CN204536203U - A kind of integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system - Google Patents

A kind of integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system Download PDF

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CN204536203U
CN204536203U CN201520212853.1U CN201520212853U CN204536203U CN 204536203 U CN204536203 U CN 204536203U CN 201520212853 U CN201520212853 U CN 201520212853U CN 204536203 U CN204536203 U CN 204536203U
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light source
light
data acquisition
acquisition unit
water body
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冯巍巍
蔡宗岐
马正
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YANTAI DONGRUN INSTRUMENT CO LTD
Yantai Institute of Coastal Zone Research of CAS
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YANTAI DONGRUN INSTRUMENT CO LTD
Yantai Institute of Coastal Zone Research of CAS
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Abstract

The utility model discloses a kind of integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system, comprises and controlling and data acquisition unit and optical system unit; Described control and data acquisition unit comprise host computer, control and data acquisition unit, sampler; Described optical system unit comprises light source and light path, and composite light source comprises left light source and right light source, and left light source is the LED array of the LED light source composition of one group of multiple different wave length; Ultraviolet LED light source and near infrared LD light source form right light source; Host computer sends required different wavelengths of light irradiate water body to be measured by controlling to control light source with data acquisition unit, excites water body material to be measured to send fluorescence and scattered light signal; The utility model has the advantages that: directly measure without any need for chemical reagent, detect data fast, avoid loaded down with trivial details step; Complete the classification to algae multiple in water quality and Concentration Testing, the content of hydro carbons and the on-line checkingi of turbidity simultaneously; Can carry out accurately detecting separately, meet the needs of varying environment monitoring.

