Is your ARC data misleading? Heat-transfer limitations and reaction rate underestimation in Accelerating Rate Calorimetry

Author:

Dutta SohamORCID,Mulligan Katie A.,Drake Brenton L.,Simmons Kevin L.,Koziol Amy L.,Horsch Steven E.

Funder

Research and Development

Purdue University

Dow Chemical Company

Purdue Process Safety and Assurance Center

Publisher

Elsevier BV

Subject

Safety, Risk, Reliability and Quality,General Chemical Engineering,Environmental Chemistry,Environmental Engineering

Reference26 articles.

1. Accelerating Rate Calorimetry in Improving Safety of Reactive Chemicals, <〈https://www.tsn-j.com/wp/wp-content/uploads/2021/08/esARC-AIChemE.pdf〉> (Thermal Hazard Technology, 2021).

2. Thermal decomposition and thermal kinetic simulation of ammonium 3, 3′-dinitrimino-5, 5′-bis (1H-1, 2, 4-triazole);Bao;J. Therm. Anal. Calorim.,2021

3. Transport Phenomena;Bird,2007

4. Thermal hazard characteristic evaluation of two low-temperature-reactive azo compounds under adiabatic process conditions;Cao;Process Saf. Environ. Prot.,2019

5. A symmetric dual-channel accelerating rate calorimeter with the varying thermal inertia consideration;Ding;Thermochim. Acta,2019

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