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hkc22.com market study, market report, market research, market forecast:
                                                NEW UPDATED MARCH 2019

WATER AND WASTE WATER WORLDWIDE 2025-30
Opportunities and Risks in the Water Industry
- Drinking Water, Water Treatment, Waste Water -
2017- 2018 -19-20- 2025 per year


I. Initial Position

WATER AND WASTE WATER MARKETS WORLDWIDE increase to over 850 Billion US $ by 2025.

Water desalination, reuse and water disinfection show as segments of the markets high growth potential and profit potentials. But nanotechnology and molecular science and technologies will change most of the technologies in the water markets in the future
Drinking water in the publicly available field shows growth rates of more than 9% and high growth rates in future is to be expected. The world bank takes more than 659 bn US$ of necessary investments within the next 10 years as a starting point. Drinking water shows more than 12 percent growth and a profit over 8 percent in best practice comparison. The prices for drinking water will increase worldwide in the next 15 years more than 5 times from today because of shortage and quality security. Drinking water is necessary like basic food and more expert demand to add this as one of the human rights. This is the only way to prevent new conflicts over water around the world where 30 percent of the world population is already affected today.

Especially water treatment is a growth segment. In the drinking water market worldwide, municipal, thus governmental or half-governmental companies dominate, as well as multinational groups and in the field of suppliers around 20 000 companies worldwide. High investments and operating costs let expect a further concentration to big groups in spite of efforts to pass the companies into private hands. Companies and public institutions, which combine drinking water with other utilities like waste water and energy, are able to achieve a turnover yield of more than 15%. The highest growth rates are expected in Asia, especially China, because the Chinese government tries with public programmes to improve the drinking water situation in the next 20 years.
Please see our study asia water http://www..hkc22,com/asiawater.html
The waste water markets and process water markets underlie in their development comparable investment conditions and depend on the development of a countries economy. The growth rates will be in the next years between 7 and 9 percent but the profit is 3 to 6 percent for best practice comparison.. In this field there is a trend to combine waste water, process water. In drinking water production to so-called “total water concepts”. The reasons are cost optimization and limited quantities, so in individual regions like Asia, Africa, partly South America and North America, total water plants are established. In such plants process water or drinking water, according to demand, is produced from waste water. The solid substances are converted into energy or bio-substances to be utilized in agriculture.

http://www.hkc22.com/waterandwastewater.html

II.Goal of the Study

The study provides a foundation to gain information about trends, opportunities and risks and to evaluate initial situation and further development as well as to identifiy and evaluate the growth and profit opportunities within the segments of technologies/markets, the industries and value chain.

III. Table of Contents


1.Summary
1.1 Global Water and Wastewater Markets
1.1.1 Development Trends of the Markets and the Competition
1.1.2 Development of Technologies
1.1.3 Developments in Project Distribution
1.1.4 Potential Profitability
1.1.5 Worldwide Market for Total Water Management
1.2  Aims and Uses of the Study
1.2.1 Definition of terms
1.2.1.1 Water purification
1.2.1.2 (waste)water treatment
1.2.2 Market Segmentation
1.2.2.1 Areas of application
1.2.2.2 Period examined
1.2.2.3 Countries examined
1.2.2.4 Technologies examined
1.2.2.5 Branches

2. Technologies / Processes / Products
2.1  Introduction and Overview
2.2  Biological Methods
2.3  Chemical-Physical processes
2.3.1 Filter
2.3.2 Flocculation and Precipitation
2.3.3 Ozonisation
2.3.4 Chlorine and chlorine dioxide
2.3.5 UV disinfection
2.3.6 Ion Exchange
2.3.7 Membrane Techniques
2.2.7.1 Ultrafiltration and Reverse Osmosis
2.2.7.2 Microfiltration and Nanofiltration
2.2.7.3 Electrodialysis
2.2.7.4 Applications of the differant membrane techniques
2.2.7.5 Membrane materials
2.2.7.6 Demands on membrane modules
2.2.7.7 Developments in membrane systems
2.3.8 Adsorption
2.3.8.1 Adsorption using activeated carbon
2.3.8.2 Reactivation of the activated carbon
2.3.8.3 Adsorption using adsorber resins
2.3.9 Gas Exchange
2.3.10 Electrolysis
2.3.11 Physical Water Treatment
2.5.2.4 supply of raw materials for the chemical industry
2.5.3  The use of CH4
2.5.3.1 Political measures
2.5.3.2 Tchnical possibilities for CH4-application
2.5.4  Rational energy use
2.5.4.1 Fuel cells
2.5.4.2 cogeneration
2.5.5  Automation and control technology
2.5.5.1 Analysing technology
2.5.5.2 system control
2.5.5.3 Safety technology
2.5.5.4 Information technology
2.5.5.5 Control technology
2.5.5.6 Control stations equipment
2.5.5.7 Power supply
2.5.5.8 Services