Description

A kind of integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system
Technical field
The utility model patent relates to online in situ detection equipment, is the online in-situ measurement system of a kind of water quality specifically.
Background technology
Along with the high speed development of national economy, economic liftoff, yield-power increases, and the water quality environment of China has also been subjected to serious destruction.The reasons such as industrial wastewater discharge, navigation increase and Oil spills cause body eutrophication and hydrocarbon content to increase, cause phytoplankton in water body excessive, cause offshore waters frequent occurrence in recent years, and excessive phytoplankton exhausts the dissolved oxygen DO in water, cause the frequent death of a large amount of organism in water etc.In aquaculture, environmental monitoring, health care and field of scientific study, need the parameters situation of change grasped in real time in water body, to carry out monitor and forecast.Traditional chemical method depends on chemical reaction, be difficult to thoroughly to break away from labyrinth, consume reagent, easily cause the intrinsic deficiencies such as secondary pollution, and measuring period is long, is more and more difficult to the needs meeting social development.Spectroscopic methodology is without any need for chemical reagent, and on water quality not impact itself, and do not need to carry out pre-service to water sample, directly measure, detection speed is fast, avoids loaded down with trivial details step.The instrument of current spectroscopy measurements water quality is monopolized by western developed country substantially, in contrast, spectroscopic methodology water quality environment detection, the sensor technology of China fall behind, lack reasonable price, can analytical parameters comprehensively, in real time, the biosensor analysis instrument of independent intellectual property right fast, accurately, this situation seriously constrains the Inspect and control to water quality environment.
Utility model content
The purpose of this utility model is the shortcoming in order to overcome the above-mentioned aspect existed in prior art, realize comprehensive, real-time, quick, measure water matter algae concentration, hydrocarbon content, turbidity parameters situation of change, there is provided a kind of based on multiband fluorescence technology and scatterometry technology, without the need to depending on chemical reaction, hardly with safeguarding, and be not vulnerable to external interference, monitoring water quality on line system easy to use.Utilize Measures of Algae in Water Body, hydro carbons and turbidity to the fluorescent characteristic of light and scattering properties, be finally inversed by the concentration of each parameter in water body.Light source of the present utility model is a kind of novel composite light source, forms primarily of three class light source optimal combinations.Composite light source controls by control circuit is unified, and LED (light emitting diode) the array component of composite light source is made up of the LED light source of multiple different wave length, for measuring algae concentration and classifying; LED and LD (laser diode) component of composite light source comprises one for measuring the LED light source of hydro carbons and one for measuring the LD light source of turbidity.Composite light source adopts integral structure, is sealed in a metal shell, and has done withstand voltage water-proofing treatment.Light sources with different wavelengths is launched incident light and is entered in testing sample, obtains fluorescence and scattered signal in its light path vertical direction.The concrete concentration of each parameter in testing sample is finally inversed by by the relation in the unlike signal that obtains and water quality between composition.
Concrete technical scheme is as follows:
A kind of integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system, is characterized in that: comprise and controlling and data acquisition unit and optical system unit;
Described control and data acquisition unit comprise host computer, control and data acquisition unit, sampler;
Described optical system unit comprises light source and light path and filter system, and light source comprises left light source and right light source, and left light source is the LED array of the LED light source composition of one group of multiple different wave length; Ultraviolet LED light source and near infrared LD light source form right light source; Host computer sends required different wavelengths of light irradiate water body to be measured by controlling to control light source with data acquisition unit, excites water body material to be measured to send fluorescence and scattered light signal;
Filter system comprises rotary automatic filter switched system, described rotary automatic filter switched system carrys out driven rotary optical filter by control step electric machine rotation and rotates, according to the difference of excitation signal, different optical filters is selected to filter by PC control, light signal is by arriving sampler after optical filter, and sampler is used for fluorescence and scattered light signal Quick Acquisition;
The scattered light signal that host computer obtains according to sampler carries out determining amount, and combined with fluorescent signal retrieve goes out algae and hydro carbons concentration.
Described left light source is the low-power consumption LED array distributed ringwise, and the wavelength coverage of light source is 370nm-650nm, and described LED array and groove side are installed vertically in probe; Right light source is LED and 1 LD combined light source, this group two light sources also with groove lateral vertical, be installed on probe opposite side side by side; Ultraviolet LED lamp is used for exciting hydro carbons to send fluorescence signal, and near infrared LD lamp is used for exciting water body to obtain turbid ity signal, and the scope of water body to be measured comprises all kinds of waters such as fresh water, seawater.
