Garden riverway pollutant detection system
A detection system and technology for pollutants, applied in the field of garden river pollutant detection systems, can solve the problems of inability to obtain timely feedback, low detection sensitivity and low accuracy of water quality sensors, and achieve convenient viewing and monitoring at any time, strong hydrophobicity Oily, good protective effect
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Embodiment 1
[0041] A garden river pollutant detection system, the detection system includes a detection device connected in sequence, an analysis device, a communication device and a display device; the detection device includes a water quality sensor with a data collection function; the analysis device includes a Functional embedded microprocessor; the communication device includes a communication interface with a wired network and / or a wireless network; the display device includes an intelligent device with a water pollution data management and control software platform;
[0042] The water quality sensor includes a sensor protection case and a sensor body arranged inside the sensor protection case;
[0043] The surface of the sensor housing is coated with a superhydrophobic and oleophobic layer; the superhydrophobic and oleophobic layer is prepared from a modified epoxy resin material.
[0044] The display device is connected to the communication device through a wireless network.
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Embodiment 2
[0053] The modified epoxy resin material described in Example 1 is obtained by compounding zirconium-based titanium nitride @ tungsten telluride dopant and epoxy resin; wherein, zirconium-based titanium nitride @ tungsten telluride dopant and epoxy The mass ratio of resin is 1:15.
[0054] Also added curing agent in the compounding process of epoxy resin, the mass ratio of curing agent and epoxy resin is 3:10; Wherein, curing agent is aromatic amine curing agent; Epoxy resin is bisphenol A type epoxy resin .
[0055] Wherein, the preparation method of the zirconium-based titanium nitride@tungsten telluride dopant is:
[0056] (1) Preparation of chromium-based titanium nitride composite microspheres:
[0057] S1. Weigh nano-titanium nitride powder, chromium polynicotinate and sodium carboxymethylcellulose into deionized water, stir and disperse until uniform, and obtain an aqueous phase solution; weigh polysorbate-80 and add it to n-hexane After stirring and dispersing until...
Embodiment 3
[0069] The modified epoxy resin material described in Example 1 is obtained by compounding zirconium-based titanium nitride @ tungsten telluride dopant and epoxy resin; wherein, zirconium-based titanium nitride @ tungsten telluride dopant and epoxy The mass ratio of resin is 1:10.
[0070] A curing agent is also added during the compounding process of the epoxy resin, and the mass ratio of the curing agent to the epoxy resin is 2:10; wherein, the curing agent is an acid anhydride curing agent; the epoxy resin is bisphenol F epoxy resin.
[0071] Wherein, the preparation method of the zirconium-based titanium nitride@tungsten telluride dopant is:
[0072] (1) Preparation of chromium-based titanium nitride composite microspheres:
[0073] S1. Weigh nano-titanium nitride powder, chromium polynicotinate and sodium carboxymethylcellulose into deionized water, stir and disperse until uniform, and obtain an aqueous phase solution; weigh polysorbate-80 and add it to n-hexane After s...
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