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Ozone catalyst technology is an advanced oxidation process based on ozone. It combines the strong oxidizing properties of ozone with the adsorption and catalytic properties of the catalyst, and be proved more effectively solving the problem of low ozone treatment efficiency, low ozone utilization, high operating costs, and incomplete degradation of organics questions. The phase state of the ozone catalytic oxidation catalyst is divided into homogeneous catalytic ozonation and heterogeneous catalytic ozonation. In the homogeneous catalytic ozonation technology, the catalyst is uniformly distributed and has high catalytic activity, the mechanism of action is clear, and it is easy to study and grasp. However, its shortcomings are also obvious. The catalyst is miscible in water, causing it to be easily lost, difficult to recycle, and cause secondary pollution. The operating cost is high and the water treatment cost is increased. The heterogeneous catalytic ozonation method uses a solid catalyst to accelerate the oxidation reaction in the liquid phase (or gas phase) under normal pressure. The catalyst exists in a solid state, is insoluble in water, does not run off, has no secondary pollution, and reduces the operating cost of catalytic oxidation. The ozone catalytic oxidation method of wastewater is a large-scale advanced oxidation technology, which is mainly realized through two ways of direct oxidation and catalytic oxidation. Ozone can directly mineralize the large molecules, long chains, and difficult-to-biodegradable organic matter remaining in the wastewater into carbon dioxide and water, and partially decompose into small molecules and easily biodegradable substances, destroy the structure of non-biodegradable organic matter, reduce toxicity, and increase B/ C ratio, so as to ensure the treatment effect of subsequent biochemical methods. The traditional ozone oxidation technology is mainly direct oxidation, which has poor mass transfer effect, low ozone utilization rate, and high investment and operating costs.
Power: DC24V/5A Dimension: 325x245x220mm Weight: 6.3KG Resolution: 0.005mm Spindle Revolution: 3800rpm Temperature: 0-60° Humidity: 10-90%
No.: SEC-E9 Power: 120W Dimension: 255(W)*360(H)*340(D)mm Weight: 24KG Resolution: XY: 0.005mm Z: 0.0015mm Spindle Revolution: 11000+rpm Temperature: 0-40â?? Humidity: 10-90% Price: $2,395.00 Ship fromChina Color:yellow and white
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I. Introduction SS-600C Hot & Wet Waste Incineration CEMS System developed and produced by Senshang Instruments is to monitor the total air pollutant emissions from stationary sources in waste incineration power plant, to measure SO2, NO, NO2, CO, CO2, HCL, NH3, O2 and H2O, as well as simultaneously to measure particles content, gas flow, gas pressure, gas temperature and so on. The hot-wet sampling system: All components (probe, sample line, pump and analyzer sample cell) in contact with the gas stream are maintained above the dew point of the flue gas to prevent condensation of reactive vapors. This approach does not incorporate a gas cooler. The Hot-Wet sampling approach results in a simple and reliable sampling system with high availability. CEMS consists of 1Gas analysis monitoring system. 2Particles monitoring system. 3Gas temperature/pressure/velocity measurement 4Data Analysis System. II. Application fields It is widely applied to the monitoring of flue gas emissions in ultra-low emission field, thermal power plant, industrial kiln / boiler, cement industry, petroleum industry, waste incineration power generation, hazardous waste incineration and other industries. III. Specifications Measurement items Ranges(can be customized) SO2 0-150-750mg/m3 NO 0-200-1000mg/m3 CO 0-500-2500mg/m3 CO2 0-20%vol-40%vol NH3 0-20-100mg/m3 HCL 0-100-500mg/m3 H2O 0-20%vol-40%vol O2 0-5%vol-25%vol Zero drift ±2%F.S./7d Span drift ±2%F.S./7d Linearity error ±1%F.S. Response time 200s Repeatability 0.5% Resolution 0.005mg/m3 Temperature 0-300 Temperature accuracy ±0.5%F.S. Pressure -5-5KPa(relative) Pressure accuracy ±0.5%F.S. Gas flow 0-30m/s Velocity accuracy ±0.5%F.S. Particles 0-5-25mg/Nm3 Particle max error ±1.5%F.S./7d Particle zero drift ±1.5%F.S./7d Particle span drift ±1.5%F.S. IV. Product feature 1.Maximum 8 gas components measurement, able to measure O2 and H2O(humidity). 2.System cabinet modular design, simple operation, less maintenance. 3.Hot & Wet sampling system, no gas condensation, little SO2 and other gases loss. 4.Adopt ultra-low dust monitor to measure particles. 5.Adopt temp/pressure/velocity all-in-one instrument to measure gas T/P/F. 6.The stability and reliability of the system are higher by PLC design. 7.With anti-corrosive material. 8.With auto purging function.