3. Basic Data and Influencing Factors
3.1  Drinking Water
3.1.1 Current situationa nd prospects for drinking water supply in major world countries
3.1.2 Population Growth
3.1.3 Factors influencing water quality
3.1.4 The problem of limited supplies of usable water
3.1.5 Water sources in western Europe
3.1.6 Water usage in western Europe – Users
3.1.7 Water usage in western Europe – Applications
3.1.8 Average prices of water in selected countries
3.1.9 Characteristics and trends in the market for drinking water purification
3.2  Water Purification ( In the Industrial and Domestic Sector)
3.2.1 Selected Water-intensive sectors
3.2.2 Characteristics and trends
3.2.3 Household and Operating Technology
3.2.3.1 Water purification in household and operating technology
3.2.3.2 Characteristics and trends on the physical water purification market
3.2.3.3 Characteristics and trends on the market for household technology
3.2.3.4 Water purification- swimming pool sector
3.3  Wastewater (municipal and industrial)
3.3.1 Quantities of wastewater and treated wastewater in individual west European countries(municipal and industrial)
3.3.2 Stand of the art by wastewater treatment worldwide
3.3.3 Industrial wastewater treatement
3.3.3.1 Expected quantities of wastewater treated at source for west European countries
3.3.3.2 Wastewater in the industrial sector –by branch and type of treatment
3.4  Profiles of Countries (Database 2006)
3.4.1 Germany
3.4.2    Belgium
3.4.3    Denmark
3.4.4    France
3.4.5    UK
3.4.6    Italy
3.4.7    The Netherlands
3.4.8    Norway
3.4.9    Finland
3.4.10  Austria
3.4.11  Portugal
3.4.12  Sweden
3.4.13  Switzerland
3.4.14  Spain
3.4.15  USA
3.4.16  Poland
3.4.17  Hungary
3.4.18  The Czech  Republic
3.4.19  Japan
3.4.20  China
3.4.21  Hong Kong
3.4.22  India
3.4.23  Malaysia
3.4.24  Singapore
3.4.25  South Korea
3.4.26  Taiwan
3.4.27  Australia
3.4.28  Argentina
3.4.29 Brazil
3.4.30 Arabian Peninsula
3.4.31 Egypt

