PSP104型智能气相色谱仪

PSP104型智能气相色谱仪

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2022-07-21 16:07:32
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PSP104型智能气相色谱仪执行标准:GB/T17623-1998《绝缘油中溶解气体组分含量的气相色谱测定法》GB/T7252-2001《变压器油中溶解气体分析和判断导则》DL/T722-2000《变压器油中溶解气体分析和判断导则》主要特点1、该仪器采用互联网通信技术,可轻松组成局域网

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PSP104型智能气相色谱仪
执行标准:GB/T 17623-1998《绝缘油中溶解气体组分含量的气相色谱测定法》
GB/T 7252-2001《变压器油中溶解气体分析和判断导则》
DL/T 722-2000《变压器油中溶解气体分析和判断导则》
主要特点
1、 该仪器采用互联网通信技术,可轻松组成局域网;互联网实现远距离数据传输、远程控制、远程诊断、程序可进行自动升级。
2、 仪器网内部设计3个独立的连接进程,可方便单位主管和上级单位实时监控设备的运行和数据结果。
3、 一台工作站可同时支持99台仪器的工作,数据分析实现对被测装置的控制,大程度地降低了用户投资的成本。
4、 仪器可支持自动进样器,自动顶空进样器,裂解进样器等多种进样方式;可定时自动采样分析,实现无人值守的在线分析。
5、 具有快速升降温结构,可实现80℃/分的升温速率;实现室温环境下的工作;在有液氮条件下,支持-80℃至450℃的宽范围的温度控制。
6、 仪器采用5.7英寸彩屏显示,可同时显示两路谱图;8路流量数字显示;16阶程序升温。.
7、 可多台仪器组合,实现一次进样多种数据同时得到多维的色谱分析。
8、 仪器可自动识别用户所配检测器的个数。
9、 仪器可同时装有两个热导检测器,并具有较高灵敏度(S≥10000mv.ml/mg),满足广大用户更高层次的需要。
10、*的气路流程,可实现氢焰检测器和热导检测器的同时使用。
技术参数
1、温控范围:室温~450℃,在有液氮条件下, -80℃~450℃,增量1℃,精度±0.1℃
程序升温:16阶 升温速率0.1~80℃/min
通信接口:以太网, IEEE802.3
2、FID: Mt≤5×10-12g/s(正十六烷)
Rn≤5×10-14A
Rd≤1×10-13A/30min
线性范围:≥106
TCD:S≥10000mv.ml/mg(C6H6)
Rn≤10uv
Rd≤30uv/30min
线性范围:≥104
FPD: Mt≤2×10-11g/s(中的硫)
Rn≤50uv
Rd≤20uv/30min
线性范围:≥105
ECD: Mt≤3×10-14g/ml(R-666)
Rn≤15uv
Rd≤20uv/30min
放射源Ni63
NPD: Mt≤8×10-13g/s(偶氮苯);≤5×10-13g/s()
Rn≤2×10-12A
Rd≤2×10-13A/30min
线性范围:≥105

C小检测浓度:
H2:1ppm;O2:5ppm;N2:5ppm;CO≤0.2ppm
CO2≤0.5ppm;CH4≤0.2ppm;C2H2≤0.1ppm
SO2≤0.2ppm;H2S≤0.2ppm
PSP104 intelligent gas chromatograph
Executive Standard : GB / T 17623-1998 " gas components dissolved in insulating oil content by gas chromatography method ."
GB / T 7252-2001 " transformer oil dissolved gas analysis and assessment guidelines"
DL / T 722-2000 " transformer oil dissolved gas analysis and assessment guidelines"
Key Features
1, this instrument uses Internet communication technologies can be easily LAN components ; Internet for long-distance data transmission, remote control, remote diagnostics , procedures can be automatically upgraded.
2 , the instrument internal network design three separate connection process can be easily Unit Head and higher unit real-time monitoring equipment operation and data results.
3 , a workstation can support the work of 99 instruments , data analysis to achieve control of the device under test , minimizing the user cost of investment .
4 , the instrument can support autosampler , automatic headspace sampler, a variety of pyrolysis injector injection mode ; sampling and analysis can be timed automatic , unattended on-line analysis .
5, with rapid heating and cooling structure can be realized 80 ℃ / min heating rate ; room-temperature of the work environment ; conditions in a liquid nitrogen , -80 ℃ to 450 ℃ support a wide range of temperature control.
6, the instrument uses a 5.7 ​​inches color display , which can display two spectra ; 8-way traffic figures ; 16-step temperature programming . .
7, can be more than one instrument combination, to achieve a single injection of multiple data simultaneously to get multidimensional chromatography.
8 , the instrument can automatically identify the user with the number of detectors .
9 , the instrument can also equipped with two thermal conductivity detector , and has a high sensitivity (S ≥ 10000mv.ml/mg), a higher level to meet the needs of our customers .
10 , advanced gas flow can be realized hydrogen flame detector and thermal conductivity detector simultaneously.
Technical parameters
1 , temperature range : room temperature ~ 450 ℃, in a liquid nitrogen conditions , -80 ℃ ~ 450 ℃, increase 1 ℃, accuracy ± 0.1 ℃
Temperature program : 16-step heating rate of 0.1 ~ 80 ℃ / min
Communication Interface: Ethernet , IEEE802.3
2, FID: Mt ≤ 5 × 10-12g / s ( n-hexadecane )
Rn ≤ 5 × 10-14A
Rd ≤ 1 × 10-13A/30min
Linear range : ≥ 106
TCD: S ≥ 10000mv.ml/mg (C6H6)
Rn ≤ 10uv
Rd ≤ 30uv/30min
Linear range : ≥ 104
FPD: Mt ≤ 2 × 10-11g / s ( methyl parathion in sulfur )
Rn ≤ 50uv
Rd ≤ 20uv/30min
Linear range : ≥ 105
ECD: Mt ≤ 3 × 10-14g/ml (R-666)
Rn ≤ 15uv
Rd ≤ 20uv/30min
Radioactive Ni63
NPD: Mt ≤ 8 × 10-13g / s ( azobenzene ); ≤ 5 × 10-13g / s ( malathion )
Rn ≤ 2 × 10-12A
Rd ≤ 2 × 10-13A/30min
Linear range : ≥ 105
C Minimum detectable concentration:
H2: 1ppm; O2: 5ppm; N2: 5ppm; CO ≤ 0.2ppm
CO2 ≤ 0.5ppm; CH4 ≤ 0.2ppm; C2H2 ≤ 0.1ppm
SO2 ≤ 0.2ppm; H2S ≤ 0.2ppm
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