Matches in SemOpenAlex for { <https://semopenalex.org/work/W2895821429> ?p ?o ?g. }
- W2895821429 endingPage "882" @default.
- W2895821429 startingPage "866" @default.
- W2895821429 abstract "Fly ash is the residue of coal combustion collected by electrostatic or cyclone separator. It is one of the largest quantities of waste disposed in the world. Fly ash represents mostly less than 100 micron in size spherical particles with pozzolanic and hydraulic properties depending on its composition. Utilization of fly ash depends on its chemical, mineralogical composition and morphology. Because of coal nature, fly ash represents a significant drawback with presence of radionuclides such as 226Ra, 232Th and 40K. The fly ash can be used for various applications. The main amount of the fly ash is used for building materials production as cement additive and concrete production. Therefore, the determination of radiological properties both in the fly ash and final products are important parameters to consider. Radioactive isotopes cause release of alpha, beta, particles gamma rays and radon exhalation. However, fly ash addition doesn't increase the gamma dose substantially. Moreover, radioactive elements are generally immobilized within glass phase and therefore, radon emanation is not high. In this review the latest development of utilization of the various fly ashes with a different level of radioactive elements content for value added application are presented and a possible new direction of applications are discussed." @default.
- W2895821429 created "2018-10-26" @default.
- W2895821429 creator A5000703830 @default.
- W2895821429 creator A5036771040 @default.
- W2895821429 creator A5045491412 @default.
- W2895821429 creator A5080878018 @default.
- W2895821429 date "2019-02-01" @default.
- W2895821429 modified "2023-10-01" @default.
- W2895821429 title "Processing and uses of fly ash addressing radioactivity (critical review)." @default.
- W2895821429 cites W1964153110 @default.
- W2895821429 cites W1964945458 @default.
- W2895821429 cites W1968336880 @default.
- W2895821429 cites W1969567256 @default.
- W2895821429 cites W1970395830 @default.
- W2895821429 cites W1971479250 @default.
- W2895821429 cites W1972008045 @default.
- W2895821429 cites W1976728010 @default.
- W2895821429 cites W1979233386 @default.
- W2895821429 cites W1979273379 @default.
- W2895821429 cites W1979718805 @default.
- W2895821429 cites W1980735696 @default.
- W2895821429 cites W1981844247 @default.
- W2895821429 cites W1982419962 @default.
- W2895821429 cites W1986911642 @default.
- W2895821429 cites W1990776894 @default.
- W2895821429 cites W1991044661 @default.
- W2895821429 cites W1992471579 @default.
- W2895821429 cites W1995532792 @default.
- W2895821429 cites W1999009035 @default.
- W2895821429 cites W2004322738 @default.
- W2895821429 cites W2008747574 @default.
- W2895821429 cites W2011975254 @default.
- W2895821429 cites W2012196886 @default.
- W2895821429 cites W2014554031 @default.
- W2895821429 cites W2018659840 @default.
- W2895821429 cites W2025359571 @default.
- W2895821429 cites W2026534562 @default.
- W2895821429 cites W2028064771 @default.
- W2895821429 cites W2028905466 @default.
- W2895821429 cites W2031476584 @default.
- W2895821429 cites W2038216210 @default.
- W2895821429 cites W2038430800 @default.
- W2895821429 cites W2041867768 @default.
- W2895821429 cites W2043398761 @default.
- W2895821429 cites W2045942894 @default.
- W2895821429 cites W2046164193 @default.
- W2895821429 cites W2054866280 @default.
- W2895821429 cites W2058931169 @default.
- W2895821429 cites W2059300562 @default.
- W2895821429 cites W2068743771 @default.
- W2895821429 cites W2070914801 @default.
- W2895821429 cites W2075080288 @default.
- W2895821429 cites W2078462178 @default.
- W2895821429 cites W2079526351 @default.
- W2895821429 cites W2079886032 @default.
- W2895821429 cites W2080507406 @default.
- W2895821429 cites W2081613255 @default.
- W2895821429 cites W2084779988 @default.
- W2895821429 cites W2086004870 @default.
- W2895821429 cites W2086241199 @default.
- W2895821429 cites W2087090584 @default.
- W2895821429 cites W2088284933 @default.
- W2895821429 cites W2089008910 @default.
- W2895821429 cites W2089372247 @default.
- W2895821429 cites W2090625540 @default.
- W2895821429 cites W2090779433 @default.
- W2895821429 cites W2101379235 @default.
- W2895821429 cites W2109480035 @default.
- W2895821429 cites W2130958291 @default.
- W2895821429 cites W2151871560 @default.
- W2895821429 cites W2168629136 @default.
- W2895821429 cites W2200728682 @default.
- W2895821429 cites W2314920692 @default.
- W2895821429 cites W2319665544 @default.
- W2895821429 cites W2334334104 @default.
- W2895821429 cites W2402537190 @default.
- W2895821429 cites W2474262425 @default.
- W2895821429 cites W2474292074 @default.
- W2895821429 cites W2524431995 @default.
- W2895821429 cites W2544857391 @default.
- W2895821429 cites W2549230934 @default.
- W2895821429 cites W2616292046 @default.
- W2895821429 cites W2618834779 @default.
- W2895821429 cites W2748565110 @default.
- W2895821429 cites W2754347977 @default.
- W2895821429 cites W2792582692 @default.
- W2895821429 cites W2915965599 @default.
- W2895821429 cites W1997193507 @default.
- W2895821429 doi "https://doi.org/10.1016/j.chemosphere.2018.10.112" @default.
- W2895821429 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30390998" @default.
- W2895821429 hasPublicationYear "2019" @default.
- W2895821429 type Work @default.
- W2895821429 sameAs 2895821429 @default.
- W2895821429 citedByCount "54" @default.
- W2895821429 countsByYear W28958214292018 @default.
- W2895821429 countsByYear W28958214292019 @default.
- W2895821429 countsByYear W28958214292020 @default.
- W2895821429 countsByYear W28958214292021 @default.