GB/T 40612-2021 English PDFUS$264.00 · In stock
Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 40612-2021: Plastics - Determination of aerobic biodegradation of non-floating plastic materials in a seawater/sediment interface - Method by analysis of evolved carbon dioxide Status: Valid
Basic dataStandard ID: GB/T 40612-2021 (GB/T40612-2021)Description (Translated English): Plastics - Determination of aerobic biodegradation of non-floating plastic materials in a seawater/sediment interface - Method by analysis of evolved carbon dioxide Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: G31 Word Count Estimation: 14,114 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 40612-2021: Plastics - Determination of aerobic biodegradation of non-floating plastic materials in a seawater/sediment interface - Method by analysis of evolved carbon dioxide---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. Plastics - Determination of aerobic biodegradation of non-floating plastic materials in a seawater/sediment interface - Method by analysis of evolved carbon dioxide ICS 83.080.01 CCSG31 National Standards of People's Republic of China Plastic seawater sandy sediment interface non-floating plastic Determination of the final aerobic biodegradability of materials By measuring the method of releasing carbon dioxide (ISO 19679.2020, IDT) Released on 2021-08-20 2021-10-01 implementation State Administration of Market Supervision and Administration Issued by the National Standardization Management Committee ForewordThis document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules of Standardization Documents" Drafting. The translation method used in this document is equivalent to ISO 19679.2020 ``Final Requirements for Non-floating Plastic Materials at the Interface of Plastic Seawater Sandy Sediments The oxygen biodegradability is determined by the method of measuring the release of carbon dioxide". Please note that some of the contents of this document may involve patents. The issuing agency of this document is not responsible for identifying patents. This document was proposed and managed by the National Technical Committee for Standardization of Bio-based Materials and Degradable Products (TC380). This document was drafted by. Beijing Technology and Business University, China Shenhua Coal-to-Liquid Chemical Co., Ltd., Chongqing Lianfa Plastic Technology Co., Ltd. Company, Tongcheng Chemical (China) Co., Ltd., Ningbo Jialian Technology Co., Ltd., Pingxiang City Xuanpin Plastic Products Co., Ltd., National Plastic Products Quality Supervision and Inspection Center (Beijing), Shenzhen Wandajie Environmental New Materials Co., Ltd., Anhui Xuelang Biotechnology Co., Ltd. Company, Anhui Fengyuan Fermentation Technology Engineering Research Co., Ltd., Anhui Fengyuan Biochemical Co., Ltd., Anhui Fengyuan Biofiber Co., Ltd. Co., Ltd., Anhui Huachi Plastic Industry Co., Ltd., Bengbu Tiancheng Packaging Technology Co., Ltd., Shenzhen Zhengwang Environmental New Material Co., Ltd., Guangdong Chongxi Environmental Protection Technology Co., Ltd., Sichuan University, Anhui Hengxin Environmental Protection New Material Co., Ltd., Yangzhou Huitong Technology Co., Ltd., Lanzhou Xinyinhuan Rubber Products Co., Ltd., Zhongcheng Huadao Group Co., Ltd., Anhui Zhongcheng Huadao Plastic Co., Ltd. The main drafters of this document. Fu Ye, Zhou Yingxin, Wen Liang, Yin Tian, Feng Shen, Zhou Jiushou, Zhao Yanchao, Wang Xiong, Zhou Yigang, Wang Peng, Wei Wenchang, Wan Yuqing, Ji Chuanxia, Hu Fugui, Yu Jianmei, Wang Chunqiu, Li Shuzhen, Zhang Jianhong, Wei Jie, Wu Gang, Yan Deping, Shen Kunliang, Zhang Jiangang, Qin Wensheng, Ai Rong, Gao Ting.IntroductionProducts made of biodegradable plastics are designed to be recycled through organic cycles in composting plants or anaerobic digesters. Not because These products are biodegradable (biodegradable) and are considered to be freely discarded in the environment. This is undesirable. These products should be recycled. Collection and reuse. However, it is worthwhile to test methods to determine the degree and rate of biodegradation of plastics in natural environments (such as soil or marine environments). Attention, in order to better describe the degradation behavior of plastics in these specific environments. In fact, some products used in the ocean are made of plastic These products are sometimes lost or intentionally placed in the marine environment. The characteristics of biodegradable plastic materials can be It is characterized by the application of specific test methods, which can determine the biodegradability of plastics exposed to marine sediments and seawater. Quantitative assessment. Plastic products are directly discarded or flow into the pelagic area (free water) with fresh water, and then are affected by material density, tides, ocean currents and waves. The impact may sink to the sub-coast and reach the surface of the seabed. Many biodegradable plastics have a density greater than 1, so they tend to sink. From the surface (Interface with seawater) to the deep layer, the environment of the sediments changes from aerobic to anoxic to anaerobic, showing a sharply changing oxygen gradient. Plastic seawater sandy sediment interface non-floating plastic Determination of the final aerobic biodegradability of materials By measuring the method of releasing carbon dioxide1 ScopeThis document describes a test method that measures the amount of carbon dioxide released by plastic materials in the sea at the junction of sea water and the seabed. The degree and rate of decomposition of aerobic organisms on ocean sandy sediments. This test method is also applicable to other solid organic materials. This test method is to simulate the habitat environment of different seawater sedimentation areas in the ocean under laboratory conditions, such as when the sun hits the bottom of the sea. The benthic zone (light zone) is called the coastal zone in marine science. The determination of the biological decomposition of plastic materials and other solid materials buried in marine sediments is outside the scope of this document. Note. The determination of aerobic biodegradation can also be obtained by monitoring oxygen consumption, and the method is described in GB/T 40611-2021. The conditions described in this document may be inconsistent with the optimal conditions for maximum biodegradation.2 Normative referencesThere are no normative references in this document.3 Terms and definitionsThe following terms and definitions apply to this document. The terms and definitions used in this document in ISO and IEC can be found on the following website. 3.1 Theoretical amount of evolved carbonioxide ThCO2 The theoretical maximum value of carbon dioxide that can be generated when the test material is completely oxidized can be calculated from the molecular formula or total organic carbon (TOC). Note. Expressed in milligrams of carbon dioxide released per milligram or per gram of test material (mgCO2/mg test material or gCO2/g test material). 3.2 Total organic carbon TOC The total amount of carbon contained in organic compounds. Note. Total organic carbon is expressed in milligrams of carbon per 100mg compound (mgCO2/100mg compound). 3.3 Dissolved organic carbon DOC Dissolved in water, cannot be separated by special phase separation method (such as 40000m0-2 speed centrifugal separation for 15min or pore diameter 0.2μm~0.45μm Filter membrane filtration) and separated organic carbon. ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 40612-2021_English be delivered?Answer: Upon your order, we will start to translate GB/T 40612-2021_English as soon as possible, and keep you informed of the progress. The lead time is typically 1 ~ 3 working days. 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