PORTABLE DIESEL PARTICULATE MONITOR
First Claim
1. A portable diesel particulate matter (DPM) monitor, comprising:
- (a) a portable housing including a sample cassette door;
(b) an intake component that separates a DPM fraction from ambient air, the DPM fraction including DPM entrained in air;
(c) a rigid sample cassette support disposed within the housing;
(d) a replaceable sample cassette including an optically transmissive sampling substrate onto which DPM are uniformly deposited, the sample cassette being supported by the rigid sample cassette support and being accessible via the sample cassette door, the sample cassette being in fluid communication with the intake component;
(e) a pump disposed in the housing and in fluid communication with the intake component and the sample cassette, enabling the DPM fraction to be introduced into the sample cassette;
(f) a laser disposed in the housing and positioned to direct a beam of light onto the optically transmissive substrate;
(g) a light detector disposed in the housing and positioned to receive the beam of light after the beam passes through the optically transmissive substrate, DPM deposited onto the substrate attenuating the beam;
(h) a display for providing an indication of DPM to a user;
(i) a controller disposed in the housing and logically coupled to the laser, the light detector, the display, and the pump, the controller implementing at least the function of using data from the light detector to provide an indication of DPM on the display; and
(j) a battery for supplying power to the pump, the laser, the display, and the controller.
2 Assignments
0 Petitions
Accused Products
Abstract
A diesel particulate matter (DPM) monitor that can be worn, attached to a particular location or piece of equipment, and collects real-time data about DPM levels. In an exemplary embodiment, ambient air is drawn by a flow-controlled diaphragm pump through a particle size selector which only passes submicron particles. These particles are collected on an optically transparent filter. A laser illuminates the filter and the transmittance of the laser beam is measured in real-time by a photo detector. As DPM accumulates on the filter, the laser transmittance decreases. The instrument is calibrated to convert this decrease in transmittance to a real-time concentration of elemental carbon in the air.
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Citations
20 Claims
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1. A portable diesel particulate matter (DPM) monitor, comprising:
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(a) a portable housing including a sample cassette door; (b) an intake component that separates a DPM fraction from ambient air, the DPM fraction including DPM entrained in air; (c) a rigid sample cassette support disposed within the housing; (d) a replaceable sample cassette including an optically transmissive sampling substrate onto which DPM are uniformly deposited, the sample cassette being supported by the rigid sample cassette support and being accessible via the sample cassette door, the sample cassette being in fluid communication with the intake component; (e) a pump disposed in the housing and in fluid communication with the intake component and the sample cassette, enabling the DPM fraction to be introduced into the sample cassette; (f) a laser disposed in the housing and positioned to direct a beam of light onto the optically transmissive substrate; (g) a light detector disposed in the housing and positioned to receive the beam of light after the beam passes through the optically transmissive substrate, DPM deposited onto the substrate attenuating the beam; (h) a display for providing an indication of DPM to a user; (i) a controller disposed in the housing and logically coupled to the laser, the light detector, the display, and the pump, the controller implementing at least the function of using data from the light detector to provide an indication of DPM on the display; and (j) a battery for supplying power to the pump, the laser, the display, and the controller. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16)
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17. A portable diesel particulate matter (DPM) monitor, comprising:
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(a) a portable housing including a sample cassette door; (b) an intake component that separates a DPM fraction from ambient air, the DPM fraction including DPM entrained in air; (c) a sample cassette support disposed with the housing; (d) a replaceable sample cassette including an optically transmissive sampling substrate onto which DPM are uniformly deposited, the sample cassette being supported by the sample cassette support and being accessible via the sample cassette door, the sample cassette being in fluid communication with the intake component; (e) a pump in fluid communication with the intake component and the sample cassette, enabling the DPM fraction to be introduced into the sample cassette; (f) a laser disposed in the housing and positioned to direct a beam of light onto the optically transmissive substrate; (g) a light detector disposed in the housing and positioned to receive the beam of light after the beam passes through the optically transmissive substrate, DPM deposited onto the substrate attenuating the beam; (h) a display for providing an indication of DPM to a user; (i) a controller disposed in the housing and logically coupled to the laser, the light detector, the display, the pump, and the sample cassette door, the controller implementing at least the following functions; (i) using data from the light detector to provide an indication of DPM on the display; (ii) evaluate a signal from the light detector, to determine when the optically transmissive sampling substrate has been saturated with DPM, and to output an indication to a user that the sample cassette should be replaced; (iii) change a flow rate of the pump based on user input, to enable a user to select a relatively higher flow rate optimized for sensitivity detection, and a relatively lower flow rate optimized for longevity of the optically transmissive sampling substrate; and (iv) preventing the laser from firing if the sample cassette door is not closed; and (j) a battery for supplying power to the pump, the laser, the display, and the controller. - View Dependent Claims (18)
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19. A portable diesel particulate matter (DPM) monitor, comprising:
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(a) a portable housing including a sample cassette door; (b) an intake component that separates a DPM fraction from ambient air, the DPM fraction including DPM entrained in air; (c) a sample cassette support disposed with the housing; (d) a replaceable sample cassette including an optically transmissive sampling substrate onto which DPM are uniformly deposited, the sample cassette being supported by the sample cassette support and being accessible via the sample cassette door, the sample cassette being in fluid communication with the intake component; (e) a pump in fluid communication with the intake component and the sample cassette, enabling the DPM fraction to be introduced into the sample cassette; (f) a laser disposed in the housing and positioned to direct a beam of light onto the optically transmissive substrate; (g) a light detector disposed in the housing and positioned to receive the beam of light after the beam passes through the optically transmissive substrate, DPM deposited onto the substrate attenuating the beam; (h) an alarm for alerting a user of a predetermined condition; (i) a controller disposed in the housing and logically coupled to the laser, the light detector, the alarm, and the pump, the controller implementing at least the following functions; (i) evaluating a signal from the light detector, to determine when the optically transmissive sampling substrate has been saturated with DPM, and to activate the alarm to advise a user that the sample cassette should be replaced; and (ii) evaluating a signal from the light detector, to determine when a safe level of DPM has been exceeded, and to activate the alarm to advise a user that an unsafe level of DPM has been detected; and (j) a battery for supplying power to the pump, the laser, the alarm, and the controller. - View Dependent Claims (20)
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Specification