Chia Nan University of Pharmacy & Science Institutional Repository:Item 310902800/27125
English  |  正體中文  |  简体中文  |  Items with full text/Total items : 18269/20496 (89%)
Visitors : 9576630      Online Users : 572
RC Version 7.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
Scope Tips:
  • please add "double quotation mark" for query phrases to get precise results
  • please goto advance search for comprehansive author search
  • Adv. Search
    HomeLoginUploadHelpAboutAdminister Goto mobile version
    Please use this identifier to cite or link to this item: https://ir.cnu.edu.tw/handle/310902800/27125


    Title: 高週波電漿系統轉化甲烷為甲醇之初步研究
    The Preliminary Study of Direct Conversion of Methane into Methanol in an RF Plasma System
    Authors: 張紋菁
    Contributors: 王雅玢
    蔡政賢
    嘉南藥理科技大學:環境工程與科學研究所
    Keywords: 低溫電漿
    高週波
    甲醇
    轉化
    甲烷
    radio-frequency (RF)
    methanol
    conversion
    cold plasma
    methane
    Date: 2003
    Issue Date: 2014-01-08 15:41:10 (UTC+8)
    Abstract: 本研究擬利用高週波電漿系統在不添加觸媒的條件下將CH4分解並轉化生成CH3OH, HCHO,C2H6, C2H4及C2H2。於實驗進行過程中發現,在此系統下分解轉化CH4沒有積碳形成,而且碳平衡皆介於0.87∼1.24之間。實驗結果顯示,輸入必v的增加不利於FCH3OH及FHCHO的形成,在CH4之進流濃度小於15%, 或O2之進流濃度大於10%的條件下則有利於CH3OH 及 HCHO的生成。當控制條件設定於反應器A,O2/CH4=1.0,操作壓力=10 Torr,CH4進流濃度=10%,總進流量100sccm時,FCH3OH於50 Watts輸入必v達到最高(0.91%)。實驗主要探討各個操作參數(輸入必v、CH4之進流濃度、O2之進流濃度、總進流量及反應器變化)對ηCH4及副產物(CO、CO2、HCHO、C2H2 + C2H4 + C2H6、CH3OH)之影響,並嚐試尋找出最佳轉化率之操作條件,以提供未來應用本技術於商業技術研發之參考。
    This work demonstrates the possibility of directly converting CH4 into CH3OH,HCHO, C2H6, C2H4 and C2H2 without adding a catalyst to the RF plasma system.Neither carbon black nor a deposit was formed during the experiment. The carbon balance in all experiments was between 0.87 and 1.24. At a given specific energy, a higher applied power did not favor the partial oxidation of CH4 to CH3OH and HCHO. However, a CH4 feeding concentration of less than 15% or an O2 content of under 10% favored the formation of CH3OH and HCHO. FCH3OH reached the maximum of 0.91% at input power of 50 Watts under the condition: O2/CH4=0.1, operational pressure=10 Torr, CH4 feeding concentration=10%, total gas flow rate=100sccm. In the study, experiments were conducted to elucidate the effects of operational parameters, input power, CH4 feeding concentration, O2 feeding concentration, total gas flow rate and various plasma reactor, on CH4 conversion fraction (ηCH4) and product formation fractions. Furthermore, the results will provide fundamental information for applying the technology in the future commercial processes.
    Relation: 校內外完全公開
    Appears in Collections:[Dept. of Environmental Engineering and Science (including master's program)] Dissertations and Theses

    Files in This Item:

    File Description SizeFormat
    index.html0KbHTML1863View/Open


    All items in CNU IR are protected by copyright, with all rights reserved.


    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - Feedback