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material flow data collection data collection system material flow data total statistics process-level data collection core data wavelength dispersive x-ray fluorescence spectroscopy securities industry introduction background soil conservation measures
GB/T 39197-2020 in English

GB/T 39197-2020 in English

VALID

Principle and requirement for material flow data collection of general solid waste

  • Issued on:2020-10-11
  • Implemented on:2021-05-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $160.00
$156.00
Standard No: GB/T 39197-2020
Document status: VALID
Title in English: Principle and requirement for material flow data collection of general solid waste
Title in Chinese: 一般固体废物物质流数据采集原则和要求
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 2020-10-11
Implemented on: 2021-05-01
Chinese Classification: Z04-Basic standards and general methods
Professional Classification: GB-National Standard
Related Keywords: material flow data collection
data collection system
material flow data
total statistics process-level data collection
core data
Related Topics: Solid Waste
data collection
Solid Waste Detection
waste solid raw material
things
Total Arsenic in Solid Waste
solid waste 22
General Solid Waste Testing
data collection
Solid waste reference material
general solid waste
waste data
solid waste thallium
solid waste cold atoms
General solid waste collection
Principle of stationary phase
Object principle
GBT39197
GB/T 39197-2020
Data acquisition module quality requirements
Data collection standards
Collection methods of organic solid waste
General solid waste disposal
General solid waste detection

《GB/T 39197-2020一般固体废物物质流数据采集原则和要求》由TC415(全国产品回收利用基础与管理标准化技术委员会)归口,主管部门为国家标准化管理委员会。


Introduction

Interpretation of the core content of the standard

This standard constructs a data collection system covering the entire life cycle of solid waste in industrial parks, with a focus on standardizing:

  • 5 types of core data: basic situation, raw material consumption, product output, waste generation, storage, utilization and disposal
  • 3 major collection principles: full process coverage (3.1), purpose orientation (3.2), reliability assurance (3.3)
  • 4-step standardized procedure: object determination → data collection → verification and balance → standardized reporting

Analysis of key technical requirements

Elements Traditional practices Requirements of this standard Improvement value
Data granularity Mainly based on total statistics Process-level data collection (4.4) Realize waste traceability management
Verification mechanism Formal review Material balance verification (5.3) Improve data authenticity
Classification basis Self-defined Quote GB/T39198 classification code (Table A.4) Realize cross-park data interoperability

Implementation and application suggestions

Application case of electronic industrial park

Through the implementation of this standard, a provincial-level electronic industrial park has achieved the following:

  1. The accuracy of tracking the flow of etching waste liquid (code 381-005-34) in the PCB manufacturing process has been improved by 67%
  2. Through the comparison of the input and output data in Table A.5, it was found that there was a difference between the account and actual amount of waste plastics of 3 companies of 12.8 tons/year
  3. The hazardous waste transportation route was optimized based on the collected data, reducing the logistics cost by 230,000 yuan/year

Key points of informatization construction

  • Develop a collection system based on the GB/T36578 data interface specification
  • Establish an association verification rule with the GB18599 storage standard
  • Design an electronic ledger template with reference to the table in Appendix A

Analysis of standard evolution

This standard and GB/T36575 (water recycling) constitute the dual pillars of the circular economy standard system of industrial parks. Its innovation is reflected in:

  • For the first time, it clarifies the full-chain collection boundary of material flow data (1 Scope)
  • Breaking through the scope of traditional environmental statistics, it integrates raw material-product-waste three-dimensional data (4.2-4.4)
  • Provides data support for the upcoming solid waste discharge permit system

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