Technique for producing calcium oxide E glass
A production process, quicklime technology, applied in the field of E-glass production process, to achieve the effect of reducing air pollution, reducing pollution and reducing burden
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specific Embodiment approach 1(12-1-1
[0012] The ingredients in parts by weight include: silicon dioxide 53.8, aluminum oxide 13.75, boron trioxide 7.30, calcium oxide 20.77, magnesium oxide 2.02, iron oxide 0.40, titanium oxide 0.42, fluorine 0.80, sodium oxide + potassium oxide 0.65 . The calcium oxide is all introduced by limestone; the fluorine element is introduced by fluorite whose weight ratio of fluorine component is 0.2%.
specific Embodiment approach 2(12-1-2
[0014] The ingredients in parts by weight include silicon dioxide 54.1, aluminum oxide 13.7, boron trioxide 7.0, calcium oxide 20.75, magnesium oxide 2.18, iron oxide 0.40, titanium oxide 0.42, fluorine 0.75, sodium oxide + potassium oxide 0.62 . Calcium oxide is introduced with 80% limestone and 20% calcined material outside the kiln. The calcined product is obtained by calcining limestone outside the kiln at 1000-1050°C for 24 hours; the fluorine element is introduced by fluorite with a weight ratio of 0.5% of the fluorine component.
specific Embodiment approach 3(12-1-3
[0016] The ingredients in parts by weight include silicon dioxide 54.2, aluminum oxide 13.6, boron oxide 7.0, calcium oxide 20.95, magnesium oxide 2.15, iron oxide 0.40, titanium oxide 0.38, fluorine 0.65, sodium oxide + potassium oxide 0.60 . Calcium oxide is introduced with 50% limestone and 50% calcined material outside the kiln. The calcined product is obtained by calcining limestone outside the kiln at 950-1000°C for 25 hours; the fluorine element is introduced by fluorite with a weight ratio of 0.4% of the fluorine component.
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