category Chemistry, Multidisciplinary
Research Area Chemistry
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