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GB/T 16716.5-2024 English PDF

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GB/T 16716.5-2024: Packaging and the environment - Part 5: Energy recovery
Status: Valid

GB/T 16716.5: Historical versions

Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 16716.5-2024439 Add to Cart 4 days Packaging and the environment - Part 5: Energy recovery Valid
GB/T 16716.5-2010320 Add to Cart Auto, < 3 mins Packaging and packaging waste -- Part 5: Recoverable by material recycling Obsolete

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GB/T 16716.4   GB/T 16716.3   GB/T 16716.7   GB 12268   GB/T 16716.6   GB/T 16716.2   

Basic data

Standard ID: GB/T 16716.5-2024 (GB/T16716.5-2024)
Description (Translated English): Packaging and the environment - Part 5: Energy recovery
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: A80
Classification of International Standard: 55.020
Word Count Estimation: 22,252
Date of Issue: 2024-09-29
Date of Implementation: 2024-09-29
Older Standard (superseded by this standard): GB/T 16716.6-2012
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 16716.5-2024: Packaging and the environment - Part 5: Energy recovery

---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.
Packaging and the environment - Part 5.Energy recovery Packaging and the environment Part 5.Energy recovery (ISO 18605.2013, Packaging and the environment-Energy recovery, MOD) ICS 55.020 CCS A 80 National Standard of the People's Republic of China Replaces GB/T 16716.6-2012 Released on 2024-09-29 2024-09-29 implementation State Administration for Market Regulation The National Standardization Administration issued

