2012 ©
             Publication
Journal Publication
Research Title Enhancing pyrolytic oil production from pyrolytic catalysis cracking (PCC) of waste cooking oil by using in-situ hydrodeoxygenation process. 
Date of Distribution 10 May 2024 
Conference
     Title of the Conference 13th International Conference on Environmental Engineering, Science and Management. “Environment & Low-Carbon Society for Sustainable Future” 
     Organiser สมาคมวิศวกรรมสิ่งแวดล้อมแห่งประเทศไทย (สวสท.) ร่วมกับ ศูนย์วิจัยด้านการจัดการสิ่งแวดล้อมและสารอันตราย คณะวิศวกรรมศาสตร์ มหาวิทยาลัยขอนแก่น 
     Conference Place Pullman Khon Kaen Raja Orchid, Thailand  
     Province/State Khon Kaen  
     Conference Date 9 May 2024 
     To 10 May 2024 
Proceeding Paper
     Volume Vol. 39 No. 1 (2024) 
     Issue 10R3-02 
     Page 84 
     Editors/edition/publisher Thares Srisatit, Wanpen Wirojanagud, Chart Chiemchaisri, Pensri Wachlayarn, Arthit Neramittagapong and Sumana Ratpukdi 
     Abstract The purpose of this work is to upgrade pyrolytic oil from pyrolytic catalytic cracking (PCC) to reduce oxygen content through in-situ hydrodeoxygenation (deoxygenation), using methanol as an in-situ hydrogen donor. The reaction conditions were tested at a temperature of 230°C and a time of 6 hours. The study examined the effect of Nickel (II) nitrate (Ni(NO3)2·6H2O, 97.0% purity). Catalysts were reduced at a temperature of 550°C for 5 hours under an atmosphere of 10 vol% H2 mixed with 90 vol% N2 before usage. A loading of 6 wt% on the HZSM-5 support (SiO2/Al2O3 = 40) was examined using the incipient wetness impregnation method. The physical and chemical properties of the catalysts were characterized by XRD and XANES. The upgraded oil products were analyzed for density (ASTM D1480-07), viscosity (ASTM D445 and D240), HHV, and CHNO. The morphology of the catalysts displayed a spherical shape and agglomerated at higher nickel loadings of more than 6 wt%. The nickel content was affected by the hydrodeoxygenation (HDO) reaction. The morphology of the catalysts displayed a spherical shape and agglomerated, and a study on nickel loading at 6 wt% Ni/HZSM-5 showed the simultaneous generation of esters and ketones from esterification reactions. The product properties of upgraded pyrolytic oil (UPO) met standard specifications. 
Author
645040106-4 Miss WARANGKANA KHANGWICHIAN [Main Author]
Engineering Master's Degree

Peer Review Status มีผู้ประเมินอิสระ 
Level of Conference นานาชาติ 
Type of Proceeding Full paper 
Type of Presentation Oral 
Part of thesis true 
Presentation awarding false 
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