Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis

碩士 === 朝陽科技大學 === 環境工程與管理系 === 105 === The purpose of this research is to apply the ultrasound on sludge hydrolysis with fixed probes, particularly to assess the performance of the ultrasound reaction vessel and to conduct the factor analysis, respectively. The study is expected to figure out the ch...

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Main Authors: CHEN,HUAN-HUEI, 陳桓輝
Other Authors: CHUANG,SHUN-HSING
Format: Others
Language:zh-TW
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/79vyxv
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spelling ndltd-TW-105CYUT00870192019-05-15T23:25:03Z http://ndltd.ncl.edu.tw/handle/79vyxv Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis 污泥超音波水解反應槽性能評估與影響因子分析 CHEN,HUAN-HUEI 陳桓輝 碩士 朝陽科技大學 環境工程與管理系 105 The purpose of this research is to apply the ultrasound on sludge hydrolysis with fixed probes, particularly to assess the performance of the ultrasound reaction vessel and to conduct the factor analysis, respectively. The study is expected to figure out the characteristics of the reaction vessel shape by exploring the reduction of the sludge volume and the release of the organic matter through the effect of ultrasound on sludge hydrolysis. SS reduction between 5~6%, and an increase in the SCOD release by 8~10% were obtained through the application of ultrasound to the hydrolysis of waste activated sludge (WAS) with a 13mm fixed probe, an oscillation period of 10 minutes, the ultrasound effect on an optimal volume of 250 mL, an ultrasonic power of 100 W, and an Es value of about 12000 kJ/kg-TS. The results varied based on the shapes of the reaction vessels (a cylindrical shape) and the directions of the probe of ultrasound with identical volumes of sludge. A nominal pipe size of 2 inches yielded the best result in both directions of the effects of ultrasound (probe acting on the bottom and the surface) in which the action on the surface is superior that generated SS reduction between 6~6.5% and a SCOD release between 9~11 %. With the effects of ultrasound in the reaction vessel, it was easy for a small cylindrical reactor to preserve energy due to the D/H ratio that is too low and the height of the sludge in the vessel that was too high to yielded ideal results. However, if a D/H ratio was too high, effective results from the ultrasound application to hydrolysis were not found, either. CHUANG,SHUN-HSING 莊順興 2017 學位論文 ; thesis 106 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 朝陽科技大學 === 環境工程與管理系 === 105 === The purpose of this research is to apply the ultrasound on sludge hydrolysis with fixed probes, particularly to assess the performance of the ultrasound reaction vessel and to conduct the factor analysis, respectively. The study is expected to figure out the characteristics of the reaction vessel shape by exploring the reduction of the sludge volume and the release of the organic matter through the effect of ultrasound on sludge hydrolysis. SS reduction between 5~6%, and an increase in the SCOD release by 8~10% were obtained through the application of ultrasound to the hydrolysis of waste activated sludge (WAS) with a 13mm fixed probe, an oscillation period of 10 minutes, the ultrasound effect on an optimal volume of 250 mL, an ultrasonic power of 100 W, and an Es value of about 12000 kJ/kg-TS. The results varied based on the shapes of the reaction vessels (a cylindrical shape) and the directions of the probe of ultrasound with identical volumes of sludge. A nominal pipe size of 2 inches yielded the best result in both directions of the effects of ultrasound (probe acting on the bottom and the surface) in which the action on the surface is superior that generated SS reduction between 6~6.5% and a SCOD release between 9~11 %. With the effects of ultrasound in the reaction vessel, it was easy for a small cylindrical reactor to preserve energy due to the D/H ratio that is too low and the height of the sludge in the vessel that was too high to yielded ideal results. However, if a D/H ratio was too high, effective results from the ultrasound application to hydrolysis were not found, either.
author2 CHUANG,SHUN-HSING
author_facet CHUANG,SHUN-HSING
CHEN,HUAN-HUEI
陳桓輝
author CHEN,HUAN-HUEI
陳桓輝
spellingShingle CHEN,HUAN-HUEI
陳桓輝
Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis
author_sort CHEN,HUAN-HUEI
title Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis
title_short Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis
title_full Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis
title_fullStr Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis
title_full_unstemmed Performance Evaluation And Model Analysis of Ultrasonic Reactor for Sludge Hydrolysis
title_sort performance evaluation and model analysis of ultrasonic reactor for sludge hydrolysis
publishDate 2017
url http://ndltd.ncl.edu.tw/handle/79vyxv
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