I. Introduction SS-300-HF Extractive Laser Analysis System adopts TDLAS Tunable diode laser absorption spectroscope to measure HF concentration. It adopts special heated sampling probe which is able to work in high-temperature and high dust conditions, and hot & wet sampling system with little gas loss caused by gas condensing. Compare in-situ type gas analyzer, the extractive system has the advantages of no requirement of installation conditions, easy maintenance, little pollution to mirror, suitable for dirty sampling point with high dust. II. Applications field It is used for online monitoring of organic waste gas emissions and organic waste gas recovery for chemical, printing, pharmaceutical, rubber, spray coating, electronic semiconductors, synthetic leather and so on. III. Specifications Monitoring place Gas component Measurement range aluminum oxide outlet HF 0-20ppm(can be customize) 1.Measurement principleTDLAS 2.Sampling methodHot & Wet extractive sampling 3.Sampling pipe materialSUS316 4.Heated tube diameter: ,¸8,?6 5.Power supply AC220V±10%50/60Hz 6.Power consumptionMax 2000W+50W*heated tube length 7.Calibration periodeach 6 months 8.Analogue output4 - 20mA 9.Max load550Ω 10.Alarm outputgas temperature alarm, gas low pressure, gas over pressure alarm. IV. Features 1.Extractive sampling method 2.Easy calibration and calibration 3.Adopts TLDAS principle, little cross-sensitivity, 4.Laser detector with long lifespan 5.Optional sampling probe calibration function. 6.IP 65 protection class. 7.Adopts hot and wet sampling and gas pretreatment with temperature 190â??, preventing HCL gas loss by condensation. 8.Sampling probe with purging function. 9.With lens blow up function, to prevent it dewing.
I. Introduction SS-300-HCL Extractive Laser Analysis System adopts TDLAS Tunable diode laser absorption spectroscope to measure HF concentration. It adopts special heated sampling probe which is able to work in high-temperature and high dust conditions, and hot & wet sampling system with little gas loss caused by gas condensing. Compare in-situ type gas analyzer, the extractive system has the advantages of no requirement of installation conditions, easy maintenance, little pollution to mirror, suitable for dirty sampling point with high dust. II. Applications field It is used for stack outlet in the waste incineration power plant. III. Specifications Monitoring place Gas component Measurement range Waste incineration stack outlet HCL 0-20ppm(can be customize) 1.Measurement principleTDLAS 2.Sampling methodHot & Wet extractive sampling 3.Sampling pipe materialSUS316 4.Heated tube diameter: 86 5.Power supply AC220V±10%50/60Hz 6.Power consumptionMax 2000W+50W*heated tube length 7.Calibration periodeach 6 months 8.Analogue output4 - 20mA 9.Max load4 - 20mA 550© 10.Alarm outputgas temperature alarm, gas low pressure, gas over pressure alarm. IV. Features 1.Extractive sampling method 2.Easy calibration and calibration 3.Adopts TLDAS principle, little cross-sensitivity, 4.Laser detector with long lifespan 5.Optional sampling probe calibration function. 6.IP 65 protection class. 7.Adopts hot and wet sampling and gas pretreatment with temperature 190, preventing HCL gas loss by condensation. 8.Sampling probe with purging function. With lens blow up function, to prevent it dewing.
