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Shanghai Fanwei Instrument Equipment Co., Ltd

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Portable SF6 decomposition product analyzer

NegotiableUpdate on 05/06
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Overview

The FV3380 portable SF6 decomposition product analyzer uses gas chromatography to separate and detect more than ten decomposition products in sulfur hexafluoride one by one. The gas chromatograph is equipped with dual PDHID detectors. By using automatic valve cutting, up to a dozen different decomposition products are introduced into different chromatographic columns for analysis and detection. Then, a combination of standard gases is used to quantitatively determine the content of each component through external standard method, with a detection limit of ppb level. This helps power analysts to monitor and diagnose faults in sulfur hexafluoride electrical equipment. $r $n adopts VALCO * 316L internal coating sulfur passivation anti adsorption tube for the entire gas path

Product Details

FV3380Portable SF6 decomposition product analyzerThe independently developed valve column integrated heating device can reduce the connection pipeline between the valve and the column, decrease dead volume, increase sensitivity, and reduce blowing time.
FV3380Portable SF6 decomposition product analyzerThe unique pressure sensing automatic sampling system has a higher degree of automation. Can simplify the injection operation process and reduce personnel errors in injection.
SF6 gas is mainly used in the power industry. SF6 gas is used for insulation and/or arc extinguishing in four types of electrical equipment; SF6 circuit breakers and GIS (referring to SF6 enclosed composite electrical equipment, internationally known as "Gas Insulated Switchgear"), SF6 load switchgear, SF6 insulated transmission pipelines, SF6 transformers, and SF6 insulated substations. 80% is used for high and medium voltage electrical equipment. During operation in power equipment, electric arcs can cause sulfur hexafluoride to decompose into various other compounds such as hydrogen (H2), oxygen (O2), nitrogen (N2), carbon tetrafluoride (CF4), methane (CH4), carbon monoxide (CO), carbon dioxide (CO2), hexafluoroethane (C2F6), octafluoropropane (C3F8), sulfuryl fluoride (SO2F2), thionyl fluoride (SOF2), sulfur dioxide (SO2), hydrogen sulfide (H2S), carbonyl sulfide (COS), carbon disulfide (CS2), etc. These compounds contain toxic and harmful gases that not only affect equipment operation but also pollute the environment and cause casualties. Therefore, the detection of operating gas has become one of the important tasks for units using sulfur hexafluoride as insulation gas in power equipment.
Reference standard:
GB/T 12022-2014 "Industrial Sulfur Hexafluoride"
GB/T 18867-2014 "Sulfur Hexafluoride Gas for Electronic Industry"
GB/T 28726-2012 Gas Analysis - Helium Ionization Gas Chromatography Method
DL/T 1205-2013 Test Method for Decomposition Products of Sulfur Hexafluoride Electrical Equipment
Q/CSG114002-2011 Preventive Testing Regulations for Power Equipment
GB 8905-2012 "Guidelines for Gas Management and Inspection in SF6 Electrical Equipment"
IEC60376-2005
Specification of technical grade sulfur hexafluoride(SF6)for use in electrical equipment
——Technical specification for sulfur hexafluoride used in power equipment
IEC60480-2004
Guidelines for the checking and treatment of sulfur hexafluoride (SF6) taken from electrical equipment and specification for its re-use
——Guidelines for Inspection and Handling of Sulfur Hexafluoride (SF6) Removal from Electrical Equipment and its Reuse Specification
——2007 edition, Guidelines for the Detection and Handling of Sulfur Hexafluoride (SF6) Extracted from Electrical Equipment

