logo
logo
x
바코드검색
BOOKPRICE.co.kr
책, 도서 가격비교 사이트
바코드검색

인기 검색어

실시간 검색어

검색가능 서점

도서목록 제공

Introduction to Particle Techn

Introduction to Particle Techn (Paperback, 2)

Martin Rhodes (지은이)
John Wiley & Sons Inc
48,000원

일반도서

검색중
서점 할인가 할인률 배송비 혜택/추가 실질최저가 구매하기
48,000원 -0% 0원
1,440원
46,560원 >
48,000원 -0% 0원
0원
48,000원 >
yes24 로딩중
교보문고 로딩중
notice_icon 검색 결과 내에 다른 책이 포함되어 있을 수 있습니다.

중고도서

검색중
서점 유형 등록개수 최저가 구매하기
알라딘 판매자 배송 1개 15,000원 >
로딩중

eBook

검색중
서점 정가 할인가 마일리지 실질최저가 구매하기
로딩중

책 이미지

Introduction to Particle Techn
eBook 미리보기

책 정보

· 제목 : Introduction to Particle Techn (Paperback, 2) 
· 분류 : 외국도서 > 기술공학 > 기술공학 > 생화학
· ISBN : 9780470014288
· 쪽수 : 480쪽
· 출판일 : 2008-05-01

목차

About the Contributors.

Preface to the Second Edition.

Preface to the First Edition.

Introduction..

1. Particle Size Analysis.

1.1 Introduction.

1.2 Describing The Size Of A Single Particle.

1.3 Description Of Populations Of Particles.

1.4 Conversion Between Distributions.

1.5 Describing The Population By A Single Number.

1.6 Equivalence Of Means.

1.7 Common Methods Of Displaying Size Distributions.

1.8 Methods Of Particle Size Measurement.

1.9 Sampling.

1.10 Worked Examples.

Test Yourself.

Exercises.

2. Single Particles in a Fluid.

2.1 Motion Of Solid Particles In A Fluid.

2.2 Particles Falling Under Gravity Through A Fluid.

2.3 Non-Spherical Particles.

2.4 Effect Of Boundaries On Terminal Velocity.

2.5 Further Reading.

2.6 Worked Examples.

Test Yourself.

Exercises.

3. Multiple Particle Systems.

3.1 Settling Of A Suspension Of Particles.

3.2 Batch Settling.

3.3 Continuous Settling.

3.4 Worked Examples.

Test Yourself.

Exercises.

4. Slurry Transport.

4.1 Introduction.

4.2 Flow Condition.

4.3 Rheological Models For Homogeneous Slurries.

4.4 Heterogeneous Slurries.

4.5 Components Of A Slurry Flow System.

4.6 Further Reading.

4.7 Worked Examples.

Exercises.

Test Yourself.

5. Colloids and Fine Particles.

5.1 Introduction.

5.2 Brownian Motion.

5.3 Surface Forces.

5.4 Result of Surface Forces on Behaviour in Air and Water.

5.5 Influences of Particle Size and Surface Forces on Solid/Liquid Separation by Sedimentation.

5.6 Suspension Rheology.

5.7 Influence of Surface Forces on Suspension Flow.

5.8 Nanoparticles.

5.9 Worked Examples.

Test Yourself.

Exercises.

6. Fluid Flow Through a Packed Bed of Particles.

6.1 Pressure Drop–Flow Relationship.

6.2 Filtration.

6.3 Further Reading.

6.4 Worked Examples.

Test Yourself.

Exercises.

7. Fluidization.

7.1 Fundamentals.

7.2 Relevant Powder And Particle Properties.

7.3 Bubbling And Non-Bubbling Fluidization.

7.4 Classification Of Powders.

7.5 Expansion Of A Fluidized Bed.

7.6 Entrainment.

7.7 Heat Transfer In Fluidized Beds.

7.8 Applications Of Fluidized Beds.

7.9 A Simple Model For The Bubbling Fluidized Bed Reactor.

7.10 Some Practical Considerations.

7.11 Worked Examples.

Test Yourself.

Exercises.

8. Pneumatic Transport and Standpipes.

8.1 Pneumatic Transport.

8.2 Standpipes.

8.3 Further Reading.

8.4 Worked Examples.

Test Yourself.

Exercises.

9. Separation of Particles From a Gas: Gas Cyclones.

9.1 Gas Cyclones – Description.

9.2 Flow Characteristics.

9.3 Efficiency Of Separation.

9.4 Scale-Up Of Cyclones.

9.5 Range Of Operation.

9.6 Some Practical Design And Operation Details.

9.7 Worked Examples.

Test Yourself.

Exercises.

10. Storage and Flow of Powders – Hopper Design.

10.1 Introduction.

10.2 Mass Flow And Core Flow.

10.3 The Design Philosophy.

10.4 Shear Cell Test.

10.5 Analysis Of Shear Cell Test Results.

10.6 Summary Of Design Procedure.

10.7 Discharge Aids.

10.8 Pressure On The Base Of A Tall Cylindrical Bin.

10.9 Mass Flow Rates.

10.10 Conclusions.

10.11 Worked Examples.

Test Yourself.

Exercises.

11. Mixing and Segregation.

11.1 Introduction.

11.2 Types Of Mixture.

11.3 Segregation.

11.4 Reduction Of Segregation.

11.5 Equipment For Particulate Mixing.

11.6 Assessing The Mixture.

11.7 Worked Examples.

Exercises.

12. Particle Size Reduction.

12.1 Introduction.

12.2 Particle Fracture Mechanisms.

12.3 Model Predicting Energy Requirement And Product Size Distribution.

12.4 Types Of Comminution Equipment.

12.5 Worked Examples.

Test Yourself.

Exercises.

13. Size Enlargement.

13.1 Introduction.

13.2 Interparticle Forces.

13.3 Granulation.

13.4 Worked Examples.

Exercises.

14. Health Effects of Fine Powders.

14.1 Introduction.

14.2 The Human Respiratory System.

14.3 Interaction of Fine Powders with the Respiratory System.

14.4 Pulmonary Delivery of Drugs.

14.5 Harmful Effects of Fine Powders.

Test Yourself.

Exercises.

15. Fire and Explosion Hazards of Fine Powders.

15.1 Introduction.

15.2 Combustion Fundamentals.

15.3 Combustion In Dust Clouds.

15.4 Control Of The Hazard.

15.5 Worked Examples.

Test Yourself.

Exercises.

16. Case Studies.

16.1 Case Study 1.

16.2 Case Study 2.

16.3 Case Study 3.

16.4 Case Study 4.

16.5 Case Study 5.

16.6 Case Study 6.

16.7 Case Study 7.

16.8 Case Study 8.

Notation.

References.

Index.

이 포스팅은 쿠팡 파트너스 활동의 일환으로,
이에 따른 일정액의 수수료를 제공받습니다.
이 포스팅은 제휴마케팅이 포함된 광고로 커미션을 지급 받습니다.
도서 DB 제공 : 알라딘 서점(www.aladin.co.kr)
최근 본 책