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[环保] 全套EPA英文标准!

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发表于 2008-5-31 10:14 | 只看该作者 回帖奖励 |正序浏览 |阅读模式
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全套EPA英文标准!目录如下。需要哪一标准的朋友请留言,我会第一时间贴出来!
6 P9 f# J: e9 P4 b, u/ `06-EPA\0010-Modified Method 5 Sampling Train.pdf  w9 b  A. f1 E. Q9 h
06-EPA\0011-Sampling for Selected Aldehyde and Ketone Emissions from Stationary Source
. W0 z. [* b- ]9 F+ |06-EPA\0020-Source Assessment Sampling System (SASS).pdf8 l, h6 L0 g$ P& h7 @$ }
06-EPA\0023a-Sampling Method for Polychlorinated Dibenzo-p-Dioxins and Polychlorinated5 o+ g. r; t8 w$ d! F7 p
06-EPA\0030-Volatile Organic Sampling Train.pdf% u/ K) b, `7 ]9 S8 I% F
06-EPA\0031-Sampling Method for Volatile Organic Compounds (SMVOC).pdf
9 }4 Q3 T* i9 O$ l# _, V* W06-EPA\0040-Sampling of Principal Organic Hazardous Constituents from Combustion Sourc
  k; N8 C3 B& X06-EPA\0050-Isokinetic HCl-Cl2 Emission Sampling Train.pdf. _* H8 x+ V$ Z- ~
06-EPA\0051-Midget Impinger HCl-Cl2 Emission Sampling Train.pdf
! I4 f. y8 J! r& q; A2 G, c06-EPA\0060-Determination of Metals in Stack Emissions.pdf' t4 c5 c+ @. I3 s8 }+ g! N$ l! B
06-EPA\0061-Determination of Hexavalent Chromium Emissions from Stationary Sources.pdf: m4 K3 C& q/ M% R% J7 x$ @/ h) [
06-EPA\0100-Sampling for Formaldehyde and Other Carbonyl Compounds in Indoor Air.pdf1 X1 i# E, _' B, y- E
06-EPA\1010a-Pensky-Martens Closed-Cup Method for Determining Ignitability.pdf
8 a* Q$ e0 X% s% d8 G" d2 R* y06-EPA\1020b-Setaflash Closed-Cup Method for Determining Ignitability.pdf! d) ?. V* P& F% S! I6 W: G+ P
06-EPA\1030-Ignitability of Solids.pdf7 i' E' m& S9 _1 I. q1 M( K5 c
06-EPA\1040-Test Method for Oxidizing Solids.pdf1 Y  Y  k4 i3 a% O/ N  V2 l' K
06-EPA\1050-Test Methods to Determine Substances Likely to Spontaneously Combust.pdf6 _! z2 w6 r+ l" `: I6 y6 j9 ?
06-EPA\10_8000(159-211).pdf' \$ w2 v7 ^2 E  ~4 _; G$ J
06-EPA\1110a-Corrosivity Toward Steel.pdf
6 b& t, _6 V  w  x3 B1 q5 J06-EPA\1120-Dermal Corrosion.pdf
) k% I7 g# o; M% B$ X06-EPA\1310b-Extraction Procedure (EP) Toxicity Test Method and Structural Integrity T
  v4 i( s( i( h  _% a, S) f1 f0 D06-EPA\1311-Toxicity Characteristic Leaching Procedure.pdf2 q- Z  S* {- n0 S
06-EPA\1312-Synthetic Precipitation Leaching Procedure.pdf
; k  s" Z: \4 h0 J" d" s: p06-EPA\1320-Multiple Extraction Procedure.pdf; E2 V: \" [+ I
06-EPA\1330a-Extraction Procedure for Oily Wastes.pdf* h0 _. o5 _- Q' Z- k+ u
06-EPA\16640514.pdf
0 U9 \) n6 A+ I9 x& v8 i7 S06-EPA\207-1-Sampling Method for Isocyanates.pdf  o6 n8 [& T( h3 }% e
06-EPA\207-2-Analysis for Isocyanates by High Performance Liquid Chromatography (HPLC)/ M) p, K  T. b0 {# p* ?
06-EPA\25d-Determination of the Volatile Organic Concentration of Waste Samples.pdf  b& B- S0 ]1 A+ T8 }  D% A1 e
06-EPA\25e-Determination of Vapor Phase Organic Concentration in Waste Samples.pdf3 t, {% R3 d+ n7 D; Z* I
06-EPA\3005a-Acid Digestion of Waters for Total Recoverable or Dissolved Metals for An& F8 m( ?" I! d3 T7 N3 H
06-EPA\3010a-Acid Digestion of Aqueous Samples and Extracts for Total Metals for Analy6 a% i) W8 k! o) w
06-EPA\3015a-Microwave Assisted Acid Digestion of Aqueous Samples and Extracts.pdf$ O3 P9 Q- w9 z, f& e
06-EPA\3015-Microwave Assisted Acid Digestion of Aqueous Samples and Extracts.pdf6 y- c! n2 i( V4 w( Q! f; k2 h, }' Q
06-EPA\3020a-Acid Digestion of Aqueous Samples and Extracts for Total Metals for Analy: {6 `8 m' Q* b0 n
06-EPA\3031-Acid Digestion of Oils for Metals Analysis by Atomic Absorption or ICP Spe3 m3 x0 ~; l" S* A" ^
06-EPA\3040a-Dissolution Procedure for Oils, Greases, or Waxes.pdf' ]; r; A# ?4 o) `+ S! A) d
