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空气气氛下医疗废物热分解特性
引用本文:孟庆敏,陈晓平,张亮. 空气气氛下医疗废物热分解特性[J]. 东南大学学报(自然科学版), 2011, 41(6): 1236-1240. DOI: 10.3969/j.issn.1001-0505.2011.06.021
作者姓名:孟庆敏  陈晓平  张亮
作者单位:1. 东南大学能源与环境学院,南京,210096
2. 浙江富春江环保热电股份有限公司,富阳,311418
摘    要:利用热重(TG)和傅里叶变换红外光谱(FTIR)联用技术对医疗废物中的塑料类(输液管)、化纤类(口罩)及其混合物进行空气气氛下热分解实验,研究单组分及混合物热分解的失重特性,并对热分解气体产物进行定性分析.结果表明:与N2气氛相比,塑料类(输液管)失重峰数量增多,且第一个失重峰峰值增大明显;化纤类(口罩)热分解起始温度...

关 键 词:医疗废物  输液管  口罩  热分解

Decomposition characteristics of medical waste in air
Meng Qingmin,Chen Xiaoping,Zhang Liang. Decomposition characteristics of medical waste in air[J]. Journal of Southeast University(Natural Science Edition), 2011, 41(6): 1236-1240. DOI: 10.3969/j.issn.1001-0505.2011.06.021
Authors:Meng Qingmin  Chen Xiaoping  Zhang Liang
Affiliation:1School of Energy and Environment,Southeast University,Nanjing 210096,China)(2Zhejiang Fuchun River Green Power Co.Ltd.,Fuyang 311418,China)
Abstract:Thermal decomposition of certain medical waste and its mixture in the air was studied using the thermo-gravimetric(TG) analyzer coupled with the Fourier transform infrared spectroscopy(FTIR).The gravimetric characteristics of each species and mixture and the qualitative analysis of evolved volatile products were investigated.Compared with thermal decomposition in nitrogen(N2),for perfusion tube,the peak number of differential thermogravimetric(DTG) curve increases and the first peak value increases obviously.For respirator,the initial decomposition temperature drops down about 150℃,and the peak appears earlier about 100℃.Evolved volatile products from respirator include CO2,H2O,CO,hydrocarbon,aldehyde and acid,and products from perfusion tube include CO2,alkyne,aldehyde,acid and hydrogen chloride(HCl).Decomposition temperature of HCl in perfusion tube is between 304℃ and 409℃.The agravic characteristics of mixture reflect that of each species in the mixture.Also,mixture has no effect on decomposition of HCl.Finally,reaction kinetic parameters of perfusion tube and respirator in air are calculated which provides a theoretical basis and reliable sub-models for the controlled air oxidation of medical waste.
Keywords:medical waste  perfusion tube  respirator  thermal decomposition
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