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 is required. This document is Part 5 of GB/T 16716 “Packaging and Environment”. GB/T 16716 has published the following parts. Part 1.General;- Part 2.Packaging system optimization;- Part 3.Reuse;- Part 4.Material recycling; - Part 5.Energy recovery; Part 6.Organic Cycles. - This document replaces GB/T 16716.6-2012 "Packaging and packaging waste Part 6.Energy recovery" and is in accordance with Compared with GB/T 16716.6-2012, in addition to structural adjustments and editorial changes, the main technical changes are as follows. The definitions of the terms "net calorific value" and "heat gain" have been changed (see 3.1, 3.3, 3.1, 3.3 of GB/T 16716.6-2012). 3.3); a) Changed the terms and definitions of “required energy”, “minimum theoretical net calorific value”, “effective heat” and “incineration” (see 3.2, 3.4, 3.5, 3.6, 3.2, 3.4, 3.5, 3.6 of GB/T 16716.6-2012); b) Added the term and definition of "energy recovery" (see 3.7); c) The terms and definitions of “packaging components” and “packaging ingredients” have been deleted (see 3.7 and 3.8 of GB/T 16716.6-2012); d) The relevant contents of “Requirements” have been changed (see Chapter 5, Chapter 5 of GB/T 16716.6-2012); e) The relevant contents of “Evaluation Procedure” have been changed (see Chapter 6, Chapter 6 of GB/T 16716.6-2012). f) This document is modified to adopt ISO 18605.2013 “Packaging and the environment - Energy recovery”. Compared with ISO 18605.2013, this document has the following structural adjustments. 6.1 corresponds to 6.2 of ISO 18605.2013, with 6.1.1 to 6.1.4 added; - 6.2 corresponds to 6.3 of ISO 18605.2013; - A.1 corresponds to the first and second paragraphs of Annex A of ISO 18605.2013; - A.2 corresponds to the third and fourth paragraphs of Annex A of ISO 18605.2013; - A.3 corresponds to paragraphs 5 to 9 of Annex A of ISO 18605.2013; - B.1 corresponds to the first and second paragraphs of Annex B of ISO 18605.2013; - B.2 corresponds to paragraphs 3 to 5 of Annex B of ISO 18605.2013; - C.1 corresponds to the first paragraph of Annex C of ISO 18605.2013; - C.2 corresponds to the second paragraph of Annex C of ISO 18605.2013; - C.3 corresponds to the third and fourth paragraphs of Annex C of ISO 18605.2013; - C.4 corresponds to the fifth and sixth paragraphs of Annex C of ISO 18605.2013. The technical differences between this document and ISO 18605.2013 and their reasons are as follows. The summary of contents has been changed, the scope of application has been increased, and the expressions outside the summary of contents (see Chapter 1) have been deleted to adapt to the Technical conditions; The normative reference GB/T 23156-2022 replaces ISO 21067.2007 (see Chapter 3) to adapt to my country's technology Conditions to increase operability. The term “net calorific value of equal volume” is changed to “net calorific value” (see 3.1) to facilitate the use of the standard; - The assessment procedure has been changed and the energy recovery assessment steps have been added (see 6.1.1 to 6.1.4) to adapt to my country's technical conditions. Increase operability; The normative reference GB/T 16716.1-2018 replaced ISO 18601.2013 (see 6.2) to adapt to my country's technology Conditions, increase operability; The statement of the applicable conditions of the standard (see 6.1 of ISO 18605.2013) has been deleted to comply with the requirements of GB/T 1.1-2020.- The following editorial changes were made to this document. To be consistent with the existing standard system, the name of the standard is changed to "Packaging and Environment Part 5.Energy Recovery"; The informative reference GB/T 16716.2 replaces ISO 18602 (see Note 5 of Chapter 5); - Added informative references to GB 16297, GB 18599 and GB 18485 (see C.3); - Changed the sample of Declaration of Conformity (see Appendix D); - The energy recovery assessment step has been deleted (see D.1, D.3, E.1, E.3 of ISO 18605.2013); - Changed the example of Declaration of Conformity (see Appendix E). - 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 is proposed and coordinated by the National Technical Committee on Packaging Standardization (SAC/TC 49). This document was drafted by. Taizhou Henghui Industrial Co., Ltd., Wenzhou Zhiliang Industrial Co., Ltd., Huzhou Jiaheng Industrial Co., Ltd., Zhejiang Fangyuan Testing Group Co., Ltd., Zhongshan Tiantu Fine Chemical Co., Ltd., China Export Commodity Packaging Research Institute, Hebei Shangdong Packaging Technology Co., Ltd., Hunan Yiyongfeng New Materials Technology Co., Ltd., Zhejiang Shanshanjia Food Industry Development Co., Ltd., Ganba Desiccant (Shenzhen Shenzhen) Co., Ltd., Xi'an University of Technology, Shandong Product Quality Inspection Institute, Guangdong Eurasia Packaging Co., Ltd., Qingyuan Lidao Precision Chemical Co., Ltd., Baoyi New Materials Co., Ltd., Wuxi Yiguan Intelligent Technology Co., Ltd., Jinan Decorui Instrument Co., Ltd., Guangzhou Biaoming Machinery Technology Research Co., Ltd., Xinjiang Zhenmei Packaging Co., Ltd., Jiaxing Xingyue Packaging Materials Co., Ltd., medium packaging industry Productivity Promotion Center Co., Ltd., Hebei Huanchen Technology Co., Ltd., Shandong Liman Packaging Printing Co., Ltd., Hunan University of Technology, Huazhao Holding Group Co., Ltd., Shanghai Ocean University, Yunnan Qiaotong Packaging and Printing Co., Ltd., Zhejiang Jinrui Film Materials Co., Ltd., Guangzhou Kewei Instrument Co., Ltd., Langfang Junxing Yimei Packaging Products Co., Ltd., Shandong Media Vocational College, Hucai Printing Co., Ltd., He Nanhuafu Packaging Technology Co., Ltd., Guangdong Wangying Environmental Protection Packaging Industry Co., Ltd., Ningxia Xiajin Box Packaging Co., Ltd., Shenzhen Jinjiaji Tuan Co., Ltd., Xiamen Jihong Technology Co., Ltd., and Guangzhou Pulisi Technology Co., Ltd. The main drafters of this document are. Huang Rong, Su Jian, Ying Jianbin, Liu Tianhang, Jiang Jinsheng, Xu Yulin, Wang Canjun, Xu Congyan, Wang Jian, Zhang Weijing, Han Lixin, Yang Qiuyun, Wang Ping, Jiang Chuanxing, Wu Haijiao, Zhang Yaoping, Wang Zhengtian, Hu Zhengyang, Feng Qingzheng, Li Yuanyue, Wu Xiaoqing, Li Runmiao, Huang Yihua, Hu Zhen, Lin Peiji, Liu Peng, Huang Hongjun, Li Xiaoming, Mao Bing, Yuan Zhiqing, Xu Changle, Zhao Youmei, Li Li, Zhang Wei, Shi Wenzheng, Zhang Min, Ma Tianquan, Yang Haitao, Sun Xiao, Chen Zhiwei, Zhong Jian, Wei Shukun, Shao Zheng, Zang Xiulong, Yue Lei, Li Hui, Cao Bin, Guo Jiansen, Lin Feng, Xu Hua, Lv Wei, Zhang Heping, and Lin Xiaobo. The previous versions of the documents replaced by this document are as follows. GB/T 16716.6, first published in.2012.-

