Matches in SemOpenAlex for { <https://semopenalex.org/work/W2058156688> ?p ?o ?g. }
- W2058156688 endingPage "185" @default.
- W2058156688 startingPage "177" @default.
- W2058156688 abstract "The potential of nanoscaled cellulose and enzymatically phosphorylated derivatives as bio-adsorbents to remove metal ions (Ag+, Cu2+ and Fe3+) from model water and industrial effluents is demonstrated. Introduction of phosphate groups onto nanocelluloses significantly improved the metal sorption velocity and sorption capacity. The removal efficiency was considered to be driven by the high surface area of these nanomaterials as well as the nature and density of functional groups on the nanocellulose surface. Generally, in the solutions containing only single types of metal ions, the metal ion selectivity was in the order Ag+ > Cu2+ > Fe3+, while in the case of mixtures of ions, the order changed to Ag+ > Fe3+ > Cu2+, irrespective of the surface functionality of the nanocellulose. In the case of industrial effluent from the mirror making industry, 99% removal of Cu2+ and Fe3+ by phosphorylated nanocellulose was observed. The study showed that phosphorylated nanocelluloses are highly efficient biomaterials for scavenging multiple metal ions, simultaneously, from industrial effluents." @default.
- W2058156688 created "2016-06-24" @default.
- W2058156688 creator A5018814025 @default.
- W2058156688 creator A5034592057 @default.
- W2058156688 creator A5045060385 @default.
- W2058156688 creator A5055563915 @default.
- W2058156688 creator A5059151993 @default.
- W2058156688 creator A5081263018 @default.
- W2058156688 date "2015-08-01" @default.
- W2058156688 modified "2023-10-14" @default.
- W2058156688 title "Nanocelluloses and their phosphorylated derivatives for selective adsorption of Ag+, Cu2+ and Fe3+ from industrial effluents" @default.
- W2058156688 cites W1975810740 @default.
- W2058156688 cites W1976642731 @default.
- W2058156688 cites W1978883512 @default.
- W2058156688 cites W1980398424 @default.
- W2058156688 cites W1988073745 @default.
- W2058156688 cites W1993839336 @default.
- W2058156688 cites W1997543554 @default.
- W2058156688 cites W1997845739 @default.
- W2058156688 cites W2007762983 @default.
- W2058156688 cites W2012390606 @default.
- W2058156688 cites W2014096918 @default.
- W2058156688 cites W2022669872 @default.
- W2058156688 cites W2026575275 @default.
- W2058156688 cites W2030968440 @default.
- W2058156688 cites W2035703074 @default.
- W2058156688 cites W2037678953 @default.
- W2058156688 cites W2048146191 @default.
- W2058156688 cites W2049672201 @default.
- W2058156688 cites W2053424789 @default.
- W2058156688 cites W2054717523 @default.
- W2058156688 cites W2062169685 @default.
- W2058156688 cites W2062345846 @default.
- W2058156688 cites W2071790375 @default.
- W2058156688 cites W2076663769 @default.
- W2058156688 cites W2077692659 @default.
- W2058156688 cites W2078641192 @default.
- W2058156688 cites W2080534798 @default.
- W2058156688 cites W2083094408 @default.
- W2058156688 cites W2090164925 @default.
- W2058156688 cites W2091007139 @default.
- W2058156688 cites W2099631213 @default.
- W2058156688 cites W2130295923 @default.
- W2058156688 cites W2135957917 @default.
- W2058156688 cites W2156338877 @default.
- W2058156688 cites W2163529355 @default.
- W2058156688 cites W2322719178 @default.
- W2058156688 cites W2327192178 @default.
- W2058156688 doi "https://doi.org/10.1016/j.jhazmat.2015.04.001" @default.
- W2058156688 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25867590" @default.
- W2058156688 hasPublicationYear "2015" @default.
- W2058156688 type Work @default.
- W2058156688 sameAs 2058156688 @default.
- W2058156688 citedByCount "267" @default.
- W2058156688 countsByYear W20581566882015 @default.
- W2058156688 countsByYear W20581566882016 @default.
- W2058156688 countsByYear W20581566882017 @default.
- W2058156688 countsByYear W20581566882018 @default.
- W2058156688 countsByYear W20581566882019 @default.
- W2058156688 countsByYear W20581566882020 @default.
- W2058156688 countsByYear W20581566882021 @default.
- W2058156688 countsByYear W20581566882022 @default.
- W2058156688 countsByYear W20581566882023 @default.
- W2058156688 crossrefType "journal-article" @default.
- W2058156688 hasAuthorship W2058156688A5018814025 @default.
- W2058156688 hasAuthorship W2058156688A5034592057 @default.
- W2058156688 hasAuthorship W2058156688A5045060385 @default.
- W2058156688 hasAuthorship W2058156688A5055563915 @default.
- W2058156688 hasAuthorship W2058156688A5059151993 @default.
- W2058156688 hasAuthorship W2058156688A5081263018 @default.
- W2058156688 hasConcept C118792377 @default.
- W2058156688 hasConcept C127413603 @default.
- W2058156688 hasConcept C138631740 @default.
- W2058156688 hasConcept C147455438 @default.
- W2058156688 hasConcept C150394285 @default.
- W2058156688 hasConcept C150581940 @default.
- W2058156688 hasConcept C161790260 @default.
- W2058156688 hasConcept C178790620 @default.
- W2058156688 hasConcept C179104552 @default.
- W2058156688 hasConcept C185592680 @default.
- W2058156688 hasConcept C199164860 @default.
- W2058156688 hasConcept C2777132085 @default.
- W2058156688 hasConcept C2777968448 @default.
- W2058156688 hasConcept C2779251873 @default.
- W2058156688 hasConcept C42360764 @default.
- W2058156688 hasConcept C544153396 @default.
- W2058156688 hasConcept C58445606 @default.
- W2058156688 hasConcept C87717796 @default.
- W2058156688 hasConceptScore W2058156688C118792377 @default.
- W2058156688 hasConceptScore W2058156688C127413603 @default.
- W2058156688 hasConceptScore W2058156688C138631740 @default.
- W2058156688 hasConceptScore W2058156688C147455438 @default.
- W2058156688 hasConceptScore W2058156688C150394285 @default.
- W2058156688 hasConceptScore W2058156688C150581940 @default.
- W2058156688 hasConceptScore W2058156688C161790260 @default.
- W2058156688 hasConceptScore W2058156688C178790620 @default.
- W2058156688 hasConceptScore W2058156688C179104552 @default.
- W2058156688 hasConceptScore W2058156688C185592680 @default.