Water treatment method and water treatment apparatus
US-2024383788-A1 · Nov 21, 2024 · US
US9815724B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9815724-B2 |
| Application number | US-201314396372-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 26, 2013 |
| Priority date | Apr 27, 2012 |
| Publication date | Nov 14, 2017 |
| Grant date | Nov 14, 2017 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
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 containing at least a silica component and a calcium component, a geothermal power generation system using the same, and a scale suppression method are provided. The scale suppression apparatus includes a chelating agent and alkaline agent addition unit injecting liquid containing a chelating agent and an alkaline agent into a pipe arrangement through which influent water such as geothermal water or the like flows, and a controller controlling a pump and a valve of the chelating agent and alkaline agent addition unit. The controller controls the injection of the chelating agent and the alkaline agent and stops of the injection based on the signal output from a scale detection unit for detecting a precipitation state of the scale.
Opening claim text (preview).
The invention claimed is: 1. A scale suppression apparatus of injecting chelating and alkaline agents into influent water containing at least a silica component and a calcium component to suppress generation of scale, the scale suppression apparatus comprising: a controller configured to alternately switch between an injection operation of injecting the chelating and alkaline agents and stopping of the injection operation; and a scale detection unit configured to detect a precipitation state of the scale on a downstream side from an injection point into which the chelating and alkaline agents are injected, 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 injection operation based on the output signal from the scale detection unit, wherein the controller is configured to alternately switch between the injection operation of injecting the chelating and alkaline agents and the stopping of the injection operation by comparing a calculation result of the calculation unit with an upper limit threshold and a lower limit threshold, and wherein the controller is configured to switch between the injection operation and the stopping of the injection operation when the calculation result is greater than the upper limit threshold or less than the lower limit threshold. 2. 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 from 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 from the scale precipitation unit and output a signal to the controller. 3. 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 an upstream side or a downstream side from the scale precipitation unit and output a signal to the controller, and wherein the controller obtains a value by subtracting a subsequent flow rate from the flow rate below the lower limit threshold. 4. 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 come out of 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. 5. A scale suppression apparatus of injecting chelating and alkaline agents into influent water containing at least a silica component and a calcium component to suppress generation of scale, the scale suppression apparatus comprising: a controller configured to alternately switch between an injection operation of injecting the chelating and alkaline agents and stopping of the injection operation; and a scale detection unit configured to detect a precipitation state of the scale on a downstream side from an injection point into which the chelating and alkaline agents are injected, 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 injection operation based on the output signal from the scale detection unit, wherein the controller is configured to alternately switch between the injection operation of injecting the chelating and alkaline agents and the stopping of the injection operation by comparing a calculation result of the calculation unit with an upper limit threshold and a lower limit threshold, and wherein the controller is configured to switch between the stopping of the injection operation and the injection operation when the calculation result is greater than the upper limit threshold or less than the lower limit threshold. 6. A scale suppression apparatus of injecting chelating and alkaline agents into influent water containing at least a silica component and a calcium component to suppress generation of scale, the scale suppression apparatus comprising: a controller configured to alternately switch between an injection operation of injecting the chelating and alkaline agents and stopping of the injection operation; and a scale detection unit configured to detect a precipitation state of the scale on a downstream side from an injection point into which the chelating and alkaline agents are injected, 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 injection operation based on the output signal from the scale detection unit, wherein the controller is configured to alternately switch between the injection operation of injecting the chelating and alkaline agents and the stopping of the injection operation by comparing a calculation result of the calculation unit with an upper limit threshold and a lower limit threshold, and wherein the controller is configured to switch between the injection operation and the stopping of the injection operation when the calculation result is greater than the upper limit threshold or less than the lower limit threshold. 7. A scale suppression apparatus of injecting chelating and alkaline agents into influent water containing at least a silica component and a calcium component to suppress generation of scale, the scale suppression apparatus comprising: a controller configured to alternately switch between an injection operation of injecting the chelating and alkaline agents and stopping of the injection operation; and a scale detection unit configured to detect a precipitation state of the scale on a downstream side from an injection point into which the chelating and alkaline agents are injected, 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 injection operation based on the output signal from the scale detection unit, wherein the controller is configured to alternately switch between the injection operation of injecting the chelating and alkaline agents and the stopping of the injection operation by comparing a calculation result of the calculation unit with an upper limit threshold and a lower limit threshold, and wherein the controller is configured to switch between the stopping of the injection operation and the injection operation when the calculation result is greater than the upper limit threshold or less than the lower limit threshold. 8. A scale suppression method of suppressing generation of scale by an injection operation of injecting chelating and alkaline agents into influent water containing at least a silica component and a calcium component, the scale suppression method comprising: a first step of injecting the chelating and alkaline agents; a second step of stopping injecting the chelating and alkaline, agents; and detecting a precipitation state of scale on a downstream side from an injection point into which the chelating and alkaline agents are injected, wherein the first step and the second step are alternately switched by comparing an index of the injection operation calculated based on the precip
Liquid flow rate · CPC title
Cross-Sectional Technologies · mapped topic
Mineral agents · CPC title
Preventing the formation of deposits or corrosion, e.g. by using filters {or scrapers} · CPC title
Control or steering systems not provided for elsewhere in subclass C02F · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.