Matches in SemOpenAlex for { <https://semopenalex.org/work/W4386070327> ?p ?o ?g. }
- W4386070327 endingPage "75" @default.
- W4386070327 startingPage "75" @default.
- W4386070327 abstract "The availability of fossil energy is dwindling, so renewable fuels are the alternative choices, one of which is bioethanol. To increase the purity of the ethanol produced via the fermentation process, activated carbon (AC) was made from durian (Durio zibethinus) peel. The steps for making AC consist of carbonization (300 °C and 400 °C), chemical activation using phosphoric acid (10–40%), pyrolysis (700 °C and 800 °C), and neutralization. The results showed that the maximum surface area (326.72 m2/g) was obtained from 400 °C carbonization, 800 °C pyrolysis, and activation using a 40% phosphoric acid solution. Other characteristics are the surface area of 326.72 m2/g, pore radius of 1.04 nm, and total pore volume of 0.17 cc/g with phosphate residue in the form a P2O5 molecule of 3.47% by weight, with COOH, OH, CO, C=C, C=O, P-OC, and Fe-O groups with wavenumbers (cm−1), respectively, of 3836, 3225, 2103, 1555, 1143, and 494. The AC also demonstrated the highest number of carbon (86.41%) upon detection using EDX, while XRF analysis verified an average carbon content of 94.45 wt%. The highest ethanol adsorption efficiency (%) and the lowest yield (%) of AC (%) were 90.01 ± 0.00 and 23.26 ± 0.01. This study shows that durian peel has great potential as the raw material for the activated carbon manufacture of ethanol adsorbents." @default.
- W4386070327 created "2023-08-23" @default.
- W4386070327 creator A5032445315 @default.
- W4386070327 creator A5039589652 @default.
- W4386070327 creator A5040759907 @default.
- W4386070327 creator A5066216229 @default.
- W4386070327 creator A5067938926 @default.
- W4386070327 creator A5086507406 @default.
- W4386070327 creator A5092675418 @default.
- W4386070327 creator A5092675419 @default.
- W4386070327 date "2023-08-22" @default.
- W4386070327 modified "2023-09-25" @default.
- W4386070327 title "Effects of Phosphate and Thermal Treatments on the Characteristics of Activated Carbon Manufactured from Durian (Durio zibethinus) Peel" @default.
- W4386070327 cites W1587367618 @default.
- W4386070327 cites W1982615336 @default.
- W4386070327 cites W2037782824 @default.
- W4386070327 cites W2050526487 @default.
- W4386070327 cites W2062411909 @default.
- W4386070327 cites W2065047663 @default.
- W4386070327 cites W2067451517 @default.
- W4386070327 cites W2078675464 @default.
- W4386070327 cites W2203049960 @default.
- W4386070327 cites W2265380197 @default.
- W4386070327 cites W2283272636 @default.
- W4386070327 cites W2289932467 @default.
- W4386070327 cites W2509284956 @default.
- W4386070327 cites W2523784410 @default.
- W4386070327 cites W2567919229 @default.
- W4386070327 cites W2618145667 @default.
- W4386070327 cites W2751997893 @default.
- W4386070327 cites W2771033907 @default.
- W4386070327 cites W2781121478 @default.
- W4386070327 cites W2793111292 @default.
- W4386070327 cites W2802893676 @default.
- W4386070327 cites W2890857421 @default.
- W4386070327 cites W2911410523 @default.
- W4386070327 cites W2920824581 @default.
- W4386070327 cites W2927071079 @default.
- W4386070327 cites W2938438046 @default.
- W4386070327 cites W2952316804 @default.
- W4386070327 cites W2953766884 @default.
- W4386070327 cites W2965486482 @default.
- W4386070327 cites W2987492331 @default.
- W4386070327 cites W2996684041 @default.
- W4386070327 cites W3000442611 @default.
- W4386070327 cites W3005425777 @default.
- W4386070327 cites W3006590843 @default.
- W4386070327 cites W3011006413 @default.
- W4386070327 cites W3023605400 @default.
- W4386070327 cites W3024012195 @default.
- W4386070327 cites W3037878545 @default.
- W4386070327 cites W3084404412 @default.
- W4386070327 cites W3093200085 @default.
- W4386070327 cites W3093350212 @default.
- W4386070327 cites W3097856002 @default.
- W4386070327 cites W3113736040 @default.
- W4386070327 cites W3133856241 @default.
- W4386070327 cites W3135858207 @default.
- W4386070327 cites W3155531110 @default.
- W4386070327 cites W3180636704 @default.
- W4386070327 cites W3204155911 @default.
- W4386070327 cites W4210298481 @default.
- W4386070327 cites W4220700156 @default.
- W4386070327 cites W4280584305 @default.
- W4386070327 cites W4311022410 @default.
- W4386070327 cites W4317436294 @default.
- W4386070327 doi "https://doi.org/10.3390/chemengineering7050075" @default.
- W4386070327 hasPublicationYear "2023" @default.
- W4386070327 type Work @default.
- W4386070327 citedByCount "0" @default.
- W4386070327 crossrefType "journal-article" @default.
- W4386070327 hasAuthorship W4386070327A5032445315 @default.
- W4386070327 hasAuthorship W4386070327A5039589652 @default.
- W4386070327 hasAuthorship W4386070327A5040759907 @default.
- W4386070327 hasAuthorship W4386070327A5066216229 @default.
- W4386070327 hasAuthorship W4386070327A5067938926 @default.
- W4386070327 hasAuthorship W4386070327A5086507406 @default.
- W4386070327 hasAuthorship W4386070327A5092675418 @default.
- W4386070327 hasAuthorship W4386070327A5092675419 @default.
- W4386070327 hasBestOaLocation W43860703271 @default.
- W4386070327 hasConcept C104779481 @default.
- W4386070327 hasConcept C13965031 @default.
- W4386070327 hasConcept C140205800 @default.
- W4386070327 hasConcept C150394285 @default.
- W4386070327 hasConcept C154877778 @default.
- W4386070327 hasConcept C159985019 @default.
- W4386070327 hasConcept C178790620 @default.
- W4386070327 hasConcept C185592680 @default.
- W4386070327 hasConcept C192562407 @default.
- W4386070327 hasConcept C206139338 @default.
- W4386070327 hasConcept C2776622989 @default.
- W4386070327 hasConcept C2777132085 @default.
- W4386070327 hasConcept C2779647737 @default.
- W4386070327 hasConcept C2780161600 @default.
- W4386070327 hasConcept C36759035 @default.
- W4386070327 hasConceptScore W4386070327C104779481 @default.
- W4386070327 hasConceptScore W4386070327C13965031 @default.
- W4386070327 hasConceptScore W4386070327C140205800 @default.