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Showing posts with label Online Calculator. Show all posts
Showing posts with label Online Calculator. Show all posts

Friday, 1 March 2019

RAW MEAL TO CLINKER RATIO -THEORY & CALCULATION


RAW MEAL TO CLINKER RATIO

Raw meal to clinker ratio is the amount of raw meal required to produce 1 kg of clinker.

If you are using kiln feed containing dust material then you have to consider this dust  into the account to calculate "raw mix to clinker ratio".


let's suppose, you start with 100 tons of fresh raw meal. In the kiln feed bin you are adding 8% kiln dust. i.e. 8 tons of dust. So for every 100 T of fresh raw meal going through the kiln, you will really measure 108 T of kiln feed. Therefor, the kiln feed to clinker ratio will be the raw meal to clinker ratio multiplied by 
=108/100 = 1.08

If your fresh raw meal to clinker ratio is 1.55. then you kiln feed to clinker ratio will be
= 1.55 *1.08 = 1.674




However, using the LOI data, you can calculate your actual fresh raw meal to clinker ratio:

Given:
D = % Dust in kiln feed =8
K = %  LOI of kiln Feed = 35.54
L = % LOI of the Dust = 38
if R = % LOI of fresh raw meal

Then
R = (1+D/100) * { K - (D * L/100 )}
    = ( 1+ 8/100) * { 35.4 - (8 *38/100)}
    = (1.08 * 35.4 - 0.08 * 38)
    = 35.2

Now you know that the LOI of your fresh raw meal is 35.2%, then we can calculate the actual raw meal to clinker ratio for fresh raw meal using below formula:
= 1/ (1-R/100)
= 1/(1-35.2/100)
= 1/(1-0.352)
=1.54

Therefor, your meal to clinker ratio for kiln feed leaving the kiln bin is really:
= 1.54 * 1.08
= 1.66

With 4% bypass:
Assuming the LOI of the bypass dust is close to zero then the kiln feed to clinker ratio would be:
= 1.66 * 1/ (1-4/100)
= 1.73

if the LOI of the bypass is > 10% then you have to consider the LOI while doing calculation:

Kiln feed to clinker ratio with 4% bypass:
= 1.66 * 1 / (1-4/100* (1- 10/100))
= 1.72


Tuesday, 26 February 2019

LIME SATURATION FACTOR OF RAW MIX

 LIME SATURATION FACTOR OF RAW MIX

You can calculate the lime saturation factor of raw mix by using following parameters:

1. Lime as CaO in %
2. Silica as SiO2 in %
3. Alumina as Al2O3 in %




CALCULATE LIME SATURATION FACTOR-LSF
Input Data:
1. Lime as CaO in % C
2. Silica as SiO2 in % S
3. Alumina as Al2O3 in % A
4. Ferric Oxide as Fe2O3 in % F
Formula:
Lime Saturation factor (L.S.F):
C * 100
2.8 * S + 1.18 * A + 0.65 * F
ONLINE CALCULATOR
INPUT
1. Lime as CaO in %
2. Silica as SiO2 in %
3. Alumina as Al2O3 in %
4. Ferric Oxide as Fe2O3 in %
OUTPUT
RESULT: LIME SATURATION FACTOR-LSF
TARGET - (85-115)




You can also calculate following calculation by clicking them below:

9. KILN 

Monday, 11 February 2019

CRITICAL SPEED OF BALL MILL

 CRITICAL SPEED OF BALL MILL


 You can calculate the critical speed of ball mill by using following parameters:
1. Mill Effective Diameter






Calculate Critical Speed of Ball Mill
Input Data:
Mill Effective Diameter in meter (Deff)
Formula:
Separator Efficiency in %
42.3 / Deff ^0.5
ONLINE CALCULATOR
CRITICAL SPEED OF BALL MILL
INPUT
Mill Effective Diameter in Meter
4.15
OUTPUT
RESULT: CRITICAL SPEED OF BALL MILL IN RPM
42.3 / (4.15)^0.5
=20.76 RPM





You can also calculate following calculation by clicking them below:

SEPARATOR EFFICIENCY - COARSE EFFICIENCY

 SEPARATOR EFFICIENCY - COARSE EFFICIENCY

You can calculate the separator efficiency by using following input parameters:
1. Residue of coarse return
2. Circulation factor
3. Residue of separator feed




CALCULATE SEPARATOR EFFICIENCY- COARSE
Input Data:
1 Residue of coarse return, % Rg
2 Circulation factor, - C
3 Residue of separator feed, % Rm
Formula:
Separator Efficiency-Coarse in %
Rg * ( C - 1 ) * 100
C * Rm
SEPARATOR EFFICIENCY- COARSE
INPUT
SN DESCRIPTION UNIT VALUE
1 Residue of coarse return, % Rg
2 Circulation factor, - C
3 Residue of separator feed, % Rm
OUTPUT
RESULT SEPARATOR EFFICIENCY- COARSE IN % %
Target (70-80)





you can also calculate following calculation by clicking them below: