Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performance

The distillation column plays a critical role in purifying the water–methanol mixture, with methanol being reused as a reactant in biodiesel production. However, corrosion-induced disruptions in the distillation system can lead to liquid build-up on trays, excessive vapor accumulation at the top, an...

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Main Authors: Anggara Dwita Burmana, Yacine Benguerba, Filicia Wicaksana, Vikram Alexander, Silvia Nova, Taslim Taslim, Iriany Iriany
Format: Article
Language:English
Published: Elsevier 2025-01-01
Series:International Journal of Thermofluids
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Online Access:http://www.sciencedirect.com/science/article/pii/S2666202724004580
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author Anggara Dwita Burmana
Yacine Benguerba
Filicia Wicaksana
Vikram Alexander
Silvia Nova
Taslim Taslim
Iriany Iriany
author_facet Anggara Dwita Burmana
Yacine Benguerba
Filicia Wicaksana
Vikram Alexander
Silvia Nova
Taslim Taslim
Iriany Iriany
author_sort Anggara Dwita Burmana
collection DOAJ
description The distillation column plays a critical role in purifying the water–methanol mixture, with methanol being reused as a reactant in biodiesel production. However, corrosion-induced disruptions in the distillation system can lead to liquid build-up on trays, excessive vapor accumulation at the top, and foaming, which are categorized as abnormal conditions. This study aims to discuss normal and abnormal conditions in the separation process of the water–methanol mixture using a distillation column in a biodiesel plant. The novelty of this research lies in analyzing the performance of methanol-water separation in a distillation column within a biodiesel plant using lauric acid, identifying the causes of performance failure, and providing practical insights to enhance process efficiency. Data were collected via the distributed control system, capturing flowrate, temperature, pressure, and composition under both normal and abnormal conditions, with an emphasis on the effects of corrosion and column performance. The results obtained under abnormal conditions, the side-draw temperature rises to 85 °C (from 78 °C), and the distillate temperature drops to 63 °C (from 74 °C) due to excessive foaming. Methanol mass purity in the distillate decreases to 88 %, and side-draw purity falls to 61 %. The pressure difference also narrows to 0.2 bar (compared to 0.3 bar in normal conditions), and water purity at the bottom decreases to 85 %, well below the target of 99.7 %. Regular inspections of the distillation column are essential. Implementing advanced monitoring and control systems can further optimize distillation column performance and ensure the consistent quality of the final product.
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institution Kabale University
issn 2666-2027
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spelling doaj-art-9d8443aefe084dff98962244f86a55b12025-01-08T04:53:37ZengElsevierInternational Journal of Thermofluids2666-20272025-01-0125101019Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performanceAnggara Dwita Burmana0Yacine Benguerba1Filicia Wicaksana2Vikram Alexander3Silvia Nova4Taslim Taslim5Iriany Iriany6Department of Chemical Engineering, Faculty of Engineering, Universitas Sumatera Utara, Jl. Almamater Kampus USU, Medan, 20155, IndonesiaLaboratoire de Biopharmacie Et Pharmacotechnie (LBPT), Université Ferhat ABBAS Sétif−1, Sétif, AlgeriaDepartment of Chemical and Materials Engineering, the University of Auckland, 5 Grafton Road, Auckland 1010, New ZealandDepartment of Chemical Engineering, Faculty of Engineering, Universitas Sumatera Utara, Jl. Almamater Kampus USU, Medan, 20155, IndonesiaDepartment of Chemical Engineering, Faculty of Engineering, Universitas Sumatera Utara, Jl. Almamater Kampus USU, Medan, 20155, IndonesiaDepartment of Chemical Engineering, Faculty of Engineering, Universitas Sumatera Utara, Jl. Almamater Kampus USU, Medan, 20155, IndonesiaDepartment of Chemical Engineering, Faculty of Engineering, Universitas Sumatera Utara, Jl. Almamater Kampus USU, Medan, 20155, Indonesia; Corresponding author.The distillation column plays a critical role in purifying the water–methanol mixture, with methanol being reused as a reactant in biodiesel production. However, corrosion-induced disruptions in the distillation system can lead to liquid build-up on trays, excessive vapor accumulation at the top, and foaming, which are categorized as abnormal conditions. This study aims to discuss normal and abnormal conditions in the separation process of the water–methanol mixture using a distillation column in a biodiesel plant. The novelty of this research lies in analyzing the performance of methanol-water separation in a distillation column within a biodiesel plant using lauric acid, identifying the causes of performance failure, and providing practical insights to enhance process efficiency. Data were collected via the distributed control system, capturing flowrate, temperature, pressure, and composition under both normal and abnormal conditions, with an emphasis on the effects of corrosion and column performance. The results obtained under abnormal conditions, the side-draw temperature rises to 85 °C (from 78 °C), and the distillate temperature drops to 63 °C (from 74 °C) due to excessive foaming. Methanol mass purity in the distillate decreases to 88 %, and side-draw purity falls to 61 %. The pressure difference also narrows to 0.2 bar (compared to 0.3 bar in normal conditions), and water purity at the bottom decreases to 85 %, well below the target of 99.7 %. Regular inspections of the distillation column are essential. Implementing advanced monitoring and control systems can further optimize distillation column performance and ensure the consistent quality of the final product.http://www.sciencedirect.com/science/article/pii/S2666202724004580Distillation columnMethanolWaterSeparationBiodieselCorrosion
spellingShingle Anggara Dwita Burmana
Yacine Benguerba
Filicia Wicaksana
Vikram Alexander
Silvia Nova
Taslim Taslim
Iriany Iriany
Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performance
International Journal of Thermofluids
Distillation column
Methanol
Water
Separation
Biodiesel
Corrosion
title Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performance
title_full Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performance
title_fullStr Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performance
title_full_unstemmed Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performance
title_short Improving efficiency and product quality by optimizing methanol purification in biodiesel plant: Addressing abnormalities in distillation column performance
title_sort improving efficiency and product quality by optimizing methanol purification in biodiesel plant addressing abnormalities in distillation column performance
topic Distillation column
Methanol
Water
Separation
Biodiesel
Corrosion
url http://www.sciencedirect.com/science/article/pii/S2666202724004580
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