Whole immersion cell structure comprises cable splice, shell, control and data acquisition unit, stepper motor, rotating filtering sheet, sampler, upper lens, upper form, water body to be measured, left form, left lens, left light source, right form, right lens, right light source, temperature sensor, pressure transducer, inlet opening; Described light path divides two-way, and a road is multiple LED array of 370nm-650nm, and another road is 1 ultraviolet LED and LD; The light that multiple light emitting diode matrix sends irradiates water body to be measured through left lens and left form; Another road light irradiates water body to be measured through right lens and right form; The upper form of optical excitation signal through its incident 90 ° of directions, upper lens and the collected device collection of rotating filtering sheet.
Filter system is rotary automatic filter switched system, and rotating filtering sheet comprises matrix, optical filter A, optical filter B, turning axle, circular hole; Stepper motor is connected with rotating filtering sheet by turning axle, is rotated drive rotating filtering sheet to rotate by stepper motor.
The utility model has the advantages that:
1, adopt spectroscopic methodology without any need for chemical reagent, on water quality not impact itself, and do not need to process water sample, directly measure, detect data fast, avoid loaded down with trivial details step.
2, LED and LD is adopted to form composite light source, can fluorescence excitation and scattered light signal, complete the classification to algae multiple in water quality and Concentration Testing, the content of hydro carbons and the on-line checkingi of turbidity simultaneously.Possess determining amount function simultaneously, according to measurement scattered light signal, determining amount is carried out to algae and hydro carbons, realize in real time, fast, accurately understand water quality parameters situation of change.
3, required light source can be selected separately according to actual needs to carry out accurately detecting separately, meet the needs of varying environment monitoring.
4, optical filter automatically switches, and owing to adopting composite light source to irradiate water body, measure multiple parameter, the light signal excited is different simultaneously.Carry out driven rotary optical filter by control step electric machine rotation to rotate, according to the difference of excitation signal, select suitable optical filter to filter to optical excitation signal, to reduce the impact of other light signals on measurement parameter;
Technique effect of the present utility model:
Integrated probe formula multi-parameter water-quality on-line monitoring method and system, adopt spectroscopy measurements, can realize directly measuring water quality, and detection speed is fast, avoids loaded down with trivial details step, do not need chemical reagent simultaneously, avoid the secondary pollution to water quality.Adopt composite light source as light source, fluorescence and scattered light signal can be obtained, complete the classification to algae multiple in water quality and Concentration Testing, the content of hydro carbons and the on-line checkingi of turbidity simultaneously, realize in real time, fast, accurately understand water quality parameters situation of change.Improve environment department to the monitoring technology level of water quality parameters, for effective prevention of water body pollution provides strong technical support.
Accompanying drawing illustrates:
Fig. 1 is the cross-sectional view of immersion cell;
Fig. 2 is the plan structure schematic diagram of rotating filtering sheet.
Fig. 3 is that left light source faces structural representation.
Fig. 4 is that right light source faces structural representation.
Fig. 5 is the workflow schematic diagram of the utility model device;
Embodiment
See Fig. 1-Fig. 5, the utility model comprises control and data acquisition unit and optical system unit.Control to comprise host computer with data acquisition unit, control and data acquisition unit, sampler, optical system unit comprises light source and light path, and light source adopts composite light source.
Composite light source comprises left light source 12 and right light source 15, left light source 12 is the LED array that the LED light source 1201-1206 of one group of multiple different wave length forms, ultraviolet LED light source 1501 and near infrared LD light source 1502 form right light source 15, host computer sends required different wavelengths of light irradiate water body to be measured by controlling to control light source with data acquisition unit 3, excites water body material to be measured to send fluorescence and scattered light signal;
Filter system is designed to rotary automatic filter switched system, rotate driven rotary optical filter 5 by control step motor 4 to rotate, according to the difference of excitation signal, suitable optical filter is selected to filter, light signal is by arriving sampler 6 after optical filter, sampler 6 is by fluorescence and scattered light signal Quick Acquisition;
The light signal that collection obtains completes the process to desired data by data processing module, on host computer, finally demonstrate the information of needs.
Described left light source 12 is the low-power consumption LED array distributed ringwise, and the wavelength coverage of light source is 370nm-650nm; LED scope can suitably adjust as required, and select different wave length combination, this LED array is installed in probe according to the direction with groove lateral vertical, for classifying and measurement of concetration to Measures of Algae in Water Body; Right light source 15 is ultraviolet LED and near infrared LD combined light source, ultraviolet LED light source is used for exciting hydro carbons to send fluorescence signal, near infrared LD light source to be used for exciting in water body turbidity to obtain scattered light signal, this group two diodes also with groove lateral vertical, another is surveyed to be installed on probe side by side.
