某锂电池企业生产线化学性有害因素调查

Investigation of chemical hazards in the production line of a lithium battery manufacturing plant

  • 摘要:
    目的 调查锂电池生产线化学性有害因素,为科学管理锂电池行业职业健康风险提供参考依据。
    方法 对某企业开展工艺流程调查,通过苏玛罐采集职业环境中挥发性有机物(VOCs),活性炭管采集碳酸酯类物质及N⁃甲基吡咯烷酮,滤膜采集空气中金属,采用气相色谱质谱联用仪(GC⁃MS)检测VOCs、碳酸酯类及N⁃甲基吡咯烷酮,电感耦合等离子体质谱联用仪(ICP⁃MS)分析空气中粉尘样品的金属元素。
    结果 环境监测结果表明,N⁃甲基吡咯烷酮在负极涂布、装配与烘干及正极涂布岗位检出;碳酸二甲酯在装配与烘干和注液岗位检出,碳酸甲乙酯在注液岗位检出;VOCs半定量检测识别出丙烯腈、卤代烃等136种污染物。基于环境监测定量检测法发现,装配与烘干岗位碳酸甲乙酯水平最高(几何均数31.450 mg·m-³);所有岗位均检出碳酸二乙酯;注液、装配与烘干岗位有碳酸亚乙烯酯与碳酸乙烯酯检出。正极涂布所有样品均检出N⁃甲基吡咯烷酮(范围4.00~7.40 mg·m-³,几何均数5.68 mg·m-³)。仅在注液岗位空气中粉尘样品中检测出锂(几何均数0.014 μg·m-³)。
    结论 本次调查在锂电池生产线的正极涂布、注液、装配与烘干等关键岗位检出N⁃甲基吡咯烷酮、碳酸甲乙酯、碳酸二乙酯等化学物,且挥发性有机物半定量检测识别出136种污染物,呈现多重化学物共存暴露特征。

     

    Abstract:
    Objective To investigate the chemical hazards in the production line of lithium batteries, so as to provide a scientific basis for the management of occupational-health risk and to promote the healthy and sustainable development of the lithium battery industry.
    Methods An on-site survey on the process flow of the production of lithium battery was conducted in an enterprise. Volatile organic compounds (VOCs) in the occupational environment were collected by Summa canisters, carbonates and N-methyl pyrrolidone (NMP) were collected using activated carbon tubes, and airborne metals were collected using filter membranes. VOCs, carbonates and NMP were detected by gas chromatography-mass spectrometry (GC-MS), and airborne metal elements in the dust samples were analyzed by inductively coupled plasma mass spectrometry (ICP-MS).
    Results Non-targeted environmental monitoring results indicated that NMP was detected in the negative /positive electrode coating, assembly and drying filling workstations, dimethyl carbonate (DMC) was detected in the assembly, drying and electrolyte injection workstations, and ethyl methyl carbonate (EMC) was detected solely in the electrolyte injection workstation. Semi-quantitative analyses of VOCs identified 136 pollutants, including acrylonitrile and halohydrocarbons. Quantitative targeted environmental monitoring results revealed the highest geometric mean (GM) concentration of EMC (31.450 mg·m-3) was found in the assembly and drying workstations, diethyl carbonate (DEC) was detected in all workstations. While vinylene carbonate (VC) and ethylene carbonate (EC) were detected only in electrolyte injection, assembly and drying workstations. NMP was detected in all positive electrode coating samples, with a GM concentration of 5.68 mg·m-3 (concentration range: 4.0‒ 7.4 mg·m-³). Lithium was exclusively detected in dust samples from the liquid injection workstation (GM: 0.014 μg·m-³).
    Conclusion NMP, EMC, DEC, and other chemicals are identified at the key workstations such as the positive electrode coating, electrolyte injection, assembly and drying in the lithium production line. Furthermore, semi-quantitative VOCs analyses identified 136 pollutants, demonstrating a characteristic of multicomponent chemical exposure.

     

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