Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Amornrat Suemanotham"'
Autor:
Natthawan Prasongthum, Amornrat Suemanotham, Wanchana Sisuthog, Yoothana Thanmongkhon, Chaiyan Chaiya, Lalita Attanatho
Publikováno v:
Energy Reports, Vol 9, Iss , Pp 380-386 (2023)
Oil palm trunk (OPT) is a solid residue discharged from palm-oil upstream industry, with high potential as a feedstock for solid fuel production. However, its high moisture content and low energy density causes the limitation of utilization. In this
Externí odkaz:
https://doaj.org/article/47a50224adac419ca4c9fccb511034c7
Autor:
Jeerattikul Kaharn, Chanoknunt Khaobang, Amornrat Suemanotham, Vittaya Punsuvon, Chinnathan Areeprasert
Publikováno v:
Biomass and Bioenergy. 163:106538
Autor:
Neeranuch Duangwongsa, Pathompat Khowattana, Lalita Attanatho, Natthawan Prasongthum, Amornrat Suemanotham, Siriporn Larpkiattaworn, Yoothana Thanmongkhon, Supranee Lao-ubol, Teerawit Laosombut
Publikováno v:
SN Applied Sciences. 2
Converting ethylene to biojet fuel range hydrocarbons via oligomerization is an important step in biojet production from ethanol. The present study investigates the catalytic ethylene oligomerization over platelet Ni-AlSBA-15 mesoporous catalysts. Th
Autor:
Yoothana Thanmongkhon, Aparat Mahakhant, Bence Babinszki, Lalita Attanatho, Zoltán May, Zoltán Sebestyén, Viktor Terjék, Zsuzsanna Czégény, Gábor Várhegyi, Emma Jakab, Amornrat Suemanotham
Publikováno v:
Journal of Analytical and Applied Pyrolysis. 155:105069
The palm oil industry produces large amounts of biomass by-products, such as palm empty fruit bunch (EFB), mesocarp fiber (MF), and kernel shell (KS). The thermal behavior and decomposition of the oil palm biomass wastes have been studied by thermogr
Autor:
Amornrat Suemanotham, Chih-Li Chang, Jyun-Hong Pan, Chia-Min Yang, Takehisa Mochizuki, Lalita Attanatho, Ho-Hsiu Chou, Albert M. Chang, Hideyuki Takagi, Shih-Yuan Chen, Artita Na Rungsi, Apanee Luengnaruemitchai
Publikováno v:
Applied Catalysis A: General. 602:117707
Facile synthesis of superficial Pd nanoparticles supported on carbonaceous SBA-15 (denoted as Pd/@SBA-15) as a new hydrotreating catalyst with enhanced activity and sulfur tolerance was accomplished for the production of partially hydrogenated fatty