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Experimental study on co-pyrolysis characteristics of typical medical waste compositions

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【作者】 邓娜崔文谦王维维张强张于峰马洪亭

【Author】 DENG Na;CUI Wen-qian;WANG Wei-wei;ZHANG Qiang;ZHANG Yu-feng;MA Hong-ting;School of Environmental Science and Engineering, Tianjin University;Key Laboratory of Efficient Utilization of Low and Medium Grade Energy of Ministry of Education(Tianjin University);

【机构】 School of Environmental Science and Engineering, Tianjin UniversityKey Laboratory of Efficient Utilization of Low and Medium Grade Energy of Ministry of Education(Tianjin University)

【摘要】 Thermal decomposition of 21 kinds of binary mixtures between typical medical compositions was investigated under nitrogen conditions by dynamic thermogravimetric analysis(TGA) at 25–800 °C. The weighed sum method(WSM) coupled with thermal analysis was applied to study the interaction between components. Then, co-pyrolysis kinetic model of the binary mixtures(tube for transfusion(TFT) and gauze) was established to verify the reliability of conclusions. The results show the follows. 1) Strong or weak interactions are shown between binary mixtures containing polyvinyl chloride(PVC), the main ingredient of TFT. The addition of other medical waste could enhance first stage decomposition of TFT. While, the secondary stage pyrolysis may be suppressed or enhanced or not affected by the addition. 2) There exists no interaction between catheter and other component, the DTG peak temperature representing Ca CO3 decomposition in catheter fraction is obviously lower than that of pure catheter; while,the shape of DTG peak keeps unchanged. 3) No evident reaction occurs between the other mix-samples, it is considered that their co-pyrolysis characteristics are linear superposition of mono-component pyrolysis characteristics.

【Abstract】 Thermal decomposition of 21 kinds of binary mixtures between typical medical compositions was investigated under nitrogen conditions by dynamic thermogravimetric analysis(TGA) at 25–800 °C. The weighed sum method(WSM) coupled with thermal analysis was applied to study the interaction between components. Then, co-pyrolysis kinetic model of the binary mixtures(tube for transfusion(TFT) and gauze) was established to verify the reliability of conclusions. The results show the follows. 1) Strong or weak interactions are shown between binary mixtures containing polyvinyl chloride(PVC), the main ingredient of TFT. The addition of other medical waste could enhance first stage decomposition of TFT. While, the secondary stage pyrolysis may be suppressed or enhanced or not affected by the addition. 2) There exists no interaction between catheter and other component, the DTG peak temperature representing Ca CO3 decomposition in catheter fraction is obviously lower than that of pure catheter; while,the shape of DTG peak keeps unchanged. 3) No evident reaction occurs between the other mix-samples, it is considered that their co-pyrolysis characteristics are linear superposition of mono-component pyrolysis characteristics.

【基金】 Projects(51105269,51406133)supported by the National Natural Science Foundation of China;Project supported by the ScientificResearch Foundation for the Returned Overseas Chinese Scholars,Ministry of Education,China;Project supported by the Ministry ofEducation Key Laboratory Program,China
  • 【文献出处】 Journal of Central South University ,中南大学学报(英文版) , 编辑部邮箱 ,2014年12期
  • 【分类号】X799.5
  • 【被引频次】4
  • 【下载频次】76
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