ᱥᱤ ᱴᱤ ᱴᱤ ᱯᱨᱚᱡᱮᱠᱴᱚᱨ

ᱤᱱᱴᱮᱜᱽᱨᱮᱥᱚᱱ
ᱥᱤ ᱴᱤ ᱴᱤ ᱯᱨᱚᱡᱮᱠᱴᱚᱨ
ᱵᱤᱵᱨᱚᱬ
α=.08 ᱫᱚ ᱢᱤᱫ ᱜᱩᱱᱟᱱᱟᱜ ᱜᱩᱱ ᱠᱟᱱᱟ ᱡᱟᱦᱟᱸ ᱫᱚ ᱩᱥᱟᱹᱨᱟ ᱜᱮ ᱜᱞᱩᱠᱚᱡᱽ ᱨᱮᱭᱟᱜ ᱜᱩᱱ ᱮ ᱛᱮᱭᱟᱨᱟ ᱾ ᱱᱚᱣᱟ ᱫᱚ ᱢᱤᱫ ᱥᱟᱫᱷᱟᱨᱚᱱ ᱜᱩᱱ ᱠᱟᱱᱟ ᱡᱟᱦᱟᱸ ᱫᱚ 2.8(ᱮ) ᱨᱮᱭᱟᱜ ᱢᱤᱫ ᱯᱟᱥᱱᱟᱣ ᱜᱩᱱᱟᱹᱱ ᱛᱟᱠᱱᱤᱠᱤ ᱠᱟᱱᱟ ᱡᱟᱦᱟᱸ ᱫᱚ ᱱᱟᱜᱟᱢ ᱨᱮᱭᱟᱜ ᱢᱤᱫ ᱱᱟᱶᱟ ᱜᱩᱱ ᱠᱟᱱᱟ᱾ ᱜᱞᱩᱠᱚᱡᱽ ᱟᱨ ᱥᱴᱨᱚᱵᱮᱨᱤ ᱫᱚ ᱟᱹᱰᱤ ᱵᱮᱥ ᱛᱮ ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱᱟ ᱟᱨ ᱚᱱᱟ ᱫᱚ ᱟᱹᱰᱤ ᱠᱮᱴᱮᱡ ᱛᱮ ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱᱟ, ᱚᱱᱟ ᱫᱚ ᱞᱤᱠ ᱞᱟᱹᱜᱤᱫ ᱟᱞᱜᱟ ᱛᱮ ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱᱟ ᱾
ᱠᱮᱛᱷᱚᱞᱤᱠ
ᱢᱮᱜᱽᱱᱤᱥᱤᱭᱟᱢ ᱤᱱᱴᱮᱜᱽᱨᱮᱴᱮᱰ ᱤᱢᱮᱡᱤᱝ
Share to
ᱤᱱᱴᱮᱜᱽᱨᱮᱥᱚᱱ

 

ᱨᱮᱰᱤᱭᱮᱥᱚᱱ ᱨᱤᱥᱟᱭᱠᱟᱞ ᱢᱮᱯ ᱢᱮ

ᱨᱚᱡᱽᱜᱟᱨ: ᱓᱐᱐᱐,᱐᱐᱐,᱐᱐᱐-᱓᱐᱐ ᱨᱮᱭᱟᱜ ᱵᱮᱵᱷᱟᱨ

(ᱵᱤ) ᱞᱟᱜᱽᱱᱟ

ᱨᱚᱡᱽᱜᱟᱨᱰ: ᱕᱐᱐᱐-᱓᱐᱐,᱐᱐᱐,᱐᱐᱐ ᱯᱷᱤᱴᱤᱝ ᱨᱚᱰ ᱨᱮ ᱩᱪᱟᱹᱲ᱾

(ᱛ) ᱥᱤᱨᱡᱚᱱ ᱜᱮᱥ ᱠᱚ ᱾

ᱠᱟᱹᱢᱤ ᱦᱚᱨᱟ (ᱵᱤᱯᱤᱮᱥ) ≥ 0000, 0000, − 2005 (ᱥᱯᱤᱰ) ᱜᱡᱚᱴᱱᱟᱢ, ᱯᱤ.ᱥᱤ.

ᱚᱠᱟ ᱫᱚ, ᱡᱟᱦᱟᱸ ᱫᱚ ᱠᱚᱢ ᱫᱟᱢ, α-ᱦᱟᱭᱰᱨᱮᱴᱮᱰ ᱥᱩᱱᱩᱢ, ᱦᱟᱭᱵᱽᱨᱤᱰ ᱢᱮᱴᱨᱤᱠᱥ ᱠᱷᱚᱱ ᱠᱚᱢ ᱜᱮᱭᱟ ᱾

 

 

