NPF "META-KHROM"

NPF "META-KHROM"

73 products
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71 products
GC-MS CHROMATOGRAPH SYSTEM "CRYSTALLUX-4000M" WITH MSD "MAESTRO-AMC"
GC-MS CHROMATOGRAPH SYSTEM "CRYSTALLUX-4000M" WITH MSD "MAESTRO-AMC"
GC and MS interface Capillary direct interface, independent temperature control (50-300 0 S) The filament of the cathode (filament) is a double filament for electron ionization (EI), the maximum current is 300 µA. Double thread increases the service life. Two independent switchable cathodes Temperature of the ion radiation source Independent heating and temperature control, maximum value 350 0 C (adjustable) Transparent polymer window on the front panel there is no visual control of the state of the cathodes Ion radiation source Lenses made of ceramic and with a patented coating enhance the focusing effect, which significantly increases the efficiency of ionization, an electrode with a patented reflective surface improves focusing Tubular lenses enhance the focusing effect, which significantly increases the ionization efficiency, an electrode with a patented reflective surface improves focusing Energy ionization 10-100 eV The mass analyzer is a high-precision quadrupole with a filter that reduces the contamination of the main quadrupole and eliminates the influence of photonic noise on the analysis High-precision molybdenum quadrupole with prequadrupole (replaceable), which reduces the contamination of the main The detector is an electronic multiplier with a high-voltage secondary emiting electrode (dinode) of high energy 3D geometry to improve sensitivity. The amplifier of weak voltage signals effectively reduces network noise, improves the signal-to-noise ratio during electron ionization and provides a large linear dynamic range. It is possible to install an additional detector Mass range 2.0-1200 a.e.m. 1.5-1050 a.e.m. Mass stability Less than 0.1 a.e.m. for 48 hours Signal ratio noise At least 1500:1 with mass to charge (m/z) 272 At least 150:1 with mass to charge (m/z) 272 (with signal filtering 500:1) Linearity Not less than 107 Not less than 106 Precision < 5% RSD 9n=7, SIM, 100 fg OFN) no System sensitivity IDL < 10 fg (SIM mode, OFN according to m/z 272) no Maximum scanning speed 20000 a.m./s 11000 a.m./s Operating modes Scap, SIM, Scan/SIM, MicroScan and the innovative Flexible-SIM algorithm for finding trace amounts of components no Setting Automatic setting MSD on the PFTBA spectrum and m/z control of oxygen, nitrogen and water no Pumping pump Oil plate-rotor vacuum pump with a pumping speed of 66 l/min Oil plate-rotor vacuum pump with a pumping speed of 165 l/min Turbo pump Turbo molecular pump with magnetic levitation, with a pumping speed of 85 l/s (can be replaced by 300 l/s) Turbo molecular pump with magnetic levitation, with a pumping speed of 71 l/s (possible replacement by 260 l/s) RF detector power Allows you to use three points for calibration in the entire mass range and get good linearity in scanning mode Software Rus./ Eng. The ability to search and extract structural, graphical formulas. Library of 240,000 spectra. The ability to isolate individual components from overlapping peaks. In addition to spectra and compounds, the library contains the element name, formula, molecule structure, molecular weight, CAS number, analysis conditions, synonyms, and estimated or measured retention readings. The NIST EI library contains: drugs, metabolites and poisons, pesticides and fungicides, organic substances present in soil, water and air, amino acids, di- and tripeptides, common sample pollutants, common analytical derivatives, etc. Ethernet interface, remote access function implemented Touch screen Display of parameters and monitoring of system status no Built -in power supply Allows you to turn off the detector in normal mode if there is no power supply violation
Produced in: Yoshkar-Ola, Mari El
LABORATORY CATALYTIC PLANTS FOR PETROCHEMICALS
LABORATORY CATALYTIC PLANTS FOR PETROCHEMICALS
