IP Library Granted Patent US 10,788,416
Granted Patent B2
US 10,788,416 · App. 14/502,425 · Granted Sep 29, 2020

Multiple wavelength light source for colorimetric measurement

Inventors: Bradley A. Butcher (La Verne, CA); Chang-Dong Feng (Long Beach, CA)
Assignee: Rosemount Inc.
G01N21/251G01N21/27G01N21/78G01N31/22G01N21/3151
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Quick Facts
Patent No.
US 10,788,416
App. No.
14/502,425
Granted
Sep 29, 2020
Kind
B2
Abstract

A colorimetric wet chemistry analyzer for determining a concentration of an analyte of interest in a sample is provided. The analyzer comprising includes a reaction chamber configured to receive the sample and facilitate a reaction that changes a color of the sample based on the concentration of the analyte of interest. A photometric cell is operably coupled to the reaction chamber to receive the sample and direct illumination therethrough. The photometric cell has a first illumination source configured to provide illumination at a first wavelength through the photometric cell and a second illumination source configured to provide illumination at a second wavelength through the photometric cell. The second wavelength is different than the first wavelength. A photo detector is configured to detect illumination passing through the photometric cell. A controller is coupled to the first illumination source, the second illumination source and the photo detector and is configured to provide an indication of concentration relative to the analyte of interest based on a signal from the photo detector.

Claims (30)

1. A colorimetric wet chemistry analyzer for determining a concentration of silica in a sample, the analyzer comprising:

a reaction chamber that receives the sample and facilitate a molybdenum blue reaction that changes a color of the sample based on the concentration of silica;

a photometric cell operably coupled to the reaction chamber to receive the sample and direct illumination therethrough, the photometric cell having a first illumination source that provides illumination at a first wavelength of 810 nanometers through the photometric cell, and a second illumination source that provides illumination at a second wavelength of 670 nanometers through the photometric cell, where the second wavelength is different than the first wavelength;

a photodetector, within the photometric cell, that detects illumination passing through the photometric cell; and

a controller coupled to the first illumination source, the second illumination source and the photodetector, wherein the controller is configured to:

engage the first illumination source;

receive a first photodetector signal from the photodetector, relative to the first illumination source, while the first illumination source is engaged;

compare the first photodetector signal received to a selected threshold,

wherein the second illumination source is engaged based on the first photodetector signal being below the selected threshold;

receive a second photodetector signal, while the second illumination source is engaged;

calculate an absorbance based on the received second photodetector signal;

provide an indication of silica concentration based on the signals received from the photodetector and the absorbance; and

wherein the second illumination source detects at a different detection level than the first illumination source.

2. The analyzer of claim 1 , wherein the first illumination source provides monochromatic illumination.

3. The analyzer of claim 1 , wherein the second illumination source provides monochromatic illumination.

4. The analyzer of claim 1 , and further comprising a user interface that receives an indication relative to a detection range.

5. The analyzer of claim 4 , wherein the controller engages one of the first and second illumination sources based on the detection range.

6. The analyzer of claim 1 , wherein the selected threshold comprises a detectable level of current.

7. A colorimetric wet chemistry analyzer for determining a concentration of silica in a sample, the analyzer comprising:

a reaction chamber that receives the sample and facilitate a molybdenum blue reaction that changes a color of the sample based on the concentration of silica;

a photometric cell operably coupled to the reaction chamber to receive the sample and direct illumination therethrough, the photometric cell having a first illumination source that provides illumination at a first wavelength of 810 nanometers through the photometric cell, and a second illumination source that provides illumination at a second wavelength of 670 nanometers through the photometric cell, where the second wavelength is different than the first wavelength;

a photodetector, within the photometric cell, that detects illumination passing through the photometric cell; and

a controller coupled to the first illumination source, the second illumination source and the photodetector, wherein the controller is configured to:

engage the first illumination source;

receive a first photodetector signal from the photodetector, relative to the first illumination source, while the first illumination source is engaged;

compare the first photodetector signal to a selected threshold of 0.05 nanoamps;

engage the second illumination source, based on a detection that the first photodetector signal is below the selected threshold, wherein the second illumination source detects at a different detection level than the first illumination source;

receive a second photodetector signal, while the second illumination source is engaged;

calculate an absorbance based on, the received second photodetector signal; and

provide an indication of silica concentration based on the signals received from the photodetector and the absorbance.

Assignments (2)
MERGER Recorded Mar 5, 2018
From: ROSEMOUNT ANALYTICAL, INC.
To: ROSEMOUNT INC.
Reel/Frame 045103/0452 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2014
From: BUTCHER, BRADLEY A.; FENG, CHANG-DONG
To: ROSEMOUNT ANALYTICAL INC.
Reel/Frame 033996/0097 →
Continuity (2)
Provisional Application 61886291 · Oct 3, 2013
Related Publication 20150099303A1 · Apr 9, 2015