4.Markets
4.1  Introduction  - Structure
4.2  definitions and Limitations
4.2.1  Terms
4.2.1.1 Water purification
4.2.1.2  (Waste)water treatment
4.2.2 Segmentation of Markets
4.2.2.1  Areas of application
4.2.2.2  Period examined
4.2.2.3  Countries examined
4.2.2.4  Definitions of terms especially in the field of drinking water
4.2.2.5  Technologies examined by the markets
4.4.2.6  Branches
4.4.2.7  Further definitions regarding market segments – disinfection of water
4.3  Drinking Water
4.3.1Initial situation
4.4  Water disinfection
4.5  Water purification
4.5.1  Industry
4.5.2  Ultrapure water
4.5.3  Water purification in household and operating technology
4.6  Municipal Wastewater
4.6.1 Initial situation
4.7  Market Worldwide
4.7.1  World market for drinking water
4.7.1.1 Total market for drinking water treatment worldwide by technology/technical area
(including running expenses)
4.7.1.2  Total market for drinking water treatment worldwide by country (including running expenses)
4.7.1.3  Total investments in the drinking water plants worldwide by technology/technical area (without running expenses)
4.7.1.4  Total investments in the drinking water plants worldwide by country (without running expenses)
4.7.1.5  The market for investments in drinking water purification worldwide by technology
4.7.1.6  Total market for investments in drinking water purification worldwide by technology
4.7.1.7  Opportunities on the market of dinking water purification
4.7.1.8  Risks on the market of drinking water purification
4.7.2  Water purification worldwide (industrial and Domestic segments)
4.7.2  Water purification worldwide (industrial and Domestic sectors)
4.7.2.1 The total market for industrial water purification worldwide for services and investments of  plants by regions in Mio. Euro 2006-2025
4.7.2.2 The total market for industrial water purification worldwide without services by regions
4.7.2.3 Total market for industrial water purification worldwide by technology
4.7.2.4 The market for industrial water purification worldwide by sectors
4.7.2.5  Total market for water purification in the domestic sector worldwide by country
4.7.2.6  Total market for water purification in the domestic sector worldwide by technology
4.7.2.7  Opportunities and risks on the industrial water/wastewater market
4.7.2.8  Opportunities and risks on the market for household and operating technology
4.7.3  World market Wastewater ( Municipal and industrial)
4.7.3.1 Total market for municipal and industrial wastewater/sludge treatment worldwide by type of expense
4.7.3.2 Total market for municipal and industrial wastewater/ sludge treatment worldwide by country
4.7.3.3  Total market for investments in the municipal wastewater and sludge treatment worldwide by country
4.7.3.4  Total market for investments in the municipal wastewater and sludge treatment worldwide by technology
4.7.3.5  Total market for municipal wastewater treatment worldwide by size/capacity
4.7.3.6  The total market for industrial wastewater and sludge treatment worldwide by regions without services
4.7.3.7  The market for industrial wastewater and sludge treatment worldwide by technologies/investments of plants
4.7.3.8  The market for mechanical wastewater treatment in industry worldwide by technologies/investments of plants
4.7.3.9  The market for biological wastewater treatment in industry worldwide by technologies/investments of plants
4.7.3.10 The market for physical-chemical wastewater treatment in industry worldwide by technologies/investments of plants
4.7.3.11  The market for sludge treatment and disposal/Utilization in industry worldwide by technologies/ investments of plants
4.7.3.12  The market for industrial wastewater and sludge treatment worldwide by sectors
4.7.3.13  Opportunities on the market for municipal wastewater treatment
4.7.3.14  Risks on the market for municipal wastewater treatment
4.8   Western Europe
4.8.1  Total market for drinking water in western Europe
4.8.1.1 Investments for drinking water plants in western Europe by technical area without running expenses
4.8.1.2 Total market for investment for drinking water purification in western Europe by country
4.8.1.3 Total market for investments for drinking water purification in western Europe by Technology
4.8.2  Total market for water purification in western Europe (industrial and domestic sector)
4.8.2.1  The total market for industrial water purification in western Europe for Services and investments of plants
4.8.2.2  The total market for industrial water purification in western Europe for services and investments of plants by countries
4.8.2.3  The total market for industrial water purification in western Europe by countries without services
4.8.2.4  Total market for industrial water purification in western Europe by Technology
4.8.2.5  The market for industtial water purification in western Europe by sectors
4.8.2.6  Total market for water purification in the domestic sector in western Europe by country
4.8.2.7  Total market for water purification in the domestic sector in western Europe by technology
4.8.3  Total market for wastewater
4.8.3.1 Total market for municipal and industrial wastewater/sludge treatment in western Europe
4.8.3.2  Total market for municipal and industrial wastewater/sludge treatment by country
4.8.3.3 Total market for investments in the municipal wastewater/sludge treatment in western Europe by country
4.8.3.4 Total market for municipal wastewater treatment in western Europe by technologies
4.8.3.5 Total market for municipal wastewater treatment in western Europe by size/capacity
4.8.3.6  The Total market for industrial wastewater and sludge treatment in western Europe by countries without services
4.8.3.7  The market for industrial wastewater and sludge treatment in western Europe by technologies/investments of plants
4.8.3.8  The market for mechanical wastewater and sludge treatment in industry in western Europe by technologies/investments of plants
4.8.3.9  The market for biological wastewater treatment in industry in western Europe by technologies/investments of plants
4.8.3.10  The market for chemical-physical wastewater treatment in industry in western Europe by Technologies/ investments of plants
4.8.3.11  The market for sludge treatment and disposal/utilization in industry in western Europe by technologies/investments of plants
4.8.3.12  The market for industrial wastewater and sludge treatment in western Europe by sectors (without running expenses)
4.9  Germany
4.9.1  Total market for drinking water in Germany
4.9.1.1  Total market for dringking water plants in Germany by Technical areas
4.9.1.2  Total market for investments for drinking water purification in Germany by Technology
4.9.2  Total market for water purification in Germany (industrial and domestic sector)
4.9.2.1  The market for industrial water purification in Germany by  Technologies
4.9.2.2  The market for industrial water purification in Germany by sectors
4.9.2.3  Total market for water purification in the domestic sector in Germany by Technology
4.9.3   Total market for wastewater in Germany (municipal and industrial)
4.9.3.1  Total market for municipal and industrial wastewater/sludge treatment in Germany
4.9.3.2   Total market for municipal wastewater and sludge treatment in Germany by Technology
4.9.3.3   Total market for municipal wastewater treatment in Germany by size/capacity
4.9.3.4   The market for industrial wastewater and sludge treatment in Germany by technologies/investments of plants
4.9.3.5   The market for mechanical wastewater treatment in industry in Germany by technologies/investments of plants
4.9.3.6    The market for biological wastewater treatment in industry in Germany by technologies/investments of plants
4.9.2.7    The market for physical-chemical wastewater treatment in industry in Germany by technologies/investments of plants
4.9.2.8     The market for sludge treatment and disposal/utilization in industry in Germany by technologies/investments of plants
4.9.2.9     The market for industrial wastewater and sludge treatment in Germany by sectors
4.10   Benelux
4.10.1  Total market for drinking water in Benelux
4.10.2  Total market for water purification in Benelux (industrial and domestic sector)
4.10.3  Total market for wastewater in Benelux (municipal and industrial)
4.11  France
4.11.1  Total market for drinking water in France
4.11.2  Total market for water purification in France (industrial and domestic sector)
4.11.3  Total market for wastewater in France (municipal and industrial)
4.12   UK
4.12.1   Total market for drinking water in UK
4.12.2   Total market in water purification in UK (industrial and domestic sector)
4.12.3   Total market in Wastewater in UK (municipal and industrial)
4.13  Italy
4.13.1   Total market for drinking water in Italy
4.13.2   Total market in water purification in Italy (industrial and domestic sector)
4.13.3   Total market for wastewater in Italy (municipal and industrial)
4.14  Scandinavia
4.14.1  Total market for drinking water in Scandinavia
4.14.2  Total market in water purification in Scandinavia(industrial and domestic sector)
4.14.3  Total market for wastewater in Scandinavia (municipal and industrial )
4.15  Spain/ Portugal
4.15.1  Total market for drinking water in Spain/ Portugal
4.15.2  Total market in water purification in Spain/ Portugal (industrial and domestic sector)
4.15.3  Total market for wastewater in Spain/ Portugal (municipal and industrial)
4.16  Austria/ Switzerland
4.16.1  Total market for drinking water in Austria/Switzerland
4.16.2  Total market in water purification in Austria/Switzerland (industrial and domestic sector)
4.16.3  Total market for wastewater in Austria/Switzerland (municipal and industrial)

