The plastic waste has suffered a dramatic increase and has become one of the biggest environmental problems nowadays. The chemical transformation of plastics by catalytic cracking under hydrogen atmosphere (hydrocracking) is one of the viable solutions to this problem since it can convert plastic residues into petrochemicals and fuels. In this work a thermogravimetric study of high-density polyethylene (HDPE) conversion under hydrogen atmosphere and in the presence of catalysts with different textural and chemical features is presented. The effect of distinct micro (H-ZSM-5, H-FER and H-MOR) and mesoporous (SBA-15 and MCM-41) catalysts is studied, both in terms of energy requirements and products distribution. Moreover, the effects of sampl...
A world without plastics is unimaginable now and probably also in future. With the growing use of pl...
Technological advancements over the last century have lead large and continuous growth in the output...
The catalytic degradation of high density polyethylene (HDPE) was investigated using AITUD-1 as cata...
The rapid increase in the consumption of plastic caused by the abrupt growth in living standards had...
High-density polyethylene (HDPE) was converted to a mixed of lower and higher hydrocarbons over micr...
In this study, the conversion of HDPE in VGO to fuels was carried out in absence and presence of cat...
Rationale for catalytic activity and product distribution in HDPE hydrocracking promoted by zeolite ...
The plastic industry generates enormous quantities of plastics at projected rates (both production a...
As plastic consumption increased in the last few years, worldwide generation of plastic solid waste ...
As the consumption of plastic is increasingly becoming high due its positive impact on our lives, th...
Abstract: The pyrolysis characteristics of high-density polyethylene (HDPE) were investigated over A...
This paper studies the effect of two different parameters on the different fractions obtained in the...
Received: 12.06.22. Revised: 28.06.22. Accepted: 30.06. 22. Available online: 05.07.22.The aim of th...
The hydrocracking of high-density polyethylene (HDPE) blended with vacuum gas oil (VGO) has been stu...
The two-stage pyrolysis-catalysis of high density polyethylene has been investigated with pyrolysis ...
A world without plastics is unimaginable now and probably also in future. With the growing use of pl...
Technological advancements over the last century have lead large and continuous growth in the output...
The catalytic degradation of high density polyethylene (HDPE) was investigated using AITUD-1 as cata...
The rapid increase in the consumption of plastic caused by the abrupt growth in living standards had...
High-density polyethylene (HDPE) was converted to a mixed of lower and higher hydrocarbons over micr...
In this study, the conversion of HDPE in VGO to fuels was carried out in absence and presence of cat...
Rationale for catalytic activity and product distribution in HDPE hydrocracking promoted by zeolite ...
The plastic industry generates enormous quantities of plastics at projected rates (both production a...
As plastic consumption increased in the last few years, worldwide generation of plastic solid waste ...
As the consumption of plastic is increasingly becoming high due its positive impact on our lives, th...
Abstract: The pyrolysis characteristics of high-density polyethylene (HDPE) were investigated over A...
This paper studies the effect of two different parameters on the different fractions obtained in the...
Received: 12.06.22. Revised: 28.06.22. Accepted: 30.06. 22. Available online: 05.07.22.The aim of th...
The hydrocracking of high-density polyethylene (HDPE) blended with vacuum gas oil (VGO) has been stu...
The two-stage pyrolysis-catalysis of high density polyethylene has been investigated with pyrolysis ...
A world without plastics is unimaginable now and probably also in future. With the growing use of pl...
Technological advancements over the last century have lead large and continuous growth in the output...
The catalytic degradation of high density polyethylene (HDPE) was investigated using AITUD-1 as cata...