一种环评用分层水质检测装置
By setting up a detection chamber and an inlet chamber in the stratified water quality detection device, and incorporating built-in detection modules and temperature and electrolysis detection components, the problem of the inability to conduct on-site detection in existing technologies is solved, enabling real-time detection of water sample layers and ensuring data accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANXI SHULV ENVIRONMENTAL PROTECTION TECH CO LTD
- Filing Date
- 2025-06-30
- Publication Date
- 2026-07-17
AI Technical Summary
Existing stratified water quality testing equipment can only collect water samples from different depths and cannot be tested on-site. Samples need to be manually transferred to the laboratory for detailed testing, which prolongs the testing time.
A layered water quality testing device for environmental impact assessment was designed, comprising a testing chamber and an inlet chamber, with built-in testing modules and temperature and electrolysis testing components, enabling real-time testing of specific water sample layers. Through sealing components, filtration components and water storage components, the purity of the water sample and the accuracy of the testing are ensured.
It enables real-time on-site detection of water samples at different depths, reducing detection errors, improving detection efficiency, and ensuring data accuracy and convenience.
Smart Images

Figure CN224518645U_ABST
Abstract
Claims
1. A layered water quality detection device for environmental impact assessment, characterized by, include: The water inlet housing has a detection chamber and a water inlet chamber arranged sequentially from top to bottom inside its cavity. The top of the water inlet housing is open and communicates with the detection chamber. A settling cylinder is installed inside the water inlet chamber. A water inlet is installed at the bottom of the water inlet housing and communicates with the bottom of the settling cylinder. A water outlet is symmetrically opened on the top side wall of the settling cylinder and communicates with the water inlet chamber. An installation sleeve is installed at the bottom of the water inlet housing. The inner wall of the installation sleeve communicates with the water inlet. A fixing annular groove is opened on the inner wall of the installation sleeve, and multiple fixing holes are opened on the fixing annular groove. A water inlet propulsion assembly is symmetrically arranged on the outer wall of the water inlet housing, and the output end of the water inlet propulsion assembly passes through the water inlet chamber and cooperates with the water outlet. A sealing plate is disposed on the top of the water inlet housing to seal the detection chamber; A filter assembly, comprising a primary filter element and a secondary filter element, wherein the primary filter element comprises a filter sleeve, the inner wall of the filter sleeve is provided with threads, a primary filter screen is provided at the bottom of the filter sleeve, the outer wall of the mounting sleeve is provided with threads, the mounting sleeve is threadedly connected to the filter sleeve, and the secondary filter element is disposed in the fixing annular groove through the fixing hole. A sealing assembly is disposed at the bottom of the filter sleeve. The sealing assembly includes a sealing pipe and a control valve body. One end of the sealing pipe is disposed at the bottom of the filter sleeve, and the control valve body is disposed on the sealing pipe. A water storage component is provided on the other two outer walls of the water inlet shell, and the water storage component is connected to the water inlet chamber; A detection assembly is disposed within the detection chamber. The detection assembly includes a detection module, a temperature detection element, an electrolysis detection element, and multiple batteries. The detection module and the multiple batteries are disposed at the bottom of the detection chamber. The temperature detection element and the electrolysis detection element are disposed at opposite corners of the detection chamber, with one end of each element extending into the water inlet chamber. The other ends of both elements are electrically connected to the detection module.
2. The layered water quality detection device for environmental impact assessment according to claim 1, characterized in that, The water inlet propulsion assembly includes a propulsion box, multiple electric push rods, and a piston. The propulsion box is equipped with multiple electric push rods, the output end of each electric push rod penetrates the outer wall of the water inlet housing, and a piston is provided at the output end of each electric push rod. The piston slides within the water outlet slot.
3. The layered water quality detection device for environmental impact assessment according to claim 1, characterized in that, The secondary filter element includes a secondary filter plate with multiple secondary filter holes arranged around its circumference. Multiple locking holes are arranged near the outer circumference of the secondary filter plate, and the locking holes cooperate with the fixing holes.
4. The layered water quality testing device for environmental impact assessment according to claim 1, characterized in that, The water storage assembly includes a water storage tank, a water storage pipe, a water storage container, and a water outlet valve. The water storage container is disposed inside the water storage tank. The outer wall of the water inlet shell has symmetrically arranged water inlets. One end of the water storage pipe is connected to the water inlet, and the other end of the water storage pipe is connected to the top of the water storage container. A water outlet pipe is disposed at the bottom of the water storage container, and the water outlet pipe passes through the water storage tank. A water outlet valve is disposed on the water outlet pipe.
5. The layered water quality testing device for environmental impact assessment according to claim 4, characterized in that, The water storage tank is equipped with a counterweight.
6. The layered water quality testing device for environmental impact assessment according to claim 1, characterized in that, It also includes lifting rings, a plurality of which are symmetrically arranged on the outer wall of the water inlet housing near the top, and the lifting rings are located above the water storage assembly.
7. The layered water quality testing device for environmental impact assessment according to claim 1, characterized in that, The control valve body includes an electrically controlled valve, and the control valve body is connected to the battery.