subject
Physics, 29.11.2019 06:31 mahmudabiazp3ekot

Acontinuous distillation column with reflux is to be designed to separate 30, 000 kg/h of a mixture of 40 wt% benzene and 60 wt% toluene into an overhead product containing 97 wt% benzene and a bottom product of 98 wt% toluene. a reflux ratio of 3.5 mol distillate to 1 mol of product is to be used. the molal latent heats of benzene and toluene are 7360 and 7960 cal/g mol, respectively. benzene and toluene form a nearly ideal solution with a relative volatility of about 2.5. the feed has a bubble point of 95 °c at a pressure of 1.0 atm.
(a) calculate the moles of overhead product and bottom product per hour.
(b) determine the number of ideal plates and the position of the feed plate
(i) if the feed is liquid at its boiling point;
(ii) if the feed is liquid at 20 °c (specific heat 0.44 cal/g. °c);
(iii) if the feed is a mixture of two-thirds vapor and one- third liquid.
(c) if steam at 1.36 atm gauge is used for heating, how much steam is required per hour for each of the above three cases, neglecting heat losses and assuming the reflux is a saturated liquid.
(d) if cooling water enters the condenser at 25 °c and leaves at 40 °c, how much cooling water is required, in cubic meters per hour? what is the cooling load of the condenser in kw?

ansver
Answers: 3

Another question on Physics

question
Physics, 22.06.2019 09:30
On a day when the barometer reads 75.23 cm, a reaction vessel holds 250 ml of ideal gas at 20 celsius. an oil manometer ( ρ= 810 kg/m^3) reads the pressure in the vessel to be 41 cm of oil and below atmospheric pressure. what volume will the gas occupy under s.t.p.?
Answers: 2
question
Physics, 22.06.2019 20:20
The base of a 50-meter tower is at the origin; the base of a 50-meter tree is at (0, 50, 0). the ground is flat and the z-axis points upward. the following parametric equations describe the motion of six projectiles each launched at time t = 0 in seconds. (i) r (t) = (50 + t2)k (ii) r (t) = 2t2 j + 2t2k (iii) r (t) = 50 i + 50 j + (50 − t2)k (iv) r (t) = 2t j + (50 − t2)k (v) r (t) = (50 − 2t) i + 2t j + (50 − t)k (vi) r (t) = t i + t j + tk (a) which projectile is launched from the top of the tower and goes downward? at time t = , the projectile hits the ground at point (x, y, z) = . (b) which projectile hits the top of the tree?
Answers: 2
question
Physics, 22.06.2019 20:30
Suppose a force of 60 n is required to stretch and hold a spring 0.1 m from its equilibrium position. a. assuming the spring obeys hooke's law, find the spring constant k. b. how much work is required to compress the spring 0.5 m from its equilibrium position? c. how much work is required to stretch the spring 0.6 m from its equilibrium position? d. how much additional work is required to stretch the spring 0.1 m if it has already been stretched 0.1 m from its equilibrium? a. kequals 600
Answers: 2
question
Physics, 23.06.2019 04:40
2) a cubical block of stone is lowered at a steady rate into the ocean by a crane, always keeping the top and bottom faces horizontal. which one of the following graphs best describes the buoyant force b on this block as a function of time t if the block just enters the water at time t = 0 s?
Answers: 3
You know the right answer?
Acontinuous distillation column with reflux is to be designed to separate 30, 000 kg/h of a mixture...
Questions
question
Computers and Technology, 13.11.2019 16:31
question
Mathematics, 13.11.2019 16:31
Questions on the website: 13722363