GOST 5828-77
ГОСТ 5828-77
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Reagents. Dimethylglioxime. Specifications
Реактивы. Диметилглиоксим. Технические условия
Status: Effective - Supersedes. The limitation of the effectiveness period has been lifted: Protocol No. 3-93 of the IGU dated 03.03.93 (IUS 5-6-1993)
The standard applies to the reagent - dimethylglyoxime, which is a crystalline powder from white to white with a yellowish tinge, almost insoluble in cold water, slightly soluble in hot water, readily soluble in ethyl alcohol and ether.
Стандарт распространяется на реактив - диметилглиоксим, представляющий собой кристаллический порошок от белого цвета до белого с желтоватым оттенком, почти нерастворимый в холодной воде, малорастворимый в горячей воде, легкорастворимый в этиловом спирте и эфире.
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Format: Electronic (pdf/doc)
Approved: Gosstandart of the USSR,
6/16/1977
SKU: RUSS51903
The Product is Contained in the Following Classifiers:
PromExpert »
SECTION I. TECHNICAL REGULATION »
V Testing and control »
3 Activities of testing laboratories »
3.2 Technical equipment of testing laboratories »
3.2.3 Chemical reagents and highly pure substances »
3.2.3.1 Reagents »
ISO classifier »
71 CHEMICAL INDUSTRY »
71.040 Analytical Chemistry »
71.040.30 Chemical reagents »
National standards »
71 CHEMICAL INDUSTRY »
71.040 Analytical Chemistry »
71.040.30 Chemical reagents »
National Standards for KGS (State Standards Classification) »
Latest edition »
L Chemical products and rubber-asbestos products »
L5 Reagents and highly pure substances »
L52 Organic reagents »
National Standards for OKSTU »
CHEMICAL REAGENTS AND HIGH PURITY SUBSTANCES »
Organic nitrogen-containing compounds »
As a Replacement Of:
GOST 5828-67: Dimethylglioxime
The Document References:
GOST 18300-87: Technical rectified ethyl alcohol. Specifications
GOST 18995.4-73: Organic chemical products. Methods for determination of melting point interval
GOST 3760-79: Reagents. Ammonia water. Specifications.
GOST 3885-73: Reagents and superpure substances. Regulations of acceptance, sampling, packing, marking, transportation and storage
GOST 4159-79: Reagents. Iodine. Specifications
GOST 4465-74: Reagents. Nickel (II) sulphate, 7-aqueous. Specifications
GOST 4517-87: Reagents. Methods for preparation of accessory reagents and solutions used for analysis
GOST 61-75: Reagents. Acetic acid. Specifications
The Document is Referenced By:
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GOST 11739.16-90: Aluminium casting and wrought alloys. Methods for determination of nickel
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GOST 12564.1-83: Aurum-palladium-platinum alloys. Methods for the determination of aurum, palladium
GOST 1293.13-83: Lead-antimony alloys. Methods for the determination of nickel
GOST 13047.1-81: Nickel. Methods for the determination of nickel
GOST 13047.2-2002: Nickel. Cobalt. Methods for determination of nickel in nickel
GOST 13047.2-2014: Nickel. Cobalt. Method for determining nickel in nickel
GOST 13047.5-2002: Nickel. Cobalt. Methods for determination of nickel in cobalt
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GOST 1367.6-83: Antimony. Methods for the determination of nickel
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GOST 17818.12-90: Graphite. Method for determination of nickel
GOST 1953.5-79: Tin bronze. Methods for the determination of nickel
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GOST 23859.6-79: Bronze fire-resistance. Method for the determination of nickel
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GOST 24295-80: Enameled steel ware. Analysis Test methods solutions for elements release
GOST 24978-91: Copper-zinc alloys. Methods for determination of zinc
GOST 25278.16-87: Alloys and foundry alloys of rare metals. Methods for determination of rhenium
GOST 2604.8-77: Alloy cast iron. Methods for determination of nickel
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GOST 27597-88: Electronics items. Corrosion resistance evaluation method
GOST 27866-2019: The substances are especially clean. Method of concentration of microimpurities by precipitation and coprecipitation
GOST 27866-88: High purity substances. Method for concentration of micro impurities by precipitation and copreciditation
GOST 27981.5-2015: Copper of high purity. Methods of photometric analysis
GOST 27981.5-88: Copper of high purity. Methods of photometric analysis
GOST 28414-89: Cookery, confectionery and bakery fats
GOST 31382-2009: Copper. Methods of analysis
GOST 32221-2013: Copper concentrates. Methods of analysis
GOST 3240.15-76: Magnesium alloys. Methods for determination of nickel
GOST 4165-78: Reageuts. Copper II sulphate pentahydrate. Specifications
GOST 4517-87: Reagents. Methods for preparation of accessory reagents and solutions used for analysis
GOST 5852-79: Reagents. Cooper (II) acetate monohydrate. Specifications
GOST 6689.11-92: Nickel, nickel and copper-nickel alloys. Method for the determination of tungsten
GOST 6689.16-92: Nickel, nickel and copper-nickel alloys. Methods for the determination of zinc, cadmium, lead, bismuth and tin
GOST 6689.2-92: Nickel, nickel and copper-nickel alloys. Methods for the determination of nickel
GOST 6689.3-92: Nickel, nickel and copper-nickel alloys. Method for the determination of nickel and cobalt sum
