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Toluene degradation by a water/silicone oil mixture for the design of two phase partitioning bioreactors 被引量:3
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作者 Maxime Guillerm Annabelle Couvert +3 位作者 Abdeltif Amrane Edith Norrant Audrey Breton éric Dumont 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第10期1512-1518,共7页
Toluene degradation performances were studied in a 10 L Two-Phase Partitioning Bioreactor(TPPB).The liquid phase consisted of a mixture of water and PDMS 50(Poly Di Methyl Siloxane,i.e.silicone oil,viscosity of 46 m P... Toluene degradation performances were studied in a 10 L Two-Phase Partitioning Bioreactor(TPPB).The liquid phase consisted of a mixture of water and PDMS 50(Poly Di Methyl Siloxane,i.e.silicone oil,viscosity of 46 m Pa·s) in the volume ratio of 75%/25%.Two series of experiments were carried out:in the first,the reactor was sequentially supplied with toluene whereas in the second,toluene was continuously supplied.Activated sludge from the wastewater treatment plant of Beaurade(Rennes,France) was used at an initial concentration of 0.5 dry mass g·(mixture L)^(-1).The elimination capacity(EC) was investigated as well as the change in biomass concentration over time.Toluene biodegradation was very ef ficient(removal ef ficiency,RE=100%) for toluene flows ranging from 0.2 to 1.2 ml·h^(-1),corresponding to elimination capacities of up to 104 g·m^(-3)·h^(-1).For a toluene flow of 1.2 ml·h^(-1),the biomass concentration measured at the end of the experiment was 4.7 dry mass g·(mixture L)^(-1).The oxygen concentration in the liquid phase was clearly not a limiting factor in these operating conditions.Based on these results,an extrapolation leading to the design of a large-scale pilot TPPB can now be considered to study toluene degradation performances in industrial conditions. 展开更多
关键词 Degradation Toluene Silicone oil Multiphase reactor Biomass
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光伏系统应用的自适应多相变换器 被引量:1
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作者 A.Berasategi C.Cabal +3 位作者 Y.El Basri B.Estibal M.Vermeersch C.Alonso 《电力电子》 2012年第2期45-47,61,共4页
本文阐述将一种自适应多相变换器(AMPC)用作适配级来提高光伏系统的功率转换链的效率和可靠性。为了说明AMPC的优点,文中首先介绍了单相和多相变换器效率的概念。针对光伏系统连续变化工作点的主要特性,提出了控制法则也要保证高的转换... 本文阐述将一种自适应多相变换器(AMPC)用作适配级来提高光伏系统的功率转换链的效率和可靠性。为了说明AMPC的优点,文中首先介绍了单相和多相变换器效率的概念。针对光伏系统连续变化工作点的主要特性,提出了控制法则也要保证高的转换效率,而且设计了实验性样机来评估该适配级的性能。 展开更多
关键词 光伏系统 多相变换器 光伏系统连续变化
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Contactless Raman Spectroscopy-Based Monitoring of Physical States of Silyl-Modified Polymers during Cross-Linking
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作者 Boris Colin Olivier Lavastre +4 位作者 Stéphane Fouquay Guillaume Michaud Frédéric Simon Olivier Laferte Jean-Michel Brusson 《Green and Sustainable Chemistry》 2016年第4期151-166,共17页
Cross-linking of silyl-modified polymers occurs at the alkoxysilane groups attached to the ends of polymer chains by hydrolysis and polycondensation mechanisms in the presence of moisture. During these reactions, thre... Cross-linking of silyl-modified polymers occurs at the alkoxysilane groups attached to the ends of polymer chains by hydrolysis and polycondensation mechanisms in the presence of moisture. During these reactions, three different physical states can be identified (viscous, skin effect and cross-linked state). Knowledge of the evolution of these states at each reaction time is essential to determine the open time for the adhe-sive industry and is generally obtained by a manual method. Automation of this moni-toring could avoid operator error and could be used for very long cross linking reac-tions or to screen a large number of catalysts. Thus, a contactless micro process tech-nology was developed to correlate these physical states with an optical technology, Raman spectroscopy, by monitoring the decrease in intensity of the Si-OCH<sub>3</sub> groups during chemical reactions. This online characterization method can also be used to compare the efficiencies of several catalysts for the cross-linking of silyl-modified polymers, using a minimum amount of chemical materials. 展开更多
关键词 Silyl Modified Polymers Physical States Micro Contactless Monitoring Raman Spectroscopy Cross-Linking
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