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The TK-1000S Continuous Emission Monitoring System (CEMS) is meticulously developed by Shandong SINZEN Instrument Co., Ltd., leveraging over 10 years of professional experience in the pollution source industry combined with Differential Optical Absorption Spectroscopy (DOAS) technology This system employs advanced high-temperature extraction sampling coupled with ultraviolet differential spectroscopy principles for measurements, utilizing an in-situ extraction measurement method capable of real-time online monitoring of gaseous pollutant concentrations (such as SO₂ and NOₓ) and flue gas parameters (including humidity and oxygen content) in exhaust gases
The Model TK-1000 Greenhouse Gas Continuous Emission Monitoring and Analysis System is a fixed emission source monitoring system developed in response to the current status of greenhouse gas emission monitoring, providing data support for achieving the goals of “carbon peaking” and “carbon neutrality”. The emission volume can be obtained simply by directly measuring the concentrations of gases such as CO₂, CH₄ and N₂O, as well as parameters including flue gas flow rate and humidity, which greatly improves data accuracy. Featuring a modular design and simple operation, the system has distinct advantages. The system can realize real-time, accurate and automatic carbon emission accounting. Compared with carbon emission data obtained via material balance calculation, it uses real-time monitoring data to establish a carbon emission accounting methodology based on monitoring data, which can further improve the accuracy and real-time performance of carbon emission accounting data.
The Model TK-1200A Continuous Automatic Monitoring System for Non-Methane Hydrocarbons (NMHC) in Ambient Air is a cutting-edge environmental monitoring product that integrates industrial analytical chromatography technology with internet-based intelligent environmental protection technology. Drawing on industry-leading design experience of gas chromatography systems, the system adopts imported components for all its core modules, delivering stable and reliable data reproducibility and long-term monitoring effectiveness. Employing the GC-FID direct measurement method, the system enables real-time online monitoring of NMHC in ambient air, while simultaneously measuring air temperature, air pressure, wind speed, wind direction and humidity.
The Model TK-1200 VOCs Continuous Emission Monitoring System (CEMS) for Pollution Sources adopts advanced technologies including full-process high-temperature trace heating pretreatment, gas chromatography (GC), and flame ionization detection (FID). It is mainly applied to the real-time monitoring of organic compounds emitted from various industrial pollution sources. With stable and reliable performance, high automation level, and wide detection range, the system can measure multiple parameters such as total hydrocarbons (THC), methane (CH₄), non-methane hydrocarbons (NMHC), and benzene series. It conducts continuous and real-time tracking and monitoring of VOCs concentration and emission rate.
The Model TK-1000 Continuous Emission Monitoring System (CEMS) for Marine Exhaust Gas is an online monitoring device designed to continuously measure the pollutant concentration and total emission volume in marine exhaust gas. Adopting technologies such as Non-Dispersive Infrared (NDIR) spectroscopy, the system is capable of measuring multiple parameters including CO₂, O₂, temperature, pressure, flow rate, and humidity. Featuring a modular design, corrosion resistance, vibration resistance, explosion protection, and automatic operation, it is suitable for marine environments and contributes to air pollution prevention and control.
The Model TK-1000 Continuous Emission Monitoring System (CEMS) for denitration flue gas is capable of monitoring parameters in gas such as NOₓ, O₂, temperature, pressure, flow rate, humidity, and particulate matter. The measured gas is sampled via a sampling probe and heated sampling line, then enters the high-temperature gas analysis module (based on Differential Optical Absorption Spectroscopy (DOAS) technology) for analysis and measurement. The system equipment is installed in the monitoring station room, facilitating easy operation and maintenance. The entire system features a simple structure, modular design, high stability, and low operating costs.
The Model TK-1000 Continuous Emission Monitoring System (CEMS) for gas-fired boilers adopts advanced DOAS UV differential absorption spectroscopy technology combined with the extractive cold-dry method. It is capable of monitoring parameters in gas such as NOₓ, O₂, temperature, pressure, flow rate, and humidity. The entire system features a simple structure, modular design, high stability, and low operating costs.
Domestic waste incineration plants are required to conduct automatic, continuous and online monitoring of the main components of incineration flue gas. The basic monitoring items include HCl, SO₂, NOₓ and soot, while CO and HF also need to be detected in some occasions. The Model TK-1000 Continuous Emission Monitoring System (CEMS) for solid waste/domestic waste incineration flue gas adopts technologies such as DOAS UV differential absorption spectroscopy and tunable diode laser absorption spectroscopy (TDLAS). It is capable of measuring multiple parameters including SO₂, NOₓ, O₂ and HCl. With a simple structure, modular design, high stability and low operating costs, the system is installed in the monitoring station room for easy operation and maintenance.
Model TK-1000H Continuous Emission Monitoring System (CEMS) adopts a modular design, integrating the gaseous pollutant monitoring subsystem (SO₂, NOₓ), particulate matter monitoring subsystem, flue gas parameter monitoring subsystem (temperature/pressure/flow rate/humidity/oxygen content), and intelligent control & data acquisition and processing subsystem into one unit. It can accurately monitor key parameters at fixed pollution source emission outlets, including SO₂, NOₓ, O₂ (in standard state/wet basis/dry basis/converted value), particulate matter concentration, as well as temperature, pressure and flow rate.
The TK-1000 Continuous Emission Monitoring System (CEMS) adopts advanced DOAS (Differential Optical Absorption Spectroscopy) UV differential absorption spectroscopy technology, combined with the extractive cold-dry method and laser backscatter dust monitor. It is capable of measuring multiple parameters including SO₂, NOₓ, O₂, temperature, pressure, flow rate, particulate matter, and humidity. The entire system features a simple structure, modular design, high stability, and low operating costs.