Introduction

In order to strengthen the management of packaging and packaging waste, the European Union issued Directive 94/62/EC on Packaging and Packaging Waste in.1994, and subsequently issued EN 13427~EN 13432 are adopted as the coordination standards of this directive. In order to adapt to the development of my country's packaging industry and eliminate international trade barriers In accordance with the EU Packaging and Packaging Waste Directive and coordinated standards, my country has formulated the national standard GB/T 16716 “Packaging and Packaging Waste”. "Waste" (GB/T 16716.1-2008, GB/T 16716.2~16716.6-2010, GB/T 16716.7-2012) series of standards. The "Packaging and Packaging Waste" series of standards are professional basic standards in the field of packaging and environment formulated by my country. It has played a positive leading and driving role in the coordinated development of the packaging industry and the technological progress of the packaging industry. In.2013, the International Organization for Standardization (ISO) also formulated the EN 13427~EN 13432 series of standards based on the EU and combined with international conditions. The ISO 18601~ISO 18606 "Packaging and Environment" series of standards have been issued. In order to coordinate with international standards and promote international trade Development, the GB/T 16716 series standards have been revised to adopt international standards and the name of the standard has been changed to "Packaging and Environment". GB/T 16716 consists of 6 parts. Part 1.General;- Part 2.Packaging system optimization;- Part 3.Reuse;- Part 4.Material recycling; - Part 5.Energy recovery; Part 6.Organic Cycles. - The relationship between the GB/T 16716 series standards is shown in Figure 1. Figure 1 Relationship between the “Packaging and Environment” series of standards Packaging and the environment Part 5.Energy recovery

1 Scope

This document specifies requirements and assessment procedures for packaging recycled in the form of energy recovery and describes the method for determining the minimum net calorific value. This document applies to the assessment of packaging that is recycled in a form of energy recovery.

2 Normative references

The contents of the following documents constitute the 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. in this document. GB/T 16716.1-2018 Packaging and environment Part 1.General (ISO 18601.2013, MOD) GB/T 23156-2022 Packaging Packaging and environmental terminology (ISO 21067–2.2015, MOD)

3 Terms and definitions

The terms and definitions defined in GB/T 23156-2022 and the following apply to this document. 3.1 net calorific value qnet Under constant volume conditions, all the water produced by the reaction is kept as water vapor (ideally at 0.1 MPa), and all The gross calorific values of other products are the absolute values of the specific combustion energy per unit mass of solid fuel incinerated in oxygen at the reference temperature. Note. In this document, “fuel” refers to the used packaging. [Source. GB/T 23156-2022, 3.5.4, modified] 3.2 required energy Ha The energy required to heat a material adiabatically from ambient temperature to a specified final temperature after combustion of the material and excess air. [Source. GB/T 23156-2022, 3.5.5] 3.3 calorific gain The positive difference between the energy released by burning a material and the energy required. [Source. GB/T 23156-2022, 3.5.6] 3.4 theoretical minimum net calorific value qnet.min.theor A portion of the energy released by combustion is used to heat the material or product by adiabatic means to remove the burnt matter and excess air from the specified environment. The ambient temperature is heated to the specified final temperature. [Source. GB/T 23156-2022, 3.5.7]
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