Javascript must be enabled to continue!
Model-Based Quality, Exergy, and Economic Analysis of Fluidized Bed Membrane Reactors
View through CrossRef
In petroleum refineries, naphtha reforming units produce reformate streams and as a by-product, hydrogen (H2). Naphtha reforming units traditionally deployed are designed as packed bed reactors (PBR). However, they are restrained by a high-pressure drop, diffusion limitations in the catalyst, and radial and axial gradients of temperature and concentration. A new design using the fluidized bed reactor (FBR) surpasses the issues of the PBR, whereby the incorporation of the membrane can improve the yield of products by selectively removing hydrogen from the reaction side. In this work, a sequential modular simulation (SMS) approach is adopted to simulate the hydrodynamics of a fluidized bed membrane reactor (FBMR) for catalytic reforming of naphtha in Aspen Plus. The reformer reactor is divided into five sections of plug flow reactors and a continuous stirrer tank reactor with the membrane module to simulate the overall FBMR. Similarly, a fluidized bed reactor (FBR), without membrane permeation phenomenon, is also modelled in the Aspen Plus environment for a comparative study with FBMR. In FBMR, the continuous elimination of permeated hydrogen enhanced the production of aromatics compound in the reformate stream. Moreover, the exergy and economic analyses were carried out for both FBR and FBMR.
Title: Model-Based Quality, Exergy, and Economic Analysis of Fluidized Bed Membrane Reactors
Description:
In petroleum refineries, naphtha reforming units produce reformate streams and as a by-product, hydrogen (H2).
Naphtha reforming units traditionally deployed are designed as packed bed reactors (PBR).
However, they are restrained by a high-pressure drop, diffusion limitations in the catalyst, and radial and axial gradients of temperature and concentration.
A new design using the fluidized bed reactor (FBR) surpasses the issues of the PBR, whereby the incorporation of the membrane can improve the yield of products by selectively removing hydrogen from the reaction side.
In this work, a sequential modular simulation (SMS) approach is adopted to simulate the hydrodynamics of a fluidized bed membrane reactor (FBMR) for catalytic reforming of naphtha in Aspen Plus.
The reformer reactor is divided into five sections of plug flow reactors and a continuous stirrer tank reactor with the membrane module to simulate the overall FBMR.
Similarly, a fluidized bed reactor (FBR), without membrane permeation phenomenon, is also modelled in the Aspen Plus environment for a comparative study with FBMR.
In FBMR, the continuous elimination of permeated hydrogen enhanced the production of aromatics compound in the reformate stream.
Moreover, the exergy and economic analyses were carried out for both FBR and FBMR.
Related Results
Procedure for Western blot v1
Procedure for Western blot v1
Goal: This document has the objective of standardizing the protocol for Western blot. This technique allows the detection of specific proteins separated on polyacrylamide gel and t...
Python-based energy and exergy analysis for efficient evaluation of steam turbine performance
Python-based energy and exergy analysis for efficient evaluation of steam turbine performance
Gas and Steam Power Plant (PLTGU) is a thermal power plant that has been in use since 1901. Over time, the energy and exergy analysis of PLTGU must be a fast analysis and takes ver...
Exergy in School?
Exergy in School?
Students at all levels of physics instruction have difficulties dealing with energy, work and heat in general and, in particular, with the concepts of efficiency and ideal heat eng...
Energy and Exergy Analysis of a Nuclear Power Plant
Energy and Exergy Analysis of a Nuclear Power Plant
Abstract
Nuclear power plant can be a key pillar of a country’s energy supply. In their operation, it is necessary to follow the efficient use of the primary energy ...
An Investigation into Hydrophobic Membrane Fouling in Desalination Using Membrane Distillation Technology
An Investigation into Hydrophobic Membrane Fouling in Desalination Using Membrane Distillation Technology
Demand for freshwater supplies is continuously increasing globally to the extent where some parts of the world became highly water stressed. In particular, the Arabian Gulf states ...
Assessment of a combined heating and power system based on compressed air energy storage and reversible solid oxide cell: Energy, exergy, and exergoeconomic evaluation
Assessment of a combined heating and power system based on compressed air energy storage and reversible solid oxide cell: Energy, exergy, and exergoeconomic evaluation
The electricity grid with high-penetration renewable energy sources has urged us to seek means to solve the mismatching between electricity supply and demand. Energy storage techno...
Comparison of Reactors for Hydrogen Production via Methane Steam Reforming: A Review
Comparison of Reactors for Hydrogen Production via Methane Steam Reforming: A Review
Methane Steam Reforming (MSR) remains the dominant technology for hydrogen production due to its high efficiency and economic viability. This paper provides a comparative analysis ...
Combustion Efficiency in a Fluidized-Bed Combustor with a Modified Perforated Plate for Air Distribution
Combustion Efficiency in a Fluidized-Bed Combustor with a Modified Perforated Plate for Air Distribution
Combustion efficiency is one of the most important parameters especially in the fluidized-bed combustor. Investigations into the efficiency of combustion in fluidized-bed combustor...

