2022
DOI: 10.1016/j.jclepro.2022.134773
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Enhanced anaerobic digestion for degradation of swine wastewater through a Fe/Ni-MOF modified microbial electrolysis cell

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Cited by 20 publications
(7 citation statements)
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“…Likewise, it was possible to observe that in 2022, the author with the largest number (8) of published documents is Kundu P. P., whose research is carried out on the use of nanostructures of different materials in microbial fuel cells for the generation of bioelectricity. The most cited is the research carried out with Dhillon S. and Kundu P. P. (2022) in when they carried out highly efficient electrocatalysts using air cathodes made with Fe/NC, managing to show a resistance of the cells of 132.5 Ω achieving an output PD of 637.53 mW/m 2 , which is 33% higher than using a conventional Pt/C cathode electrode [67]. In this sense, as can be seen in Figure 7, the terms wastewater treatment, electricity, microbial fuel cells, electrolytic reduction, and oxygen are the most used by researchers for the preparation of manuscripts, although the authors with the most citations and most citations over the last thirty-two years are working with electrodes modified with The research is carried out with new researchers in the area [65].…”
Section: Results and Analysismentioning
confidence: 99%
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“…Likewise, it was possible to observe that in 2022, the author with the largest number (8) of published documents is Kundu P. P., whose research is carried out on the use of nanostructures of different materials in microbial fuel cells for the generation of bioelectricity. The most cited is the research carried out with Dhillon S. and Kundu P. P. (2022) in when they carried out highly efficient electrocatalysts using air cathodes made with Fe/NC, managing to show a resistance of the cells of 132.5 Ω achieving an output PD of 637.53 mW/m 2 , which is 33% higher than using a conventional Pt/C cathode electrode [67]. In this sense, as can be seen in Figure 7, the terms wastewater treatment, electricity, microbial fuel cells, electrolytic reduction, and oxygen are the most used by researchers for the preparation of manuscripts, although the authors with the most citations and most citations over the last thirty-two years are working with electrodes modified with The research is carried out with new researchers in the area [65].…”
Section: Results and Analysismentioning
confidence: 99%
“…In this sense, as can be seen in Figure 7, the terms wastewater treatment, electricity, microbial fuel cells, electrolytic reduction, and oxygen are the most used by researchers for the preparation of manuscripts, although the authors with the most citations and most citations over the last thirty-two years are working with electrodes modified with nanostructures in wastewater treatment. The method of anaerobic digestion combined with chemical and thermochemical processes is the most used in water treatment; for example, in the extraction of lipids by thermochemistry [58][59][60][61][62][63]67,68]. Other types of combined technologies are those that include pyrolysis, liquefaction, and gasification for the production of fuels through wastewater [63,64].…”
Section: Results and Analysismentioning
confidence: 99%
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“…The presence of redox-active copper centers in HKUST in support of its impeccable porous matrix can potentially participate in electron transfer processes 2 . These attributes can effectively stimulate the development of electroactive biofilms 37 . However, to exploit the full potential of MOFs in MES, further modification in the matrix is required such as to improve the conductivity, stability, and affinity toward microbial attachment 38 .…”
Section: Introductionmentioning
confidence: 99%