The study explored the treatment of different wastewater by producing microelectronic components. It proposed using aerobic biological treatment for the first effluent containing tetramethyl ammonium hydroxide and chemical-physical processes for the other two streams having fluorides, phosphates, nitrates and acetic acid. The novel integrated process significantly reduced environmental impacts by an average of 50 % compared to current disposal methods. The economic analysis indicates a 30 % reduction in treatment costs for the first effluent and lesser reductions for the other two effluents. The study revealed that treating all three effluents in an integrated manner is cost-effective, reducing investment and operating costs.

The application of the life cycle assessment and life cycle costing for the treatment of microelectronic industry effluents / Ippolito, Nicolò Maria; Amato, Alessia; Ferella, Francesco; Prisciandaro, Marina; Beolchini, Francesca; Vegliò, Francesco; Innocenzi, Valentina. - In: CASE STUDIES IN CHEMICAL AND ENVIRONMENTAL ENGINEERING. - ISSN 2666-0164. - 10:(2024). [10.1016/j.cscee.2024.100854]

The application of the life cycle assessment and life cycle costing for the treatment of microelectronic industry effluents

Amato, Alessia;Beolchini, Francesca;
2024-01-01

Abstract

The study explored the treatment of different wastewater by producing microelectronic components. It proposed using aerobic biological treatment for the first effluent containing tetramethyl ammonium hydroxide and chemical-physical processes for the other two streams having fluorides, phosphates, nitrates and acetic acid. The novel integrated process significantly reduced environmental impacts by an average of 50 % compared to current disposal methods. The economic analysis indicates a 30 % reduction in treatment costs for the first effluent and lesser reductions for the other two effluents. The study revealed that treating all three effluents in an integrated manner is cost-effective, reducing investment and operating costs.
2024
Industrial effluent; Microelectronic technology; Sustainability analysis; TMAH
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11566/344344
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