Lyddiatt Andrew | Biochemical Recovery Croup Department Of Chemical Engineering School Of Engineering University Of Bi
スポンサーリンク
概要
- LYDDIATT Andrewの詳細を見る
- 同名の論文著者
- Biochemical Recovery Croup Department Of Chemical Engineering School Of Engineering University Of Biの論文著者
関連著者
-
Lyddiatt Andrew
Biochemical Recovery Croup Department Of Chemical Engineering School Of Engineering University Of Bi
-
Walker Simon
Biochemical Recovery Croup Department Of Chemical Engineering School Of Engineering University Of Bi
-
Ling Tau
Biochemical Recovery Group Department Of Chemical Engineering School Of Engineering University Of Bi
-
Huddleston Jonathan
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
Ling Tau
Biochemical Recovery Croup Department Of Chemical Engineering School Of Engineering University Of Bi
-
Breton Benedicte
Biochemical Recovery Group School Of Chemical Engineering University Of Brimingham
-
Dale Christopher
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
WALKER Simon
Biochemical Recovery Group, BBSRC Centre for Biochemical Engineering, School of Chemical Engineering
-
LYDDIATT Andrew
Biochemical Recovery Group, BBSRC Centre for Biochemical Engineering, School of Chemical Engineering
-
Selvakumar Pitchaivelu
Biochemical Recovery Croup Department Of Chemical Engineering School Of Engineering University Of Bi
-
Walker Simon
Biochemical Recovery Group Centre For Bioprocess Engineering School Of Chemical Engineering Universi
-
Huddleston Jonathan
Department Of Chemistry The University Of Alabama
-
Huddleston Jonathan
Department Of Chemistry University Of Alabama
-
Huddleston Jonathan
Biochemical Recovery Group School Of Chemical Engineering University Of Brimingham
-
Rito-palomares Marco
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
Lyddiatt Andrew
Biochemical Recovery Group Department Of Chemical Engineering School Of Engineering University Of Bi
-
Lyddiatt Andrew
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
Lyddiatt Andrew
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
Lyddiatt Andrew
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
Lyddiatt Andrew
Biochemical Recovery Group Centre For Bioprocess Engineering School Of Chemical Engineering Universi
-
Lyddiatt Andrew
Biochemical Recovery Group School Of Chemical Engineering University Of Birmingham
-
Lyddiatt Andrew
Biochemical Recovery Group School Of Chemical Engineering University Of Brimingham
-
ABELAIRA Joan
Biochemical Recovery Group, BBSRC Centre for Biochemical Engineering School of Chemical Engineering,
-
WANG Rayduen
Biochemical Recovery Group, BBSRC Centre for Biochemical Engineering School of Chemical Engineering,
-
BELVAL Sylvie
Biochemical Recovery Group, School of Chemical Engineering, University of Brimingham
-
LEBRETON Benedicte
Biochemical Recovery Group, School of Chemical Engineering, University of Birmingham
-
NEGRETE Alejandro
Biochemical Recovery Group, Department of Chemical Engineering, School of Engineering, University of
-
Wang Rayduen
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
Lebreton Benedicte
Biochemical Recovery Group School Of Chemical Engineering University Of Birmingham
-
Belval Sylvie
Biochemical Recovery Group School Of Chemical Engineering University Of Brimingham
-
Abelaira Joan
Biochemical Recovery Group Bbsrc Centre For Biochemical Engineering School Of Chemical Engineering U
-
Negrete Alejandro
Biochemical Recovery Group Department Of Chemical Engineering School Of Engineering University Of Bi
著作論文
- Aqueous two-phase partition of complex protein feedstocks derived from brain tissue homogenates
- Redefinition of working aqueous two-phase systems : A generic description for prediction of the effective phase chemical composition for process control and biorecovery
- Aqueous two-phase systems as an alternative process route for the fractionation of small inclusion bodies
- Impact of cell disruption and polymer recycling upon aqueous two-phase processes for protein recovery
- Protein partition between the different phases comprising poly (ethylene glycol)-salt aqueous two-phase systems, hydrophobic interaction chromatography and precipitation : a generic description in terms of salting-out effects
- Influence of temperature upon protein partitioning in poly(ethylene glycol)-salt aqueous two-phase systems close to the critical point with some observations relevant to the partitioning of particles
- Polymer-protein interactions in aqueous two phase systems : fluorescent studies of the partition behaviour of human serum albumin
- Aqueous two-phase recovery of bio-nanoparticles : A miniaturization study for the recovery of bacteriophage T4