Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells

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Tác giả chính: Safwat, S. M., Meshref, M. N. A., Salama, M.
Định dạng: Sách
Ngôn ngữ:English
Nhà xuất bản: Springer 2023
Chủ đề:
COD
Truy cập trực tuyến:https://dlib.phenikaa-uni.edu.vn/handle/PNK/9418
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spelling oai:localhost:PNK-94182023-10-03T03:55:08Z Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells Safwat, S. M. Meshref, M. N. A. Salama, M. MDCs COD CC-BY Microbial desalination cells (MDCs) exhibited an economical value with large promises as a useful desalination treatment solution. MDCs threefold applications to efficiently treat wastewater and to produce electricity and simultaneously accomplish desalination were investigated in this work. The study examined the influence of various performance parameters including co-substrate, temperature, pH, and salt concentrations on the response of three-chamber MDCs with respect to energy recovery and contaminant removal (Phenol). The system evaluation criteria encompassed chemical oxygen demand (COD), phenol removal efficiency, Coulombic efficiency, desalination efficiency, and other system parameters such as voltage generation and power density 2023-10-03T03:55:08Z 2023-10-03T03:55:08Z 2022 Book https://dlib.phenikaa-uni.edu.vn/handle/PNK/9418 en application/pdf Springer
institution Digital Phenikaa
collection Digital Phenikaa
language English
topic MDCs
COD
spellingShingle MDCs
COD
Safwat, S. M.
Meshref, M. N. A.
Salama, M.
Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells
description CC-BY
format Book
author Safwat, S. M.
Meshref, M. N. A.
Salama, M.
author_facet Safwat, S. M.
Meshref, M. N. A.
Salama, M.
author_sort Safwat, S. M.
title Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells
title_short Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells
title_full Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells
title_fullStr Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells
title_full_unstemmed Influence of co-substrate existence, temperature, pH, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells
title_sort influence of co-substrate existence, temperature, ph, and salt concentration on phenol removal, desalination, and power generation using microbial desalination cells
publisher Springer
publishDate 2023
url https://dlib.phenikaa-uni.edu.vn/handle/PNK/9418
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