I. Introduction SS-300-NH3 Extractive Laser Analysis System adopts TDLAS Tunable diode laser absorption spectroscope to measure HF concentration. It adopts special heated sampling probe which is able to work in high-temperature and high dust conditions, and hot & wet sampling system with little gas loss caused by gas condensing. Compare in-situ type gas analyzer, the extractive system has the advantages of no requirement of installation conditions, easy maintenance, little pollution to mirror, suitable for dirty sampling point with high dust. II. Applications field It is used to monitor NH3 after SNR or SCNR process in the waste incineration plant, power plant and so on. III. Specifications Monitoring place Gas component Measurement range SNR or SCNR stack outlet NH3 0-20ppm(can be customize) 1.Measurement principleTDLAS 2.Sampling methodHot & Wet extractive sampling 3.Sampling pipe materialSUS316 4.Heated tube diameter: ø8Ã?6 5.Power supply AC220V±10%50/60Hz 6.Power consumptionMax 2000W+50W*heated tube length 7.Calibration periodeach 6 months 8.Analogue output4 - 20mA 9.Max load4 - 20mA 550© 10.Alarm outputgas temperature alarm, gas low pressure, gas over pressure alarm. IV. Features 1.Extractive sampling method 2.Easy calibration and calibration 3.Adopts TLDAS principle, little cross-sensitivity, 4.Laser detector with long lifespan 5.Optional sampling probe calibration function. 6.IP 65 protection class. 7.Adopts hot and wet sampling and gas pretreatment with temperature 190, preventing HCL gas loss by condensation. 8.Sampling probe with purging function. 9.With lens blow up function, to prevent it dewing.
I. Introduction The SS-700 process VOCs monitoring system is based on the standards of HJ/T80, HJ/T75, HJ/T76 and other related standards, sampling by extraction method, configuration based on advanced gas chromatography, mass spectrometry separation technologies and hydrogen flame Ionization Detectors (FID), photoionization detectors (PID) to measure the composition of volatile organic gases such as total hydrocarbons (THC), non-methane total hydrocarbons (NMHC), aromatic hydrocarbons, esters, etc. According to the composition and detection requirements in the analysis project, it can be configured to meet the requirements of the analysis project and the frequency of analysis. At the same time, the optimization of instrument configuration can be performed to maximize the use of the instrument and ensure the continuity of sample analysis. reliability. The analysis system fully considers sample gas conditions, dew point and other factors, and specifically designs the pretreatment system to prevent the crystallization of components in sample gas from condensing and changing the concentration of components. The instrument uses special column combination, center cutting and back blowing technology and hydrogen flame ionization detector (FID) technology for detection. The FID Hydrogen Flame Ionization Detector is a typical mass detector that measures the mass change rate of a component in a GC gas. The response value is proportional to the mass of a component entering the detector per unit of time. II. Features 1.The system piping is imported clean stainless steel pipe to reduce adsorption; 2.The system adopts full calibration to eliminate the influence of a small amount of adsorption on the measurement. 3.The analytical method is consistent with the calibration method, and it is detected by GC-FID method. 4.The whole process of high-temperature 180 °C with hot sample transmission, high temperature FID detection, to avoid high-boiling VOCs adsorption and condensation, more accurate measurement; 5.Continuously run maintenance-free design, start-up automatic cycle operation, real online analysis; 6.The whole flow path insulation design is 180°C, no water vapor condensation, to avoid corrosion degradation of parts, suitable for high temperature / high humidity / corrosive conditions; 7.Non-methane total hydrocarbons and simultaneous monitoring of benzene, toluene, xylene and other components III. Application fields It is used for on-line monitoring of organized organic waste gas emissions from chemical, printing, pharmaceutical, rubber, spray coating, electronic semiconductor, synthetic leather, organic waste gas recovery.