Catalytic reforming is used to produce high-octane components of automobile gasoline, flavored concentrate for the production of individual aromatic hydrocarbons, as well as technical water. Isomerization of paraffin hydrocarbons is used to increase the octane number of C5 - C6 oil fractions by converting paraffins of normal structure into their isomers having a higher octane number.oroda. Hydrotreating of distillates is used to improve the quality and stability of light distillates, raw materials of catalytic cracking, as a result of the use of reactions of destructive hydrogenation of organosulfur compounds and hydrogenation of unsaturated hydrocarbons. Catalytic cracking is used to obtain additional amounts of light petroleum products, namely high-octane gasoline and diesel fuel, by decomposition of heavy oil fractions in the presence of a catalyst. Alkylation of isobutane with olefins is used to produce gasoline fractions with high stability and detonation resistance using the reaction of interaction of isobutane with olefins in the presence of a catalyst. Polymerization (oligomerization) of olefins is used to produce low molecular weight polymers (oligomers) of propylene and butylene used as motor fuel or raw materials for petrochemical synthesis. Hydrocracking is used to obtain an additional amount of light petroleum products by catalytic decomposition of heavy raw materials in the presence of hydrogen. Thermal cracking and Visbreaking is used to obtain in the mode of thermal cracking – additional amounts of light petroleum products by thermal decomposition of residues from oil distillation, in the mode of visbreaking – improving the quality of boiler fuel Coking is used to produce petroleum coke and an additional amount of light petroleum products from heavy residues. The raw materials are tar, thermal cracking residue, heavy gas oil. The products are, for example, petroleum coke.
Produced in: Yoshkar-Ola, Mari El
Thermal Conductivity Detector(accident)
Thermal Conductivity Detector(accident)
The most versatile detector with two sensitive elements and automatic protection against their burnout. DTP has a significantly lower sensitivity compared to PID, but it is indispensable for determining permanent gases (helium, hydrogen, oxygen, nitrogen, argon, etc.). A distinctive feature is the extended dynamic range, in fact from 20 MV to 20 V and full automation of measurement, including current setting, compensation of the initial zero offset, switching measurement limits. It is available in several modifications, both in terms of volume and execution of sensitive elements. 'The level of fluctuation noise is up to 20 MV, the maximum signal is up to 20 V. Technical characteristics: 4.010710 g/ml of propane or teptan, 4.0 *10`10 g/ml of hydrogen
Produced in: Yoshkar-Ola, Mari El
INSTALLATION FOR DETERMINING THE RESISTANCE OF MICROSPHERICAL CATALYSTS TO ABRASION ASTM D5757-11
INSTALLATION FOR DETERMINING THE RESISTANCE OF MICROSPHERICAL CATALYSTS TO ABRASION ASTM D5757-11
The unit is designed to determine the so-called Davison index (the ratio of catalyst fractions with a particle size of less than 20 microns before and after analysis), which characterizes the abrasion resistance of microspherical catalysts of the cracking process in a fluidized bed. The installation is included in the register of testing facilities.
Produced in: Yoshkar-Ola, Mari El
AUTOSAMPLER "NT3100A": FUNCTIONS
AUTOSAMPLER "NT3100A": FUNCTIONS
The autosampler is used to automate the process of entering samples of liquid consistency into chromatographs of the line "Kristallux", "Crystal", series "Color", LHM. The autosampler is compact in size and easy to operate. The device is compatible with different models of chromatographs and is suitable for many studies. When the device is working with the Crystallux series chromatographs, the autosampler can be controlled using the chromatographic equipment software, while no additional programs are required.
