Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells

碩士 === 國立臺北科技大學 === 材料科學與工程研究所 === 106 === Microbial fuel cells (MFCs) are different from other types of green energy. It can provide energy and equipment for handling organic waste at the same time. Using electrospinning electrospinning technology to increase the surface area of the electrode surfa...

Full description

Bibliographic Details
Main Authors: Jin Hsu, 許晉
Other Authors: 王金燦
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/x6n9d8
id ndltd-TW-106TIT05159037
record_format oai_dc
spelling ndltd-TW-106TIT051590372019-07-04T06:00:00Z http://ndltd.ncl.edu.tw/handle/x6n9d8 Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells 應用靜電紡織技術添加奈米碳管於微生物燃料電池電極電性之研究 Jin Hsu 許晉 碩士 國立臺北科技大學 材料科學與工程研究所 106 Microbial fuel cells (MFCs) are different from other types of green energy. It can provide energy and equipment for handling organic waste at the same time. Using electrospinning electrospinning technology to increase the surface area of the electrode surface and adding few CNT to improve the operation of MFCs system. Uses the PAN electrospinning process parameters include injection concentration, feed rate, viscosity, collection and external voltage and other parameters to control the forming mechanism of electrospinning. And then mak Surface modification of the plate for electrical analysis. Using different polymer solution concentration (Polyacrylonitrile,PAN) and collection methods can produce a complete electrospinning. Roller-type PAN electrospinning electrical performance such as open circuit voltage and power density is better than planar PAN electrospinning. This study found that the optimized electrical performance of 8% of the roller electrospinning can obtain a power density of 223 mW/m2. Add 0.5% unmodified CNTs to increase the power density to 392 mW/m2, even beyond the pure carbon felt 290 mW/m2. 王金燦 楊永欽 2018 學位論文 ; thesis 40 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺北科技大學 === 材料科學與工程研究所 === 106 === Microbial fuel cells (MFCs) are different from other types of green energy. It can provide energy and equipment for handling organic waste at the same time. Using electrospinning electrospinning technology to increase the surface area of the electrode surface and adding few CNT to improve the operation of MFCs system. Uses the PAN electrospinning process parameters include injection concentration, feed rate, viscosity, collection and external voltage and other parameters to control the forming mechanism of electrospinning. And then mak Surface modification of the plate for electrical analysis. Using different polymer solution concentration (Polyacrylonitrile,PAN) and collection methods can produce a complete electrospinning. Roller-type PAN electrospinning electrical performance such as open circuit voltage and power density is better than planar PAN electrospinning. This study found that the optimized electrical performance of 8% of the roller electrospinning can obtain a power density of 223 mW/m2. Add 0.5% unmodified CNTs to increase the power density to 392 mW/m2, even beyond the pure carbon felt 290 mW/m2.
author2 王金燦
author_facet 王金燦
Jin Hsu
許晉
author Jin Hsu
許晉
spellingShingle Jin Hsu
許晉
Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells
author_sort Jin Hsu
title Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells
title_short Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells
title_full Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells
title_fullStr Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells
title_full_unstemmed Investigations of CNT modified electrospun fiber as an electrode on the microbial fuel cells
title_sort investigations of cnt modified electrospun fiber as an electrode on the microbial fuel cells
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/x6n9d8
work_keys_str_mv AT jinhsu investigationsofcntmodifiedelectrospunfiberasanelectrodeonthemicrobialfuelcells
AT xǔjìn investigationsofcntmodifiedelectrospunfiberasanelectrodeonthemicrobialfuelcells
AT jinhsu yīngyòngjìngdiànfǎngzhījìshùtiānjiānàimǐtànguǎnyúwēishēngwùránliàodiànchídiànjídiànxìngzhīyánjiū
AT xǔjìn yīngyòngjìngdiànfǎngzhījìshùtiānjiānàimǐtànguǎnyúwēishēngwùránliàodiànchídiànjídiànxìngzhīyánjiū
_version_ 1719220716831768576