ASTM E2941-2013 Standard Practice for Nitric Acid-Extraction of Elements from Ores and Related Metallurgical Materials by Closed Vessel Microwave Heating《通过封闭容器微波加热硝酸萃取矿石和相关冶金材料元素的.pdf
《ASTM E2941-2013 Standard Practice for Nitric Acid-Extraction of Elements from Ores and Related Metallurgical Materials by Closed Vessel Microwave Heating《通过封闭容器微波加热硝酸萃取矿石和相关冶金材料元素的.pdf》由会员分享,可在线阅读,更多相关《ASTM E2941-2013 Standard Practice for Nitric Acid-Extraction of Elements from Ores and Related Metallurgical Materials by Closed Vessel Microwave Heating《通过封闭容器微波加热硝酸萃取矿石和相关冶金材料元素的.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E2941 13Standard Practice forNitric Acid-Extraction of Elements from Ores and RelatedMetallurgical Materials by Closed Vessel MicrowaveHeating1This standard is issued under the fixed designation E2941; the number immediately following the designation indicates the year oforiginal adopti
2、on or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice covers the digestion of ores and relatedmetallurgical materi
3、als, such as mine soil, waste rock andtailings, for subsequent determination of nitric acid-extractablecontents of certain elements by such solution analytical tech-niques as atomic absorption, atomic emission (see MethodD1976), and inductively coupled plasma mass spectroscopy(see Method D5673).1.1.
4、1 Contents of aluminum, antimony, arsenic, barium,beryllium, bismuth, boron, cadmium, calcium, chromium,cobalt, copper, gallium, iron, lead, lithium, magnesium,manganese, mercury, molybdenum, nickel, phosphorus,potassium, scandium, selenium, silver, sodium, strontium,thallium, tin, titanium, vanadiu
5、m and zinc can be extractedfrom ores and related metallurgical materials for determinationby analytical methods for elements in solution. Other elementsmay be determined from extracts produced using this practice.1.1.2 Actual element quantification can be accomplished byfollowing the various test me
6、thods under other appropriateASTM standards for element(s) of interest in solution.1.1.3 The detection limit and linear content range for eachelement is dependent on the atomic absorption or emissionspectrometric technique employed and may be found in themanual accompanying the instrument used or AS
7、TM standardmethod for analysis of the solutions. Take into account the 100fold dilution due to digesting a 1-g sample to final volume of100 mL.1.1.4 The extent of extraction of elements from ores andrelated metallurgical materials by this method is dependentupon the physical and mineralogical charac
8、teristics of theprepared sample.1.2 The values stated SI units are to be regarded as thestandard. No other units of measurements are included in thisstandard.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user
9、of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. For specific hazardstatements, see Section 9.2. Referenced Documents2.1 ASTM Standards:2D1193 Specification for Reagent WaterD1976 Test Method for Elements
10、in Water by Inductively-Coupled Argon Plasma Atomic Emission SpectroscopyD5258 Practice for Acid-Extraction of Elements from Sedi-ments Using Closed Vessel Microwave HeatingD5673 Test Method for Elements in Water by InductivelyCoupled PlasmaMass SpectrometryE50 Practices for Apparatus, Reagents, and
11、 Safety Consid-erations for Chemical Analysis of Metals, Ores, andRelated MaterialsE135 Terminology Relating to Analytical Chemistry forMetals, Ores, and Related MaterialsE882 Guide for Accountability and Quality Control in theChemical Analysis Laboratory2.2 Federal Standard:3CFR Title 21, Part 1030
12、, and Title 47, Part 183. Terminology3.1 DefinitionsFor definitions of terms used in thispractice, refer to Terminology E135.4. Summary of Practice4.1 The chemical portion of this practice involves nitric aciddigestion to dissociate the elements not interstitially bound insilicate lattices.1This tes
13、t method is under the jurisdiction of ASTM Committee E01 onAnalytical Chemistry for Metals, Ores, and Related Materials and is the directresponsibility of Subcommittee E01.02 on Ores, Concentrates, and Related Metal-lurgical Materials.Current edition approved Oct. 1, 2013. Published October 2013. DO
14、I: 10.1520/E2941-13.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from U.S. Government Printing
15、Office Superintendent of Documents,732 N. Capitol St., NW, Mail Stop: SDE, Washington, DC 20401, http:/www.access.gpo.gov.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States14.2 The sample is digested with HNO3in a closed fluoropo-lymer v
16、essel using microwave heating to an internal pressureof 6.89 105Pa.4.3 This practice provides a sample suitable for analysis byatomic absorption, atomic emission or inductively coupledplasma mass spectrometry.5. Significance and Use5.1 These test methods are primarily intended to test mate-rials for
17、 compliance with compositional specifications and formonitoring. Partial extraction of ores and related metallurgicalmaterials can provide information on the availability of ele-ments to leaching, water quality changes, or other site condi-tions.5.2 Rapid heating, in combination with temperatures in
18、excess of the atmospheric boiling point of HNO3, reducessample preparation or reaction times.5.3 Little or no acids are lost to boiling or evaporation in theclosed digestion vessel so additional portions of acid may notbe required. Increased blank corrections from trace impuritiesin acid are minimiz
19、ed.5.4 It is assumed that the users of this practice will betrained analysts capable of performing common laboratoryprocedures skillfully and safely. It is expected that work will beperformed in a properly equipped laboratory and that properwaste disposal procedures will be followed. Appropriate qua
20、l-ity control practices such as those described in Guide E882must be followed.6. Interferences6.1 No interferences to the digestion of ores and relatedmetallurgical materials using microwave heating have beenobserved.6.2 Precautions should be exercised to avoid those interfer-ences normally associat
21、ed with the final determination ofelements using atomic absorption, atomic emission, or induc-tively coupled plasma mass spectrometry.6.3 The HNO3matrix may not be suitable for stabilizingsolutions containing silver and antimony, an alternate digestionmethod using a HCl matrix may be required to det
22、ermine someelements.7. Apparatus7.1 Microwave Heating SystemA laboratory microwaveheating system capable of delivering a minimum of 570 W ofmicrowave energy. The system should be capable of 1 %power adjustments and 1 s time adjustment. The microwavecavity should be fluoropolymer coated and equipped
23、withexhaust ventilation sufficient to provide ten chamber exchangesper minute.The cavity must have a 360 oscillating turntable toensure even sample heating, and be capable of holding diges-tion vessels. Safety interlocks, to shut off magnetron poweroutput, must be contained in the cavity door openin
24、g mecha-nism. The system must comply with Department of Health andHuman Services Standards under Code of Federal Regulations,Part 1030.10, Subparts (C) (1), (C) (2), and (C) (3), formicrowave leakage. The system should have Federal Commu-nications Commission (FCC) type approval for operationsunder F
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