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Combustible solids such as grain or coal transported pneumatically through pipe, if handled improperly, can cause fire or even explosion.
An experimental analysis was performed to analyze the main influencing parameters during a typical characterization test of combustible solids.
While the goal of combustion is to produce the maximum amount of heat possible by oxidizing all the combustible material, the goal of gasification is to convert most of the combustible solids into combustible gases such as carbon monoxide, hydrogen, and methane.
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Combustible solid radioactive waste can be incinerated and the resulting ashes can also be immobilized before storage.
Lean flammability limits of heterogeneous mixtures of combustible solid particles and air were measured in a microgravity field.
The pyrolysis and gasification characteristics of 8 different combustible solid wastes, representing the most common components of MSW, were investigated using a thermogravimetric analyzer (TGA).
To enhance the thrust performance of the PPT, we propose to use several combustible solid chemicals as coaxial PPT propellants to replace Teflon® (Polytetrafluoroethylene: PTFE).
Both effects may result in an increased fire risk of combustible solid materials in reduced pressure environments that warrant further investigation.
To understand the propagation and the extinction mechanisms of flame spreading along a combustible solid, opposed-flow flame spread along a thick slab of PMMA was experimentally investigated for four different sample orientation angles from 0° (horizontal) to −180° (ceiling flame spread) in several airflow rates.
During storage, transportation and combustion of combustible gases solid hydrates it is necessary to determine the heat transfer coefficient and the temperature difference ∆T both for the outer medium (external boundary conditions) and the internal one (a layer of powder or pressed pellets).
In this article we examine the spread of a flame along a flat, combustible, thermally thick solid against an opposed shear flow resembling a fluid-dynamic boundary layer.
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CEO of Professional Science Editing for Scientists @ prosciediting.com