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GB/T 1028-2018 English PDF

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GB/T 1028-2018: Industrial surplus energy resources evaluation methods
Status: Valid

GB/T 1028: Historical versions

Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 1028-2018519 Add to Cart 5 days Industrial surplus energy resources evaluation methods Valid
GB/T 1028-2000239 Add to Cart 3 days Terms, classification, grade of waste heat in industry and calculating method of quanity of waste heat resources Obsolete
GB/T 1028-1989RFQ ASK 3 days Terms, classfication, grade of waste heat in industry and calculating method of quantity of waste heat resources Obsolete

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Basic data

Standard ID: GB/T 1028-2018 (GB/T1028-2018)
Description (Translated English): Industrial surplus energy resources evaluation methods
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: F01
Classification of International Standard: 27.010
Word Count Estimation: 26,272
Date of Issue: 2018-09-17
Date of Implementation: 2019-04-01
Older Standard (superseded by this standard): GB/T 1028-2000
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 1028-2018: Industrial surplus energy resources evaluation methods

---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.
Industrial surplus energy resources evaluation methods ICS 27.010 F01 National Standards of People's Republic of China Replace GB/T 1028-2000 Industrial residual energy resource evaluation method Published on.2018-09-17 Implementation of.2019-04-01 State market supervision and administration China National Standardization Administration issued

Foreword

This standard was drafted in accordance with the rules given in GB/T 1.1-2009. This standard replaces GB/T 1028-2000 "Industrial waste heat terminology, classification, grade and calculation method of waste heat resources". Compared with GB/T 1028-2000, the main technical changes of this standard are as follows. --- Expanding waste heat into residual energy and perfecting terms related to residual energy (see Chapter 2, Chapter 2 of the.2000 edition); --- Removed the terminology of common industrial waste heat recovery equipment (see Chapter 2 of the.2000 edition); --- Improved the classification of industrial residual energy (see Chapter 3, Chapter 3 of the.2000 edition); --- Improved the evaluation method of industrial residual energy resources (see Chapter 4, Chapter 4 of the.2000 edition); --- Added a comprehensive evaluation table of industrial residual energy (see 4.7). This standard is proposed and managed by the National Energy Foundation and Management Standardization Technical Committee (SAC/TC20). This standard was drafted. China National Institute of Standardization, Huazhong University of Science and Technology, Shanghai Baosteel Energy Conservation and Environmental Protection Technology Co., Ltd., PetroChina General Planning Institute of Natural Gas Co., Ltd., Jiangsu Yuxin Technology Co., Ltd., Electric Power Research Institute of Guangdong Power Grid Co., Ltd., MCC Southern Engineering Technology Co., Ltd., Guangdong Yudean Yunhe Power Generation Co., Ltd., Maoming Maogang Power Equipment Factory Co., Ltd., Guangdong Yigao Thermal Energy Technology Co., Ltd., Guorui Ward (Beijing) Low Carbon Economic Technology Center, Beijing Sinochem Joint Certification Co., Ltd., Beijing Zhongdian Power Enterprise Management Consulting Co., Ltd., Shaanxi Huadian Yangling Thermal Power Co., Ltd., Wuhan Anhe Energy Saving New Technology Co., Ltd. The main drafters of this standard. Liu Wei, Li Yan, Ruan Shiping, Cao Xianchang, Xie Hongjun, Zhou Yuanbo, Shao Yuanjing, Liu Zhichun, Lu Shengjie, Song Jinghui, Jiang Ping, Yang Peikai, Yao Wei, Wang Jianfu, Yang Desheng, Liu Yumei, Gu Limin, Xu Hailun, Chen Chi, Long Yu, Yan Qinglong, Xue Yulong, Feng Xiaoming, Zhang Ying, Lv Xiaolong, Wang Qin. The previous versions of the standards replaced by this standard are. ---GB/T 1028-1989, GB/T 1028-2000. Industrial residual energy resource evaluation method

1 Scope

This standard defines terms related to industrial residual energy and specifies the classification and evaluation methods for industrial residual energy. This standard applies to the evaluation of industrial residual energy resources.

2 Terms and definitions

The following terms and definitions apply to this document. 2.1 Yuen surplusenergy The industrial production process system consumes the input energy and outputs the available energy. 2.2 Remnant carrier surplusenergycarrier Contains residual energy. 2.3 Remaining energy quantityofsurplusenergy The amount of energy. 2.4 Theory can use the remaining energy theoreticalyavailablequantityofsurplusenergy Based on the standard environmental parameters (temperature 25 ° C, pressure 0.1 MPa) and complete oxidation reaction materials, the residual energy carrier has energy. 2.5 Technical economy available spare energy technicalyandeconomiclyavailablequantityofsurplusenergy After the technical and economic assessment, the maximum available residual energy with the economic value of recovery is determined. 2.6 Recover utilization rate recovery rate ofsurplusenergy The residual energy recovered and the theoretical available residual energy ratio. Note. expressed as a percentage. 2.7 Waste heat surplusheat The industrial production process system consumes input heat and outputs available heat energy. 2.8 Afterpressure superpluspressureenergy The industrial production process system consumes the input pressure energy and outputs the available pressure energy. 2.9 Chemical residual energy The industrial production process system consumes input chemical energy and outputs available chemical energy.
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