Coal deactivation apparatus

US9290711B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9290711-B2
Application numberUS-201113881619-A
CountryUS
Kind codeB2
Filing dateNov 25, 2011
Priority dateDec 17, 2010
Publication dateMar 22, 2016
Grant dateMar 22, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The coal deactivation apparatus including: a separating device that separates out a portion of the beneficiated coal deactivated in the main treatment apparatus; a main evaluation apparatus into which the sample of the beneficiated coal separated out by the separating apparatus is supplied; a blower and heater that supply air at the evaluation temperature to the main evaluation apparatus; a temperature sensor that detects the temperature of the air that has heat-treated the sample in the main evaluation apparatus; and a control unit that, when the temperature of the air is at or below the lower limit on the basis of information from the temperature sensor, determines whether or not the temperature of the process gas is at or below the lower limit and if the process gas temperature exceeds the lower limit, controls the heater to reduce the temperature of the process gas by a prescribed value.

First claim

Opening claim text (preview).

The invention claimed is: 1. A coal inactivation system configured to inactivate coal by heating the coal with a treatment gas containing oxygen, the coal inactivation system comprising: a treatment apparatus body, to inside of which the coal is supplied; treatment gas-supply means configured to supply the treatment gas to the inside of the treatment apparatus body; treatment gas-oxygen concentration-adjustment means configured to adjust an oxygen concentration Oc in the treatment gas; treatment gas-temperature-adjustment means configured to adjust a temperature Tc of the treatment gas; fractionation means configured to fractionate a portion of the coal inactivated in the treatment apparatus body; an evaluation apparatus body, to inside of which a sample of the coal fractionated by the fractionation means is supplied; test gas-supply means configured to supply a test gas having an evaluation temperature Tt to the inside of the evaluation apparatus body; test gas-temperature-detection means configured to detect a temperature Te of the test gas having heated the sample in the evaluation apparatus body; and control means configured to, based on information from the test gas-temperature-detection means, when the temperature Te of the test gas is equal to or higher than a higher limit value Teh, judge whether or not the oxygen concentration Oc of the treatment gas is equal to or higher than a higher limit value Oh, if the oxygen concentration Oc of the treatment gas is lower than the higher limit value Oh, control the treatment gas-oxygen concentration-adjustment means in such a manner as to increase the oxygen concentration Oc of the treatment gas by a given value Ofu, and if the oxygen concentration Oc of the treatment gas is equal to or higher than the higher limit value Oh, further judge whether or not the temperature Tc of the treatment gas is equal to or higher than a higher limit value Th, and control the treatment gas-temperature-adjustment means in such a manner as to increase the temperature Tc of the treatment gas by a given value Tfu if the temperature Tc of the treatment gas is lower than the higher limit value Th, and when the temperature Te of the test gas is equal to or lower than a lower limit value Tel, judge whether or not the temperature Tc of the treatment gas is equal to or lower than a lower limit value Tl, if the temperature Tc of the treatment gas is higher than the lower limit value Tl, control the treatment gas-temperature-adjustment means in such a manner as to decrease the temperature Tc of the treatment gas by a given value Tfd, if the temperature Tc of the treatment gas is equal to or lower than the lower limit value Tl, further judge whether or not the oxygen concentration Oc of the treatment gas is equal to or lower than a lower limit value Ol, and control the treatment gas-oxygen concentration-adjustment means in such a manner as to decrease the oxygen concentration Oc of the treatment gas by a given value Ofd if the oxygen concentration Oc of the treatment gas is higher than the lower limit value Ol. 2. The coal inactivation system according to claim 1 , wherein, when the temperature Te of the test gas is equal to or lower than the lower limit value Tel, the control means controls the treatment gas-oxygen concentration-adjustment means and the treatment gas-temperature-adjustment means in such a manner as to set the oxygen concentration Oc and the temperature Tc of the treatment gas at the lower limit values Ol and Tl, respectively, if the temperature Tc of the treatment gas is equal to or lower than the lower limit value Tl while the oxygen concentration Oc of the treatment gas is equal to or lower than the lower limit value Ol. 3. The coal inactivation system according to claim 1 , wherein, when the temperature Te of the test gas is higher than the lower limit value Tel but lower than the higher limit value Teh, the control means controls the treatment gas-oxygen concentration-adjustment means and the treatment gas-temperature-adjustment means in such a manner as to maintain the oxygen concentration Oc and the temperature Tc of the treatment gas as they are. 4. The coal inactivation system according to claim 1 , further comprising test gas-carbon dioxide concentration-detection means configured to detect a carbon dioxide concentration Ce of the test gas having heated the sample in the evaluation apparatus body, wherein when the temperature Te of the test gas is higher than the lower limit value Tel but lower than the higher limit value Teh, the control means, based on information from the test gas-carbon dioxide concentration-detection means, if the carbon dioxide concentration Ce in the test gas is equal to or higher than a higher limit value Ceh, judges again whether or not the oxygen concentration Oc of the treatment gas is equal to or higher than the higher limit value Oh, and if the carbon dioxide concentration Ce in the test gas is equal to or lower than a lower limit value Cel, judges again whether or not the temperature Tc of the treatment gas is equal to or lower than the lower limit value Tl. 5. The coal inactivation system according to claim 4 , wherein, when the temperature Te of the test gas is higher than the lower limit value Tel but lower than the higher limit value Teh, the control means controls the treatment gas-oxygen concentration-adjustment means and the treatment gas-temperature-adjustment means in such a manner as to maintain the oxygen concentration Oc and the temperature Tc of the treatment gas as they are if the carbon dioxide concentration Ce in the test gas is higher than the lower limit value Cel but lower than the higher limit value Ceh based on the information from the test gas-carbon dioxide concentration-detection means.

Assignees

Inventors

Classifications

  • C10L9/083Primary

    Torrefaction · CPC title

  • Control or regulation of the fuel preparation of upgrading process · CPC title

  • Measuring or analysing fractions, components or impurities or process conditions during preparation or upgrading of a fuel · CPC title

  • by heat treatments, e.g. calcining · CPC title

  • C10B57/08Primary

    Non-mechanical pretreatment of the charge (C10L9/00 takes precedence), {e.g. desulfurization} · CPC title

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What does patent US9290711B2 cover?
The coal deactivation apparatus including: a separating device that separates out a portion of the beneficiated coal deactivated in the main treatment apparatus; a main evaluation apparatus into which the sample of the beneficiated coal separated out by the separating apparatus is supplied; a blower and heater that supply air at the evaluation temperature to the main evaluation apparatus; a tem…
Who is the assignee on this patent?
Sato Keiichi, Tanizaki Keiji, Omoto Setsuo, and 1 more
What technology area does this patent fall under?
Primary CPC classification C10L9/083. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Mar 22 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).