06-EPA\3050b-Acid Digestion of Sediments, Sludges, and Soils.pdf
3 T& C5 g! q) H" Z1 X! M7 p06-EPA\3051a-Microwave Assisted Acid Digestion of Sediments, Sludges, Soils, and Oils.
, s) Z7 b$ F4 d* O3 b4 v+ G5 u8 ?06-EPA\3051-Microwave Assisted Acid Digestion of Sediments, Sludges, Soils, and Oils.p6 M) f3 h" P( H% o
06-EPA\3052-Microwave Assisted Acid Digestion of Siliceous and Organically Based Matri' d. l( l  H9 U$ m: n/ p% X
06-EPA\3060a-Alkaline Digestion for Hexavalent Chromium.pdf6 R, m) _% w! Q' i3 s  a
06-EPA\3200-Mercury Species Fractionation and Quantification by Microwave-assisted Ext' r1 [/ Z% |: K; q7 E9 Q! W( a
06-EPA\3500b-Organic Extraction and Sample Preparation.pdf
7 b* X3 R% V& X06-EPA\3500c-Organic Extraction and Sample Preparation.pdf
" M, E7 k' s$ Z. _1 H2 y06-EPA\3510c-Separatory Funnel Liquid-Liquid Extraction.pdf
3 x3 S8 y' s/ c; }8 b" P  ^06-EPA\3511-Organic Compounds in Water by Microextraction.pdf: |* m0 W- p! F; s8 B7 H4 u- ?. U
06-EPA\3520c-Continuous Liquid-Liquid Extraction.pdf( U8 M+ E0 D; c' M
06-EPA\3535a-Solid-Phase Extraction (SPE).pdf6 J$ F0 S% u3 Y+ t9 H- Y3 B- v
06-EPA\3535-Solid-Phase Extraction (SPE).pdf& s2 m; \! n$ @1 ~/ l3 O* M) Q/ S
06-EPA\3540c-Soxhlet Extraction.pdf
$ V! _) r. T6 t% ?0 L3 G% _: W; r06-EPA\3541-Automated Soxhlet Extraction.pdf( D& e$ c" [4 C, o, P: c% _
06-EPA\3542a-Extraction of Semivolatile Analytes Collected Using Method 0010 (Modified; [$ }* s. _# g( }
06-EPA\3542-Extraction of Semivolatile Analytes Collected Using Method 0010 (Modified
8 e% e; s6 w" A2 k& ~9 f" Z) h06-EPA\3545a-Pressurized Fluid Extraction (PFE).pdf
  {9 V* a4 J: t  F% G4 n06-EPA\3545-Pressurized Fluid Extraction (PFE).pdf
1 q! m0 J* s0 v7 l06-EPA\3546-Microwave Extraction.pdf2 @" y2 O. Q" ]$ Y& t" ~  X& }
06-EPA\3550b-Ultrasonic Extraction.pdf: r! U6 c1 F6 H* p5 P* H
06-EPA\3550c-Ultrasonic Extraction.pdf
( U' m, Z) O7 N; S1 q# b% ~06-EPA\3560-Supercritical Fluid Extraction of Total Recoverable Petroleum Hydrocarbons  y; a8 m. i6 i% j% N
06-EPA\3561-Supercritical Fluid Extraction of Polynuclear Aromatic Hydrocarbons.pdf
! o, l) r& P4 H& a06-EPA\3562-Supercritical Fluid Extraction of Polychlorinated Biphenyls (PCBs) and Org2 h* N) o, R" p+ v/ F
06-EPA\3570-Microscale Solvent Extraction (MSE).pdf
% r' R1 g# v8 l2 ~. B06-EPA\3580a-Waste Dilution.pdf
0 P! A6 h4 c. T) ~, a0 c06-EPA\3585-Waste Dilution for Volatile Organics.pdf$ w5 x& _- z* e- f- `' R
06-EPA\3600c-Cleanup.pdf
0 b7 y  ]1 m2 @4 a2 K2 r06-EPA\3610b-Alumina Cleanup.pdf- z" ?  ~0 L: ^0 t: c) w  e
06-EPA\3611b-Alumina Column Cleanup and Separation of Petroleum Wastes.pdf
" E& c6 r; i7 a* h3 I, l5 L06-EPA\3620b-Florisil Cleanup.pdf7 l7 ?: J' R2 e% q7 a, d, u/ ^1 [
06-EPA\3620c-Florisil Cleanup.pdf
- {* t" {$ [' p, ]- Y9 |06-EPA\3630c-Silica Gel Cleanup.pdf
0 ^  z: Y1 u* R# O& O5 }06-EPA\3640a-Gel-Permeation Cleanup.pdf; N. j1 O5 k1 _3 `" j
06-EPA\3650b-Acid-Base Partition Cleanup.pdf
# l% K, ~9 v5 Y! a. O0 q$ @9 n06-EPA\3660b-Sulfur Cleanup.pdf; A  T& V' [4 \! x; f
06-EPA\3665a-Sulfuric Acid(Permanganate) Cleanup.pdf) N. b: C4 ^. b- p7 K
06-EPA\3810-Headspace.pdf
  v7 |2 O& s4 y06-EPA\3815-Screening Solid Samples for Volatile Organics.pdf
5 H1 ]" L* N# _- e, J+ G06-EPA\3820-Hexadecane Extraction and Screening of Purgeable Organics.pdf2 r5 X$ t0 P" q* [: P1 j/ n
06-EPA\4000-Immunoassay.pdf$ _. y/ `+ ]9 x5 O0 W
06-EPA\4010a-Screening for Pentachlorophenol by Immunoassay.pdf
$ P; }+ G1 ?- ]06-EPA\4015-Screening for 2,4-Dichlorophenoxyacetic Acid by Immunoassay.pdf. Q7 Q! g/ x1 y3 y4 x# t! \
06-EPA\4020-Screening for Polychlorinated Biphenyls by Immunoassay.pdf
& K( R9 g9 V" z06-EPA\4025.pdf
3 ~6 h  y& o5 K06-EPA\4030-Soil Screening for Petroleum Hydrocarbons by Immunoassay.pdf. A# m$ B' f; P$ w
06-EPA\4035-Soil Screening for Polynuclear Aromatic Hydrocarbons by Immunoassay.pdf& W; W; ]! y! S7 u  L" C
06-EPA\4040-Soil Screening for Toxaphene by Immunoassay.pdf
, R: D( u7 N+ U2 f3 F1 s/ `06-EPA\4041-Soil Screening for Chlordane by Immunoassay.pdf
9 I8 _: s8 W5 G  r06-EPA\4042-Soil Screening for DDT by Immunoassay.pdf  u4 u0 l  r% W7 `  W% r
06-EPA\4050-TNT Explosives in Soil by Immunoassay.pdf. `6 s  l+ Z2 F
06-EPA\4051-Hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) in Soil by Immunoassay.pdf: c. b) P# G! K
06-EPA\4425-Screening Extracts of Environmental Samples for Planar Organic Compounds (
  o( g+ @3 F/ u8 I4 A06-EPA\4500-Mercury in Soil by Immunoassay.pdf
* f. [4 x+ t( {" |1 n06-EPA\4670-Triazine Herbicides as Atrazine in Water by Quantitative Immunoassay.pdf% b; L5 x6 R7 e4 S, f5 M, S
06-EPA\5000-Sample Preparation for Volatile Organic Compounds.pdf
