MY193194A - A continuous process of decomposing biomass for the production of bio-oil by an improved fluidized bed pyrolysis system - Google Patents

A continuous process of decomposing biomass for the production of bio-oil by an improved fluidized bed pyrolysis system

Info

Publication number
MY193194A
MY193194A MYPI2014703890A MYPI2014703890A MY193194A MY 193194 A MY193194 A MY 193194A MY PI2014703890 A MYPI2014703890 A MY PI2014703890A MY PI2014703890 A MYPI2014703890 A MY PI2014703890A MY 193194 A MY193194 A MY 193194A
Authority
MY
Malaysia
Prior art keywords
bio
oil
fluidized bed
biomass
bed pyrolysis
Prior art date
Application number
MYPI2014703890A
Inventor
Uemura Yoshimitsu
Binti Ali Norizan
Noaman Omar Wissam
Binti Osman Noridah
Amir Firdaus Bin Mazlan Mohammad
Original Assignee
Univ Teknologi Petronas
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Univ Teknologi Petronas filed Critical Univ Teknologi Petronas
Priority to MYPI2014703890A priority Critical patent/MY193194A/en
Publication of MY193194A publication Critical patent/MY193194A/en

Links

Landscapes

  • Production Of Liquid Hydrocarbon Mixture For Refining Petroleum (AREA)

Abstract

A continuous process of decomposing biomass for efficient production of bio-oil by an improved fluidized bed pyrolysis system is disclosed. The disclosed improved fluidized bed pyrolysis system uses effective condensation system comprising three stages of fractional condensation comprising three stages of fractional condensation further comprising a series of six successive condensers operated using three different media at three temperatures. The effects of different parameters like biomass types (palm kernel shell (PKS) and mesocarp fiber), sizes (0.15-0.5, 0.5-1.0, and 1.0-2.0 mm), and pyrolysis temperature (400,450, 500, and 550 ?C) on pyrolytic products distribution including bio-oil for decomposition of palm kernel shell (PKS) and mesocarp fiber is performed in the improved fluidized bed pyrolysis system with nitrogen gas flow rate of 25 L(NTP)/min in the continuous process of decomposing biomass for efficient production of bio-oil. The maximum bio-oil yield (39.6 % ) obtained from PKS of 0.15-0.5 mm at 500 ?C. It is evident that that small particle size produced the most noticeable amount of bio-oil production. The present process is carried out in a continuous fashion to carry out decomposition of biomass for obtaining six fractions of bio-oil and other pyrolytic products using a very effective fractional condensation system, thereby making the entire process time efficient. (Figure 1)
MYPI2014703890A 2014-12-19 2014-12-19 A continuous process of decomposing biomass for the production of bio-oil by an improved fluidized bed pyrolysis system MY193194A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
MYPI2014703890A MY193194A (en) 2014-12-19 2014-12-19 A continuous process of decomposing biomass for the production of bio-oil by an improved fluidized bed pyrolysis system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
MYPI2014703890A MY193194A (en) 2014-12-19 2014-12-19 A continuous process of decomposing biomass for the production of bio-oil by an improved fluidized bed pyrolysis system

Publications (1)

Publication Number Publication Date
MY193194A true MY193194A (en) 2022-09-26

Family

ID=83444760

Family Applications (1)

Application Number Title Priority Date Filing Date
MYPI2014703890A MY193194A (en) 2014-12-19 2014-12-19 A continuous process of decomposing biomass for the production of bio-oil by an improved fluidized bed pyrolysis system

Country Status (1)

Country Link
MY (1) MY193194A (en)

Similar Documents

Publication Publication Date Title
Tripathi et al. Effect of process parameters on production of biochar from biomass waste through pyrolysis: A review
MX2019000007A (en) Plant and process for pyrolysis of mixed plastic waste.
MX2017006543A (en) Processes for handling char in a catalytic fast pyrolysis process and char compositions.
MY193974A (en) Thermolytic fragmentation of sugars
MY179001A (en) Apparatus and method for plasma synthesis of graphitic products including graphene
PH12015500964A1 (en) Process for producing olefin-containing products by thermal steam cracking
EA201892115A3 (en) CONTROL OF TECHNOLOGICAL GASES
NZ629687A (en) Biorefining method
MY177577A (en) Process for production of ammonia and derivatives, in particular urea
WO2016066716A8 (en) Method and plant for the production of synthesis gas
PH12017501088A1 (en) Reactor for producing a product gas from a fuel
CO2017005026A2 (en) A process to produce a synthesis gas
MX2015013302A (en) Process and device for continuous thermal hydrolysis.
SE1750648A1 (en) Process and reactor for producing biochar from renewable material.
MX2017002846A (en) Process for production of ammonia and derivatives, in particular urea.
SA519401963B1 (en) A Process for Producing Crude Bio-Oil
MY162947A (en) Pyrolysis method for plant biomass
PH12017501512A1 (en) Pyrolysis retort methods and apparatus
WO2017048201A3 (en) Charcoal derived from agricultural residues
MY193194A (en) A continuous process of decomposing biomass for the production of bio-oil by an improved fluidized bed pyrolysis system
EA031295B9 (en) METHOD OF CONVERSION OF BIOMASS, AT LEAST, TO BIOUGOL
MX2021001896A (en) Thermochemical treatment of cellulosic materials.
MY206229A (en) Method for producing menthol particles stabilized against caking, and storage-stable menthol particles and use thereof
PH12019500087A1 (en) Absorbent products and methods for producing the same
TN2015000478A1 (en) Process and plant for separating heavy metals from phosphoric starting material