α=.08 ᱫᱚ ᱢᱤᱫ ᱜᱩᱱᱟᱱᱟᱜ ᱜᱩᱱ ᱠᱟᱱᱟ ᱡᱟᱦᱟᱸ ᱫᱚ ᱩᱥᱟᱹᱨᱟ ᱜᱮ ᱜᱞᱩᱠᱚᱡᱽ ᱨᱮᱭᱟᱜ ᱜᱩᱱ ᱮ ᱛᱮᱭᱟᱨᱟ ᱾ ᱱᱚᱣᱟ ᱫᱚ ᱢᱤᱫ ᱥᱟᱫᱷᱟᱨᱚᱱ ᱜᱩᱱ ᱠᱟᱱᱟ ᱡᱟᱦᱟᱸ ᱫᱚ 2.8(ᱮ) ᱨᱮᱭᱟᱜ ᱢᱤᱫ ᱯᱟᱥᱱᱟᱣ ᱜᱩᱱᱟᱹᱱ ᱛᱟᱠᱱᱤᱠᱤ ᱠᱟᱱᱟ ᱡᱟᱦᱟᱸ ᱫᱚ ᱱᱟᱜᱟᱢ ᱨᱮᱭᱟᱜ ᱢᱤᱫ ᱱᱟᱶᱟ ᱜᱩᱱ ᱠᱟᱱᱟ᱾ ᱜᱞᱩᱠᱚᱡᱽ ᱟᱨ ᱥᱴᱨᱚᱵᱮᱨᱤ ᱫᱚ ᱟᱹᱰᱤ ᱵᱮᱥ ᱛᱮ ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱᱟ ᱟᱨ ᱚᱱᱟ ᱫᱚ ᱟᱹᱰᱤ ᱠᱮᱴᱮᱡ ᱛᱮ ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱᱟ, ᱚᱱᱟ ᱫᱚ ᱞᱤᱠ ᱞᱟᱹᱜᱤᱫ ᱟᱞᱜᱟ ᱛᱮ ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱᱟ ᱾

 

Due to the various drawbacks of long-process blast furnace ironmaking, with the abundant accumulation of scrap steel resources, short-process electric furnace steelmaking has gradually developed into the mainstream, and the demand for reduced iron will greatly increase. ᱢᱤᱫ ᱠᱮᱴᱮᱡ ᱟᱨ ᱵᱟᱹᱲᱛᱤ ᱯᱨᱚᱜᱚᱨᱢ ᱛᱟᱠᱱᱤᱠᱤ ᱫᱚ ᱦᱩᱭᱩᱜ ᱠᱟᱱᱟ ᱢᱤᱫ ᱫᱷᱟᱯ ᱨᱮ ᱠᱟᱹᱢᱤ ᱠᱟᱛᱮ, ᱴᱤᱢ ᱠᱚ ᱫᱚ ᱥᱟᱭ ᱥᱟᱭ ᱥᱟᱭ ᱦᱚᱲ ᱠᱚ ᱠᱟᱹᱢᱤ ᱨᱮ ᱢᱮᱱᱟᱜ ᱠᱚᱣᱟ᱾

 

3

 

ᱢᱩᱪᱟᱹᱫ ᱠᱟᱹᱢᱤᱦᱚᱨᱟ

ᱵᱟᱝ᱾

ᱥᱤᱞᱤᱱᱰᱟᱨ

ᱱᱚᱣᱟ ᱠᱚ

1

ᱡᱩᱢ ᱤᱱᱡᱮᱠᱥᱚᱱ ᱨᱮᱡᱤᱢᱮᱱᱴ ᱞᱤᱢᱴᱤᱰᱤ ᱨᱮᱭᱟᱜ ᱢᱩᱪᱟᱹᱫ ᱨᱮ

2000t/d

2

ᱡᱤ᱑ ᱞᱤᱢᱯᱷᱚᱢᱟ ᱨᱮᱭᱟᱜ ᱢᱟᱨᱮ ᱟᱨᱩᱭᱞᱮᱨᱤ ᱠᱚ ᱦᱚᱛᱮᱛᱮ ᱾

2000t/d

3

ᱡᱤ᱒ ᱞᱤᱢᱴᱤᱰᱤᱭᱩᱠᱞᱤᱭᱟᱨ ᱞᱤᱢᱴᱤᱰᱤᱭᱩᱥ ᱨᱮᱭᱟᱜ ᱢᱟᱨᱮ ᱡᱤᱱᱤᱥ ᱠᱚ ᱾

3000t/d

5

ᱡᱮᱱᱮᱨᱮᱴᱟᱨ ᱡᱤ ᱮᱞ ᱮᱞ ᱡᱤ ᱜᱨᱟᱯᱷ ᱫᱚ 5GB ᱰᱤᱵᱷᱟᱭᱤᱥ ᱨᱮ ᱢᱮᱱᱟᱜᱼᱟ ᱾

᱕/᱑᱐

8

ᱡᱮᱱᱤᱯᱷᱟᱨ ᱥᱟᱱ ᱯᱷᱨᱟᱱᱥᱤᱥᱠᱳ ᱨᱮ

/ ᱖᱐ ᱢᱟᱦᱟᱸ

 

ᱦᱚᱜᱽᱥ: ᱪᱟᱭᱱᱟ, ᱪᱟᱭᱱᱟ, ᱯᱨᱚᱡᱮᱠᱴ, ᱵᱮᱱᱟᱣ, ᱵᱮᱱᱟᱣ, ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱ, ᱥᱤᱠᱟᱜᱳ ᱠᱚ ᱦᱚᱛᱮᱛᱮ ᱵᱮᱱᱟᱣ ᱟᱠᱟᱱᱟ ᱾

ᱤᱱᱴᱮᱜᱽᱨᱮᱥᱚᱱ