9 x9 i0 I" J8 U" u06-EPA\5021a_r1-Volatile Organic Compounds in Various Sample Matrices Using Equilibriu
8 }  V5 }% Y1 Y$ a5 {: a! {06-EPA\5021-Volatile Organic Compounds in Soils and Other Solid Matrices Using Equilib: D( X& |# q. ?% B! w! C- T
06-EPA\5030b-Purge-and-Trap for Aqueous Samples.pdf
6 Y# N) c4 r9 ]% n4 c06-EPA\5030c-Purge-and-Trap for Aqueous Samples.pdf, B& E. Z" L4 [; ]. C5 _! H
06-EPA\5031-Volatile, Nonpurgeable, Water-Soluble Compounds by Azeotropic Distillation
9 Z5 I- l. C) N, M: J06-EPA\5032-Volatile Organic Compounds by Vacuum Distillation.pdf& }! C# N5 q9 s
06-EPA\5035a_r1.pdf
3 V8 C7 ~6 g* X- v5 I* Q5 @, i4 S8 |06-EPA\5035-Closed-System Purge-and-Trap and Extraction for Volatile Organics in Soil* l. V7 u4 ^8 L: S& q
06-EPA\5041a-Analysis for Desorption of Sorbent Cartridges from Volatile Organic Sampl
# G& r# Y* `- H06-EPA\5050-Bomb Preparation Method for Solid Waste.pdf
9 U: k/ K# R; _9 k* |, L. g06-EPA\6010b-Inductively Coupled Plasma-Atomic Emission Spectrometry.pdf& S, E" H5 d4 }, b4 A- i
06-EPA\6010c-Inductively Coupled Plasma-Atomic Emission Spectrometry..pdf
9 P/ X5 ?$ i$ l4 n2 j# O7 \; |- D5 O06-EPA\6020a-Inductively Coupled Plasma - Mass Spectrometry.pdf1 U1 @3 f9 n4 n  W
06-EPA\6020-Inductively Coupled Plasma-Mass Spectrometry.pdf& ]* L: \4 j. c6 O2 x
06-EPA\6200-Field-Portable X-ray Fluorescence Spectrometry for the Determination of El
* U3 F2 M4 @- T& @06-EPA\6500-Determination of Inorganic Anions in Aqueous Matrices Using Capillary Ion+ u/ O. s" y2 j: T& D
06-EPA\6800-Elemental and Speciated Isotope Dilution Mass Spectrometry.pdf  X1 Q- Q/ e0 o9 W% c, J5 L
06-EPA\7000a-Atomic Absorption Methods.pdf$ [  F  `8 i, N# l  G
06-EPA\7000b-Flame Atomic Absorption Spectrophotometry.pdf
3 w, m( [5 U1 w( j06-EPA\7010-Graphite Furnace Atomic Absorption Spectrophotometry.pdf, ~( d3 L( x5 E  Z) a) j) a
06-EPA\7061a-Arsenic (Atomic Absorption, Gaseous Hydride).pdf
5 H4 W( I" x' i0 N" b3 d. c06-EPA\7062-Antimony and Arsenic (Atomic Absorption, Borohydride Reduction).pdf- B+ ~+ r! m: V* p8 Z( q0 ~
06-EPA\7063-Arsenic in Aqueous Samples and Extracts by Anodic Stripping Voltammetry (A
" h4 I; D* {# X: i3 ]06-EPA\7195-Chromium, Hexavalent (Coprecipitation).pdf( [" k2 h+ B# j& S
06-EPA\7196a-Chromium, Hexavalent (Colorimetric).pdf; e7 r, b+ J2 F4 y* ], P
06-EPA\7197-Chromium, Hexavalent (Chelation-Extraction).pdf" s0 X# {) \, C1 t
06-EPA\7198-Chromium, Hexavalent (Differential Pulse Polarography).pdf, _9 O8 A1 L9 e2 A* n3 ^9 i
06-EPA\7199-Determination of Hexavalent Chromium in Drinking Water, Groundwater and In$ P! y. B7 r  J# X/ P1 x: s& s2 X
06-EPA\7470a-Mercury in Liquid Waste (Manual Cold-Vapor Technique).pdf
5 G9 h5 y# L! c# X# m: V! g! A06-EPA\7471a-Mercury in Solid or Semisolid Waste (Manual Cold-Vapor Technique).pdf
* n" L1 M3 X3 t06-EPA\7471b-Mercury in Solid or Semisolid Waste (Manual Cold-Vapor Technique).pdf8 }" I' }3 |. }0 W* R
06-EPA\7472-Mercury in Aqueous Samples and Extracts by Anodic Stripping Voltammetry (A
- P3 J/ C3 |6 M5 e0 d8 k' D06-EPA\7473-Analysis of Mercury in Solids and Solutions by Thermal Decomposition, Amal
3 F, T' D7 D. i: ^+ F0 y. b06-EPA\7474-Determination of Mercury in Sediment and Tissue Samples by Atomic Fluoresc) q% s: M7 s1 E2 Q
06-EPA\7580-White Phosphorus (P4) by Solvent Extraction and Gas Chromatography.pdf
2 m2 x0 q$ D9 Y- r06-EPA\7741a-Selenium (Atomic Absorption, Gaseous Hydride).pdf" G# Y1 ~) X8 ^) X6 u1 Y
06-EPA\7742-Selenium (Atomic Absorption, Borohydride Reduction).pdf
4 `/ o  @! `! e7 I0 V; W0 }/ b06-EPA\8000b-Determinative Chromatographic Separations.pdf
, J  M- ]% k1 {8 S- a3 T06-EPA\8000c_v3-Determinative Chromatographic Separations.pdf4 r# g" [+ q. M' W' a/ n
06-EPA\8010b.pdf; y2 h( }+ N& f/ {# [& F7 x
06-EPA\8011-1,2-Dibromoethane and 1,2-Dibromo-3-chloropropane by Microextraction and G9 b8 V) R2 W8 M, Q) X" G6 J
06-EPA\8015b-Nonhalogenated Organics Using GC-FID.pdf
& y7 |' e- m8 E: o% K  A06-EPA\8015c-Nonhalogenated Organics Using GC-FID..pdf
+ `& z$ X( o# h06-EPA\8015d_r4-Nonhalogenated Organics Using GC-FID.pdf
8 g: s0 o5 @( D06-EPA\8021b-Aromatic and Halogenated Volatiles by Gas Chromatography Using Photoioniz  Y4 r2 ?  t( t9 \8 A; Q" a& Z
06-EPA\8030a.pdf
. P; {: ?/ A9 Z06-EPA\8031-Acrylonitrile by Gas Chromatography.pdf
$ G7 T- r1 o7 i# L0 R06-EPA\8032a-Acrylamide by Gas Chromatography.pdf6 g2 p" ~: S$ y4 O- n
06-EPA\8033-Acetonitrile by Gas Chromatography with Nitrogen-Phosphorus Detection.pdf( \6 d3 a; j0 r0 w# T% X
06-EPA\8041a-Phenols by Gas Chromatography..pdf+ |- n$ A* \" _8 n7 |* }
06-EPA\8041-Phenols by Gas Chromatography.pdf( r; ]! r, L. S& [9 G
