期刊文献+

水泥矿山高硫夹层处理方法实践 被引量:2

Limestone quarry high sulfur interlayer handdling and inspiration
下载PDF
导出
摘要 D水泥厂大型石灰石矿面临100万t高硫夹层处理问题,并因此而造成水泥生产硫排放超标.文章详细介绍了该矿山高硫带分布情况,提出了几种可能的处理途径并分析其可行性,最终通过优化矿山矿石搭配、微改石灰石集中取料工艺,成功处理了问题,满足了政府环保部门二氧化硫在线监测<100 mg/m3的排放要求,节省了脱硫或排弃高硫料所需的高昂运行费用,同时也对自然资源做到了充分利用. The large limestone mine of D cement plant is facing the problem of disposing l 000 000 t of high sulfur interlayer,which causes the sulfur emission of cement production to exceed the standard.This paper introduces the distribution of high sulphur zone in the mine in detail,puts forward several possible treatment ways and analyses their feasibility.Finally,by optimizing the ore mix in the mine and modifying the centralized limestone feeding process,the problem has been successfully solved,which meets the requirement ofon—line monitoring of sulphur dioxide emission by the government environmental protection department(<100mg/m3)。and saves the high operation cost of desulphurization or discarding high sulphur material.At the same time,it makes full use of natural resources.
作者 卜天宇 董益宇 张重明 Bu Tianyu;Dong Yiyu;Zhang Chongming(Lafarge Dujiangyan Cement Co.,Ltd.,Dujiangyan 61 1830,China)
出处 《水泥工程》 CAS 2019年第3期24-27,共4页 Cement Engineering
关键词 高硫夹层 矿石搭配 下料改造 单独取料 high sulfur interlayer ore matching discharge system modification separate reclaim
  • 相关文献

参考文献2

二级参考文献12

  • 1Miller F M,Young G L,yon Seebach M.Formation and techniques for control of sulfur dioxide and other sulfur compounds in Portland cement kiln systems[R].R&D Serial No.2460,Portland Cement Association,Skokie,Illinois,USA,2001.
  • 2Greer Walter L.Interactions among gaseous pollutants from cement manufacture and their control technologies[R].R&D Serial No.2728,Portland Cement Association,Skokie,Illinois,USA,2003.
  • 3Goldmann W,Kreft W,Schoütte R.Cyclic phenomena of sulfur in cement kilns[J].World Cement Technology,1981(12):424-430.
  • 4Rose D,Brentrup L.Effective emission reduction when using secondary materials at the Siggenthal Cement Works in Switzerland[J].Zement-Kalk-Gips,1995(4):204-214.
  • 5Lowes T M,Evans L P.The effect of burner design and operating parameters on flame shape,heat transfer,NOx and SO3 cycles[J].Zement-Kalk-Gips,1993(12):761-768.
  • 6Schmidt K D,Gardeik H O,Ruhland W.Process engineering influences on SO2 emission from rotary kiln plants,Results of long-term investigation[J].Zement-Kalk-Gips,1986,39(4):110-116.
  • 7Léné J C,Polysius K.Hish sulfur fuels-fired for action[J].World Cement,2001,32(12):28-32.
  • 8Nielsen P B.SO2 and NOx emissions from modern cement kilns with a view to future regulations[J].Zement-Kalk-Gips,1991,44(9):449-456.
  • 9Sheth S H.SO2 emissions history and scrubbing system-Santa Cruz Plant,California,RMC Lonestar[C].33rd IEEE Cement Industry Conference,Mexico City,Mexico,May,1991.
  • 10Miller S W,Hansen J P.Controlling SO2 emission[J].Cement International,2004(2):80-87.

共引文献23

同被引文献1

引证文献2

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部