Global Environmental Water Testing Market and Agricultural Waste Water Treatment Market Segmented By Equipment, Services, Resources, Technology, Product Type, Application, Region & Forecast to 2022

Global Environmental Water Testing Market and Global Agricultural Waste Water Treatment Market
This report helps to analyze competitive developments such as joint ventures, strategic alliances, mergers and acquisitions, new product developments, and research and developments in the Global Environmental Water Testing Market and Agricultural Waste Water Treatment Market.

About Environmental Water Testing

Of the various water borne diseases that are quite common are E,Coli, Legionella and Pseudomonas. In order to maintain the standard for good drinking water regular monitoring and testing is required. Microbiological test kits and programmers have been developed to test the contamination of water. Where ever human contact with water is present- recreational and others, it is necessary to test for water borne pathogens.

With increasing population growth, and natural calamities like droughts and earthquakes, breaking of epidemic diseases brings environmental water testing and its management to the forefront. This field has high scope with wide products and services that cater to many different industry sectors.

The American market is the single largest market for testing of environmental water apart from Europe and Rest of the World. The Europe E. coli testing market was valued at USD 46.06 million in 2015 and is estimated to reach USD 60.67 million by 2020.

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The Environmental Testing Technologies (ET) industry covers many sources recycling, air, water and soil, sewage and toxic waste management, pollution prevention, water treatment for industrial and municipal purposes.

Drivers

  • Renewed stress on reducing ‘Green House Gas Emissions;
  • Stringent Regulatory Issues
  • Climate Change Issues
  • Government Assistance to Industry
  • Opportunities

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One of the major opportunity for this industry is the demand of these materials in the food processing industry, pharmaceuticals and beverage manufacturing companies. Moreover there is an increase in water quality testing centres to regularly monitor water quality, by various pollution control boards and consulting firms.

The report profiles the market estimates of environmental water microbiological testing of the equipment by bacteria type- E.Coli, Pseudomonas and Legionella and By Services and By Resources. The report also discusses the Global E. coli Testing Market, by Testing Methods including – Pseudomonas and Legionella. It also profiles market segmentation by Product Type, Application and End-User Industry.

Lastly the report is divided by market analysis and forecasts Region wise- Asia- Pacific, North America, Europe, and Rest of the world. A list of company profiles detailing the Overview, Products & Services Recent Developments are also given.


Table of Contents:

1. Introduction

1.1 Research Methodology

1.2 Executive Summary

 

2. Market Overview

2.1 Industry Value Chain Analysis

2.2 Industry Attractiveness – Porter’s 5 Force Analysis

2.2.1 Bargaining Power of Suppliers

2.2.2 Bargaining Power of Consumers

2.2.3 Threat from new entrants

2.2.4 Threat from substitute products

2.2.5 Competitive rivalry within the industry

2.3 Industry Policies

 

3. Market Forces

3.1 Drivers

3.1.1 Renewed stress on reducing ‘Green House Gas Emissions

3.1.2 Stringent Regulatory Issues

3.1.3 Climate Change Issues

3.1.4 Govt Assistance to Industry

3.2 Restraints

3.2.1 Issues regarding sampling

3.2.2 Influence of climatic and environmental conditions

3.3 Opportunities

3.3.1 Increasing water quality monitoring centers

3.3.2 Demand for water quality testing in Food processing industry, pharmaceuticals and beverages

 

4. Environmental Water Testing Market

4.1 By Equipment

4.1.1 Water Equipment & Chemicals

4.1.2 Air Pollution Control

4.1.3 Instruments & Info. Systems

4.1.4 Waste Mgmt. Equipment

4.1.5 Process & Prevention Technology

4.2 By Services

4.2.1 Solid Waste Management

4.2.2 Hazardous Waste Management

4.2.3 Consulting & Engineering

4.2.4 Remediation / Industrial Services

4.2.5 Analytical Services

4.2.6 Water Treatment Works

4.3 By Resources

4.3.1 Water Utilities

4.3.2 Resource Recovery

4.3.3 Clean Energy Systems and Power

 

5. Market Segmentation (Forecast & Analysis)

5.1 by Product

5.1.1 TOC

5.1.2 PH

5.1.3 DO

5.1.4 Conductivity

5.1.5 Turbidity

5.2 by Product Type

5.2.1 Handheld

5.2.2 Portable

5.2.3 Benchtop

5.3 by Application

5.3.1 Laboratory

5.3.2 Industrial

5.3.3 Environmental, and more…

 

6. Competitive Landscape

6.1 Recent Developments

6.2 Joint Ventures, Collaborations

 

7. Company Profiles

7.1 Thermo Scientific

7.2 LaMotte

7.3 Danaher Corporation

7.4 General Electric

7.5 ABB Ltd.

7.6 bioMerieux

7.7 Neogen, and more…

 

8. Disclaimer

The Global Agricultural Waste Water Treatment (WWT) Market has been estimated at USD 15.05 billion in 2015 and is projected to reach USD XX.XX billion by 2020, at a CAGR of 8.64% during the forecast period. The agricultural WWT majorly includes manure management nutrient capture, renewable electricity, and anaerobic digestion. There are more than 3000 upcoming projects in the next 5 years, which are majorly located on dairy, swine or livestock farms since manure is a consistent and reliable supply of wastewater.

