<listing id="l9bhj"><var id="l9bhj"></var></listing>
<var id="l9bhj"><strike id="l9bhj"></strike></var>
<menuitem id="l9bhj"></menuitem>
<cite id="l9bhj"><strike id="l9bhj"></strike></cite>
<cite id="l9bhj"><strike id="l9bhj"></strike></cite>
<var id="l9bhj"></var><cite id="l9bhj"><video id="l9bhj"></video></cite>
<menuitem id="l9bhj"></menuitem>
<cite id="l9bhj"><strike id="l9bhj"><listing id="l9bhj"></listing></strike></cite><cite id="l9bhj"><span id="l9bhj"><menuitem id="l9bhj"></menuitem></span></cite>
<var id="l9bhj"></var>
<var id="l9bhj"></var>
<var id="l9bhj"></var>
<var id="l9bhj"><strike id="l9bhj"></strike></var>
<ins id="l9bhj"><span id="l9bhj"></span></ins>
Volume 31 Issue S1
Aug.  2021
Turn off MathJax
Article Contents
WU Hua-feng, LI Shi-qi, ZHU Rong, WANG Yu-gang, LIU Run-zao. Experimental research on non-carbon metallurgy by solar photovoltaic technology[J]. Chinese Journal of Engineering, 2009, 31(S1): 22-27. doi: 10.13374/j.issn1001-053x.2009.s1.037
Citation: WU Hua-feng, LI Shi-qi, ZHU Rong, WANG Yu-gang, LIU Run-zao. Experimental research on non-carbon metallurgy by solar photovoltaic technology[J]. Chinese Journal of Engineering, 2009, 31(S1): 22-27. doi: 10.13374/j.issn1001-053x.2009.s1.037

Experimental research on non-carbon metallurgy by solar photovoltaic technology

doi: 10.13374/j.issn1001-053x.2009.s1.037
  • Received Date: 2006-08-01
    Available Online: 2021-08-09
  • A new concept named "non-carbon metallurgy by solar energy photovoltaic technology" was put forward through the analysis of the iron source usage and the carbon metallurgy process. The main study included smelting at high temperature, no-carbon reduction, and melting-reduction. The experimental system with 1-kg capacity was designed and manufactured. Three kinds of experiments were carried out. It shows that the concept of "non-carbon metallurgy by solar energy photovoltaic technology" is feasible and the system can meet the needs of smelting. The conversion rate of the photovoltaic cell is 9.8% and the steel enthalpy accounts for 5% of the total energy consumption in the high temperature smelting experiment. The current efficiency is 85.1% with the highest being 97.6% during the electrolysis process. The decrease order of influence on the reduction degree of Fe2O3 is atmosphere temperature, time, and particle size in the hydrogen reduction process. According to the results, further study is needed to get better economy, stability, and operability of this system.

     

  • loading
  • 加載中

Catalog

    通訊作者: 陳斌, bchen63@163.com
    • 1. 

      沈陽化工大學材料科學與工程學院 沈陽 110142

    1. 本站搜索
    2. 百度學術搜索
    3. 萬方數據庫搜索
    4. CNKI搜索
    Article views (271) PDF downloads(8) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return
    久色视频