Spent fluid cracking catalyst (FCC) waste is produced to convert petroleum crude oil into gasoline, and its main component is a reactive zeolite known as faujasite. This paper studies low-energy treatments to enhance reactivity. When untreated, the spent FCC has outstanding activity, and a fast set which delivered significant strength (6–10 MPa) and a high mechanical index (MI=14). Calcination (up to 800 °C) is not enough to amorphize the faujasite and increase reactivity. However, NaOH-fusion is highly efficient. Even at low temperature (450 °C), NaOH-fusion breaks down the zeolite structure, dissolving Si4+ that forms cementing hydrates with high Ca/Si and Si/Al ratios which delivered high strengths. NaOH-fusion at 450 °C totally amorphiz...
Every year the oil refining industry consumes thousand tons of fluid catalytic cracking zeolite from...
[[abstract]]As the economy and technology continue to grow, more and more industrial wastes will be ...
Permission is granted by ICE Publishing to print one copy for personal use. Any other use of these P...
Spent fluid catalytic cracking (FCC) catalyst is an oil industry by product from fluidised-bed catal...
Spent fluid catalytic cracking (FCC) catalyst is an oil industry by product from fluidised-bed catal...
Fluid catalytic cracking catalyst residue (spent FCCC) is an inorganic by-product obtained from petr...
The reuse of waste fluid catalytic cracking (FCC) catalyst as partial surrogate for cement can redu...
The reuse of waste fluid catalytic cracking (FCC) catalyst as partial surrogate for cement can redu...
Approximately 400 000 tons of waste catalysts are produced by petrochemical industry in fluidized be...
One of the measures to reduce the carbon footprint of the Portland cement (PC) manufacturing process...
The most active phase of the fluid catalytic cracking (FCC) catalyst, used in oil refinery, is zeoli...
The most active phase of the fluid catalytic cracking (FCC) catalyst, used in oil refinery, is zeoli...
[[abstract]]ABSTRACT This study is aimed at the way to take advantage of spent catalyst produced in ...
The utilization of exhausted fluid catalytic cracking (FCC) catalysts as raw materials for the zeoli...
The present paper shows preliminary results of an ongoing project which one of the goals is to inves...
Every year the oil refining industry consumes thousand tons of fluid catalytic cracking zeolite from...
[[abstract]]As the economy and technology continue to grow, more and more industrial wastes will be ...
Permission is granted by ICE Publishing to print one copy for personal use. Any other use of these P...
Spent fluid catalytic cracking (FCC) catalyst is an oil industry by product from fluidised-bed catal...
Spent fluid catalytic cracking (FCC) catalyst is an oil industry by product from fluidised-bed catal...
Fluid catalytic cracking catalyst residue (spent FCCC) is an inorganic by-product obtained from petr...
The reuse of waste fluid catalytic cracking (FCC) catalyst as partial surrogate for cement can redu...
The reuse of waste fluid catalytic cracking (FCC) catalyst as partial surrogate for cement can redu...
Approximately 400 000 tons of waste catalysts are produced by petrochemical industry in fluidized be...
One of the measures to reduce the carbon footprint of the Portland cement (PC) manufacturing process...
The most active phase of the fluid catalytic cracking (FCC) catalyst, used in oil refinery, is zeoli...
The most active phase of the fluid catalytic cracking (FCC) catalyst, used in oil refinery, is zeoli...
[[abstract]]ABSTRACT This study is aimed at the way to take advantage of spent catalyst produced in ...
The utilization of exhausted fluid catalytic cracking (FCC) catalysts as raw materials for the zeoli...
The present paper shows preliminary results of an ongoing project which one of the goals is to inves...
Every year the oil refining industry consumes thousand tons of fluid catalytic cracking zeolite from...
[[abstract]]As the economy and technology continue to grow, more and more industrial wastes will be ...
Permission is granted by ICE Publishing to print one copy for personal use. Any other use of these P...