While HZSM-5 catalytic cracking of crop oil toward aromatics have been well documented, this work adds to this body of knowledge with a full acid byproduct analysis that provides improved mass balance closure along with a design of experiment optimization of reaction conditions. Fatty acids are an inevitable byproduct when converting any triglyceride oil, but are most often overlooked; despite the impact fatty acids have on downstream processing. Acid analysis verified that only short chain fatty acids, mainly acetic acid, were present in low quantities when all feed oil was reacted. When relatively high fatty acid amounts were present, these were mainly uncracked C16 and C18 fatty acids. Optimization is a balance of aromatics formation vs....
This study explored the production of aromatic hydrocarbons from the longer‐chain alkenes produced b...
Biodiesel production from plant oils has been studied since ca. 1900 and is now being widely adopted...
A series of four catalysts, i.e. ZSM-5 (Si/Al = 25) (Z1), a combination of ZSM-5 (Si/Al = 25) and ze...
While HZSM-5 catalytic cracking of crop oil toward aromatics have been well documented, this work ad...
While HZSM-5 catalytic cracking of crop oil toward aromatics have been well documented, this work ad...
As acids are intermediates during the catalytic conversion of triglycerides to hydrocarbons, the pur...
A two-step process was developed for the production of aromatic hydrocarbons from triglyceride (TG) ...
For high caloricity and stability in bio-aviation fuels, a certain content of aromatic hydrocarbons ...
The catalytic conversion of oleic acid to aromatics (benzene, toluene, and xylenes, BTX) over a gran...
The consumption of nonrenewable resources like petroleum fuels is on peak and increased exponentiall...
While industrial oleochemistry is able to transform the carboxylic group of natural fatty acids, the...
Low-carbon light olefins are the basic feedstocks for the petrochemical industry. Catalytic cracking...
The production of biodiesel at the industrial level is mainly based on the use of basic catalysts. O...
Valuable chemical by-products can increase the economic viability of renewable transportation fuel f...
This study introduces three new raw materials for biodiesel production, namely acidic crude palm oil...
This study explored the production of aromatic hydrocarbons from the longer‐chain alkenes produced b...
Biodiesel production from plant oils has been studied since ca. 1900 and is now being widely adopted...
A series of four catalysts, i.e. ZSM-5 (Si/Al = 25) (Z1), a combination of ZSM-5 (Si/Al = 25) and ze...
While HZSM-5 catalytic cracking of crop oil toward aromatics have been well documented, this work ad...
While HZSM-5 catalytic cracking of crop oil toward aromatics have been well documented, this work ad...
As acids are intermediates during the catalytic conversion of triglycerides to hydrocarbons, the pur...
A two-step process was developed for the production of aromatic hydrocarbons from triglyceride (TG) ...
For high caloricity and stability in bio-aviation fuels, a certain content of aromatic hydrocarbons ...
The catalytic conversion of oleic acid to aromatics (benzene, toluene, and xylenes, BTX) over a gran...
The consumption of nonrenewable resources like petroleum fuels is on peak and increased exponentiall...
While industrial oleochemistry is able to transform the carboxylic group of natural fatty acids, the...
Low-carbon light olefins are the basic feedstocks for the petrochemical industry. Catalytic cracking...
The production of biodiesel at the industrial level is mainly based on the use of basic catalysts. O...
Valuable chemical by-products can increase the economic viability of renewable transportation fuel f...
This study introduces three new raw materials for biodiesel production, namely acidic crude palm oil...
This study explored the production of aromatic hydrocarbons from the longer‐chain alkenes produced b...
Biodiesel production from plant oils has been studied since ca. 1900 and is now being widely adopted...
A series of four catalysts, i.e. ZSM-5 (Si/Al = 25) (Z1), a combination of ZSM-5 (Si/Al = 25) and ze...