Affiliation:
1. Scientific Research Centre, 2250 Ptuj, Slovenia
2. Slovenian National Building and Civil Engineering Institute (ZAG), 1000 Ljubljana, Slovenia
Abstract
The programming language Python offers the opportunity to analyze and model the municipal sewage sludge (MSS) drying process in an illustrative chemical engineering practice. The drying process is performed on a flat plate while maintaining a uniform, parallel drying air speed. The Python program helps to analyze the digitalized weight measurements from each sample. The program enables the sorting of input data, determination of the drying critical point, and evaluation of the first and second drying periods. Moreover, the model calculates the fundamental drying parameter and forms a drying master curve to support the transfer to different drying conditions. The basic parameters calculated are mass transfer coefficient, heat transfer coefficient, and diffusion coefficient. The results are consistent with published data for those coefficients over the drying temperature range of 19.4–52.4 °C and relative humidity range of 8.2–33.6%. The findings of this study demonstrate the potential of Python as a powerful tool for analyzing experimental data and modeling chemical processes, which can lead to improved process design, optimization, and control.
Subject
Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering
Reference39 articles.
1. A critical review of resource recovery from municipal wastewater treatment plants-market supply potentials, technologies and bottlenecks;Kehrein;Environ. Sci. Water Res. Technol.,2020
2. Đurđević, D., Žiković, S., and Blecich, P. (2022). Sustainable Sewage Sludge Management Technologies Selection Based on Techno-Economic-Environmental Criteria: Case Study of Croatia. Energies, 15.
3. Screening of waste materials as adjuvants for drying sewage sludge based on environmental, technical and economic criteria;Gomes;J. Clean. Prod.,2020
4. Singh, A. (2023). Mastering PostgreSQL with Python Volume 1: A Comprehensive Guide, Independently Published.
5. APPMAR 1.0: A Python application for downloading and analyzing of WAVEWATCH III® wave and wind data;Casas;Comput. Geosci.,2022