the wastewater treatment & recovery systems market 2013-2023
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7/30/2019 The Wastewater Treatment & Recovery Systems Market 2013-2023
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The Wastewater Treatment & Recovery
Systems Market 2013-2023
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Contents
1. Executive Summary
1.1 Introduction to the Wastewater Treatment & Recovery Systems Market 2013-20231.2 Drivers and Restraints of the Wastewater Treatment & Recovery Systems Market 2013-2023
1.2.1 Drivers
1.2.2 Restraints
1.3 Outlook for the Wastewater Treatment & Recovery Systems Market
1.4 Benefits of this Report
1.5 Methodology
2. Introduction to the Wastewater Sector2.1 Wastewater Challenges
2.2 Current Wastewater Cleaning Process
2.2.1 Pre-Treatment / Preliminary Treatment Processes
2.2.2 Primary Treatment
2.2.3 Secondary Treatment (Biological Filtration)
2.3 New Technologies in the Wastewater Industry
2.3.1 Moving Bed Bio-Film Reactor (MBBR)
2.3.2 Next Generation Aeration Systems
2.3.3 UV Disinfection
2.3.4 BioMag & CoMag Systems
2.3.5 Sewer System Integrity
2.3.6 Wind, Solar & Bioenergy
3. The Regional Wastewater Treatment & Recovery Systems Market
2013-20233.1 Global View
3.2 The North American Wastewater Market 2013-2023
3.2.1 The US Wastewater Market 2013-2023
3.2.2 The Canadian Wastewater Market 2013-2023
3.3 The European Wastewater Market 2013-2023
3.3.1 The UK Wastewater Market 2013-2023
3.3.2 The French Wastewater Market 2013-2023
3.3.3 The German Wastewater Market 2013-2023
3.3.4 The Spanish Wastewater Market 2013-2023
3.3.5 The Italian Wastewater Market 2013-2023
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Contents
3.4 Key Global Markets
3.4.1 The Brazilian Wastewater Market 2013-2023
3.4.2 The Chinese Wastewater Market 2013-2023
3.4.3 The J apanese Wastewater Market 2013-2023
4. Leading Companies in the Wastewater Treatment & Recovery
Systems Market4.1 Severn Trent Services
4.2 General Electric (Energy Division) - Water & Process Technologies
4.3 Siemens
4.4 Suez Environment
4.4.1 Degrémont
4.5 Veolia Water – Part of the Veolia Environment Group
4.5.1 Veolia Water Solutions & Technologies
4.6 SAUR International
4.6.1 SAUR France
4.6.2 SAUR UK
4.6.3 SAUR Group Engineering Division
5. SWOT Analysis of the Wastewater Treatment & Recovery Systems
Market 2013-20235.1 Strengths
5.2 Weaknesses
5.3 Opportunities
5.4 Threats
6. Expert Opinion6.1 Yorkshire Water
6.1.1 Is the Strategy for Wastewater Plants to Become Self-Sufficient in Energy?
6.1.2 How Much Does Yorkshire Water Spend on Electricity at the Esholt Plant?
6.1.3 Has Yorkshire Water Considered Wind Turbines at any WWTW?
6.1.4 Yorkshire Water’s Investment Programme
6.1.5 The Prospects for MBBR’s in the UK
6.2 American Water
6.2.1 The Number of WWTW run by American Water
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Contents
6.2.2 Do These WWTW Treat Wastewater to a Secondary Level?
6.2.3 American Water’s Electricity Usage
6.2.4 How Much Self-Produced Energy is used at American Water WWTW?
6.2.5 Which Equipment is Used to Reduce Energy Bills at American Water WWTW?
6.2.6 How Does American Water Plan to Cope with Increasing Wastewater due to
Population Increase?
6.2.7 American Water’s Significant Wastewater Projects?
6.2.8 Are there any Plans for Global Partnerships?
6.3 Headworks Inc.
6.3.1 Headworks Inc’s Regional Installations
6.3.2 Which Countries are Emerging onto the Market?
6.3.3 Are these Growth Areas Driven by Municipal or Private Clients?
6.3.4 Is Growth Driven by Regulations or Population Growth?
6.3.5 Is There Anything that Will Restrain the Wastewater Market?
6.3.6 What are the Latest Developments for Headworks Inc ?
6.3.7 Will Energy Recovery Become the Norm for WWTW?
6.4 Syrinix
6.4.1 How do TrunkMinder & TransientMinder Differ from Traditional Systems?
6.4.2 How Easily can TransientMinder by Aligned to Work in the Wastewater Sector?
6.4.3 How Much Water is Lost Through Leaks in the UK and What are the Potential
Savings?