As shown in Figure 1, whole immersion cell structure comprise cable splice 1, shell 2, control and data acquisition unit 3, stepper motor 4, rotating filtering sheet 5, sampler 6, upper lens 7, upper form 8, water body to be measured 9, left form 10, left lens 11, left light source 12, right form 13, right lens 14, right light source 15, temperature sensor 16, pressure transducer 17, inlet opening 18; Described light path divides two-way, and a road is multiple LED1201-1206 array of 370nm-650nm, and another road is 1 ultraviolet LED 1501 and near infrared LD1502.The light that multiple light emitting diode matrix sends irradiates water body 9 to be measured through left lens 10 and left form 11; Another road light irradiates water body 9 to be measured through right lens 13 and right form 14.The upper form 8 of optical excitation signal through its incident direction 90 ° of directions, upper lens 7 and the collected device 6 of rotating filtering sheet 5 gather.Adopt light source to be arranged at side and be conducive to Machine Design processing, and light source point both sides are distributed with to be beneficial to and reduce influencing each other between light source.Because probe adopts immersion structure to be placed in the easy adventitious deposit of optical window in the middle of water body for a long time, adopting side to install can effectively reduce sedimental attachment, and is easy to the cleaning of optical window.As shown in Figure 2, rotating filtering sheet 5 comprises matrix 500, optical filter A501, optical filter B502, turning axle 503, circular hole 504.Rotating filtering sheet 5 is rotary automatic filter switched system, and stepper motor 4 is connected with rotating filtering sheet 5 by turning axle 503, is rotated drive rotating filtering sheet 5 to rotate by stepper motor 4.
As shown in Figure 3,4, left light source 12 and right light source 15 front elevation, left light source comprises multiple LED 1201-1206 distributed ringwise, and right light source comprises LED1501 and LD1502 of two and column distribution.The light source of this both sides is settled to be designed with and is beneficial to exciting of light signal, reduces influencing each other when measuring different parameters between light source.
Described water body to be measured carries out shading treatment through the light shield having inlet opening.
Bottom described probing shell 11 both sides, temperature sensor 19 and pressure transducer 20 are housed respectively, are used for measuring the temperature of water body to be measured and test water depth to be measured.
As shown in Figure 5, first system carries out initialization, completion system self-inspection.After initialization completes, light source is started working transmitting incident light, incident light and Measures of Algae in Water Body to be measured, hydro carbons or turbidity interact and send fluorescence or scattered light, the algae excited due to different transmitting illuminants is different with the fluorescence signal of hydro carbons and the scattered light signal wavelength of turbidity, and different wavelength should select corresponding different optical filters.This system host computer can Time-sharing control transmitting illuminant, automatically selects optical filter by stepping motor synchronous.Fluorescence or scattered light signal complete opto-electronic conversion by photoelectric conversion module after optical filter, by the Quick Acquisition of the complete pair signals of data acquisition module.Simultaneously data acquisition module to complete pressure transducer and temperature sensor survey the collection of data, finally complete data transmission, by data upload to host computer, the scattered light signal that host computer obtains according to acquisition module carries out determining amount, combined with fluorescent signal retrieve goes out algae and hydro carbons concentration, and demonstrates the information of needs.
Embodiment
Left light source 12 described in the utility model is the low-power consumption LED array distributed ringwise be made up of the LED that 6 centre wavelength is different, and the wavelength coverage of light source is 370nm-650nm; LED scope can adjust as required, selection different wave length combines, the LED of 370nm, 460nm, 535nm, 580nm, 600nm, 630nm can be selected to form, for classification and the measurement of concetration of algae in the Different Waters such as fresh water, seawater (diatom, green alga, blue-green algae and hidden algae), the quantity of LED also can adjust as required, and quantity can be 2,4,6,8 etc. multiple.Described right light source 15 medium ultraviolet LED centre wavelength can select 265nm, near infrared LD wavelength selectable 880nm.In described rotating filtering sheet 5, optical filter A501 can select 685nm bandpass filter, filters for algal bioassay; Optical filter B502 can select 360nm optical filter, filters for hydro carbons test.Described sampler 6 can adopt silicon photodetector PC10-2, gathers light signal, and circuit control chip adopts STM32F103.
The utility model principle is: the array of the LED composition of multiple different wave length and a ultraviolet LED are launched incident light and entered testing sample, detect the fluorescence signal of sample; Near infrared LD launches irradiation testing sample, at the vertical 90 ° of angle detecting fluorescence of its light path and scattered signal.The concrete concentration of parameter in testing sample is finally inversed by by the relation in the unlike signal that obtains and water quality between composition.

