研究目的
To develop an open-source based optical sensor system for service-oriented turbidity and dissolved organic matter monitoring in aquatic ecosystems.
研究成果
The developed sensor system represents a promising approach for fast and service-oriented environmental monitoring, with potential for improved performance through further optimization and integration of temperature compensation.
研究不足
The sensor system's accuracy is limited by the calibration method and electronic components, with high standard deviations in compensated values. The linear range for DOC concentration and absorbance is small, and temperature compensation was not fully addressed.
1:Experimental Design and Method Selection
The study utilized an optical sensor system based on attenuation or transmission measurements with two narrowband LEDs and corresponding detectors in the ultraviolet (DOM content) and infrared range (turbidity). The system was designed for in-situ monitoring with modular and adaptive capabilities.
2:Sample Selection and Data Sources
Field tests were conducted in the area close to the city of Leipzig (Saxony, Germany), including Lake Cospuden and urban streams. Laboratory experiments involved calibration using potassium hydrogen phthalate for DOC and talcum powder for turbidity.
3:List of Experimental Equipment and Materials
UV-LED (UVTOP250-BL-TO18), IR LED (SFH 4557), UV silicon carbide photodiode (SIC01S-C18), IR LED (SFH 4850 E7800), 16-bit analog-to-digital converter (ADS1115), Raspberry Pi, battery pack (TL-PB20100), and various electronic components for signal processing and control.
4:Experimental Procedures and Operational Workflow
The sensor system was calibrated in the laboratory using dilution series for DOC and turbidity. Field measurements were conducted using a small boat and canoe, with data collected in real-time and visualized via web services.
5:Data Analysis Methods
Data analysis involved linear regression for sensor calibration, correlation analysis between sensor signals and measured parameters, and statistical evaluation using software like IBM SPSS Statistics.
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UV-LED
UVTOP250-BL-TO18
ROITHNER LASERTECHNIK GmbH
Emitter for UV channel to measure DOM content
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IR LED
SFH 4557
OSRAM Opto Semiconductors GmbH
Emitter for IR channel to measure turbidity
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UV silicon carbide photodiode
SIC01S-C18
ROITHNER LASERTECHNIK GmbH
Detector for UV channel
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IR LED
SFH 4850 E7800
OSRAM Opto Semiconductors GmbH
Detector for IR channel
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Analog-to-digital converter
ADS1115
Texas Instruments Incorporated
Signal conversion for detector outputs
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Raspberry Pi
Control unit for sensor system
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Battery pack
TL-PB20100
TP-Link Technologies Co., Ltd.
Power supply for the sensor system
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