Instrument features:
1. Main functional requirements
★ 1.1 New networked control and transmission, achieving real-time monitoring and data collection by multiple people:
The 10/100M adaptive Ethernet communication interface with technology * is adopted, and the IP protocol stack is built in. The IP address of the instrument is set, so that the instrument can realize remote control of the chromatograph, spectrogram collection and data transmission through the enterprise's internal LAN and Internet. Three independent connection processes are designed inside the instrument, which can be connected to the local processing (laboratory technician), unit supervisor (team leader), and superior supervisor (special duty, chief engineer, etc.) through the Internet, which can facilitate multiple people to monitor the operation of the instrument and analyze data results in real time, and improve work collaboration and timeliness.
★ 1.2 Networked chromatography workstation, which enables one computer to simultaneously monitor N gas chromatographs
The NETChromTM workstation equipped on the FV-3380 instrument can support multiple chromatographs to simultaneously process and control data, reaching the industry's highest level, effectively solving the problem of too many laboratory computers and freeing up experimental space. The analysis parameters of the sulfur hexafluoride analyzer, including carrier gas pressure, sample pressure, temperature, etc., are set or displayed through a workstation, which is easy to operate and provides real-time monitoring of the analysis conditions.
★ 1.3 High sensitivity helium ionization detector (PDHID)
The system needs to be equipped with two helium ionization detectors (PDIHID), for H2、O2、N2、CH4、CF4、CO、CO2、C2F6、C3F8、SO2F2、SOF2、SO2、H2S、COS、CS2 All 15 decomposition products have high linear response, and all decomposition product detection indicators can be detected at the ppb level.
★ 1.4 Adopting central cutting technology to achieve high automation of the instrument:
Using 5 VALCO automatic drive valves and 6 chromatographic columns for central cutting and blowback technology, the injection, switching, column selection, and reflux processes are automatically controlled through the time program set by the workstation. A single injection can complete the separation, selection, and detection of complex samples.
★ 1.5 Digital electronic zeroing technology enhances the anti-interference ability of instruments:
The detector signal zeroing adopts electronic zeroing technology, using high-precision digital circuits for base current compensation to achieve electronic adjustment of output signal level, reducing parasitic parameters and thus having strong anti-interference ability.
1.6 Automatic gas cut-off protection function to ensure the safe operation of the detector
Equipped with intelligent gas cut-off protection function, when the carrier gas pressure is below the safety threshold, the system will automatically cut off the detector voltage and the chromatograph will automatically cool down to protect the detector and chromatographic column from damage.
★ 1.7 Multi column Box System
The system is equipped with four independent column box temperature control units, using one main column box and three auxiliary column boxes to independently control the temperature of six chromatographic columns. Separate samples and activate different chromatography columns separately in different column boxes to avoid the problem of disassembling and assembling chromatography columns during detection and maintenance work.
★ 1.8 Industrial 10 inch color screen, Chinese LCD display
The display window adopts a 10 inch industrial color LCD screen design, which displays more comprehensive information, the interface operation is more reasonable, the display is intuitive, and the operation is convenient;
★ 1.9 standard gas
The instrument quantification adopts the mixed standard sample external standard method, and the mixed standard gas should consist of at least the following components in a set of two bottles. The range of standard gas components should be controlled between 1-100ppm:
Hydrogen (H2), oxygen (O2), nitrogen (N2), methane (CH4), carbon tetrafluoride (CF4), carbon monoxide (CO), carbon dioxide (CO2), hexafluoroethane (C2F6), octafluoropropane (C3F8), sulfuryl fluoride (SO2F2), thionyl fluoride (SOF2), sulfur dioxide (SO2), hydrogen sulfide (H2S), carbonyl sulfide (COS), carbon disulfide (CS2)
2. Technical indicators
2.1 Technical Performance:
Analysis cycle:<20min
Maximum error:<3%
Stable time:<30 minutes
Working environment: -40~50 ℃
On site continuous detection capability: It can be moved for detection when turned on, and can run continuously for no less than 10 hours
★ 2.2 Helium Ionization Detector (PDIHID):
Discharge mode: Pulse discharge
Baseline noise: ≤ 0.1mv
Baseline drift: ≤ 0.5mv/30min
Detection limit: ≤ 1.0 × 10-11g/ml
2.3. Carrier gas purifier:
Purified gases: He, Ar, Ne, Kr, Xe, Rn
Maximum operating pressure: 1000Psi
Removing gases: H2, O2, N2, CO, CO2, CH4, H2O, NO, NH3, CF4, etc
Residual concentration: ≤ 10pppb
★ 2.4 Temperature control indicators:
Temperature control range: 4 ℃ -450 ℃ at room temperature
Temperature control accuracy: ± 0.01 ℃
Temperature controlled area: 8 channels
Program heating order: 8 orders
Program heating rate: 0.1 ℃ -80 ℃
Cooling rate: within 7 minutes (400 ℃ -50 ℃)
Detector: 4 ℃ -450 ℃ at room temperature with an accuracy of ± 0.01 ℃
2.5. Other parameters: size, weight, power supply
Dimensions: Width mm x Height mm x Depth 200mm
Weight:~10kg
Power supply: 220V ± 22V, 50Hz Power: ≥ 2kW
2.6 Communication Interface
Ethernet: IEEE802.3