ironmaking 中文意思是什麼

ironmaking 解釋
煉鐵
  1. New development of blast furnace ironmaking technologies

    高爐煉鐵技術的最新進展
  2. Health protection zone standard for ironmaking plants

    煉鐵廠衛生防護距離標準
  3. Development of blast furnace ironmaking technology in wisgco

    日本節能高爐煉鐵技術的最新進展
  4. Abstract : the reasons of higher energy consumption of sintering plant in tssc 2 ironmaking plant was analyzed. the direction of energy saving and some measurements were proposed

    文摘:分析了唐鋼二煉鐵廠燒結工序能耗高的原因,結合國內外先進的燒結節能技術,從燒結工藝的各個方面提出了節能的方向和措施。
  5. Abstract : the present paper elaborates the role of the ironmaking area and the general situation of process flow and task of the ironmaking area at wisco in the coming century, correctly analyzes the current conditions and advantages of the ironmaking facilities, and affirms that the blast furnace ironmaking is still the main stream in the 21st century and the ironmaking area will remain the bottle neck in the whole process flow in wisco

    文摘:闡述了進入新世紀武鋼煉鐵系統的作用、武鋼工藝流程的總形勢及武鋼煉鐵系統的任務;正確地分析了武鋼煉鐵系統的現狀及其優勢,提出了高爐煉鐵仍是21世紀煉鐵系統的主流,而煉鐵系統又是武鋼整個流程中的關鍵性環節。
  6. Progress in modern ironmaking process

    現代煉鐵技術進展
  7. The integrated system of smelting reduction ironmaking - gasolinesynthesis - electric - ity generation, in which the coal gas produced inthe ironmaking module is first cleaned and then used as the fuel for theelectricity generation module or raw material of the gasoline synthesismodule, can resolve the problem of utilization of tail gas in thesmelting reduction ironmaking and the large investment of gasificationin the integrated gasification combined cycle and gasoline synthesis. taking efficiency, scale and product structure into consideration, the processes of the two - stage smelting reduction ironmaking - combined cycleelectricity generation with coal gas, the two - stage smeltingreduction ironmaking - steam cycle electricity generation with coal gas, the one - stage smelting reduction ironmaking - combined cycleelectricity generation with coal gas, and the one - stagesmelting reduction ironmaking - gasoline synthesis with coal gas - steamcycle electricity generation with tail gas are techno - economicallyfeasible and have the promise of being industrialized

    將熔態還原煉鐵產生的煤氣在凈化后發電或經改質后合成汽油的集成系統可以解決熔態還原煉鐵的尾氣利用問題及聯合循環發電和煤基汽油合成造氣投資成本高的問題.從效率、規模和產品結構各方面考慮,過程模擬結果顯示:二段法熔態還原煉鐵-煤氣聯合循環發電、二段法熔態還原煉鐵-煤氣蒸汽發電、一段法熔態還原煉鐵-煤氣聯合循環發電、一段法熔態還原煉鐵-煤氣合成汽油-尾氣蒸汽發電流程,有實現產業化的可能
  8. Situation and task of ironmaking area at wisco in the forth coming century

    進入新世紀武鋼煉鐵系統的形勢和任務
  9. Abstract : the sintering experiment on brazilian concentrat e wa s made at hangang in 1999 to improve sinter grade. the benefits of adding brazili an concentrate to ironmaking are calculated

    文摘:介紹了邯鋼在1999年為提高燒結礦品位所進行的巴西精礦粉燒結試驗研究和燒結廠配加巴西精礦粉的生產效果及煉鐵取得的效益。
  10. Abstract : the conception and automatic control demand for raw materials field modification project of 2 ironmaking plant in tangshan i & amp; s co. were presented in this paper

    文摘:介紹了唐鋼二鐵廠原料場改造設計的主要工藝特點及自動化控制要求。
  11. Prototype terminals for quiet aircraft, precision pressure to speedfast, simple operation. using high temperature ductile ironmaking body, making the overall ruggedness and durability greatly enhanced

    該機為泛用型靜音端子,壓接精度高速度快、操作簡易。採用高強度球墨鑄鐵本體構造,使得整體的堅固性及耐用性大大的提高。
  12. Emphasising and optimizating the development scheme for raw material system of ironmaking

    重視和優化煉鐵原料系統的發展規劃
  13. Application of ironmaking optimization and expert system for no 1 bf in jinan iron and steel group co

    煉鐵優化專家系統在濟鋼高爐的應用
  14. New technical characteristics and theoretical study on rapid reduction ironmaking at low temperature

    低溫快速還原煉鐵新技術特點及理論研究
  15. The effect of increasing iron content and reducing silicon content in concentrates from angang mine on sintering and ironmaking

    鞍鋼礦山提鐵降硅對燒結和煉鐵的影響
  16. If it were shut down abnormally, the direct economic loss will be at least 300 thousand yuan rmb per hour. even if it switched on immediately after shutoff, the oxygen and nitrogen production can return to normal at least four hours later, and it has to spend seventy - two hours to make liquid oxygen and its purity meet the requirements, in which the losses from half a steelmaking and ironmaking production loads or so are not included

    如果非正常停車一次每小時至少直接經濟損失30萬元,即使停車后馬上啟動,也至少要4個小時以後氧氮產量才可能恢復正常,液氬產量和純度要達到要求則需要72個小時,這還不包括煉鋼和煉鐵要減一半左右生產負荷的損失。
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