06-EPA\8061a-Phthalate Esters by Gas Chromatography with Electron Capture Detection (G  |: m( b9 y" |# d; `. u5 S0 E
06-EPA\8070a-Nitrosamines by Gas Chromatography.pdf
' N# u4 j' l# i/ p, a  P06-EPA\8081a-Organochlorine Pesticides by Gas Chromatography.pdf
4 E* w- a8 M/ v06-EPA\8081b_ivb-Organochlorine Pesticides by Gas Chromatography.pdf
/ k" t5 I' ?3 E; b! _/ S06-EPA\8081b-Organochlorine Pesticides by Gas Chromatography.pdf
7 \; L+ c0 `2 M: f& P. F" _06-EPA\8082a-Polychlorinated Biphenyls (PCBs) by Gas Chromatography.pdf
2 t) Q! K9 |2 u06-EPA\8082-Polychlorinated Biphenyls (PCBs) by Gas Chromatography.pdf# s# e0 l2 f- J3 C+ d
06-EPA\8085-Compound-independent Elemental Quantitation of Pesticides by Gas Chromatog" J' f$ C3 W( Q2 W/ z+ j; J/ {3 D
06-EPA\8091-Nitroaromatics and Cyclic Ketones by Gas Chromatography.pdf- {. J1 g; L  B2 @2 h$ b/ q" t
06-EPA\8095-Explosives by Gas Chromatography.pdf
/ q1 R4 S$ X" `2 M/ a06-EPA\8100-Polynuclear Aromatic Hydrocarbons.pdf
; I! |% j2 p# t) B5 C+ u% P0 B1 ]06-EPA\8111-Haloethers by Gas Chromatography.pdf
# _) N: {- a8 e7 O8 ^  E' f  C06-EPA\8121-Chlorinated Hydrocarbons by Gas Chromatography Capillary Column Technique.
# F) n) ]+ d+ \' H1 I  T06-EPA\8131-Aniline and Selected Derivatives by Gas Chromatography.pdf( G1 L& Q7 J" H7 {& h
06-EPA\8141a-Organophosphorus Compounds by Gas Chromatography: Capillary Column Techn
0 Y- ~& T6 L- G, J) b06-EPA\8141b_ivb-Organophosphorus Compounds by Gas Chromatography.pdf7 q0 h' |- c8 Y) l  J' E
06-EPA\8141b-Organophosphorus Compounds by Gas Chromatography.pdf1 y8 k, }; @6 O. C  ]) n% N; W
06-EPA\8151a-Chlorinated Herbicides by GC Using Methylation or Pentafluorobenzylation2 k8 h7 n- {- j2 A- K: ~
06-EPA\8260b-Volatile Organic Compounds by Gas ChromatographyMass Spectrometry (GC-MS
9 M' ]9 M8 z2 V; I0 Y. ?" ~+ I' \06-EPA\8261-Volatile Organic Compounds by Vacuum Distillation in Combination with Gas& z3 K/ K* D6 n% F- ~
06-EPA\8265.pdf: q; k3 \; k  {1 x! Y
06-EPA\8270c-Semivolatile Organic Compounds by Gas ChromatographyMass Spectrometry (GC
3 f" m0 `9 X+ ]0 G/ c. t0 r06-EPA\8270d-Semivolatile Organic Compounds by Gas Chromatography-Mass Spectrometry (G5 |% J" p3 W. s* e
06-EPA\8270d-Semivolatile Organic Compounds by Gas ChromatographyMass Spectrometry (GC
1 Y, r4 ?6 V) @; ]06-EPA\8275a-Semivolatile Organic Compounds (PAHs and PCBs) in SoilsSludges and Solid8 U& D" g# b- b4 {
06-EPA\8280a-The Analysis of Polychlorinated Dibenzo-p-Dioxins and Polychlorinated Dib
; ^, a1 ]  y) k  D1 C: h06-EPA\8280b-Polychlorinated Dibenzo-p-Dioxins and Polychlorinated Dibenzofurans by Hi
. U/ M& G- ~5 R) ]# F06-EPA\8290a-Polychlorinated Dibenzodioxins (PCDDs) and Polychlorinated Dibenzofurans( m4 }4 f4 D! Z1 f
06-EPA\8290-Polychlorinated Dibenzodioxins (PCDDs) and Polychlorinated Dibenzofurans (* b2 d8 O& ~* _& j* Q- b0 G
06-EPA\8310-Polynuclear Aromatic Hydrocarbons.pdf
) w+ w$ J9 K( j06-EPA\8315a-Determination of Carbonyl Compounds by High Performance Liquid Chromatogr
" T9 N6 A7 t6 K0 f06-EPA\8316-Acrylamide, Acrylonitrile and Acrolein by High Performance Liquid Chromato/ A& o2 s4 f5 w! m6 t3 w
06-EPA\8318a-N-Methylcarbamates by High Performance Liquid Chromatography (HPLC).pdf- G- O+ L  r4 e  N
06-EPA\8318-N-Methylcarbamates by High Performance Liquid Chromatography (HPLC).pdf
( E9 m+ G6 A6 H" y( f) c: `3 L; z2 _: k06-EPA\8321a-Solvent Extractable Nonvolatile Compounds by High Performance Liquid Chro: |5 u* s2 }8 J1 f
06-EPA\8321b_ivb-Solvent-extractable Nonvolatile Compounds by High Performance Liquid
9 z* P  }  x7 Y2 R& ]6 x06-EPA\8321b-Solvent-Extractable Nonvolatile Compounds by High Performance Liquid Chro
! f. D" h5 R7 b06-EPA\8323-Determination of Organotins by Micro-Liquid Chromatography- Electrospray I0 d" O5 F% m$ R& _
06-EPA\8325-Solvent Extractable Nonvolatile Compounds by High Performance Liquid Chrom- Q) q9 p& N. _4 b# s% i) l
06-EPA\8330a-Nitroaromatics and Nitramines by High Performance Liquid Chromatography (4 T) e; y1 G$ g* b3 t# a7 N
06-EPA\8330-Nitroaromatics and Nitramines by High Performance Liquid Chromatography (H8 A4 V  A' c! O+ {+ F9 Z
06-EPA\8331-Tetrazene by Reverse Phase High Performance Liquid Chromatography (HPLC).p
. y. }/ z/ G/ o6 z* \06-EPA\8332-Nitroglycerine by High Performance Liquid Chromatography.pdf
. |, R3 d) w) W, B- \06-EPA\8410-Gas ChromatographyFourier Transform Infrared (GC-FT-IR) Spectrometry for5 A& A' y% U! j3 E* f
06-EPA\8430-Analysis of Bis(2-chloroethyl) Ether and Hydrolysis Products by Direct Aqu  n) M/ a, C2 o$ s! t
06-EPA\8440-Total Recoverable Petroleum Hydrocarbons by Infrared Spectrophotometry.pdf7 B& p$ A  o, `6 C! ?
