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E-raamat: Industrial Waste Treatment Process Engineering: Biological Processes, Volume II

(Consultant, Pennsylania, USA)
  • Formaat: 208 pages
  • Ilmumisaeg: 28-Aug-2019
  • Kirjastus: CRC Press Inc
  • Keel: eng
  • ISBN-13: 9781000717709
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  • Formaat: 208 pages
  • Ilmumisaeg: 28-Aug-2019
  • Kirjastus: CRC Press Inc
  • Keel: eng
  • ISBN-13: 9781000717709

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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.
Introduction ix
Aeration
1(18)
Basic Concepts
1(3)
Aeration Devices
4(4)
Process Engineering Design
8(4)
General Engineering Criteria
12(3)
Case Study Number
15(2)
References
17(2)
Aerobic Biological Oxication
19(26)
General Biological Concepts
19(7)
Factors Sustaining a Biological Reaction
26(3)
Factors Affecting or Inhibiting a Biological Reaction
29(4)
Process Variables to Control a Biological System
33(1)
System Performance
34(2)
Nitrification and Denitrication
36(4)
Biological Processes
40(3)
References
43(2)
Activated Sludge System
45(36)
Basic Concepts
45(4)
Activated Sludge Systems
49(5)
Process Engineering Design
54(11)
General Engineering Criteria
65(8)
Case Study Number 10
73(2)
Case Study Number 11
75(1)
Case Study Number 12
76(2)
Case Study Number 13
78(1)
References
79(2)
Biological Oxidation: Lagoons
81(24)
Basic Concepts
81(2)
Lagoon Process Evaluations
83(8)
Process Engineering Design
91(4)
General Engineering Criteria
95(4)
Case Study Number 14
99(2)
Case Study Number 15
101(1)
References
102(3)
Biological Oxidation: Fixed-Film Processes
105(32)
Basic Concepts
105(2)
Fixed Film Systems
107(3)
Process Engineering Design
110(19)
General Engineering Criteria
129(3)
Case Study Number 16
132(2)
Case Study Number 17
134(1)
References
135(2)
Aerobic Digestion
137(12)
Basic Concepts
137(2)
Aerobic Treatment Systems
139(1)
Process Engineering Design
140(5)
General Engineering Criteria
145(1)
Case Study Number 18
146(2)
References
148(1)
Anaerobic Waste Treatment---Anaerobic Sludge Digestion
149(32)
Basic Concepts
150(2)
Anaerobic Treatment Systems
152(5)
Process Engineering Design
157(15)
General Engineering Criteria
172(4)
Case Study Number 19
176(3)
Case Study Number 20
179(1)
References
180(1)
Sedimentation
181(22)
Basic Concepts
181(6)
Clarification and Thickening Systems
187(1)
Process Engineering Design
188(5)
General Engineering Criteria
193(5)
Case Study Number 21
198(1)
Case Study Number 22
198(2)
Case Study Number 23
200(1)
References
200(3)
Index 203
Gaetano Joseph Celenza