6.4.4 Which Companies have Bought the Systems & Been Trialled?
6.4.5 Does a Country Need a Modern Water Systems to Make Full Use of Your Products?
6.4.6 Does Chronic Underfunding Make Selling Technological Systems Difficult?
6.4.7 Which Regions is Growth Expected in and Where is Syrinix Targeting Sales?
7. Glossary
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Contents
List of Tables
Table 1.1 Drivers & Restraints of the Wastewater Treatment & Recovery Systems Market 2013-2023
Table 1.2 Global Population in billions & percentage of Global Population Living in Urban Areas
1950-2030 (Billions, %)
Table 1.3 Estimated Primary & Secondary Wastewater Treatment Levels in 10 Key Markets 2013
(%)
Table 2.1 Expected Design Life for Key Wastewater Components (Years)
Table 3.1 Estimated Wastewater Market Spend in 10 Key Countries 2013 ($bn P/A, Capex
Required, Capex Forecast)
Table 3.2 Forecast of Wastewater Capital Expenditure Required & Forecasted for 10 Key Markets
in 2018 ($bn P/A)
Table 3.3 Forecast of Wastewater Capital Expenditure Required & Forecasted for 10 Key Markets
in 2023 ($bn P/A)
Table 3.4 Key Statistics of the US Wastewater Market 2013 (Population, Total WWTW, Daily
Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.5 US State & Localised Spend on Sewerage Services / Local Government Outlay on
Sewerage Infrastructure 1991-2012 ($m P/A)
Table 3.6 Key Statistics of the Canadian Wastewater Market 2013 (Population, Total WWTW, DailyWastewater Treatment, Capex Required, Capex Forecast)
Table 3.7 Historic Actual Capital Expenditure & Capital Expenditure Required in the Canadian
Wastewater Market 1989-2007 (C$bn P/A)
Table 3.8 Key Statistics in the UK Wastewater Market 2013 (Population, Total WWTW, Daily
Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.9 Wastewater Companies in the UK (No. Plants, Volume Treated, Turnover, Expenditure)
Table 3.10 Key Statistics in the French Wastewater Market 2013 (Population, Total WWTW, Daily
Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.11 Key Statistics in the German Wastewater Market 2013 (Population, Total WWTW, Daily
Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.12 Key Statistics in the Spanish Wastewater Market 2013 (Population, Total WWTW, Daily
Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.13 Key Statistics in the Italian Wastewater Market 2013 (Population, Total WWTW, Daily
Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.14 Key Statistics in the Brazilian Wastewater Market 2013 (Population, Total WWTW,
Daily Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.15 Key Statistics in the Chinese Wastewater Market 2013 (Population, Total WWTW, Daily
Wastewater Treatment, Capex Required, Capex Forecast)
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Contents
Table 3.16 Key Statistics in the J apanese Wastewater Market 2013 (Population, Total WWTW,
Daily Wastewater Treatment, Capex Required, Capex Forecast)
Table 3.17 The Availability of the Sewer System in the Tokyo Area 1965-2009 (Population, % With
Sewers)
Table 4.1 Global Population Served via SAUR and Subsidiaries in 2012 (Country, Drinking Water,
Wastewater Service)
Table 5.1 SWOT Analysis of the Global Wastewater Treatment & Recovery Systems Market 2013-
2023
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List of Figures
Figure 2.1 Wastewater Collection & Treatment System
Figure 2.2 Headworks BIO AC50 & AC920
Figure 3.1 Estimated Wastewater Market Spend in 10 Key Markets 2013 ($bn P/A, Capex
Required, Capex Forecast)
Figure 3.2 Capital Expenditure Forecast & Required in the US Wastewater Market in 2013, 2018
and 2023 ($bn P/A)
Figure 3.3 US State & Localised Spend on Sewerage Services / Local Government Outlay on
Sewerage Infrastructure 1991-2012 ($m P/A)
Figure 3.4 Capital Expenditure Forecast & Required in the Canadian Wastewater Sector in 2013,
2018 and 2023 ($bn P/A)
Figure 3.5 Historic Actual Capital Expenditure & Capital Expenditure Required in the Canadian
Wastewater Market 1989-2007 (C$bn)
