Self-heating chemical system for sustained modulation of...

C - Chemistry – Metallurgy – 09 – K

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C09K 5/18 (2006.01) F24J 1/00 (2006.01)

Patent

CA 2633250

A self-heating chemical system using one or more primary components for exothermic reactions (such as calcium oxide), one or more porous components that can serve as a heat sink and conductor of heat as well as under going chemical transformations that release heat (zeolite), a weak acid (citric acid) for sustained modulation of temperature and pH. Exothermic reactions, mixing of some chemicals, sorption of certain chemicals, phase changes in chemicals, and dissolution of some chemicals in solvents release heat during these operations. The rate of heat generation coupled with mass and energy transfer rates to or from system(s) allows modulation of the temperature of systems. The modulation can be further enhanced by controlled release and availability of some of the components. This method provides with a class of self-heating product applications and focuses on the modulation of temperature through sequestering of reactions with different rates, heat release through dissolution, heat release through mixing, heat release through sorption, heat release through phase change as well as controlling mass and heat transfer rates.

L'invention concerne un système chimique auto-chauffant mettant en oeuvre un ou plusieurs composants principaux pour des réactions exothermiques (tels que l'oxyde de calcium), un ou plusieurs composants poreux pouvant servir de dissipateur thermique et de conducteur de chaleur et subissant des transformations chimiques libérant de la chaleur (zéolite), un acide faible (acide citrique) pour une modulation continue des température et pH. Des réactions exothermiques, le mélange de quelques agents chimiques, la sorption de certains produits chimiques, des changements de phase dans les produits chimiques et la dissolution de quelques produits chimique dans des solvants libèrent de la chaleur pendant ces opérations. Le coefficient de génération de chaleur couplé aux coefficients de transfert de masse et d'énergie vers ou à partir des systèmes permet de moduler la température de ceux-ci. La modulation peut être encore améliorée par une libération commandée et une meilleure disponibilité de quelques-uns des composants. Le procédé permet d'obtenir une classe d'applications des produits autochauffant et se concentre sur la modulation de la température par séquestration des réactions au moyen de divers coefficients, libération de chaleur par dissolution, libération de chaleur par mélange, libération de chaleur par sorption, libération de chaleur par changement de phase et par commande des coefficients de transfert de masse et chaleur.

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