A new method for assessing the thermal hazard of reactive substances
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http://aip.scitation.org/doi/pdf/10.1063/1.5005219
Reference14 articles.
1. Development of a QSPR model for predicting thermal stabilities of nitroaromatic compounds taking into account their decomposition mechanisms
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3. Thermochemical stability: A comparison between experimental and predicted data
4. Using screening test data to recognize reactive chemical hazards
5. Identifying criteria to classify chemical mixtures as “highly hazardous” due to chemical reactivity
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1. Thermal Risk Assessment and Optimization of Hazard Ranking for Aromatic Nitro Compounds: Multiparameterization and Quantitative Structure–Property Relationship Modeling;Organic Process Research & Development;2024-01-09
2. A modified inherent thermal runaway hazard index (m-ITHI) for risk assessment of chemical processes based on cloud model;Process Safety and Environmental Protection;2023-01
3. Assessment on thermal hazards of reactive chemicals in industry: State of the Art and perspectives;Progress in Energy and Combustion Science;2020-05
4. Thermal hazard assessment and ranking for organic peroxides using quantitative structure–property relationship approaches;Journal of Thermal Analysis and Calorimetry;2019-11-04
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