Figure 3.6 Capital Expenditure Forecast & Required in the UK Wastewater Market 2013, 2018 and
2023 ($bn P/A)
Figure 3.7 Capital Expenditure Forecast & Required in the French Wastewater Market 2013 and
2018, 2023 ($bn P/A)
Figure 3.8 Capital Expenditure Forecast & Required in the German Wastewater Market 2013, 2018
and 2023 ($bn P/A)Figure 3.9 Capital Expenditure Forecast & Required in the Spanish Wastewater Market 2013, 2018
and 2023 ($bn P/A)
Figure 3.10 Capital Expenditure Forecast & Required in the Italian Wastewater Market 2013, 2018
and 2023 ($bn P/A)
Figure 3.11 Capital Expenditure Forecast & Required in the Brazilian Wastewater Market 2013,
2018 and 2023 ($bn P/A)
Figure 3.12 Capital Expenditure Forecast & Required in the Chinese Wastewater Market 2013,
2018 and 2023 ($bn P/A)
Figure 3.13 Capital Expenditure Forecast & Required in the J apanese Wastewater Market 2013,
2018 and 2023 ($bn P/A)
Figure 4.1 SUEZ Revenues by Geographical Area 2011 (%)
Figure 4.2 Veolia Revenues by Geographical Area 2011 (%)
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Companies Mentioned in This Report
Agbar
Ambito Territoriale Ottimale (ATO) de Latina
American Water
Anglian Water
Aqua America
Aqualia
Berliner Wasserbetriebe (BWB)
Biwater
Black & Veatch
BSG Civil Engineering
Changshu Sino French Water Supply Co. Ltd.
China Water Industry Group (CWIG)
Chongqing Sino French Water Supply
Companhia de Sameamento Basico do Estado se Sao Paulo (SABESP)
Companhia de Sameamento de Minas Gerais (COPASA)
Degrémont
Dwr Cymru (Welsh Water)
Egyptian Partner Arab Contractors
EPCOR Utilities Inc.
Galliford Try
Gelsenwasser
General Electric (GE)
Glen Water Ltd.
hanseWasser Bremen GmbH
Headworks Bio
Headworks Inc.
Hydrok UK
HYFLUX
Imtech
J iangxi Yichun Fangke Sewage Company
J ining City Haiyuan Treatment Company Ltd
Laing O’Rourke
Lyonnaise Des Euax
Macao Water Supply
Mainova AG
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McAdam Design
Metro Vancouver
Mott MacDonald
Neuros APG
North American Development Bank
Northern Ireland Water
Northumbrian Water
Qingdao Hairun Water Supply Company Ltd
Qingdao Sino French Hairun Water Supply Co., Ltd.
Remondis
Rift Acquisitions Limited
SAUR France
SAUR Group
SAUR Group Engineering Division
SAUR International
SAUR UK
Scottish Water
Severn Trent Services
Severn Trent Water
Severn Trent Water International
Siemens
Sino French Water
Skanska
Sogreah
South West Water
Southern Water
Stadtentwasserung Dresden GmbH
SUEZ Environment
Suez Group
Syrinix
Thames Water
United Utilities
United Water
Veolia Acqua
Veolia Eua
Veolia Wasser
Veolia Water
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Veolia Water Solutions & Technologies
Veolia Water UK PLC
Welsh Water
Wessex Water
Williams Industrial Services
Yorkshire Water
Organisations Mentioned in This Report
African Development Bank
Agencia Nacional de Aguas (ANA)Bureau of Sewerage Tokyo Metropolitan Government (BSTMG)
CD Howe Institute
Congressional Budget Office (CBO)
Environment Agency
Environment Canada
European Investment Bank (EIB)
European Union (EU)
Federation of Canadian Municipalities (FCM)
Frauenhofer Institute
NYC Department of Environmental Protection (DEP)
OFWAT
Ontario Clean Water Agency (OCWA)
Syndicat Interdepartmental Pour I ‘Agglomeration Parisienne
Technical University of Dresden
United Nations (UN)
US Environmental Protection Agency (EPA)
World Health Organization (WHO)
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The Wastewater Treatment & RecoverySystems Market 2013-2023
3.3.4 The Spanish Wastewater Market 2013-2023
Population
2012
Number of
WWTW
Total daily
wastewater
treated
Annual capi tal
expenditure
required
Annual capi tal
expenditure
forecast
46.1m 5,147 12,100m li tres $831m
(€650m)
$671m
(€525m)
Source; visiongain 2013
• 80% of the Spanish population have direct access to sewers
• 33% Public, 67% PPP companies
• 5,000 WWTW
Source; visiongain 2013
0
1
2
3
4
5
6
7
2013 2018 2023
$ b n
P / A
Annual Capital Expenditure Forecasted Annual Capital Expenditure Required
