Volume 67 Issue 2
Feb.  2023
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BI Zhe, SONG Xiaoping, CHAO Jingbo, LIN Hong, DAI Caihong, HAO Xiaopeng, HE Longbiao, LIU Haoran. Strategy of International Committee for Weights and Measures on Climate Change and Environment[J]. Metrology Science and Technology, 2023, 67(2): 3-12. doi: 10.12338/j.issn.2096-9015.2022.0253
Citation: BI Zhe, SONG Xiaoping, CHAO Jingbo, LIN Hong, DAI Caihong, HAO Xiaopeng, HE Longbiao, LIU Haoran. Strategy of International Committee for Weights and Measures on Climate Change and Environment[J]. Metrology Science and Technology, 2023, 67(2): 3-12. doi: 10.12338/j.issn.2096-9015.2022.0253

Strategy of International Committee for Weights and Measures on Climate Change and Environment

doi: 10.12338/j.issn.2096-9015.2022.0253
  • Received Date: 2022-10-28
  • Accepted Date: 2022-11-10
  • Rev Recd Date: 2023-02-21
  • Available Online: 2023-03-02
  • Publish Date: 2023-02-18
  • Climate change and environmental issues are highly relevant to the Sustainable Development Goals (SDGs) of the United Nations. Measuring Essential Climate Variables (ECVs) and studying the synergistic toxic effects of environmental pollutants pose significant challenges for metrology science. To address these challenges, the International Committee for Weights and Measures (CIPM) has developed the CIPM Strategy 2030+ and action plans for strengthening basic metrology research and interdisciplinary collaboration to enhance the support of metrology science in policy decisions. The European Association of National Metrology Institutes (EURAMET) has carried out a series of studies focusing on environmental and climate monitoring to meet the regulatory needs of the European Union. The EURAMET members actively participate in the World Meteorological Organization (WMO) network, providing valuable references for metrology science development in China. To support the implementation of "Synergy between pollution and carbon emission control" in China, metrology research efforts should focus on measuring emerging pollutants and developing online calibration methods. The measurement of carbon emissions and other pollutants should also be improved. Overall, the metrology standards, natural matrix reference materials, critical components of environmental instruments, and fundamental metrology methodology need to be enhanced to support national climate and environmental strategies. To achieve these goals, metrology institutions at all levels should work together to strengthen departmental cooperation and establish scientific resource-sharing mechanisms. In addition, metrology institutions should strengthen cooperation with related domestic and international agencies and institutes to improve the quality of crucial data and advisory capacity for decision-making.
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  • [1]
    International Committee for Weights and Measures. The CIPM Strategy 2022 [R]. Paris: CIPM symposium, 2022.
    [2]
    叶榅平. “双碳”目标行动立法的法理逻辑[J]. 前沿, 2022(6): 41-57.
    [3]
    UKEOF . Guidance Note: ECVs - sources of information on GCOS requirements and international standards relevant to climate observing [R]. London, 2017.
    [4]
    环境保护部. HJ 720-2017: 环境信息元数据规范[S]. 北京: 中国环境科学出版社, 2017.
    [5]
    胡清, 吕广丰, 高菁阳, 等. 区块链技术在环境监测中的应用研究[J]. 中国环境管理, 2022(9): 21-29.
    [6]
    European Association of National Metrology Institute . EURAMET Science and Technology Roadmaps for Metrology [R]. Brussels, 2020.
    [7]
    European Association of National Metrology Institutes . EURAMET strategy [R]. Brussels, 2022.
    [8]
    刘波, 李芸琪, 蒋银娟. 气候变化冲击下的制造业企业全要素生产率——机制分析与实证检验[J]. 湖南大学学报(社会科学版), 2023, 37(1): 78-87.
    [9]
    HU Y, SU M, WANG Y, et al. Food production in China requires intensified measures to be consistent with national and provincial environmental boundaries[J]. Nature Food, 2020, 80(1): 572-582.
    [10]
    王潇潇, 商钊敏. 基于碳中和愿景的省域资源环境科技发展战略探析[J]. 低碳世界, 2022, 12(10): 16-18.
    [11]
    张文阁, 刘巍, 刘俊杰, 等. 环境空气颗粒物质量浓度计量溯源体系的建立[J]. 计量科学与技术, 2022, 66(10): 10-15.
    [12]
    王爽, 徐东杰, 刘思远, 等. 面向“双碳”目标的电力系统调节能力建设思考[J]. 环境影响评价, 2023, 45(1): 1-5.
    [13]
    张艾蕊, 王海, 任丹华, 等. TXRF分析样品前处理方法研究进展及其在环境监测领域的应用[J]. 计量科学与技术, 2022, 66(10): 57-64.
    [14]
    刘堃. 中国应对气候变化政策热点研究[J]. 河南大学学报(社会科学版), 2023, 63(1): 27-32,153.
    [15]
    许潇, 池顺鑫, 李想. 颗粒物质量浓度智慧计量平台的研制[J]. 计量科学与技术, 2022, 66(10): 71-76.
    [16]
    张洋, 赵岳, 李威达, 等. 碳中和1+N之路分析[J]. 中国煤炭地质, 2022, 34(12): 50-53.
    [17]
    张文帅, 朱海渤, 杜天君. 固定污染源废气挥发性有机物排放连续监测系统校准方法研究[J]. 计量科学与技术, 2021, 65(9): 56-60,30. doi: 10.12338/j.issn.2096-9015.2020.0363
    [18]
    侯正猛, 罗佳顺, 曹成, 等. 中国碳中和目标下的天然气产业发展与贡献[J]. 工程科学与技术, 2023, 55(1): 243-252.
    [19]
    王淑红. 土壤测试计量及其环境监测研究综述[J]. 皮革制作与环保科技, 2022, 3(13): 76-78.
    [20]
    刘悦, 肖骥, 刘俊杰. 碳质气溶胶标准物质研究进展与方向[J]. 计量科学与技术, 2022, 66(6): 3-9.
    [21]
    李海生, 李小敏, 赵玉婷, 等. 基于文献计量分析的近40年国内外环境影响评价研究进展[J]. 环境科学研究, 2022, 35(5): 1091-1101.
    [22]
    吴丹, 高晓晶, 廖小卿, 等. 大气重金属在线监测系统的评价[J]. 计量科学与技术, 2021, 65(3): 32-35.
    [23]
    刘子优. 计量检定和校准在环境监测质量管理中的作用[J]. 区域治理, 2019(34): 121-123.
    [24]
    刘恒发. 浅谈计量检定和校准在环境监测质量管理中的作用[J]. 科技资讯, 2019, 17(25): 80,82.
    [25]
    董云青. 基于生态保护的环境成本计量探究[J]. 科技创新导报, 2020, 17(9): 109-110.
    [26]
    岳亚军,王泽璋,叶菁,等. 空气质量检测远程在线智能校准系统研究[J]. 计量科学与技术, 2022, 66(12): 27-35.
    [27]
    郭瑞民. 气体光谱计量技术研究进展[J]. 计量科学与技术, 2022, 66(10): 52-56.
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