Produced in: Yoshkar-Ola, Mari El
WATER PURIFICATION DEVICES: WATER TREATMENT SYSTEM "SPECTRUM OSMOSIS"
WATER PURIFICATION DEVICES: WATER TREATMENT SYSTEM "SPECTRUM OSMOSIS"
The water treatment system (hereinafter referred to as the system) is used for the preparation of water used in hydrogen generators, for the preparation of solutions, chromatographic samples, capillary electrophoresis, high-performance liquid chromatography (HPLC), etc. analyzers requiring the use of high purity water. The system is connected directly to the municipal water supply line and allows obtaining high–purity deionized water with a specific electrical conductivity of 0.06 - 0.1 mcm/cm. The device uses multi-stage water purification. Technical specifications System output capacity, l/h not less than 6 Specific electrical conductivity of water, mcm/cm not more than 0.06 – 0.1 Power supply - single-phase AC 220V, 50/60 Hz Maximum power consumption, kW 0.1 Dimensions (W x D x H), mm 200 x 560 x 440 Weight, not more than 20 kg
Produced in: Yoshkar-Ola, Mari El
GAS FLOW SHAPER
GAS FLOW SHAPER
The gas flow shaper (FGP) is designed to automate the old fleet of chromatographs of the LHM type, model-3700, "Color" series, etc. in terms of setting and regulating the flow and pressure of both the carrier gas and auxiliary gases. The FGP has a flexible structure and provides regulation of gas flows from two to four independent gas flow channels and up to three pressure channels. The gas pressure at the inlet is (0.4 ± 0.04) MPa. The operating flow ranges of the carrier gas are from 3 to 250 ml/min with a discreteness of 1 ml/min. The ability to specify the type of gas (nitrogen, helium, hydrogen, argon, air). The ranges of hydrogen consumption are from 3 to 250 ml/min with a discreteness of 1 ml/min. The air flow ranges from 10 to 750 ml/min with a discreteness of 1 ml/min. Pressure ranges — from 0.001 to 0.40 MPa with a discreteness of 0.0001 MPa. Deviation of the carrier gas flow rate from the average value of ± 1.5% in the flow range from 50 to 100 ml/min and ± 0.5 ml/min in the flow range from 3 to 50 ml/min. The relative deviation of the average steady-state gas flow rate from the set value in the range: from 3 to 100 ml/min. ± 2.5%, but not less than 0.5 ml/min.; from 100 to 200 ml/min. ± 5%; from 200 to 800 ml/min. ± 10%. Electric power supply from a single—phase AC network with voltage from 187 to 242 V, frequency (50 ± 1) Hz, operating mode - continuous. Power consumption, no more than — 30 VA. Overall dimensions of the FGP (width × depth × height), no more than 160 × 370× 210 mm. Weight, not more than — 8 kg.
Produced in: Yoshkar-Ola, Mari El
GAS PANEL
GAS PANEL
The gas distribution panel (hereinafter referred to as the panel) is designed to connect gas nodes and blocks of various analytical instruments, including chromatographs to shop gas lines. technical specifications Inlet pressure, not more than 0.8 MPa. The output pressure is from 0 to 0.4 MPa. Gas flow rate through each channel, not less than — 1000 cm3/min.
Produced in: Yoshkar-Ola, Mari El
UKK-6 CRYOCONCENTRATION UNIT
UKK-6 CRYOCONCENTRATION UNIT
The UKK-6 cryoconcentration unit (hereinafter referred to as UKK-6) is an integral part of an automated chromatographic complex based on the Kristallux-4000M gas chromatograph and is designed to control the quality of 6.0 grade helium and 6.0 grade hydrogen for the presence of micro-impurities of Ne, CH4, O2+Ar, N2, CO, CO2 and H2.AUKK-6 concentrates gaseous impurities (Ne, H2, O2+Ar, CH4, CO and CO2) in helium and hydrogen in sorption columns at liquid nitrogen temperature, followed by focusing and thermal desorption of accumulated impurities and introducing them into a gas chromatograph to determine their qualitative and quantitative composition. technical specifications The analyzed gas is Helium, hydrogen Temperature of sorption columns during adsorption, 0C -196 Maximum temperature of thermal desorption, 0C 400 The pressure of the analyzed gas, not more than 0.4 MPa Inlet gas pressure, not more than 1.0 MPa Total analysis time, no more than 17 minutes Volume of a vessel with liquid nitrogen, l 6 Automatic replenishment (topping up) of liquid nitrogen before each concentration cycle - Supply voltage 230-240V, 50-60Hz Power consumption, no more than W0C 2000 Overall dimensions (WxDxH), mm 30 Weight, not more than 0.02-1.7 kg
Produced in: Yoshkar-Ola, Mari El
THE DEVICE FOR ACHIEVING BALANCE
THE DEVICE FOR ACHIEVING BALANCE
When analyzing gases dissolved in transformer oil using the ARP method (equilibrium vapor analysis), mixing of the contents of the syringe with oil is used to accelerate the extraction of gases (to achieve an equilibrium distribution of gases dissolved in oil between the liquid and gas phases). For this purpose, as well as automation of the mixing process, a special autonomous device for achieving equilibrium is produced. technical specifications The rotation speed of the syringe drum is 30 rpm./min. The rotation time (determined by the internal timer, after pressing the "Start" button) is 10 minutes. The number of syringes placed is 4. The volume of syringes is 20 or 50 ml. Power consumption, no more than — 14 VA. Overall dimensions, no more than 210×280×270 mm. Weight, not more than — 5 kg.