06-EPA\8510-Colorimetric Screening Procedure for RDX and HMX in Soil..pdf
8 c4 ~/ X4 u6 v" c& a8 f. \06-EPA\8515-Colorimetric Screening Method for Trinitrotoluene (TNT) in Soil.pdf! o! U3 \2 G- K# d% w% O' B
06-EPA\8520-Continuous Measurement of Formaldehyde in Ambient Air.pdf
# p4 `3 x# v; x06-EPA\8535-Screening Procedure for Total Volatile Organic Halides in Water.pdf
: b4 h4 W7 D( i5 B5 O% S6 p9 M06-EPA\8540-Pentachlorophenol by UV-Induced Colorimetry.pdf
' C, F8 n5 ]' Z4 E06-EPA\9000-Determination of Water in Waste Materials by Karl Fischer Titration.pdf# f' Q4 k$ u" X5 f$ d
06-EPA\9001-Determination of Water in Waste Materials by Quantitative Calcium Hydride R
$ _, H: a- z& s9 l! B0 `06-EPA\9010c-Total and Amenable Cyanide Distillation.pdf2 f$ a" G8 ]- V' q/ q. `
06-EPA\9012b-Total and Amenable Cyanide (Automated Colorimetric, with Off-Line Distill
  h# c. H8 n, }- x, z06-EPA\9013a-Cyanide Extraction Procedure for Solids and Oils.pdf$ z5 a7 u, y; n) u* K
06-EPA\9013-Cyanide Extraction Procedure for Solids and Oils.pdf
! w8 b; u* c. A. ^( a1 o7 m06-EPA\9014-Titrimetric and Manual Spectrophotometric Determinative Methods for Cyanid+ o1 G# K, \# s( C8 b6 T. a& R
06-EPA\9015-Metal Cyanide Complexes by Anion Exchange Chromatography and UV Detection.
7 P% |8 _: M' B/ y4 ~9 [: X4 u06-EPA\9020b-Total Organic Halides (TOX).pdf
1 r1 L4 c7 J7 u1 h. Z9 q06-EPA\9021-Purgeable Organic Halides (POX).pdf% {& e6 N# h( |1 O+ l% y, V
06-EPA\9022-Total Organic Halides (TOX) by Neutron Activation Analysis.pdf
& N5 O  N; y* A/ J, B+ o: ?# ^06-EPA\9023-Extractable Organic Halides (EOX) in Solids.pdf
' D  n/ ^+ q; L& {" o8 n, ^+ l( {06-EPA\9030b-Acid-Soluble and Acid-Insoluble Sulfides: Distillation.pdf7 Y: D' M3 ~" r* i5 U" N  @) w
06-EPA\9031-Extractable Sulfides.pdf
9 y) l9 P8 x' F2 h! ^06-EPA\9034-Titrimetric Procedure for Acid-Soluble and Acid-Insoluble Sulfides.pdf
* \5 [; x# e# h' T: ^  e. O1 @06-EPA\9035-Sulfate (Colorimetric, Automated, Chloranilate).pdf8 |* S3 I$ O6 C' ~$ h
06-EPA\9036-Sulfate (Colorimetric, Automated, Methylthymol Blue, AA II).pdf! o7 i; ^" n7 P# F* P
06-EPA\9038-Sulfate (Turbidimetric).pdf4 R' p/ ~, \- w: _  I
06-EPA\9040c-pH Electrometric Measurement.pdf8 b% t; b3 A1 z/ h! I0 g/ H
06-EPA\9041a-pH Paper Method.pdf
  ]$ H& a# S; q06-EPA\9045d-Soil and Waste pH.pdf& y1 T* `' I4 M' B
06-EPA\9050a-Specific Conductance.pdf
. R0 e0 X+ c5 _06-EPA\9056a-Determination of Inorganic Anions by Ion Chromatography.pdf  M/ L' ~& \+ X7 y/ j, y9 |
06-EPA\9056-Determination of Inorganic Anions by Ion Chromatography.pdf# c7 p4 f1 T, S# k
06-EPA\9057-Determination of Chloride from HCl-Cl2 Emission Sampling Train (Methods 0+ G1 D6 c6 E7 X; X% _- K
06-EPA\9058-Determination of perchlorate using ion chromatography with chemical suppre0 F( u6 U) s* U, l( r' s
06-EPA\9060a-Total Organic Carbon.pdf
2 i. W- E2 Q- H1 H2 g' i) |, ?06-EPA\9065-Phenolics (Spectrophotometric, Manual 4-AAP with Distillation).pdf
  y/ {9 |4 q  C5 x5 u06-EPA\9066-Phenolics (Colorimetric, Automated 4-AAP with Distillation).pdf
: O! [$ I* H3 q' w$ c06-EPA\9067-Phenolics (Spectrophotometric, MBTH with Distillation).pdf
6 J5 v) ^, s, D! I% |: g% ^, t, n06-EPA\9070a-See Method 1664, Publication No. EPA-821-R-98-002.pdf
4 {: b: m* L; Q+ j3 s9 O06-EPA\9071b-n-Hexane Extractable Material (HEM) for Sludge, Sediment, and Solid Sampl5 n: M0 K  f- Y( K6 {