I. Introduction SS-2000-HG mercury emission monitoring system for flue gas is a combination of the world's advanced online analytical technology and China's environmental protection monitoring technology. It is based on the company's many years of accumulated experience in the field of gas analysis and adopts multi optical path UV atomic absorption method. The system consists of a sampling unit with heat trace, a valence converter, and an analysis and processing unit. It can realize continuous on-line automatic and accurate measurement of mercury from fixed sources of flue gas. The system uses Cold Vapor Atomic Absorption Spectrometry (CVAAS), which is the most mature and stable analytical method among many mercury analysis methods. This method can only analyze the elemental mercury (Hg0) in the vapor state. CVAAS is based on the principle of selective absorption of ultraviolet light with a wavelength of 253.7 nm using mercury vapor. The low-pressure mercury lamp emits ultraviolet light through a gas chamber filled with sample gas and directly monitors the transmitted light intensity with an optoelectronic receiver to calculate the absorbance. Within a certain concentration range, the mercury concentration is proportional to the absorbance, which is in accordance with Beer-Lambert law. At the same time, oxygen, temperature, pressure, flow rate, humidity and other parameters can be monitored. Charts are generated through the data acquisition and processing system, and data remote transmission interfaces are reserved. The monitoring data can be transmitted to all levels of environmental protection according to the HJ/T212 national standard communication protocol. department. II. Specifications 1. Detection method: Cold Vapor Atomic Absorption (CVAAS) 2. Measurement range: 0-100g/m3, 0-500g/m3 3, detection limit: 0.05g/m3 4, response time T90:
1. Introduction SPF223 sampling probe used in the systems for gas sampling, filtration and heating function, can effectively prevent the condensation of gas samples collected, unique structural design allows for a sampling system is more reliable, more small gas loss rate to ensure system stability and true 2. Features The device and the part of the sample contact are all made of 316L stainless steel material processing, high temperature resistance, strong corrosion resistance. With rain cover can do outdoor work environment. Adopting the isothermal heating body, in the design of compact structure, stable heating temperature. Filter element is made of sintering titanium alloy which has big filter area, high accuracy, small air lock, and can be replaced from the device pulled out completely, simple operation, without tools, greatly shorten the maintenance time, and reduce the labor intensity. Optionally providing a reusable purging / calibration port. Operation is simple, with low temperature alarm. The filter replacement without tools. The switch is convenient, with locked cover. High efficiency filter cleaning system. 3. Specifications Maximum sampling temperature: 300 Maximum working pressure: 6BAR Sampling chamber heating temperature: 140 (factory set, adjustable temperature) Power supply: 220VAC 50/60Hz max 500W Environment temperature: -20~80 Maximum dust load: 100g/m3 Filter accuracy: 5μm (other precision optional, 1-10 m) Filter size: 150*35mm Purging gas interface: OD8/6mm connector Sample gas outlet: OD8/6mm connector The sampling pipe containing: 25 * 1200mmlength is optional Flange size: DN65PN6 The installation of accessories: installation flange & fixing bolts & flange sealed pad
1. Introduction Sampling heated tube is one important part of the environment protection monitoring system, widely used for SCNR, SNR, waste incineration and other emission sampling. 2.Specifications Gas pipe material: PVDF, PTFE, 316L, PFA Black knit anti-scratch layer Air tube size: OD8/6mm,OD6/4mm (optional) Power consumption: 10-100W/M (depending on heating tempeature) Power supply: 220VAC 50HZ Sample gas heated temperature50~220 No breakpoint and cold point all the way Using temperature controller to control heating temperature precisely Excellent heat preservation effect Heated tube external diamete: OD38±2mmOD42±2mm Minimum bending: 0.5m Lowest working temperature: -20 Minimum installation distance: vertical 2m, horizonal 4m.
1. Introduction ECM1/2 series gas condenser is used in the sample gas pretreatment system to remove moisture from the sample. Precise measurement of gas composition means sample gas under dew point can be stable even under bad environment. ECM condenser is to improve measurement precision and life span. 2. Features Perfect design, only one component: compressor Two-loop system Two-loop heating exchanger Constant temperature adjusting system with patent With temperature display Temperature alarm Dew point stability: 0.2 Environment protection refrigeration without Freon 3. Specifications 1.Ambient Temp045 6.Dew point Temp4Factory set 2.Temp Control Accuracy±0.27.Power supply220VAC 50/60Hz 3.Gas Inlet Temp80 8.Voltage300V, fuse10A 4.Gas flow rate300L/h 9.IP gradeIP20 5Warming-up Time15 min 10.Installationwall mounted or 19?�rack