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E-raamat: Industrial Waste Treatment Processes Engineering: Specialized Treatment Systems, Volume III

(Consultant, Pennsylania, USA)
  • Formaat: 224 pages
  • Ilmumisaeg: 13-Aug-2020
  • Kirjastus: CRC Press Inc
  • Keel: eng
  • ISBN-13: 9781000160123
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  • Formaat: 224 pages
  • Ilmumisaeg: 13-Aug-2020
  • Kirjastus: CRC Press Inc
  • Keel: eng
  • ISBN-13: 9781000160123
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Industrial Waste Treatment Process Engineering is a step-by-step implementation manual in three volumes, detailing the selection and design of industrial liquid and solid waste treatment systems. It consolidates all the process engineering principles required to evaluate a wide range of industrial facilities, starting with pollution prevention and source control and ending with end-of-pipe treatment technologies.

Industrial Waste Treatment Process Engineering guides experienced engineers through the various steps of industrial liquid and solid waste treatment. The structure of the text allows a wider application to various levels of experience. By beginning each chapter with a simplified explanation of applicable theory, expanding to practical design discussions, and finishing with system Flowsheets and Case Study detail calculations, readers can "enter or leave" a section according to their specific needs. As a result, this set serves as a primer for students engaged in environmental engineering studies AND a comprehensive single-source reference for experienced engineers. Industrial Waste Treatment Process Engineering includes design principles applicable to municipal systems with significant industrial influents. The information presented in these volumes is basic to conventional treatment procedures, while allowing evaluation and implementation of specialized and emerging treatment technologies.

What makes Industrial Waste Treatment Process Engineering unique is the level of process engineering detail. The facility evaluation section includes a step-by-step review of each major and support manufacturing operation, identifying probable contaminant discharges, practical prevention measures, and point source control procedures. This theoretical plant review is followed by procedures to conduct a site specific pollution control program. The unit operation chapters contain all the details needed to complete a treatment process design.

Industrial Waste Treatment Process Engineering will interest environmental engineers, chemical process engineers working in environmental engineering, civil engineers with environmental specialties, as well as graduate students in environmental engineering, corporate environmental engineers, plant engineers, and industry and university technical libraries. These books supplement existing texts detailing the regulatory, legal, and permit preparation requirements imposed on manufacturing facilities. Additionally, Industrial Waste Treatment Process Engineering is designed for engineers preparing environmental appropriations for corporate funding and developing systems for plant facilities sensitive to operating costs.
Introduction ix
Industrial And Hazardous Waste Incineration
1(62)
Basic Concepts
2(5)
Incineration Systems
7(11)
Process Engineering Design
18(19)
General Engineering Criteria
37(13)
Case Study Number 24
50(2)
Case Study Number 25
52(4)
Case Study Number 26
56(1)
Appendix: Material Balance Calculations and Heat Loss Calculations
57(3)
References
60(3)
Adsorption
63(22)
Basic Concepts
63(5)
Carbon Adsorption Systems
68(2)
Process Engineering Design
70(8)
General Engineering Criteria
78(4)
Case Study Number 27
82(2)
References
84(1)
Ion Exchange
85(14)
Basics Concepts
85(2)
Ion Exchange Processes
87(1)
Process Engineering Design
88(4)
General Engineering Criteria
92(2)
Case Study Number 28
94(2)
Appendix
96(2)
References
98(1)
Wastewater Stripping
99(36)
Basic Concepts
99(3)
Stripper Process Evaluations
102(15)
Process Engineering Design
117(5)
General Engineering Criteria
122(6)
Case Study Number 29
128(2)
Case Study Number 30
130(2)
References
132(3)
Filtration
135(20)
Basic Concepts
135(2)
Filter Systems
137(2)
Process Engineering Design
139(11)
General Engineering Criteria
150(3)
Case Study Number 31
153(1)
References
154(1)
Membrane Technology: Microfiltration, Ultrafiltration, And Reverse Osmosis
155(20)
Basic Concepts
155(2)
Membrane Systems
157(4)
Process Engineering Design
161(8)
General Engineering Criteria
169(2)
Case Study Number 32
171(1)
References
172(3)
Dewatering
175(26)
Basic Concepts
175(1)
Process Engineering Design
175(5)
Selecting the Dewatering Device
180(5)
General Engineering Design Criteria
185(4)
Belt Filter Press: Basic Concepts
189(1)
Process Engineering Design
189(3)
Centrifuges: Basic Concepts
192(2)
Process Engineering Design
194(4)
Case Study Number 33
198(1)
References
199(2)
Index 201
Celenza\, Gaetano