Solid Waste Engineering: A Global Perspective, Si Edition
Solid Waste Engineering: A Global Perspective, Si Edition
3rd Edition
ISBN: 9781305638600
Author: William A. Worrell, P. Aarne Vesilind, Christian Ludwig
Publisher: Cengage Learning
bartleby

Concept explainers

Question
Book Icon
Chapter 4, Problem 4.4P
To determine

The shredder energy requirement for shredding.

Expert Solution & Answer
Check Mark

Answer to Problem 4.4P

The shredder energy requirement for shredding is 7.61kWh/ton .

Explanation of Solution

Given:

The fraction of feed retained on sieve is shown in the table below:

    Sieve Size (inches) Fraction of Feed Retained on the Sieve
    10 0.05
    8 0.20
    4 0.32
    2 0.18
    1 0.20

Assume, from the figure that the axis is a logarithmic scale then for Y at 0.62 and 0.1 , the size of the product is 0.8in, and the size of the feed is 4in .

Calculation:

Write the equation to calculate the shredder energy requirement for shredding.

E=10Ei[ x 0 ( 1.61) 1 n]1210EiLf12 ...... (I)

Here, the shredder energy is E , the work index is Ei , the constant is n , the characteristic size is x0, and the length of the feed is Lf .

Write the equation to calculate the slope np .

np=Y1Y2x0pxp ...... (II)

Substitute 0.62 for Y1 , 0.1 for Y2 , 0.8 for x0p, and 0.08 for xp in Equation (II).

np=0.620.10.80.08=0.520.72=0.72

Write the equation to calculate the slope ns .

ns=Y1Y2x0fxf ...... (III)

Substitute 0.62 for Y1 , 0.1 for Y2 , 4 for x0f, and 2 for xf in Equation (III).

ns=0.620.142=0.522=0.26

The slope np is greater.

Calculate the shredder energy requirement for shredding.

Substitute 0.72 for n , 4in for Lf , 0.8in for x0, and 400kWh/ton in the Equation (I).

E=10( 400kWh/ton ) [0.8in×( 25400μm 1in) ( 1.61) 1 0.72] 12 10( 400kWh/ton ) [4in×( 25400μm 1in)] 12 =10( 400kWh/ton )198.410( 400kWh/ton )318.74=20.16kWh/ton12.55kWh/ton=7.61kWh/ton

Conclusion:

Thus, the shredder energy requirement for shredding is 7.61kWh/ton .

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
Determine the allowable pile load capacity of the 40 cm diameter driven concrete pile shown in the Figure (1). W.T. Figure (1) K=1 6=0.750 3 m 6 m K = 2 6=0.750 5 m Loose sand Y₁ = 16 kN/m², '= 30° Soft clay Year = 18 kN/m, 2 C= 15 kN/m² Dense sand Ysat = 20 kN/m², -40°
= The allowable working load on a prestressed concrete pile 21-m long that has been driven 356 mm (see Table 9.3a). into sand is 502 kN. The pile is octagonal in shape with D Skin resistance carries 350 kN of the allowable load, and point bearing carries the rest. Use E, = 21 x 10° kN/m², E, = 25 x 103 kN/m², p, 0.35, and = 0.62. Determine the settlement of the pile. ==
H.W.5: A beam section is limited to a width of 300 mm, and total depth h=500 mm, and has to resist a factored moment 405 kN.m.Calculate the required reinforcement, given f'c=28 MPa, fy=420 MPa. (As=6425mm, As'=2425 mm Ans)
Knowledge Booster
Background pattern image
Civil Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, civil-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Solid Waste Engineering
Civil Engineering
ISBN:9781305635203
Author:Worrell, William A.
Publisher:Cengage Learning,
Text book image
Materials Science And Engineering Properties
Civil Engineering
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Cengage Learning
Text book image
Construction Materials, Methods and Techniques (M...
Civil Engineering
ISBN:9781305086272
Author:William P. Spence, Eva Kultermann
Publisher:Cengage Learning
Text book image
Fundamentals of Geotechnical Engineering (MindTap...
Civil Engineering
ISBN:9781305635180
Author:Braja M. Das, Nagaratnam Sivakugan
Publisher:Cengage Learning
Text book image
Traffic and Highway Engineering
Civil Engineering
ISBN:9781305156241
Author:Garber, Nicholas J.
Publisher:Cengage Learning
Text book image
Steel Design (Activate Learning with these NEW ti...
Civil Engineering
ISBN:9781337094740
Author:Segui, William T.
Publisher:Cengage Learning