Table 3.12 Key Statistics of the Spanish Wastewater Market 2013 (Population,
Total WWTW, Daily Wastewater Treatment, Capex Required, Capex Forecast)
Figure 3.9 Capital Expenditure Forecast & Required in the Spanish WastewaterMarket 2013, 2018 and 2023 ($bn P/A)
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The Wastewater Treatment & RecoverySystems Market 2013-2023
4. Leading Companies in the Wastewater Treatment &
Recovery Systems Market
4.1 Severn Trent Services
Severn Trent Plc. – based in Fort Washington, Pa., USA. Severn Trent Services is an
environmental services business with a (£1.7bn) turnover (2011) employing almost 14,000 people
in the UK, the USA and Europe.
Severn Trent was formed in 1974 as a regional, state-owned water authority in the UK. Following
privatisation by the UK government in 1989, Severn Trent set to build a products and services
business which involved acquisitions in the US and UK.
• Severn Trent Water – Is the UK arm and founding member, looking after 528 WWTW and
spending over £500m in the UK wastewater market per annum. Recent external contracts
include; April 2011 Severn Trent awarded a £62m, 5 year maintenance contract to May Gurney
to maintain sewerage services in their east region. The initial contract period is five years, with
an option to extend for a further five years.
• Severn Trent Water International (STWI) is the global operating and management arm of
Severn Trent Plc. Today STWI companies provide management and consultancy services to
the water, wastewater and environmental industries globally.
Examples of current enterprise;
• US – manages 400 WWTW serving 2m people across 21 states
• Mexico – Mexico City drinking water and wastewater services for 2.2m people
• Belgium - STWI is the industrial partner and shareholder of Aquafin and have jointly built 40
WWTW
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6. Expert Opinion
6.1 Yorkshire Water
Yorkshire Water (YW) is based in the north of England and is the 4th
largest wastewater service
provider in the UK, owning and maintaining 624 WWTW across the Yorkshire area.
YW are expected to spend a total of £1.7bn ($2.72bn) in the AMP 4 & AMP 5 period (2005-2015)
onwastewater projects improvements / new builds.
Between 2006-2009 YW completed a £44m overhaul of their wastewater treatment plant in Esholt
(Nr Bradford, West Yorks’) the project included a complete redevelopment of the plant, which
increased capacity to allow treatment of up to 3,240 litres per second of wastewater and supports
750,000 people in the Bradford and North Leeds area.
J ohn Bond works for YW and is a spokesman for the Esholt Plant.
6.1.1 Is the Strategy for Wastewater Plants to Become Self-Sufficient in
Energy?Visiongain - From research I understand that there is currently a new scheme to create a THP
(Thermal Hydrolysis Process) system at Esholt to generate power to run the plant, with an aim to
be 100% self-sufficient by 2035. Is this the direction that YW is heading – i.e. creating own energy
at every wastewater production plant?
John Bond - No, it is neither technically nor economically feasible to do this at this stage we have
600+ WWTW; and many are too small for economies of scale to apply. We base our investment
decisions on whole life cost; so this assessment is always open to review as technology costs andenergy prices vary. This decision is also affected by other asset related decisions, including the
type of the current assets installed, their age and condition, changing environmental standards,
etc.
However, most of our electricity use is at our larger sites, and these sites often do offer
opportunities for energy generation. Our direction is to increase the amount of renewable energy
we generate significantly, but it is unlikely in the short/medium term to include energy generation at
every site. This is a trend that will spread to other companies both in the UK and Abroad.
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