Matches in SemOpenAlex for { <https://semopenalex.org/work/W3210898052> ?p ?o ?g. }
- W3210898052 endingPage "1434" @default.
- W3210898052 startingPage "1421" @default.
- W3210898052 abstract "Recently, the disposal of waste by beneficial and environmentally friendly methods has attracted great attention. In this work, we have studied the production of high-value carbon nanotubes (CNTs) which have remarkable applications by catalytic pyrolysis of sugarcane bagasse (SCB) as an agricultural waste using a two-stage process. Various reaction factors including the effects of zeolite types (HZSM-5, HMOR, and HY), pyrolysis temperatures (450−700°C), and SCB/ZSM-5 ratios (3−12) on SCB pyrolysis were investigated to generate CNTs from pyrolysis products. A Co-Mo/MgO catalyst was used for growing CNTs via the decomposition of pyrolysis products. The morphological structure and quality of CNTs were characterized using TEM and Raman spectroscopy, while the fresh Co-Mo/MgO catalyst was characterized by XRD and TPR analyses. The results showed that zeolite type, pyrolysis temperature, and SCB/ZSM-5 ratio had significant effects on the CNTs yield. The optimum carbon yield (24.9%) was achieved using the HZSM-5 catalyst at the pyrolysis temperature of 500°C and with the SCB/ZSM-5 ratio of 6. TEM observations confirmed the growth of bamboo-like carbon nanotubes (BCNTs) and carbon nano-onions (CNOs) in different proportions according to the reaction parameters. Also, CNTs with the largest diameter distribution range (7−76 nm) were produced using the SCB/ZSM-5 ratio of 6. Raman spectra demonstrated the production of high-quality CNTs under all studied conditions." @default.
- W3210898052 created "2021-11-08" @default.
- W3210898052 creator A5007218744 @default.
- W3210898052 creator A5045698259 @default.
- W3210898052 creator A5064809453 @default.
- W3210898052 creator A5069220237 @default.
- W3210898052 date "2021-10-01" @default.
- W3210898052 modified "2023-09-29" @default.
- W3210898052 title "Catalytic pyrolysis of sugarcane bagasse by zeolite catalyst for the production of multi-walled carbon nanotubes" @default.
- W3210898052 cites W1131527540 @default.
- W3210898052 cites W1561570274 @default.
- W3210898052 cites W1828940564 @default.
- W3210898052 cites W1913295939 @default.
- W3210898052 cites W1965464796 @default.
- W3210898052 cites W1966679408 @default.
- W3210898052 cites W1978597567 @default.
- W3210898052 cites W1982042289 @default.
- W3210898052 cites W1984106016 @default.
- W3210898052 cites W1987516776 @default.
- W3210898052 cites W1994563046 @default.
- W3210898052 cites W1994690999 @default.
- W3210898052 cites W1999877156 @default.
- W3210898052 cites W2005130926 @default.
- W3210898052 cites W2008538932 @default.
- W3210898052 cites W2010597934 @default.
- W3210898052 cites W2018184281 @default.
- W3210898052 cites W2026941667 @default.
- W3210898052 cites W2027961873 @default.
- W3210898052 cites W2035378220 @default.
- W3210898052 cites W2041577442 @default.
- W3210898052 cites W2043568213 @default.
- W3210898052 cites W2048727202 @default.
- W3210898052 cites W2051320400 @default.
- W3210898052 cites W2054769300 @default.
- W3210898052 cites W2060265239 @default.
- W3210898052 cites W2078119700 @default.
- W3210898052 cites W2103230106 @default.
- W3210898052 cites W2106187991 @default.
- W3210898052 cites W2115590181 @default.
- W3210898052 cites W2130654679 @default.
- W3210898052 cites W2135600579 @default.
- W3210898052 cites W2151672380 @default.
- W3210898052 cites W2155079179 @default.
- W3210898052 cites W2324964693 @default.
- W3210898052 cites W2330111000 @default.
- W3210898052 cites W2330344219 @default.
- W3210898052 cites W2443198213 @default.
- W3210898052 cites W2510322670 @default.
- W3210898052 cites W2513940282 @default.
- W3210898052 cites W2573911575 @default.
- W3210898052 cites W2582222336 @default.
- W3210898052 cites W2585246273 @default.
- W3210898052 cites W2622667345 @default.
- W3210898052 cites W2690141447 @default.
- W3210898052 cites W2754850626 @default.
- W3210898052 cites W2780229450 @default.
- W3210898052 cites W2810402903 @default.
- W3210898052 cites W2886138832 @default.
- W3210898052 cites W2887138895 @default.
- W3210898052 cites W2901469626 @default.
- W3210898052 cites W2904174861 @default.
- W3210898052 cites W2939185457 @default.
- W3210898052 cites W2956250395 @default.
- W3210898052 cites W2986546914 @default.
- W3210898052 cites W939531371 @default.
- W3210898052 doi "https://doi.org/10.1016/s1872-5813(21)60127-5" @default.
- W3210898052 hasPublicationYear "2021" @default.
- W3210898052 type Work @default.
- W3210898052 sameAs 3210898052 @default.
- W3210898052 citedByCount "8" @default.
- W3210898052 countsByYear W32108980522021 @default.
- W3210898052 countsByYear W32108980522022 @default.
- W3210898052 countsByYear W32108980522023 @default.
- W3210898052 crossrefType "journal-article" @default.
- W3210898052 hasAuthorship W3210898052A5007218744 @default.
- W3210898052 hasAuthorship W3210898052A5045698259 @default.
- W3210898052 hasAuthorship W3210898052A5064809453 @default.
- W3210898052 hasAuthorship W3210898052A5069220237 @default.
- W3210898052 hasConcept C104779481 @default.
- W3210898052 hasConcept C120665830 @default.
- W3210898052 hasConcept C121332964 @default.
- W3210898052 hasConcept C124681953 @default.
- W3210898052 hasConcept C127413603 @default.
- W3210898052 hasConcept C134121241 @default.
- W3210898052 hasConcept C134643618 @default.
- W3210898052 hasConcept C140205800 @default.
- W3210898052 hasConcept C159985019 @default.
- W3210898052 hasConcept C161790260 @default.
- W3210898052 hasConcept C178790620 @default.
- W3210898052 hasConcept C185592680 @default.
- W3210898052 hasConcept C192562407 @default.
- W3210898052 hasConcept C2778077586 @default.
- W3210898052 hasConcept C36759035 @default.
- W3210898052 hasConcept C40003534 @default.
- W3210898052 hasConcept C42360764 @default.
- W3210898052 hasConcept C513720949 @default.
- W3210898052 hasConcept C528095902 @default.
- W3210898052 hasConceptScore W3210898052C104779481 @default.