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GB/T 45322.1-2025 English PDF

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GB/T 45322.1-2025: Particle - Separation performance test for particle size separator - Part 1: General principles
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 45322.1-2025359 Add to Cart 4 days Particle - Separation performance test for particle size separator - Part 1: General principles Valid

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GB/T 39990   GB/T 39193   GB/T 21649.2   GB/T 29024.3   GB/T 29024.2   GB/T 45322.2   

Basic data

Standard ID: GB/T 45322.1-2025 (GB/T45322.1-2025)
Description (Translated English): Particle - Separation performance test for particle size separator - Part 1: General principles
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: A28
Classification of International Standard: 19.120
Word Count Estimation: 18,172
Date of Issue: 2025-02-28
Date of Implementation: 2025-09-01
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 45322.1-2025: Particle - Separation performance test for particle size separator - Part 1: General principles


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
GB/T 45322.1-2025 English version. Particle - Separation performance test for particle size separator - Part 1.General principles ICS 19.120 CCSA28 National Standard of the People's Republic of China Particle size cutter cutting performance test Part 1.General Part 1.General principles Released on 2025-02-28 2025-09-01 Implementation State Administration for Market Regulation The National Standardization Administration issued

Table of Contents

Preface III Introduction IV 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 4 Cutting performance 2 4.1 General 2 4.2 Cutting efficiency (Ex) for a given particle size 2 4.3 Cutting efficiency curve 2 4.4 50% cut particle size (Da50) 2 4.5 Geometric standard deviation of cutting efficiency curve (σg) 3 5 General requirements for cutting performance tests 3 5.1 General 3 5.2 Test aerosol 3 5.3 Test methods and equipment 4 5.4 Particle Concentration Measurement 5 6 Data Processing 5 6.1 Conversion of particle size values 5 6.2 Mean value and relative standard deviation of cutting efficiency 6 6.3 Data Fitting 6 6.4 Calculation of Da50 and σg 7 Appendix A (Informative) Cutting efficiency curve fitting example 8 Reference 10

Foreword

This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for standardization work Part 1.Structure and drafting rules for standardization documents" Drafting. This document is part 1 of GB/T 45322 "Testing the cutting performance of particle size cutters". GB/T 45322 has been published The following parts. --- Part 1.General; --- Part 2.Diversion method. Please note that some of the contents of this document may involve patents. The issuing organization of this document does not assume the responsibility for identifying patents. This document was proposed and coordinated by the National Technical Committee for Particle Characterization and Sorting and Sieve Standardization (SAC/TC168). This document was drafted by. Qingdao Metrology Technology Research Institute, China Institute of Metrology, China National Environmental Monitoring Center, Qingdao Zhongrui Intelligent Instrument Co., Ltd., China Research Institute of Environmental Sciences, Beijing Institute of Metrology and Testing Sciences, Zhangjiagang Langyi Electromechanical Equipment Co., Ltd., Zhangjiagang Yangtze River Delta Biosafety Research Center, Qingdao Mingde Environmental Protection Instrument Co., Ltd., Qingdao Laoying Haina Optoelectronics Environmental Protection Group Co., Ltd., Qingdao Rongguang Electronic Technology Co., Ltd., Wuhan Tianhong Environmental Protection Industry Co., Ltd., Hefei Hongmeng Standard Technology Research Institute Co., Ltd., Qingdao Standardization Research Institute, Shanghai Metrology and Testing Technology Research Institute, Shandong Metrology Science Research Institute, Beijing Shian Technology Co., Ltd., Fujian Institute of Metrology, Henan Institute of Metrology and Testing, Institute of Chemistry, China Institute of Testing Technology, Hubei Institute of Metrology and Testing Institute of Testing Technology, Henan Inspection and Testing Institute Group Co., Ltd., Chongqing Metrology and Quality Inspection Institute, Shandong Zibo Ecological Environment Environmental Monitoring Center. The main drafters of this document are. Zou Yaxiong, Zhang Wenge, Wang Yu, Liu Kai, Yang Wen, Zhang Guocheng, Li Zhaoyong, Shi Huimin, Zhou Lei, Li Dean, Deng Chunlei, Huang Mei, Fan Xinfeng, Liu Yanli, Zhang Ming, Wang Ting, Ding Zhenmin, Guo Bo, Zhao Xiaoning, Li Jinsong, Huang Zhihuang, Lu Xingjie, Zhang Wen, Meng Ying, Sui Feng, Liu Jiaqi, Shi Enjie, Li Xianhong, Yang Jie, Wang Jing, Xu Bo.

Introduction

The particle size cutter is the core part that separates air particles by size (aerodynamic diameter) based on the principle of aerodynamics. It is often used to collect particles of a specific size range in the air. The cutting performance reflects the ability of the cutter to separate particles of different sizes. One of the important factors affecting sampling consistency. Common cutting performance test methods include split flow method, static box method and elution method. Users can use the following methods according to the specific conditions of the cutter to be tested. Select the appropriate test method based on the test conditions. GB/T 45322 is planned to consist of 4 parts. --- Part 1.General. The purpose is to provide common definitions and requirements for the test method of particle size cutter cutting performance. --- Part 2.Shunt method. The purpose is to standardize the test process and requirements of the shunt method. --- Part 3.Static chamber method. The purpose is to standardize the test process and requirements of the static chamber method. --- Part 4.Elution method. The purpose is to standardize the test process and requirements of the elution method. Particle size cutter cutting performance test Part 1.General

1 Scope

This document specifies common definitions and requirements for the test method for the cutting performance of particle size cutters. This document applies to the testing of the cutting performance of the particle size cutter (hereinafter referred to as the "cutter") for air particle sampling.

2 Normative references

The contents of the following documents constitute essential clauses of this document through normative references in this document. For referenced documents without a date, only the version corresponding to that date applies to this document; for referenced documents without a date, the latest version (including all amendments) applies to This document. GB/T 16418 Terminology of particle systems GB/T 31159 Terminology for atmospheric aerosol observation

3 Terms and definitions

The terms and definitions defined in GB/T 16418 and GB/T 31159 and the following apply to this document. 3.1 Particle size separator Particle size separator A device that selectively separates air particles by particle size based on aerodynamic principles. Note. Cutter is widely used in the field of air particle sampling and separation, such as PM10 and PM2.5 cutters are used to collect particles below 10 μm and Air particles smaller than 2.5μm. [Source. GB/T 31159-2014, 6.5, 6.6, modified] 3.2 Monodisperse aerosol monodisperse aerosol Aerosols with narrow particle size distribution. Note 1.Monodispersity can be quantified by the geometric standard deviation (GSD) of the particle size distribution. NOTE 2 In ISO 26824.2022, the term “monodisperse” means a GSD less than or equal to 1.15. [Source. ISO 26824.2022, 3.12.25] 3.3 Polydisperse aerosol Aerosols with a wide particle size distribution. 3.4 Designated flow rate The specified operating flow rate of the cutter. Note 1.The specified flow rate refers to the volume flow rate under operating conditions. Note 2.For a cutter, changing the flow rate will result in a change in cutting performance.
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