Matches in SemOpenAlex for { <https://semopenalex.org/work/W2081356876> ?p ?o ?g. }
- W2081356876 endingPage "79" @default.
- W2081356876 startingPage "74" @default.
- W2081356876 abstract "Expanded bed adsorption chromatography (EBAC) is a single pass operation that has been used as primary capture step in various protein purifications. The most common problem in EBAC is often associated with successful formation of a stable fluidized bed during the absorption stage, which is critically dependent on parameters such as liquid velocity, bed height, particle (adsorbent) size and density as well as design of column and type of flow distributor. In this study, residence time distribution (RTD) test using acetone as non-binding tracer acetone was performed to evaluate liquid dispersion characteristics of the EBAC system. A high B(o) number was obtained indicating the liquid dispersion in the system employed is very minimal and the liquid flow within the bed was close to plug flow, which mimics a packed bed chromatography system. Evaluation on the effect of flow velocities and bed height on the performance of Streamline DEAE using feedstock containing heat-treated crude Escherichia coli homogenate of different biomass concentrations was carried out in this study. The advantages and disadvantages as well as the problems encountered during recovery of HBcAg with aforementioned parameters are also discussed in this paper." @default.
- W2081356876 created "2016-06-24" @default.
- W2081356876 creator A5002913489 @default.
- W2081356876 creator A5026840160 @default.
- W2081356876 creator A5039321442 @default.
- W2081356876 creator A5042787752 @default.
- W2081356876 creator A5085755363 @default.
- W2081356876 date "2008-11-01" @default.
- W2081356876 modified "2023-10-10" @default.
- W2081356876 title "Effect of different operating modes and biomass concentrations on the recovery of recombinant hepatitis B core antigen from thermal-treated unclarified Escherichia coli feedstock" @default.
- W2081356876 cites W113579455 @default.
- W2081356876 cites W154901978 @default.
- W2081356876 cites W1581273677 @default.
- W2081356876 cites W1594809973 @default.
- W2081356876 cites W160507705 @default.
- W2081356876 cites W1775315218 @default.
- W2081356876 cites W1862962852 @default.
- W2081356876 cites W1965168681 @default.
- W2081356876 cites W1969139245 @default.
- W2081356876 cites W1978519233 @default.
- W2081356876 cites W1981571082 @default.
- W2081356876 cites W1986318365 @default.
- W2081356876 cites W1995762697 @default.
- W2081356876 cites W1999448683 @default.
- W2081356876 cites W1999642743 @default.
- W2081356876 cites W2002860344 @default.
- W2081356876 cites W2006530650 @default.
- W2081356876 cites W2011582129 @default.
- W2081356876 cites W2018147461 @default.
- W2081356876 cites W2022395763 @default.
- W2081356876 cites W2024431338 @default.
- W2081356876 cites W2025212003 @default.
- W2081356876 cites W2031982324 @default.
- W2081356876 cites W2033116578 @default.
- W2081356876 cites W2037035636 @default.
- W2081356876 cites W2048024207 @default.
- W2081356876 cites W2048098589 @default.
- W2081356876 cites W2050421233 @default.
- W2081356876 cites W2067704944 @default.
- W2081356876 cites W2072238786 @default.
- W2081356876 cites W2073479491 @default.
- W2081356876 cites W2073888623 @default.
- W2081356876 cites W2077828235 @default.
- W2081356876 cites W2080001810 @default.
- W2081356876 cites W2080187599 @default.
- W2081356876 cites W2080379345 @default.
- W2081356876 cites W2083915360 @default.
- W2081356876 cites W2087627380 @default.
- W2081356876 cites W2090040265 @default.
- W2081356876 cites W2100837269 @default.
- W2081356876 cites W2138014476 @default.
- W2081356876 cites W2162148888 @default.
- W2081356876 cites W2330185521 @default.
- W2081356876 cites W4243731955 @default.
- W2081356876 cites W4293247451 @default.
- W2081356876 doi "https://doi.org/10.1016/j.jbiotec.2008.08.004" @default.
- W2081356876 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/18786579" @default.
- W2081356876 hasPublicationYear "2008" @default.
- W2081356876 type Work @default.
- W2081356876 sameAs 2081356876 @default.
- W2081356876 citedByCount "11" @default.
- W2081356876 countsByYear W20813568762013 @default.
- W2081356876 countsByYear W20813568762014 @default.
- W2081356876 countsByYear W20813568762015 @default.
- W2081356876 countsByYear W20813568762016 @default.
- W2081356876 countsByYear W20813568762018 @default.
- W2081356876 countsByYear W20813568762019 @default.
- W2081356876 crossrefType "journal-article" @default.
- W2081356876 hasAuthorship W2081356876A5002913489 @default.
- W2081356876 hasAuthorship W2081356876A5026840160 @default.
- W2081356876 hasAuthorship W2081356876A5039321442 @default.
- W2081356876 hasAuthorship W2081356876A5042787752 @default.
- W2081356876 hasAuthorship W2081356876A5085755363 @default.
- W2081356876 hasBestOaLocation W20813568762 @default.
- W2081356876 hasConcept C104317684 @default.
- W2081356876 hasConcept C109359841 @default.
- W2081356876 hasConcept C113196181 @default.
- W2081356876 hasConcept C120665830 @default.
- W2081356876 hasConcept C121332964 @default.
- W2081356876 hasConcept C144058455 @default.
- W2081356876 hasConcept C150394285 @default.
- W2081356876 hasConcept C172331833 @default.
- W2081356876 hasConcept C177562468 @default.
- W2081356876 hasConcept C178790620 @default.
- W2081356876 hasConcept C185592680 @default.
- W2081356876 hasConcept C191545125 @default.
- W2081356876 hasConcept C199289684 @default.
- W2081356876 hasConcept C206139338 @default.
- W2081356876 hasConcept C207891110 @default.
- W2081356876 hasConcept C43617362 @default.
- W2081356876 hasConcept C547475151 @default.
- W2081356876 hasConcept C55493867 @default.
- W2081356876 hasConcept C73826308 @default.
- W2081356876 hasConcept C97355855 @default.
- W2081356876 hasConceptScore W2081356876C104317684 @default.
- W2081356876 hasConceptScore W2081356876C109359841 @default.
- W2081356876 hasConceptScore W2081356876C113196181 @default.
- W2081356876 hasConceptScore W2081356876C120665830 @default.