Profile of the Effectiveness Factor under Optimal Operating Conditions for the Conversion of Ortho-Xylene to Phthalic Anhydride in a Fixed-Bed Tubular Reactor

Author:

Carrasco-Venegas Luis Américo1ORCID,Vásquez-Alvarez Elsa2,González-Fernández José Vulfrano3ORCID,Castañeda-Pérez Luz Genara4,Medina-Collana Juan Taumaturgo5ORCID,Palomino-Hernández Guido6,Martínez-Hilario Daril Giovanni7ORCID,Trujillo-Pérez Salvador Apolinar1

Affiliation:

1. Centro de Investigación en Bioenergía, Universidad Nacional del Callao, Callao 07011, Peru

2. Departamento de Engenharia de Minas e de Petróleo, Escola Politécnica, Universidade de São Paulo, Sao Paulo 05508-030, Brazil

3. Instituto Tecnológico de San Luis Potosí, Tecnológico Nacional de México, San Luis Potosí 78436, Mexico

4. Facultad de Ciencias Naturales y Matemática, Universidad Nacional Federico Villareal, Lima 15001, Peru

5. Centro de Investigación en Ingeniería de Procesos de Tratamiento de Aguas, Facultad de Ingeniería Química, Universidad Nacional del Callao, Callao 07011, Peru

6. Facultad de Ingeniería Química y Metalurgia, Universidad Nacional de San Cristóbal de Huamanga, Ayacucho 05001, Peru

7. Facultad de Ingeniería Química, Universidad Nacional del Callao, Callao 07011, Peru

Abstract

The objective of this research is to find the effectiveness factor of the catalyst particles for the most favorable conditions of the phthalic anhydride production in a fixed bed reactor, with the aim of achieving the highest rate of phthalic anhydride production compared to other secondary products and analyzing the areas of lower effectiveness for the modification of the reactor design. Initially, the material and the energy balances in the catalytic bed are solved to obtain the concentration and temperature profiles based on the radius and length of the reactor, using polymath software(Polymath® v6.2 Software Minitab 19 Matlab 2019) with the data from literature. Once the profiles reproducibility was verified using the initial data (inlet temperature, pressure in the reactor, reactor wall temperature, reactor radius and mass flow rate) the experimental design 35 carry out, which generates 243 “experiments”, whose response variable (phthalic anhydride concentration) was obtained using Matlab. Subsequently, the variables were analyzed using the Minitab 18® that, through the response surface analysis method, allowed us to obtain the optimal values of the tested variables. Then, Subsequently, material and energy balances coupled with Fourier and Fick’s laws, along with the effectiveness factor equation, were applied, resulting in the generation of 9 coupled differential equations. Upon implementing the finite difference method, this yielded 90 nonlinear algebraic equations, which were solved using the Polymath software. A total of 78 particles were preselected based on their radial and axial positions to determine the effectiveness factor profile, with values ranging from 0.83 to near unity. The lower values correspond to the points with higher temperature, as evidenced by the calculations performed.

Funder

Universidad Nacional del Callao

Publisher

MDPI AG

Reference28 articles.

1. Cinar, A. (1983). Computer Aided Design of Multivariable Technological Systems, Elsevier Ltd.

2. Dynamic Model of Packed-Bed Tubular Reactors;Pellegrini;Comput. Chem. Eng.,1989

3. Fixed Bed Reactors;Andrigo;Catal. Today,1999

4. A Model Study of a Conventional Fixed Bed Tubular Reactor with a Catalyst Layer on the inside Tube Wall;Anastasov;Chem. Eng. Process. Process Intensif.,1988

5. Techno-Economic Assessment of the Production of Phthalic Anhydride from Corn Stover;Giarola;Chem. Eng. Res. Des.,2016

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