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欧洲医疗废物的无害化处理技术 被引量:7
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作者 张泽玉 王婷 《上海节能》 2015年第1期35-39,共5页
系统地介绍了欧洲所采用的医疗废物处理技术——联合焚烧法、高温蒸汽灭菌法、焚烧—高温蒸汽灭菌法、机械—化学消毒法、微波辐射法,指出焚烧法是当前处理危险性废物的首选方法,焚烧—蒸汽灭菌法相结合的新型处理技术是管理和处理危险... 系统地介绍了欧洲所采用的医疗废物处理技术——联合焚烧法、高温蒸汽灭菌法、焚烧—高温蒸汽灭菌法、机械—化学消毒法、微波辐射法,指出焚烧法是当前处理危险性废物的首选方法,焚烧—蒸汽灭菌法相结合的新型处理技术是管理和处理危险性医疗废物的最有效方法。鉴于医疗废物的特殊性,和城市废物一起焚烧处理时必须对其进行燃烧前控制,提出了城市废物和医疗废物联合焚烧系统。 展开更多
关键词 医疗废物 联合焚烧 蒸汽灭菌 机械-化学消毒 微波辐射
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UV disinfection of Staphylococcus aureus in ballast water: Effect of growth phase on the disinfection kinetics and the mechanization at molecular level 被引量:1
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作者 REN ZhiJun ZHANG Lin SHI Yue 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第2期330-336,共7页
This work aimed to study the inactivate kinetics of Staphylococcus aureus (S. aureus) in artificial seawater by ultraviolet radi- ation, establish relationships between model parameters and growth phases, and explai... This work aimed to study the inactivate kinetics of Staphylococcus aureus (S. aureus) in artificial seawater by ultraviolet radi- ation, establish relationships between model parameters and growth phases, and explain the mechanization of UV disinfection by molecular biological detection. Investigations were carried out for the validation of Chick-Watson, Collins-Selleck, Horn and Biphasic models when S. aureus was in stationary phase (t=14 h). The results showed that the Biphasic kinetic model's R2 turned out to be the highest one (R2=0.9892) and RMSE was less than 0.5 (RMSE =0.2699). The Biphasic kinetic model was better fit for ultraviolet disinfection than the other three models under the circumstance of this experiment and chosen to fit the ultraviolet disinfection curves for microorganisms at three growth phases. The sensitivity of microorganisms under ultraviolet radiation was in the following order: in exponential phase 〉 in stationary phase 〉 in lag phase by comparing the indexes of the Biphasic model (kl and x). Besides, agarose gel electrophoresis was used in order to directly assess the damage to DNA of mi- croorganisms that were exposed to the different dose of UV irradiation. The results revealed that DNA damage caused by UV radiation was an important reason for the microorganism inactivation and as the UV dose increased, there was greater damage caused in DNA. 展开更多
关键词 UV disinfection KINETICS growth phases Biphasic models DNA damage
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