Evaluation of the Ecotoxicological Potential of Fly Ash and Recycled Concrete Aggregates Use in Concrete
暂无分享,去创建一个
Inês Flores-Colen | Jorge de Brito | José D. Silvestre | Rawaz Kurda | Cristina A. Viegas | I. Flores-Colen | J. de Brito | J. Silvestre | Hawreen Ahmed | C. A. Viegas | Patrícia Rodrigues | Hawreen H. Ahmed | Rawaz Kurda | Patrícia Rodrigues
[2] Renato de Mello Prado. Boron , 2008, Journal of dietary supplements.
[3] Rui Ribeiro,et al. Suitability of a Saccharomyces cerevisiae-based assay to assess the toxicity of pyrimethanil sprayed soils via surface runoff: comparison with standard aquatic and soil toxicity assays. , 2015, The Science of the total environment.
[4] W. Gwenzi,et al. Evaluation of heavy metal leaching from coal ash-versus conventional concrete monoliths and debris. , 2016, Waste management.
[5] José Dinis Silvestre,et al. Effect of incorporation of high volume of recycled concrete aggregates and fly ash on the strength and global warming potential of concrete , 2017 .
[6] A. L. Page,et al. Physical and chemical properties of fly ash from coal-fired power plants with reference to environmental impacts , 1979 .
[7] A Kungolos,et al. Environmental hazard assessment of coal fly ashes using leaching and ecotoxicity tests. , 2012, Ecotoxicology and environmental safety.
[8] L. Sackey,et al. Environmental Impact of Concrete and Concrete-Based Construction Waste Leachates , 2019, IOP Conference Series: Earth and Environmental Science.
[9] J. Ayuso,et al. Correlation analysis between sulphate content and leaching of sulphates in recycled aggregates from construction and demolition wastes. , 2012, Waste management.
[10] Jorge de Brito,et al. Water absorption and electrical resistivity of concrete with recycled concrete aggregates and fly ash , 2019, Cement and Concrete Composites.
[11] C. M. Sangha,et al. Long-term leaching of toxic trace metals from Portland cement concrete , 1999 .
[12] S. Barai,et al. Performance of fly ash incorporated recycled aggregates concrete column under axial compression: Experimental and numerical study , 2019, Engineering Structures.
[13] Jorge de Brito,et al. Carbonation of concrete made with high amount of fly ash and recycled concrete aggregates for utilization of CO2 , 2019, Journal of CO2 Utilization.
[14] Xavier Querol,et al. Physico-chemical characteristics of European pulverized coal combustion fly ashes , 2005 .
[15] Agsm 337BAEN,et al. Solids , 2018, Drinking Water Chemistry.
[16] Inês Flores-Colen,et al. Methodology for the Assessment of the Ecotoxicological Potential of Construction Materials , 2017, Materials.
[17] S. Woo,et al. Evaluation of Daphniamagna for the Ecotoxicity Assessment of Alkali Leachate from Concrete , 2013 .
[18] D. C. Martens,et al. Boron Availability as Influenced by Application of Fly Ash to Soil 1 , 1974 .
[19] Jorge de Brito,et al. Toxicity and environmental and economic performance of fly ash and recycled concrete aggregates use in concrete: A review , 2018, Heliyon.
[20] R. H. Rankers,et al. Leaching tests for concrete containing fly ash. Evaluation and mechanism , 1991 .
[21] Guido Persoone,et al. A practical and user‐friendly toxicity classification system with microbiotests for natural waters and wastewaters , 2003, Environmental toxicology.
[22] D. Washington,et al. Standard Methods for the Examination of Water and Wastewater , 1971 .
[23] A Kungolos,et al. Application of leaching tests for toxicity evaluation of coal fly ash , 2006, Environmental toxicology.
[24] N Lapa,et al. Chemical and ecotoxicological characterization of ashes obtained from sewage sludge combustion in a fluidised-bed reactor. , 2007, Journal of hazardous materials.