06-EPA\9074-Turbidimetric Screening Method For Total Recoverable Petroleum Hydrocarbon' g: y1 u; C, u. E( G6 P$ F
06-EPA\9075-Test Method for Total Chlorine in New and Used Petroleum Products by X-Ray
. u' M3 C( g9 a) U2 Q06-EPA\9076-Test Method for Total Chlorine in New and Used Petroleum Products by Oxida
6 s: d1 V6 ]0 c06-EPA\9077-Test Methods for Total Chlorine in New and Used Petroleum Products (Field% R7 a6 c5 L8 `2 S) u# F2 n
06-EPA\9078-Screening Test Method for Polychlorinated Biphenyls in Soil.pdf
; [" x1 `: \: t0 N# ~4 J; ~. [06-EPA\9079-Screening Test Method for Polychlorinated Biphenyls in Transformer Oil.pdf
1 u0 W$ @; n* Q7 h* [: D) {06-EPA\9080-Cation-Exchange Capacity of Soils (Ammonium Acetate).pdf
+ m9 ^. @$ b: j. Y" ?2 N06-EPA\9081-Cation-Exchange Capacity of Soils (Sodium Acetate).pdf3 a, w7 b& v" ~: M& p! C& |
06-EPA\9090a-Compatibility Test for Wastes and Membrane Liners.pdf
' \2 w1 S1 z6 X# [9 B$ |06-EPA\9095b-Paint Filter Liquids Test.pdf
/ j6 P) u, J0 w" Q2 u6 L' R+ h06-EPA\9096-Liquid Release Test (LRT) Procedure.pdf( p# \) I0 N! `# w
06-EPA\9100-Saturated Hydraulic Conductivity, Saturated Leachate Conductivity, and Int$ q4 c9 X1 P6 |% Z9 c
06-EPA\9131-Total Coliform: Multiple Tube Fermentation Technique.pdf2 o* p0 [3 B- G- E6 O
06-EPA\9132-Total Coliform: Membrane-Filter Technique.pdf
4 y' X3 G7 q; m+ W. T2 @4 U8 x; p+ r06-EPA\9210-Potentiometric Determination of Nitrate in Aqueous Samples with Ion-Select
3 Y/ z0 x$ r$ B& j# Z06-EPA\9211-Potentiometric Determination of Bromide in Aqueous Samples with Ion-Select: F8 C6 W- n, }% F4 \6 j0 k0 |
06-EPA\9212-Potentiometric Determination of Chloride in Aqueous Samples with Ion-Selec
7 ?  q+ ~& c$ s& z8 \06-EPA\9213-Potentiometric Determination of Cyanide in Aqueous Samples and Distillates
3 \: j9 E" Z2 Q( i; K06-EPA\9214-Potentiometric Determination of Fluoride in Aqueous Samples with Ion-Selec
3 q9 \1 g. H) ]  i) t9 s06-EPA\9215-Potentiometric Determination of Sulfide in Aqueous Samples and Distillates- n5 `0 G+ o) `# y! b
06-EPA\9216-Potentiometric Determination of Nitrite in Aqueous Samples with Ion-Select
' v% j$ L- f, m06-EPA\9250-Chloride (Colorimetric, Automated Ferricyanide AAI).pdf
) ?, ?$ o9 d2 h0 O6 O7 c06-EPA\9251-Chloride (Colorimetric, Automated Ferricyanide AAII).pdf
- e4 q7 W5 [( p06-EPA\9253-Chloride (Titrimetric, Silver Nitrate).pdf
0 m) i% _* ]6 ^" [! W; L& L06-EPA\9310-Gross Alpha and Gross Beta.pdf
( l7 K5 q: i( o3 P& ~" d06-EPA\9315-Alpha-Emitting Radium Isotopes.pdf
1 o2 f3 q* `* g# z0 C06-EPA\9320-Radium-228.pdf1 D' R4 t8 g' V+ ^: K' z3 Z$ z! F
06-EPA\abstract.pdf
+ o% {& _0 d3 \' G3 P) v$ \, @06-EPA\acknowlegements.pdf
* U5 ]1 Q# @- e6 Y06-EPA\Appendix -- Company References.pdf
; Q4 c. v3 ?/ a2 o. j/ ]06-EPA\Chapter 1-quality control.pdf/ T- g, V$ D) c1 o( L
06-EPA\Chapter 10 -- Sampling Methods.pdf
( B8 k; ]* W! Y: I' G06-EPA\Chapter 11 -- Ground Water Monitoring.pdf
2 O' ]  j; M% w0 v06-EPA\Chapter 12 -- Land Treatment Monitoring.pdf
4 U" V) M# T& Z# R06-EPA\Chapter 13 -- Incineration.pdf* O# Z# g1 _8 j
06-EPA\Chapter 2 -- Choosing the Correct Procedure.pdf
+ B6 S; R; X0 l06-EPA\Chapter 3 -- Inorganic Analytes.pdf
+ k. @" R0 r9 Y06-EPA\Chapter 4 -- Organic Analytes.pdf8 H) D' @  w4 F/ k9 O6 j# t( D0 F
06-EPA\Chapter 5 -- Miscellaneous Test Methods.pdf4 P' S' l& [/ ~  q
06-EPA\Chapter 6 -- Properties.pdf5 P% M! }4 T) _$ Q9 j, ]. s6 P. h
