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BASIC Water and Wastewater Treatment (1990)

Tebbutt, T.H.Y., BASIC Water and Wastewater Treatment (Butterworths BASIC series), Butterworths, 1990

BASIC (Programmiersprache)

 

Inhalt:

 

Preface

 

1 - Introduction to BASIC (1-9)

1.1 BASIC Language
1.2 Variables
1.3 Input
1.4 Output
1.5 Mathematical Expressions
1.6 Conditional Statements
1.7 Loops
1.8 Subroutines
1.9 Errors and Checks

Further Reading

 

2 - Elements of Water and Wastewater Treatment (10-17)

2.1 The Water Cycle
2.2 Water Quality
2.3 Water Quality Parameters
2.4 Water Supply and Treatment
2.5 Wastewater Collection, Treatment and Disposal
2.6 Pollution Control

Further Reading

 

3 - Flow Measurement, Sampling and Analysis (18-35)

Essential Theory
3.1 Flow Measurement Techniques
3.2 Sampling Techniques
3.3 Analytical Methods
3.4 Some Typical Analyses
3.5 Interpretation of Results

Worked Examples
3.1 CURMET: Current Metering
3.2 CHEMDIL: Chemical Dilution Gauging
3.3 ALKTY: Alkalinity Analysis
3.4 BODDATA: BOD Data Analysis

Problems
Further Reading

 

4 - Environmental Aspects (36-49)

Essential Theory
4.1 Mass Balance Concepts
4.2 Types of Pollutant
4.3 Reaeration and the Oxygen Balance

Worked Examples
4.1 BALDEC: Pollutant Concentration and Decay Calculations
4.2 REAER: Reaeration Calculations
4.3 DOSAG: Dissolved Oxygen Sag Program

Problems
Further Reading

 

5 - Physical Treatment Processes (50-66)

Essential Theory
5.1 Sedimentation
5.2 Flocculation
5.3 Flow Through Porous Media

Worked Examples
5.1 DISPAR: Settling Velocity of Discrete Particles
5.2 IDEALSED: Performance of an Ideal Settling Tank
5.3 FLOC: Flocculation Calculations
5.4 FILTER: Deep-Bed Filter Head Losses Using Rose's Equation

Problems
Further Reading

 

6 - Chemical Treatment Processes (67-84)

Essential Theory
6.1 Chemical Coagulation
6.2 Chemical Precipitation
6.3 Ion Exchange
6.4 Disinfection

Worked Examples
6.1 COAG: Chemical Coagulation
6.2 PRESOFT: Precipitation Softening
6.3 IONEX: Sodium Cycle Ion-Exchange Softening
6.4 KILL: Disinfection Calculations

Problems
Further Reading

 

7 - Biological Treatment Processes (85-99)

Essential Theory
7.1 Principles of Biological Treatment
7.2 Biochemical Reactions
7.3 Biological Filter
7.4 Activated Sludge
7.5 Oxidation Pond
7.6. Anaerobic Processes

Worked Examples
7.1 BIOGRO: Solids Accumulation in Aerobic Treatment
7.2 KINCOF: Biological Kinetic Coefficients
7.3 ANAEROBE: Anaerobic Solids and Gas Production
7.4 OXPOND: Facultative Oxidation Pond Loadings

Problems
Further Reading

 

8 - Sludge Handling and Treatment (100-108)

Essential Theory
8.1 Properties of Sludges
8.2 Measurement of Dewatering Characteristics
8.3 Dewatering Methods
8.4 Sludge Disposal

Worked Examples
8.1 SLUDGE: Sludge Volume Calculations
8.2 SPECREST: Specific Resistance to Filtration

Problems
Further Reading

 

9 - Concepts in Design (109-127)

Essential Theory
9.1 Treatment Plant Design
9.2 Optimized Design
9.3 Decision-Making

Worked Examples
9.1 STPDES: Sewage Treatment Plant Design
9.2 OPTDES: Demonstration of Optimized Design
9.3 RURWAT: Choice of a Water Source

Problems
Further Reading

 

Index (129-132)

 

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Butterworths BASIC Serνes includes the following titles:


BASIC aerodynamics
BASIC artificial intelligence
BASIC business analysis and operations research
BASIC business systems simulation
BASIC differential equations
BASIC digital signal processing
BASIC economics
BASIC electrotechnology
BASIC forecasting techniques
BASIC fluid mechanics
BASIC graph and network algorithms
BASIC heat transfer
BASIC hydraulics
BASIC hydrodynamics
BASIC hydrology
BASIC interactive graphics
BASIC investment appraisal
BASIC materials studies
BASIC matrix methods
BASIC mechanical vibrations
BASIC molecular spectroscopy
BASIC numerical mathematics
BASIC operational amplifiers
BASIC reliability engineering analysis
BASIC soil mechanics
BASIC statistics
BASIC stress analysis
BASIC surveying
BASIC technical systems simulation
BASIC theory of structures
BASIC thermodynamics and heat transfer
BASIC water and wastewater treatment

 

 



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