Smart Grid and Renewable Energy

Volume 4, Issue 2 (May 2013)

ISSN Print: 2151-481X   ISSN Online: 2151-4844

Google-based Impact Factor: 0.88  Citations  

Feasibility Study for Self-Sustained Wastewater Treatment Plants—Using Biogas CHP Fuel Cell, Micro-Turbine, PV and Wind Turbine Systems

HTML  Download Download as PDF (Size: 650KB)  PP. 227-235  
DOI: 10.4236/sgre.2013.42028    9,635 Downloads   15,325 Views  Citations

ABSTRACT

This paper studies the application of renewable energy sources in wastewater treatment plants to achieve self-sustain- ability of power. The data of wastewater treatment plant in the rural city of Toukh-EGYPT are presented as a case-study. The primary objective is to provide an entirely renewable standalone power system, which satisfies lowest possible emissions with the minimum lifecycle cost. Mass balance principle is applied on the biodegradable components in the wastewater to evaluate the volume of digester gas that is produced from sludge through anaerobic digestion process. Using digester gas as a fuel lead to study combined-heat-and-power technologies, where fuel cell is selected in order to abide by the low emissions constraint. The study assessed the electrical power obtained from fuel cell and the utilization of the exhausted heat energy for additional electrical power production using a micro-turbine. After covering the major part of load demand, the use of other renewable energy sources was studied. The strength of both solar and wind energy was determined by the case-study location. Hybrid optimization model for electric renewable (HOMER) software was used to simulate the hybrid system composed of combined-heat-and-power units, wind turbines and photovoltaic systems. Simulation results gave the best system configuration and optimum size of each component beside the detailed electrical and cost analysis of the model.

Share and Cite:

A. Helal, W. Ghoneim and A. Halaby, "Feasibility Study for Self-Sustained Wastewater Treatment Plants—Using Biogas CHP Fuel Cell, Micro-Turbine, PV and Wind Turbine Systems," Smart Grid and Renewable Energy, Vol. 4 No. 2, 2013, pp. 227-235. doi: 10.4236/sgre.2013.42028.

Cited by

[1] Industrial decarbonisation oriented distributed renewable generation towards wastewater treatment sector: Case from the Yangtze River Delta region in China
Energy, 2022
[2] Energy, exergy, economic and environmental analysis of a running integrated anaerobic digester-combined heat and power system in a municipal …
Energy Reports, 2022
[3] Energy Reports
2022
[4] Aproveitamento de biogás em sistemas híbridos de energias renováveis para estações de tratamento de esgoto
2022
[5] Design of a Polygeneration system in Filipinas ETCR, Colombia
2021
[6] Diseño de un sistema de poligeneración en Filipinas ETCR, Colombia
2021
[7] Modelado de un sistema de poligeneración en zonas rurales de Colombia. Filipinas ETCR como caso de estudio
2021
[8] Integrating renewable energy technologies in the water industry: opportunities and challenges
2021
[9] Selection of Wastewater Treatment Plants Toward a Sustainable Design and Water Reuse:(A Case Study in the City of Mashhad)
مجله آب و فاضلاب, 2021
[10] Polygeneration system model in rural areas of Colombia: Filipinas ETCR as a case of study
2021
[11] Study on Sludge and Dissolved Oxygen Distribution in a Full-Scale A2/O Oxidation Ditch
Water, 2021
[12] Energetic-Environmental-Economic Feasibility and Impact Assessment of Grid-Connected Photovoltaic System in Wastewater Treatment Plant: Case Study
2021
[13] Renewable electricity generation in the Australian water industry: Lessons learned and challenges for the future
2021
[14] Techno-Economic Assessment of CHP Systems in Wastewater Treatment Plants.
2020
[15] Water-Energy Nexus: A Pathway of Reaching the Zero Net Carbon in Wastewater Treatment Plants
2020
[16] Using Water–Energy Nexus as Greenhouse Gas Emissions Mitigation Tool in Wastewater Treatment Plants
2020
[17] Comparación de tecnologías para el tratamiento sostenible de aguas residuales ordinarias en pequeñas comunidades de Costa Rica
2020
[18] Techno-Economic Assessment of CHP Systems in Wastewater Treatment Plants
2020
[19] Recovery of Heavy Metals from Liquid Effluent by Galvanic Cementation
2020
[20] Techno-economic optimization of biogas-fueled micro gas turbine cogeneration systems in sewage treatment plant
2020
[21] Hydropower Energy Recovery from Wastewater Treatment Plant: Case of Zeekoegat Plant
2019
[22] Solar PV adoption in wastewater treatment plants: A review of practice in California
2019
[23] The potential for grid defection of small and medium sized enterprises using solar photovoltaic, battery and generator hybrid systems
2019
[24] Optimal Design and Cost Analysis of Hybrid Autonomous Distributed Generation System for a Critical Load
2018
[25] Techno-Economic Study on an Energy System in Northwest China
2018
[26] Sensitivity analysis and comparative studies for energy sustainability in sewage treatment
Sustainable Energy Technologies and Assessments, 2017
[27] Use of biogas from biowaste in a solid oxide fuel cell stack: Application to an off-grid power plant
Renewable Energy, 2017
[28] Thermo-environ-economic modeling and optimization of an integrated wastewater treatment plant with a combined heat and power generation system
Energy Conversion and Management, 2017
[29] Electrical discharge as water treatment technology for micropollutant decomposition
2016
[30] Technical and economical analysis of residential solar photovoltaic systems
ProQuest Dissertations Publishing, 2016
[31] Levelized cost of electricity for solar photovoltaic, battery and cogen hybrid systems
Renewable and Sustainable Energy Reviews, 2016
[32] Performance Study of External Wall Insulation and a Hybrid Energy Supply System for a Rural Residential Building
Journal of Energy Engineering, 2016
[33] Electrical discharge in water treatment technology for micropollutant decomposition
Plasma science and technology: progress in physical states and chemical reactions, 2016
[34] Case Study for N2O Purification in a Wastewater Treatment Plant, through an Economic Analysis
2016
[35] Performance of US hybrid distributed energy systems: Solar photovoltaic, battery and combined heat and power
Energy Conversion and Management, 2015

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.