Microbial induced precipitation of zinc oxide, its properties and applications.

碩士 === 國立中正大學 === 地球與環境科學研究所 === 105 === In this study, prepared nano - zinc oxide by microbial induced mineralization. Zinc nitrate as zinc source and urea as precipitant. Changing the solvent and the concentration of urea were 0.1, 0.3, 0.5, 1.1M, respectively. The bacterium is Bacillus pasteurii,...

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Main Authors: LAI, YING-YU, 賴盈羽
Other Authors: CHEN, CHIEN-YEN
Format: Others
Language:zh-TW
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/yxut27
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spelling ndltd-TW-105CCU005020272019-05-15T23:32:20Z http://ndltd.ncl.edu.tw/handle/yxut27 Microbial induced precipitation of zinc oxide, its properties and applications. 微生物誘導奈米氧化鋅之特性與應用 LAI, YING-YU 賴盈羽 碩士 國立中正大學 地球與環境科學研究所 105 In this study, prepared nano - zinc oxide by microbial induced mineralization. Zinc nitrate as zinc source and urea as precipitant. Changing the solvent and the concentration of urea were 0.1, 0.3, 0.5, 1.1M, respectively. The bacterium is Bacillus pasteurii, as a microorganism, when contacting with the urease would occur hydrolysis, and precipitate with metal ions. Then, put in high - tempreture at 400oC for 4 hours, and analyzed by XRD, FTIR, TEM, TEM-EDS. From XRD, the crystal structure of the nano - zinc oxide is wurtzite structure. FTIR, the absorption peak at 457cm-1 is Zn—O stretching vibration. TEM and SEM can see a lot of sheets are stacked on the surface structure, and by TEM-EDS can find increase the concentration of urea, the Zn weight decreased, but the O weight increased. In the photodegradation, the nano-zinc oxide with 0.1M urea concentration had the best photodegradation. And in the antibacterial experiments, there are inhibition of bacterial growth whether in 24 hours of solar-light or in dark reaction and solar-light reaction. CHEN, CHIEN-YEN 陳建易 2017 學位論文 ; thesis 42 zh-TW
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description 碩士 === 國立中正大學 === 地球與環境科學研究所 === 105 === In this study, prepared nano - zinc oxide by microbial induced mineralization. Zinc nitrate as zinc source and urea as precipitant. Changing the solvent and the concentration of urea were 0.1, 0.3, 0.5, 1.1M, respectively. The bacterium is Bacillus pasteurii, as a microorganism, when contacting with the urease would occur hydrolysis, and precipitate with metal ions. Then, put in high - tempreture at 400oC for 4 hours, and analyzed by XRD, FTIR, TEM, TEM-EDS. From XRD, the crystal structure of the nano - zinc oxide is wurtzite structure. FTIR, the absorption peak at 457cm-1 is Zn—O stretching vibration. TEM and SEM can see a lot of sheets are stacked on the surface structure, and by TEM-EDS can find increase the concentration of urea, the Zn weight decreased, but the O weight increased. In the photodegradation, the nano-zinc oxide with 0.1M urea concentration had the best photodegradation. And in the antibacterial experiments, there are inhibition of bacterial growth whether in 24 hours of solar-light or in dark reaction and solar-light reaction.
author2 CHEN, CHIEN-YEN
author_facet CHEN, CHIEN-YEN
LAI, YING-YU
賴盈羽
author LAI, YING-YU
賴盈羽
spellingShingle LAI, YING-YU
賴盈羽
Microbial induced precipitation of zinc oxide, its properties and applications.
author_sort LAI, YING-YU
title Microbial induced precipitation of zinc oxide, its properties and applications.
title_short Microbial induced precipitation of zinc oxide, its properties and applications.
title_full Microbial induced precipitation of zinc oxide, its properties and applications.
title_fullStr Microbial induced precipitation of zinc oxide, its properties and applications.
title_full_unstemmed Microbial induced precipitation of zinc oxide, its properties and applications.
title_sort microbial induced precipitation of zinc oxide, its properties and applications.
publishDate 2017
url http://ndltd.ncl.edu.tw/handle/yxut27
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