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Titlebook: Composite Materials; Sustainable and Eco- Brian Wisner,Simona E. Hunyadi Murph,Muralidharan Conference proceedings 2024 The Minerals, Meta

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Study of the Impact Behavior of Epoxy Matrix Composites with Granite Waste impact testing using the Izod configuration, following ASTM D256 standards. Finally, the results were analyzed using Analysis of Variance (ANOVA) and Tukey’s test. These results allowed for the characterization of the waste and indicated that its inclusion significantly enhances impact resistance.
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Influence of the Use of Anti-bubble Additives on the Permeability and Porosity of Anticorrosive Coats assessed following the guidelines of NACE SP0394. The evaluated coating uses organic and/or inorganic particulate waste. Finally, a variance analysis and Tukey test were conducted to analyze the results. The results of this work allowed verifying the need to use this additive for the development of the evaluated coatings.
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Study on the Adsorption of Selenium-Containing Wastewater by MIL-101-NH29 mg/g according to the Langmuir model. The results showed that the removal efficiency of Se(IV) by MIL-101-NH. was 75.96% at pH = 6 and adsorption time = 3 h. This study demonstrated that MIL-101-NH. has great potential for wastewater treatment.
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Conference proceedings 2024All composite fields are explored, including polymer, metal, and ceramic matrix composites with an emphasis on sourcing raw materials in a sustainable way as well as the development of composite materials for environmental sustainability. Topics will include the development of new materials for stru
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2367-1181 systems. All composite fields are explored, including polymer, metal, and ceramic matrix composites with an emphasis on sourcing raw materials in a sustainable way as well as the development of composite materials for environmental sustainability. Topics will include the development of new material
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https://doi.org/10.1007/978-94-011-4090-4 an off-gas process control issue. In this paper, we will describe the use of titania-based photocatalysts for the treatment of nitric acid and nitrate wastes. We find that the photocatalytic process is a simple and straightforward method to completely destroy nitrate ions at room temperature without any initiation period.
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Photocatalytic Nitrate Destruction Studies in Complex Environments an off-gas process control issue. In this paper, we will describe the use of titania-based photocatalysts for the treatment of nitric acid and nitrate wastes. We find that the photocatalytic process is a simple and straightforward method to completely destroy nitrate ions at room temperature without any initiation period.
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