4.17  Eastern Europe
4.17.1  Total market for drinking water in eastern Europe
4.17.2  Total market in water purification in eastern Europe (industrial and domestic sector)
4.17.3  Total market for wastewater in Eastern Europe (municipal and industrial)
4.18  USA/NAFTA
4.18.1  Total market for drinking water in USA/NAFTA
4.18.2  Total market in water purification in USA/NAFTA (industrial and domestic sector)
4.18.3  Total market for wastewater in USA/NAFTA (municipal and industrial)
4.19  South America
4.19.1  Total market for drinking water in South America
4.19.2  Total market in water purification in South America (industrial and domestic sector)
4.19.3  Total market for wastewater in South America (municipal and industrial)
4.20  Asia
4.20.1  Total market for drinking water in Asia
4.20.2  Total market in water purification in Asia (industrial and domestic sector)
4.20.3  total market for wastewater in Asia (municipal and industrial)

5.Markets
5.1 Trends in Competition
5.2  Competition: Operators
5.3  Competition: Plant Constructors
5.4  Competition: Water Purification (Drinking Water)
5.5  Competition: Water Purification (industrial)

6.Strategies for Success -  Segments of the Value Chain
6.1  Engineers and Consultants
6.2  Plant/pipeline Contractors and General Contractors
6.3  Product Vendors and Components Suppliers
6.4  Plant Operation/PPP
6.5  Financial Engineering
6.6  Maintenance and Servicing

7. Company Profiles




IV. Time Schedule


The study is completed and can be delivered immediately.



V. Methods of Investigation


The study is based on the following methods: Desk and Field Research. Market potentials and prospects are gathered by the Delphi-Method. Here specialists in the market are questioned about their future expectations which are then narrowed through repeated coordination with the specialists.



VI. Qualification


Our company has been active in the field of water industry, environmental and energy technology for over than 20 years. We prepare exclusive international stragies, concepts and special studies for company groups, small- and middle-sized businesses and Western European government agencies. Until today we have prepared more than 700 studies
For an overview please see  http://www.hkc22.com/marketstudy.html
and   http://www.hkc22.com/watermarketsworldwide.html
and   http://www.hkc22.com/renewableenergy.html 
and    http://www.hkc22.com/environmentaltechnology.html

or “about us”


VII.  Price and How to Order

The price of the Total study is 4,900 Euro.  (VAT  if needed.), The Summary of the Study is also available for  2,900 Euro


We also work out exclusive research or strategies for specific companies and specific requirements,
Since 1980 we have been making strategies for today’s leading companies.
Please send your inquiry.

You can order by email to   hku-tuebingen@t-online.de
You can also send the order by post.  The ordering address is
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0049 ( 0 ) 67001
After we have your order and invoice addresses, we send you an invoice with payment transfer data with our bank account.
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