Produced in: Yoshkar-Ola, Mari El
DEVICE FOR TESTING FOR FRICTION AND ABRASION OF CATALYSTS "PTI-1"
DEVICE FOR TESTING FOR FRICTION AND ABRASION OF CATALYSTS "PTI-1"
Meta-Chrome Research and Production Company LLC presents a multifunctional device "PTI-1", which allows to determine the resistance of granular catalysts and adsorbents to friction and abrasion according to SPENCE and ASTM D4058 standards. The error of maintaining the speed, rpm: ± 0.3 Digital Control (controller) Power Supply: 100-240 V, 50/60Hz Power consumption: 18W Permissible sample weight: No more than 100 g. Device weight: 12.5 kg with cylindrical nozzle 10.8 kg with drum nozzle Overall dimensions with cylindrical nozzle, cm: 38,9x31,4x45,9 Overall dimensions with a drum nozzle, cm: 48,5x30,4x45,4 Dimensions of the sieve cells according to the ASTM method, mm: ASTM No20 0.85 The dimensions of the sieve cells according to the SPENCE method, mm: 2/3 of the minimum size of the granules. At the request of the customer. Scales on request of the customer Operating conditions of UHL 4.2 Ambient temperature from 10 ° C to 35 ° C Relative humidity of the air at a temperature of 25C, % no more than 80% Atmospheric pressure from 84 to 107 kPa (from 630 to 800 mmHg)
Produced in: Yoshkar-Ola, Mari El
LABORATORY INSTALLATION OF SELECTIVE HYDROGENATION
LABORATORY INSTALLATION OF SELECTIVE HYDROGENATION
The bench laboratory unit is designed to test the adsorption properties of silica gels, protective layers and selective hydrogenation catalysts. Ambient temperature from +10 to +35C; The relative humidity of the air is not more than 80% at a temperature of 25C;. Power supply – three- or single-phase AC network with a voltage of 220 V ± 10% with a frequency of 50 Hz.; air 0.4 — 0.8 Mpa. The average service life of the installation is 5 years. TECHNICAL CHARACTERISTICS Operating pressure range, MPa 0÷6 Reactor operating temperature range, 0C 20÷600 Reactor inner diameter, mm 20 Internal length of the reactor, mm 690 A thermocouple pocket with a movable filter and a support grid fixed on it to regulate the volume of the tested catalyst. Length of the isothermal zone, mm 300 The type of furnace is Casement Number of thermostatically controlled independent zones 4 The power consumed by each of the four independent thermostatic zones, W ≤ 400 The discreteness of the temperature setting, 0C 0.1 Flow range C2 H4, l/min 0,02÷1,7 Flow range C3 H6, l/min 0,02÷1,7 Flow range H2, l/min 0÷0.02 Flow range N2, ml/min 0.02÷1.7 Actuation pressure of mechanical safety valves, 6,8 MPa Supply voltage 220V 50Hz Power consumption not more than, kW 5 The discreteness of the temperatures and flow rates displayed on the displays is 0.01 Installation weight, kg 230 Overall dimensions of the installation, mm 1680x1480x580 Length of supply gas pipelines, m 20
Produced in: Yoshkar-Ola, Mari El