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Research & review articles are invited for publication in September 2026 (Vol. 28, Issue 3) || Submission: up to 28th September || Editorial decision: within 48 hrs.

Mathematical approach of the design and fabrication of a HDPE geomembrane biodigester for the recycling of biodegradable waste into biogas and organic liquid fertilizer

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  • Mathematical approach of the design and fabrication of a HDPE geomembrane biodigester for the recycling of biodegradable waste into biogas and organic liquid fertilizer

Adoum Kriga 1, Blaise Ngwem Bayiha 2, Fabien Kenmogne 2, *, Alphonse Tchoukouabe 2, Marinette Jeutho Gouajio 3, Adoum Danao Adile 4, Gilbert Tchemou 2, Martial Nde Ngnihamye 2 and Didier Fokwa 2

1 Department of technology, Faculty of exact and applied science, University of N'djamena, Chad.
2 Department of Civil Engineering, Advanced Teacher Training College of the Technical Education, the University of Douala.  
3 Laboratory of Mechanics and modeling of Physical systems (L2MSP), Faculty of Sciences, University of Dschang, Box. 067, Dschang, Cameroon.
4 Department of Industrial Engineering and Maintenance, Polytechnic University of Mongo, Chad.
 
Research Article
Global Journal of Engineering and Technology Advances, 2023, 14(01), 050-071.
Article DOI: 10.30574/gjeta.2023.14.1.0018
DOI url: https://doi.org/10.30574/gjeta.2023.14.1.0018
Received on 04 December 2022; revised on 19 January 2023; accepted on 21 January 2023
 
The purpose of this work is to design a biodigester with high density polyethylene (HDPE) geomembrane material which will be effective in recycling biodegradable waste and produces both biogas and organic liquid fertilizer. A tubular trapezoidal biodigester is designed, following by the fabrication of a 300 litter’s prototype biodigester with a tarpaulin. After running air and water tightness of the system, quantified biodegradable waste are introduced with and observed for a period of 60 days. Several tests are then conducted on the biodigester to ensure that the system can support the load it will be subjected under normal functioning condition. These tests included shear test, peel test, and air tightness of the system. In order to predict the quantities of elements that can be produce by the biodigester, the nonlinear differential equations of the exchange inside the biodigester are written and solved by using the differential transformed method. Results obtained from the prototype and the HDPE geomembrane biodigester shows that, this design permits the recycle of biodegradable waste from any facility. The biogas obtained was proven to be rich in methane content and the organic liquid fertilizer was also rich in N-P-K fulfilling the basic requirement for plant healthy growth. The HDPE geomembrane biodigester could produce 1,250L of biogas daily at an approximate pressure 1.8 bars which can be approximated to 5 hours minimum bu4rning with a burner of 200L/h.
 
Biodigester; Biodegradable waste; Hydraulic retention time; Differential transform method
 
https://gjeta.com/sites/default/files/fulltext_pdf/GJETA-2023-0018.pdf

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Adoum Kriga, Blaise Ngwem Bayiha, Fabien Kenmogne, Alphonse Tchoukouabe, Marinette Jeutho Gouajio, Adoum Danao Adile, Gilbert Tchemou, Martial Nde Ngnihamye and Didier Fokwa. Mathematical approach of the design and fabrication of a HDPE geomembrane biodigester for the recycling of biodegradable waste into biogas and organic liquid fertilizer. Global Journal of Engineering and Technology Advances, 2023, 14(1), 050-071. Article DOI: https://doi.org/10.30574/gjeta.2023.14.1.0018

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