采用热重分析仪研究了空气气氛中废弃医用外科口罩的热氧化降解特性,并运用3种无模型方法以及1种模型拟合方法进行了动力学和热力学分析。结果表明:废弃医用外科口罩在空气气氛中的热氧化降解是一种吸热的非自发反应,且整个热氧化降解...采用热重分析仪研究了空气气氛中废弃医用外科口罩的热氧化降解特性,并运用3种无模型方法以及1种模型拟合方法进行了动力学和热力学分析。结果表明:废弃医用外科口罩在空气气氛中的热氧化降解是一种吸热的非自发反应,且整个热氧化降解过程可被认为是单步反应。热氧化降解过程的活化能和指前因子的平均值分别为63.83 k J·mol^(-1)和1.27×10^(5) min^(-1),最概然反应模型为g(a)-[-ln(1-a)]^(2/3),所获得的动力学参数可用于较好地预测废弃医用外科口罩在空气中的热氧化降解行为。研究结果可以为预防废弃医用外科口罩可能引发的火灾事故提供参考。展开更多
Cuprous oxide (Cu 2O) was prepared by reducing Cu 2+ with NaBH 4. 4-chloro-nitrobenzene was used to examined for the photocatalyst in the artificial solar. The results indicate cuprous oxide has high photoactivity and...Cuprous oxide (Cu 2O) was prepared by reducing Cu 2+ with NaBH 4. 4-chloro-nitrobenzene was used to examined for the photocatalyst in the artificial solar. The results indicate cuprous oxide has high photoactivity and the organic degradation was completed. Under the irradiation of visible light, 4-chloro-nitrobenzene solution of 10 mg·1 -1and 40.0 mg·1 -1 decomposed 95% and 84% in 60 minutes, respectively. The degradation is first order reaction.展开更多
文摘采用热重分析仪研究了空气气氛中废弃医用外科口罩的热氧化降解特性,并运用3种无模型方法以及1种模型拟合方法进行了动力学和热力学分析。结果表明:废弃医用外科口罩在空气气氛中的热氧化降解是一种吸热的非自发反应,且整个热氧化降解过程可被认为是单步反应。热氧化降解过程的活化能和指前因子的平均值分别为63.83 k J·mol^(-1)和1.27×10^(5) min^(-1),最概然反应模型为g(a)-[-ln(1-a)]^(2/3),所获得的动力学参数可用于较好地预测废弃医用外科口罩在空气中的热氧化降解行为。研究结果可以为预防废弃医用外科口罩可能引发的火灾事故提供参考。
文摘Cuprous oxide (Cu 2O) was prepared by reducing Cu 2+ with NaBH 4. 4-chloro-nitrobenzene was used to examined for the photocatalyst in the artificial solar. The results indicate cuprous oxide has high photoactivity and the organic degradation was completed. Under the irradiation of visible light, 4-chloro-nitrobenzene solution of 10 mg·1 -1and 40.0 mg·1 -1 decomposed 95% and 84% in 60 minutes, respectively. The degradation is first order reaction.