Scale suppression apparatus, geothermal power generation system using the same, and scale suppression method

US9745213B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9745213-B2
Application numberUS-201314396374-A
CountryUS
Kind codeB2
Filing dateApr 26, 2013
Priority dateApr 27, 2012
Publication dateAug 29, 2017
Grant dateAug 29, 2017

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Abstract

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A scale suppression apparatus capable of suppressing in a low-priced manner the generation of silica-based scale and calcium-based scale in the influent water, a geothermal power generation system using the same, and a scale suppression method are provided. The apparatus includes a first addition unit configured to add liquid containing a chelating agent and an alkaline agent to influent water flowing through a pipe arrangement to make the influent water higher than pH 7, a second addition unit configured to add an acid substance to the influent water to make the influent water lower than pH 7, and a controller configured to alternatively switch between the operation of the first addition unit and the operation of the second addition unit. The controller controls the switching of the first addition unit and the second addition unit based on the signals output from a scale detection unit and a pH meter.

First claim

Opening claim text (preview).

The invention claimed is: 1. A scale suppression apparatus of suppressing generation of scale in influent water containing at least a silica component and a calcium component, the scale suppression apparatus comprising: a controller configured to alternately switch between an operation of a first addition unit and an operation of a second addition unit, the first addition unit configured to add chelating and alkaline agents to the influent water to make the influent water higher than pH 7, and the second addition unit configured to add an acid substance to the influent water to make the influent water lower than pH 7; and a scale detection unit configured to detect a precipitation state of the scale on a downstream side from an addition point to which the chelating and alkaline agents and the acid substance are added, wherein the controller is configured to include: a memory configured to store an output signal from the scale detection unit; and a calculation unit configured to calculate an index of the operations based on the output signal from the scale detection unit, and wherein the controller is configured to alternately switch between adding by the first addition unit and adding by the second addition unit by comparing a calculation result of the calculation unit with an upper limit threshold and a lower limit threshold. 2. The scale suppression apparatus according to claim 1 , wherein the controller is configured to alternately switch between the operation of the first addition unit and the operation of the second addition unit at a predefined interval. 3. The scale suppression apparatus according to claim 1 , wherein the scale detection unit includes: a scale precipitation unit; an upstream-side manometer configured to measure a pressure on an upstream side of the scale precipitation unit and output a signal to the controller; and a downstream-side manometer configured to measure a pressure on a downstream side of the scale precipitation unit and output a signal to the controller. 4. The scale suppression apparatus according to claim 1 , wherein the scale detection unit includes: a scale precipitation unit; and a flowmeter configured to measure a flow rate of water flowing through the scale precipitation unit and output a signal to the calculation unit, and wherein the controller obtains a value by subtracting a subsequent flow rate from the flow rate below the lower limit threshold. 5. The scale suppression apparatus according to claim 1 , wherein there is a period while none of the chelating and alkaline agents or the acid substance is added, the period occurring at least one of when the controller switches the operation of the first addition unit to the operation of the second addition unit or when the controller switches the operation of the second addition unit to the operation of the first addition unit. 6. The scale suppression apparatus according to claim 1 , wherein the controller is configured to switch from either the first addition unit or the second addition unit to the other of either the first addition unit or the second addition unit when the calculation result is greater than or less than the upper limit threshold. 7. The scale suppression apparatus according to claim 1 , wherein the controller is configured to switch from either the first addition unit or the second addition unit to the other of either the first addition unit or the second addition unit when the calculation result is greater than or less than the lower limit threshold. 8. A geothermal power generation system comprising: an evaporator configured to evaporate a medium with geothermal water; a turbine configured to rotate with the medium; a power generator configured to be coupled to the turbine and generate power with rotational power of the turbine; a condenser configured to condense the medium exiting the turbine; a circulation pump configured to feed the medium condensed by the condenser to the evaporator; and a scale suppression unit according to claim 1 , configured to use the geothermal water that has passed through the evaporator as influent water. 9. A scale suppression method of suppressing generation of scale in influent water containing at least a silica component and a calcium component by an injection operation, the scale suppression method comprising: a first step of adding chelating and alkaline agents to the influent water to make the influent water higher than pH 7; a second step of adding an acid substance to the influent water to make the influent water lower than pH 7; and detecting a precipitation state of the scale on a downstream side from an addition point to which the chelating and alkaline agents and the acid substance are added, wherein the first step and the second step are alternately switched by comparing an index of the injection operation calculated based on the precipitation state of the scale with an upper limit threshold and a lower limit threshold. 10. The scale suppression method according to claim 9 , wherein there is a period while none of the chelating and alkaline agents or the acid substance is added, the period occurring at least one of when the first step is switched to the second step or when the second step is switched to the first step. 11. The scale suppression method according to claim 9 , wherein the first step and the second step are alternately switched when the index of the injection is greater than or less than the upper limit threshold. 12. The scale suppression method according to claim 9 , wherein the first step and the second step are alternately switched when the index of the injection is greater than or less than the lower limit threshold.

Assignees

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Classifications

  • Mechanical Engineering · mapped topic

  • Cross-Sectional Technologies · mapped topic

  • Mechanical Engineering · mapped topic

  • Downstream control, i.e. outlet monitoring, e.g. to check the treating agents, such as halogens or ozone, leaving the process · CPC title

  • the engines being only of turbine type (the engines using steam of critical or overcritical pressure F01K7/32; the engines being of extraction or non-condensing type F01K7/34) · CPC title

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What does patent US9745213B2 cover?
A scale suppression apparatus capable of suppressing in a low-priced manner the generation of silica-based scale and calcium-based scale in the influent water, a geothermal power generation system using the same, and a scale suppression method are provided. The apparatus includes a first addition unit configured to add liquid containing a chelating agent and an alkaline agent to influent water …
Who is the assignee on this patent?
Fuji Electric Co Ltd, Fuji Electric Co Ltd
What technology area does this patent fall under?
Primary CPC classification C02F5/083. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Aug 29 2017 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).