Claims (4)

1. an integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system, is characterized in that: comprise and controlling and data acquisition unit and optical system unit;
Described control and data acquisition unit comprise host computer, control and data acquisition unit, sampler;
Described optical system unit comprises light source and light path and filter system, and light source comprises left light source and right light source, and left light source is the LED array of the LED light source composition of one group of multiple different wave length; Ultraviolet LED light source and near infrared LD light source form right light source; Host computer sends required different wavelengths of light irradiate water body to be measured by controlling to control light source with data acquisition unit, excites water body material to be measured to send fluorescence and scattered light signal;
Filter system comprises rotary automatic filter switched system, described rotary automatic filter switched system carrys out driven rotary optical filter by control step electric machine rotation and rotates, according to the difference of excitation signal, different optical filters is selected to filter by PC control, light signal is by arriving sampler after optical filter, and sampler is used for fluorescence and scattered light signal Quick Acquisition;
The scattered light signal that host computer obtains according to sampler carries out determining amount, and combined with fluorescent signal retrieve goes out algae and hydro carbons concentration.
2. measuring system according to claim 1, is characterized in that: described left light source is the low-power consumption LED array distributed ringwise, and the wavelength coverage of light source is 370nm-650nm, and described LED array and groove side are installed vertically in probe; Right light source is LED and LD combined light source, this group two light sources also with groove lateral vertical, be installed on probe opposite side side by side; Ultraviolet LED lamp is used for exciting hydro carbons to send fluorescence signal, and near infrared LD lamp is used for exciting water body to obtain turbid ity signal.
3. measuring system according to claim 1, is characterized in that: whole immersion cell structure comprises cable splice, shell, control and data acquisition unit, stepper motor, rotating filtering sheet, sampler, upper lens, upper form, water body to be measured, left form, left lens, left light source, right form, right lens, right light source, temperature sensor, pressure transducer, inlet opening; Described light path divides two-way, and a road is multiple LED array of 370nm-650nm, and another road is 1 ultraviolet LED and 1 LD; The light that multiple light emitting diode matrix sends irradiates water body to be measured through left lens and left form; Another road light irradiates water body to be measured through right lens and right form; The upper form of optical excitation signal through its incident 90 ° of directions, upper lens and the collected device collection of rotating filtering sheet.
4. measuring system according to claim 1, is characterized in that: filter system is rotary automatic filter switched system, and rotating filtering sheet comprises matrix, optical filter A, optical filter B, turning axle, circular hole; Stepper motor is connected with rotating filtering sheet by turning axle, is rotated drive rotating filtering sheet to rotate by stepper motor.
CN201520212853.1U 2015-04-10 2015-04-10 A kind of integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system Expired - Fee Related CN204536203U (en)

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104730054A (en) * 2015-04-10 2015-06-24 中国科学院烟台海岸带研究所 Integrated probe type photoelectric water-quality multi-parameter online measuring system
CN105021587A (en) * 2015-08-28 2015-11-04 上海清淼光电科技有限公司 Multi-chain hydrocarbon substance measuring device and method based on ultraviolet fluorescence method
CN105954198A (en) * 2016-01-05 2016-09-21 上海三盛金属制品有限公司 Internet-of-things water quality monitoring and warning signal transmitter
CN108181273A (en) * 2017-11-21 2018-06-19 浙江大学 A kind of multi-functional dual probe algae fluorescence parameter on-line measuring device of ship borne type
CN109781641A (en) * 2017-11-09 2019-05-21 深圳一目科技有限公司 A kind of water quality parameter detection device and its method
WO2020082628A1 (en) * 2018-10-24 2020-04-30 南京大学 Led light source-based spectrometric water quality monitoring module and use method thereof
CN111122816A (en) * 2019-12-30 2020-05-08 重庆商勤科技有限公司 Water bloom early warning system and method based on combination of online monitoring and image recognition

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104730054A (en) * 2015-04-10 2015-06-24 中国科学院烟台海岸带研究所 Integrated probe type photoelectric water-quality multi-parameter online measuring system
CN104730054B (en) * 2015-04-10 2018-08-21 中国科学院烟台海岸带研究所 A kind of integrated probe formula photoelectricity multi-parameter water-quality on-line measurement system
CN105021587A (en) * 2015-08-28 2015-11-04 上海清淼光电科技有限公司 Multi-chain hydrocarbon substance measuring device and method based on ultraviolet fluorescence method
CN105954198A (en) * 2016-01-05 2016-09-21 上海三盛金属制品有限公司 Internet-of-things water quality monitoring and warning signal transmitter
CN109781641A (en) * 2017-11-09 2019-05-21 深圳一目科技有限公司 A kind of water quality parameter detection device and its method
CN108181273A (en) * 2017-11-21 2018-06-19 浙江大学 A kind of multi-functional dual probe algae fluorescence parameter on-line measuring device of ship borne type
CN108181273B (en) * 2017-11-21 2019-07-09 浙江大学 A kind of multi-functional dual probe algae fluorescence parameter on-line measuring device of ship borne type
WO2020082628A1 (en) * 2018-10-24 2020-04-30 南京大学 Led light source-based spectrometric water quality monitoring module and use method thereof
CN111122816A (en) * 2019-12-30 2020-05-08 重庆商勤科技有限公司 Water bloom early warning system and method based on combination of online monitoring and image recognition

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