06-EPA\Chapter 7 -- Characteristics Introduction and Regulatory Definitions.pdf
( H6 P! H  I+ k4 I2 Z( K2 P7 N" N06-EPA\Chapter 8 -- Methods for Determining Characteristics.pdf. M  d5 S& S/ H- Q4 \: Y
06-EPA\Chapter 9 -- Sampling Plan.pdf" L6 ~4 ?3 G( A
06-EPA\Correction Notice.doc, s/ D  D- T  ~
06-EPA\ctm-024 Analysis for Isocyanates by High Performance Liquid Chromatography (HPLC; M1 z. r  T0 H3 |  R/ R, `8 Q
06-EPA\disclaim.pdf% c; U3 k0 y- z  h+ F/ l2 l
06-EPA\Extension of Public Comment Period - January 16, 2003.doc. G% p* v* e" p* a' _' t1 W
06-EPA\Extension of Public Comment Period.doc
- U  c  G& E7 p0 k, C06-EPA\Final Rul1.doc
# B4 B4 `0 M* v- s) \06-EPA\Final Rule - 60 FR 17001, April 4, 1995.doc
$ S# F+ @; i2 ]& c. t( ~06-EPA\Final Rule - 60 FR 3089, January 13, 1995.doc6 _9 q" {0 p0 f& F2 I
06-EPA\Final Rule - June 13, 1997.doc& K; I2 s( w1 ~7 p
06-EPA\Final Rule - May 14, 1999.doc
3 [  r! {, p% K7 P5 m0 U/ K4 s, L06-EPA\Final Rule.doc, h& ]- n3 `4 D; T+ H! U
06-EPA\Guidance for Methods Development and Methods Validation for the RCRA Program.pdf
/ q/ N" P+ e% |( b' o+ R06-EPA\Guidance for Submittal of New Immunoassay Methods.pdf
3 T: x+ X, C8 Q4 j- }! j6 D06-EPA\Guidelines for Revalidation of Exisiting Immunoassay Based Analytical Products.p
5 ?6 s" Z- n: n06-EPA\List of Validated Immunoassay Test Kits.pdf
1 V9 j$ [1 P& {2 d( s& u06-EPA\m-25dDetermination of the Volatile Organic Concentration of Waste Samples.pdf2 k$ M  U" J( C
06-EPA\m-25eDetermination of Vapor Phase Organic Concentration in Waste Samples.pdf
  }1 _+ y6 @3 m1 D" P  y- }; A) `9 h06-EPA\METHOD 8015B.doc/ `! B. @8 d) O  l6 N, {* C/ B/ b
06-EPA\method index.pdf
) J  b9 }% A! B: l06-EPA\method status tables for SW-846, third edition.pdf
+ ~4 k' Z. Y& @06-EPA\Notice of Data Availability, Draft Update - May 8, 1998.doc
. j+ }, |3 }6 J5 Z. T06-EPA\Notice of Data Availability, Draft Update - November 27, 2000.doc/ q  Y: Q/ K# Y( Q5 G9 P; v( t3 r* c/ B
06-EPA\preface.pdf
- C8 \* w) i& t0 N  C' m- c7 N06-EPA\Proposed Rul1.doc  V6 s- Q3 s6 }' i/ o9 n' V' i
06-EPA\Proposed Rule - July 25, 1995.doc
# r! O" c  i4 r% s- }1 I06-EPA\Proposed Rule - October 30, 2002.doc; t6 w  a: L, c9 i
06-EPA\Proposed Rule.doc0 P5 m& H) z, L" F
06-EPA\rwsdtg.pdf
7 w0 Y* W( y' _8 e( ~06-EPA\rwsdtg_a.pdf
) C9 f, X6 A/ I/ Q7 ]6 i06-EPA\rwsdtg_b.pdf8 D8 T5 n9 D; A' \" N' d
06-EPA\rwsdtg_c-Appendix A through Appendix E.pdf6 f8 B6 ]4 Q. O! @/ v
06-EPA\rwsdtg_d-Appendix F through Index.pdf
7 M- ]% y! S8 ^06-EPA\style05.pdf
; n. s) ~& |1 P, J9 e0 _" U06-EPA\SW-846 Federal Register Notices.doc9 R6 ?& t: O2 D$ P  {
06-EPA\Table of Contents.pdf
. L. i7 x* u! }1 V7 t06-EPA\TailedPrimers.pdf
1 P  Y2 I+ W" }+ d0 ]' ?1 z06-EPA\talble of contents-volum one-section A.pdf
9#
发表于 2009-5-8 10:03 | 只看该作者
大家好!新手上路,请多关照!EPA3550C已成功下载!非常感谢!能否在提供以下几个:EPA8270D;EPA3052;EPA3050B;EPA3540C;EPA8260。如有中文版那就更好了。劳烦LZ了!
8#
发表于 2009-4-7 10:51 | 只看该作者
06-EPA\\3052-Microwave Assisted Acid Digestion of Siliceous and Organically Based Matrice  有中文版吗
头像被屏蔽
7#
发表于 2009-3-11 13:24 | 只看该作者
提示: 该帖被管理员或版主屏蔽
6#
发表于 2009-3-10 20:41 | 只看该作者
请问有EPA method 3510c中文版吗?谢谢!
5#
 楼主| 发表于 2008-10-17 11:13 | 只看该作者
3550c中文翻译版

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地板
发表于 2008-9-2 11:06 | 只看该作者
请吧EPA 3550C发一下吧,谢谢!
板凳
发表于 2008-8-12 15:52 | 只看该作者
06-EPA\\5050-Bomb Preparation Method for Solid Waste.pdf! g% |: I( N* I
楼主,哪里下栽?
