GB/T 23608-2009 Replaced National standards

GB/T 23608-2009 Platinum groups metals waste classification and technology qualification

GB/T 23608-2009 Platinum groups metals waste classification and technology qualification

Publish Date: 2009-04-15 Implement Date: 2010-02-01 For services related to genuine standard inquiry, procurement, translation, and other related services in China, please Contact Us

Basic Information

Standard Code: GB/T 23608-2009
Standard Type: National standards
Standard Status: Replaced
is_force_gb: no
CCS Name: Precious metals and their alloys
ICS Name: Other non-ferrous metal products
Publish Date: 2009-04-15
Implement Date: 2010-02-01
Pages: 7 pages

Scope

This standard specifies the classification, requirements, inspection rules, marking, packaging, transportation, storage, and contract content of platinum-group metal waste and scrap (hereinafter referred to as "waste").
This standard applies to the domestic and international trade of platinum-group metal waste, as well as non-ferrous metal recycling enterprises and precious metal processing enterprises. It also applies to platinum-group metal waste after being used in society.

Development Information

Word Count: 10 Thousand words Pages: 7 pages

Superseded by the following standards

Referenced Standards

GB/T 15072.3-1994 Method for chemical analysis of precious metals and their alloys—Gold, platinum and palladium alloys—Determination of platinum content GB/T 15072.3-2008 Test method of precious metal alloys—Determination of platinum content for gold,platinum and palladium alloys—Electricity titration using potassium permanganate GB/T 15072.4-1994 Method for chemical analysis of precious metals and their alloys—Palladium, silver alloys—Determination of palladium content GB/T 15072.4-2008 Test method of precious metal alloys—Determination of palladium content for palladium and silver alloys—Butanedione dioxime gravimetry GB/T 15072.6-1994 Method for chemical analysis of precious metals and their alloys—Platinum, palladium alloys—Determination of iridium content GB/T 15072.6-2008 Test method of precious metal alloys—Determination of iridium contents for platinum, palladium alloys—Electricity titration with ferrous sulfate GB/T 17418.5-1998 Methods for analysis of noble metals in geochemical samples—Determination of ruthenium and osmium content-Separation by distillation—Catalytic spectrophotometric method GB/T 17418.5-2010 Methods for analysis of noble metals in geochemical samples—Part 5:Determination of ruthenium and osmium content—Separationby distillation-catalytic spectrophotometric method GB/T 19720-2005 Platinum jewellery alloys—Determination of platinum and palladium—Gravimetric method after precipitation of diammonium hexachloroplatinate and dimethylglyoxime GB/T 19720-2024 Jewellery and precious metals—Determination of platinum and palladium—Gravimetry using ammonium chloride and dimethylglyoxime YS/T 561-2009 Method for chemical analysis of precious metals alloys—Platinum-rhodium alloys—Determination of rhodium content—Hexaammine cobalt nitrate gravimetriy YS/T 563-2009 Methods for chemical analysis of precious metals alloys—Platinum-palladium-rhodium alloys—Determination of palladium and rhodium content—Diacetyldioxime gravimetriy,tin (Ⅱ)chloride spectrophotometry YS/T 598-2006 Super fine hydrous ruthenium oxide powder SH/T 0684-1999 Standard test method for palladium in molecular sieve catalysts and in aluminium oxide base catalysts by atomic absorption spectrometry YS/T 598-2023 Ultra-fine Rutile Powder SH/T 0570-2017 Determination of platinum content in rejuvenation catalyst using spectrophotometry SH/T 0570-1993 The method for determining the platinum content of rejuvenating catalysts YS/T 563-2006 Method for chemical analysis of platinum-palladium-rhodium alloys GB/T 15072.3-2025 Methods for chemical analysis of precious metal alloys—Part 3:Determination of platinum content GB/T 15072.4-2025 Methods for chemical analysis of precious metal alloys—Part 4:Determination of palladium content GB/T 15072.6-2025 Methods for chemical analysis of precious metal alloys—Part 6:Determination of iridium content

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