GB/T 33224-2016 in English
VALIDEnvironment impact evaluating method on mechanical refrigerating systems used for cooling and heating
- Issued on:2016-12-13
- Implemented on:2017-07-01
- File Format:PDF
- Delivery:Via email within 5 business days
$359.00
《GB/T 33224-2016制冷和供热用机械制冷系统环境影响评价方法》由TC238(全国冷冻空调设备标准化技术委员会)归口,主管部门为中国机械工业联合会。
Introduction
1. Standard Overview
GB/T33224-2016 "Methods for Environmental Impact Assessment of Mechanical Refrigeration Systems for Refrigeration and Heating" is a standard formulated for the basic principles and framework, assessment methods and reporting requirements for environmental impact assessment of mechanical refrigeration systems. This standard is applicable to the research and application of life cycle assessment of mechanical refrigeration systems, and aims to evaluate the environmental impact of their entire life cycle through quantitative analysis.
2. Main Contents of the Standard
| Chapter Contents | Main Requirements |
|---|---|
| Terms and Definitions | Clarify core concepts such as refrigeration system, life cycle, and life cycle assessment. |
| Refrigeration system description | Include system name, model, technical performance parameters and structural diagram. |
| Life cycle assessment | Cover inventory analysis, impact assessment and result interpretation to ensure data accuracy and completeness. |
3. Implementation recommendations
In order to effectively implement this standard, it is recommended that:
- Data collection and processing: Ensure that the sources of field data and background data are clear, and select and reject in strict accordance with the requirements of the standard.
- Inventory analysis: Use structured tables to comprehensively record resource consumption and environmental emissions at each stage of the refrigeration system.
- Impact assessment: Combine characterization factors and normalization methods to evaluate the contribution of different environmental impact types and develop optimization strategies.
4. Case study
Taking a chiller as an example, the life cycle assessment results show that:
- The main environmental impact comes from the power consumption during the use and maintenance phases.
- By improving system energy efficiency and optimizing refrigerant management, the global warming potential (GWP) can be significantly reduced.

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