沙发
发表于 2008-5-31 10:34 | 只看该作者
①EPA:Environmental Protection Agency的简称,美国环境保护署。EPA于1992年宣布了“能源之星”(Energy Star)计划,并得到了国际社会的积极响应。只要启动电脑,过不了几秒钟就能见到屏幕上出现“能源之星”的标志。能源之星的目标是当电脑系统的各个部件不活动时自动进入低功耗状态,当部件的能动性恢复(即当键盘、鼠标等被使用)时,电脑系统自动回到完全清醒的状态。对于符合能源之星规范的产品,EPA将发给能源之星标志“EPA POLLUTION PREVENTER”,意为“美国环境保护署认可的防污染的节能产品”。
% D- O" ]/ x# @- u7 O+ q+ D+ H: x$ }! J' @
②economic partnership agreement
; l% h/ h0 o( b7 Z经济合作协定2 ?0 v9 [6 l, x/ U% j% A! k
 EPA是美国环保署(U.S Environmental Protection Agency) 的英文缩写。总部设在华盛顿,直署美国总统。EPA负责建立环境项目的国家标准,监控强制性标准的执行和符合情况,并联合州政府和地方政府颁发了一系列商业以及工业许可证。" t) R4 F0 L8 Y) x! B- X6 d
  美国环境保护署的主要目的是保护人类健康和自然环境。自 1970 年以来, EPA 一直为给全美人民创造一个整洁的健康环境而努力。 EPA 在国家的环境科学及相关调查、教育和评估方面具有领导地位。同时 EPA 在各地的分支机构与其它行业组织、州政府一起合作开展各种污染防治计划和能源的节约等工作。
( J& e" G5 Q* j5 i* d
- h6 N' Z  f8 U( n9 rEPA 认证范围; l- X. l2 g% _
  柴油 / 汽油发动机设备、摩托车、车辆、汽车部件、气体、水处理设备、饮用水、农药等的检验和出证等。( o. Z, q/ L% P" y0 }0 Z" W
  2006 年 1 月 1 日 起,美国 EPA 将实行新的环保法规,出口到美国的汽车、摩托车必须通过 EPA 认证,获得 EPA 证书并加贴标志后方可进入美国市场。. ]. T" @5 X& R: f) k
  如果产品在美国除加州之外的 49 个州进行销售,则只需要办理 EPA 认证就可以了;如果产品需要出口到美国加州,则需要办理 CARB 认证。
1 A1 k+ V2 v; B- @, H' s; `4 D- l+ @7 W) ^' O' h; V( m
EPA 认证及测试实验室常用术语
% I" M9 l: \( h2 k' |- L" ~# b  jAECD(Auxiliary emission contro1 device) :辅助排放控制装置" V* \  C' C7 B
ASME(American 、 Society of Mechanical Engineers) :美国机械工程师协会3 M' Y9 ~' ^3 J
ASTM(American S0ciety for Testing and Materials) :美国材料试验协会
+ e8 n+ G* C0 i8 r7 s! ~CAA(C1ean Air Act) :空气清洁法令+ }) u' l+ j* h2 l; p: o" i5 p8 ~7 y
CAAA(Clean Air Act Amendments 0f 1990) : 1990 空气清洁法令修正版6 D) B+ f, Q) Z9 G# H" t6 ~) i  z
CLD(cheniluminescent detector) :光化学探测器
: u" S+ j3 ~+ p3 w  \. xC0 :一氧化碳
) N% L3 E0 u7 l+ Y* T* r: EC02 :二氧化碳 。! H1 j) y) o; ^& E( ~+ Y
EPA :环境保护署# [4 m6 H6 E( r( i  h. R
EGR: 废气再循环4 e' s; z) _$ f/ e
FEL: 产品排放限值
8 Y2 g" r4 C' e, O8 ?# s8 tFTP(Federal Test Procedure) :联邦检验法& D& g5 T0 r& w" \$ K2 h" I
g / kw-hr :克每千瓦小时
3 B% ]% |1 l# \  N# [; ]HC :碳氢化合物
( T0 K& i2 Z6 p8 `/ `" c$ qHCLD(heated chemiluminescent detector) :热化学发光探测器* H  {" T$ ?8 B+ h6 T3 x
HFID(heated flame ionization detector) :热火焰离子式侦测器6 c4 N2 o: o  s! F4 o
ICI(independent Commercial Importer) :独*立的贸易进口商
4 X. {# \+ `( E( @* N' P8 ~NDIR(non—dispersive infrared analyzer) :无分散的红外线分析仪4 p' y/ \* v0 W+ |9 s% ]1 b4 R
NIST(National Institute for Standards and Testing) : 国家标准和检验协会, \  e& E. J9 ^2 e8 ^) @
N0 :一氧化氮' C& |" {/ i4 d# h3 r) ]
N02 :二氧化氮  q. m5 q9 K. [' v. @
NOX :氮氧化合物  {$ K! @+ f* y) v) o) h
02 :氧
* K; e" j0 o8 H* c/ h- }OEM(original equipment manufacturer) :原始设备制造商  l' L- A6 ~( Q1 [/ u0 `  h
PMD(paramagnetic detector) :常磁性探测器3 \& s, m& B9 n! I' ]% ^
SAE(Society of Automotive Engineers) :汽车工程协会0 \4 _* U. u, ^2 @9 I1 n
SEA(selective enforcement auditing) :可选择执行审核. R6 M, p- e# \' ^4 B+ t) \5 ?- b
SI(spark—ignition) :火花一点火
; z% R/ Q6 d9 Z5 R2 U& l& V: gU.S.C.(United States Code) :美国代码
/ Q1 x% y# n' v6 A& lVOC(V01atile organic compounds) :有机挥发化合物
7 Y0 J$ x4 ^5 ]1 y! m" D# b+ ?7 H* Z( \$ A- B0 _: z" M
③EPA 是 Eicosapntemacnioc Acid 即二十碳五烯酸的英文缩写,是鱼油的主要成分。EPA属于Ω-3系列多不饱和脂肪酸,是人体自身不能合成但又不可缺少的重要营养素,因此称为人体必需脂肪酸。虽然亚麻酸在人体内可以转化为EPA,但此反应在人体中的速度很慢且转化量很少,远远不能满足人体对EPA的需要,因此必须从食物中直接补充。 ! e( `4 m. |. V, `: K, C
EPA具有帮助降低胆固醇和甘油三酯的含量,促进体内饱和脂肪酸代谢。从而起到降低血液粘稠度,增进血液循环,提高组织供氧而消除疲劳。防止脂肪在血管壁的沉积,预防动脉粥样硬化的形成和发展、预防脑血栓、脑溢血、高血压等心血管疾病。
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④EPA(Ethernet for Plant Automation)标准(全称《用于工业测量与控制系统的EPA系统结构与通信标准》)是在国家"863"计划支持下,由浙江大学、浙江中控技术股份有限公司共同主持,联合中国科学院沈阳自动化所、清华大学、大连理工大学、重庆邮电学院、上海工业自动化仪表研究所、北京华控技术有限责任公司、机械工业仪器仪表综合技术经济研究所等国内部分高校、科技院所、高新技术企业,在解决了以太网用于工业现场设备间通信的确定性通信调度、总线供电、网络安全、可互操作等关键技术的基础上,起草的我国第一个拥有自主知识产权的现场总线国家标准。# Q) [3 j6 z. d
  与此同时,该标准被国际电工委员会IEC作为PAS标准(Pulblic Available Specification)予以发布,并被IEC接收为正在制定的国际实时以太网标准IEC61784-2中的实时以太网类型14(Common Profile Family 14, CPF 14),成为我国第一个被国际认可和接收的工业自动化领域的标准。
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