GOST 6689.7-92: Nickel, nickel and copper-nickel alloys. Methods for the determination of silicon
GOST 741.5-80: Cobalt. Method for the determination of nickel
GOST 8464-79: Sodium cyanide technical. Technical conditions
GOST 8465-79: Potassium cyanide technical. Technical conditions
GOST 851.3-93: Primary magnesium. Methods for determination of nickel
GOST 9.302-88: Unified system of corrosion and ageing protection. Metal and non-metal inorganic coatings. Control methods
GOST 9853.22-96: Sponge titanium. Methods for determination of nickel
GOST R 51755-2001: Silicate enamels (frits). Methods of analysis
GOST R 55685-2013: Blister copper. Methods of analysis
MU 08-47/156: Alcoholic drinks. Inversion voltammetric method for measuring the mass concentration of nickel
MU 08-47/187: Natural, drinking and treated sewage. Voltammetric method for measuring mass concentrations of nickel
MU 08-47/188: Fatty foods. Voltammetric method for measuring mass concentrations of nickel
MU 08-47/197: Hair. Inversion voltammetric method for measuring mass concentrations of zinc, cadmium, lead, copper, iron, arsenic, manganese, nickel, selenium
MU 08-47/203: The soil. Method for measuring mass concentrations of zinc, cadmium, lead, copper, manganese, nickel, cobalt, iron, arsenic, selenium and mercury by inversion voltammetry
MU 08-47/222: Breast milk. Inversion voltammetric method for measuring mass concentrations of elements and vitamins
MU 31-14/06: Quantitative chemical analysis of samples of natural, drinking, waste water and technological aqueous solutions. Methodology for measuring mass concentrations of nickel and cobalt by inversion voltammetry on TA-type analyzers
MU 31-18/06: Quantitative chemical analysis of soil samples, greenhouse soils, silts, bottom sediments, sapropels, solid waste. Methodology for measuring mass concentrations of nickel and cobalt by inversion voltammetry on TA-type analyzers
MU 4184-86: Guidelines for the photometric measurement of nickel concentrations, its oxides and sulfides in the air of the working area
MU 4193-86: Methodological guidelines for gas chromatographic measurement of nickel tetracarbonyl concentrations in the working area air
MU 4579-88: Guidelines for the polarographic measurement of concentrations of copper, nickel and cobalt in the air of the working area
MU 4589-88: Guidelines for the photometric measurement of the concentration of zinc stearate in the air of the working area
MU 4945-88: Guidelines for the determination of harmful substances in welding aerosol (solid phase and gases)
MU 5896-91: Guidelines for the measurement of nickel carbonyl concentrations in working area air
MUK 4.1.2251-07: Measurement of mass concentrations of nickel tetracarbonyl (TKN) in the air of the working area using gas chromatography
OST 34-70-953.19-91: Water of industrial thermal electric power stations. Method for determination of EDTA and its salts.
PND F 13.1.48-04: Methods for measuring the mass fraction of nickel in dust samples of industrial emissions by the photometric method
PND F 14.1.46-96: Quantitative chemical analysis of water. Methods for measuring the mass concentration of nickel in wastewater by the photometric method with dimethylglyoxime
PND F 14.1:2.45-96: Quantitative chemical analysis of water. Methods of measuring the mass concentration of cadmium ions in natural and waste waters by the photometric method with dithizone
PND F 14.1:2.46-96: Quantitative chemical analysis of water. Methods of measuring the mass concentration of nickel in natural and waste waters by the photometric method with dimethylglyoxime
PND F 14.1:2:3.180-2002: Quantitative chemical analysis of water. Methods for measuring the mass concentration of cadmium in surface, groundwater and wastewater by the photometric method with brombenzthiazo
PND F 14.1:2:4.73-96: Quantitative chemical analysis of water. Methods for measuring the mass concentration of nickel ions in drinking, natural and wastewater samples by stripping voltammetry
RD 153-34.1-10.412-00: Specified Quantity Allowances for Reagent and Laboratory Vessels for Chemical Monitoring at Thermal Power Stations
RD 34.10.409-87: Specified Quantity Allowances for Chemical Reagents for Thermal Power Station Wastewater Monitoring
RD 52.24.494-2006: Mass concentration of nickel in waters. The method of measurement using the photometric method with dimethylglyoxime
RD 52.24.494-95: Guidelines. Methods for measuring the mass concentration of nickel in surface water by photometric method with dimethylglyoxime
RD RTM 26-362-80: Accelerated and marking methods for chemical and spectral analysis of basic and welding materials in chemical and petroleum engineering. Methods of chemical analysis of iron and steel
RD RTM 26-363-80: Accelerated and marking methods for chemical and spectral analysis of basic and welding materials in chemical and petroleum engineering. Methods of chemical analysis of monel-metal alloy
RDM 929-13-93: Certificate for the method of measuring the mass fraction of nickel in carbon, alloyed and high-alloyed steel in the control of raw materials and finished products
ST RK 2486-2014: Protection of Nature. drinking water, natural, clean technology, waste, treated waste. Determination of mass concentration of cobalt, tin, and lead by stripping voltammetry
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