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Issue Date
2024-08-01Keywords
domestic greywaterelectrochemical energy
environmental sustainability
gray water
low power
prototype
reusing water
wastewater
Metadata
Show full item recordJournal
Mathematical Modelling of Engineering ProblemsDOI
10.18280/mmep.110822Abstract
This study explores the potential of converting domestic graywater into electrochemical energy as a sustainable energy solution amidst growing environmental concerns. Employing a custom-designed galvanic cell prototype, the research aims to transform the chemical energy in graywater into electrical energy through redox reactions, quantifying the electrical potential generated. Results demonstrate the prototype's success in generating an average no-load voltage of 5.1907 volts, effectively powering low-power devices like LEDs and validating the viability of greywater as an alternative energy source. However, the study acknowledges limitations such as the prototype's small scale and the potential impact of varied graywater compositions on energy efficiency, suggesting cautious application at larger scales. Future research directions include enhancing prototype efficiency and scalability, understanding the effects of different graywater compositions, and conducting long-term performance assessments. The study contributes to sustainable energy research by offering a novel approach to wastewater energy recovery, promoting environmental sustainability and efficient energy utilization.Type
info:eu-repo/semantics/articleRights
info:eu-repo/semantics/openAccessAttribution-NonCommercial-NoDerivatives 4.0 International
Language
engISSN
23690739EISSN
23690747Sponsors
Universidad Nacional Mayor de San Marcosae974a485f413a2113503eed53cd6c53
10.18280/mmep.110822
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- Creative Commons