 

Wastewater is used extensively in the agricultural sector owing to providing rich nutrient source and the desired moisture to the crops. The report on global agricultural WWT market features this in it and presents it in a segmented based on the application as follows: Crops, Soil resources, Groundwater resources, and others.

 

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Market Dynamics of the Global WWT Market:

Drivers:

  • Lack of freshwater resources,
  • Growing automotive industry
  • Population growth
  • Inefficient irrigation within agriculture

 

Constraints:

  • Lack of awareness
  • Funding for capital improvement projects
  • The global agricultural WWT market, on the basis of technology, can be broadly segmented into oil/water separation, suspended solids removal, dissolved solids removal, biological treatment & recovery, and disinfection & oxidation.

 

The study of global agricultural WWT market is divided by geography – North America, Europe, Asia-Pacific (APAC), South America and Middle-East & Africa (MEA). The various industries of water treatment technologies have been discussed in detail in addition to a comprehensive overview of the market; wherein the market share of each is analyzed and estimates are provided for the next 5 years.

 

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Furthermore, R&D within water technology will offer numerous opportunities for the global agricultural WWT market.

 

The major companies dominating this market for its products, services, and continuous product developments are:

  • Aquatech
  • Dow Water & Process Solutions
  • Cameron
  • Ch2m Hill
  • Mott Macdonald
  • Siemens Water Solutions
  • Schlumberger
  • Suez Environment
  • Tetra Tech Inc.
  • Veolia Water Technologies
  • Evoqua Water Technologies

Key Deliverables in the Study:

  • Analysis for the global agricultural WWT market, with region specific assessments and competition analysis on a global and regional scale.
  • Market definition along with the identification of key drivers and restraints.
  • Identification of factors instrumental in changing the market scenarios, rising prospective opportunities, and identification of key companies that can influence this market on a global and regional scale.
  • Extensively researched competitive landscape section with profiles of major companies along with their market share.
  • Identification and analysis of the macro and micro factors that affect the global agricultural WWT market on both global and regional scale.
  • A comprehensive list of key market players along with the analysis of their current strategic interests and key financial information.
  • A wide-ranging knowledge and insights about the major players in this industry and the key strategies adopted by them to sustain and grow in the studied market.
  • Insights on the major countries/regions in which this industry is blooming and to also identify the regions that are still untapped.

Table of Contents:         

1. Introduction

1.1 Description

1.2 Research Methodology

 

2. Executive Summary

 

3. Agriculture Waste Water Treatment Market

3.1 Current Market Scenario

3.2 Industry Value Chain Analysis

3.3 Industry Attractiveness Porters Five Force Analysis

 

4. Market Dynamics

4.1 Drivers

4.1.1 Lack of Freshwater Resources

4.1.2 Population Growth

4.1.3 Stringent Government Emission Laws

4.1.4 Inefficient irrigation within agriculture

4.2 Constraints

4.2.1 Lack of Awareness

4.2.2 Funding for Capital Improvement Projects

4.3 Opportunities

4.3.1 R&D within Water Technology

4.3.2 Reducing Intermediary Channels

4.4 Technological Snapshot

4.4.1 Emerging Technologies

4.4.1.1 Suspended solids removal

4.4.1.1.1 Main Technologies

4.4.1.1.1.1 Clarifier/Settling tanks

4.4.1.1.1.2 Dissolved air flotation (DAF)/Induced Air Flotation (IAF)

4.4.1.1.1.3 Non-membrane filtration

4.4.1.1.1.4 MF/UF polymeric membranes

4.4.1.1.1.5 Electrocoagulation

4.4.1.2 Dissolved solids removal

4.4.1.2.1 Main Technologies

4.4.1.2.1.1 Reverse osmosis (RO)

4.4.1.2.1.2 Multi-stage flash (MSF) evaporation

4.4.1.2.1.3 Multi-effect distillation (MED)

4.4.1.2.1.4 Vapour compression (VC) distillation

4.4.1.2.1.5 Ion exchange (IX)

4.4.1.2.1.6 Continuous deionisation (CDI)

4.4.1.2.1.7 Electrodialysis (ED)/Electrodialysis reversal (EDR)

4.4.1.2.1.8 Electrodeionisation (EDI)

4.4.1.2.1.9 Thermal brine concentrator

4.4.1.2.1.10 Thermal crystalliser

4.4.1.3 Biological Treatment & Recovery

4.4.1.3.1 Main Technologies

4.4.1.3.1.1 Biological treatment

4.4.1.3.1.2 Anaerobic treatment

4.4.1.3.1.3 Aerobic/anoxic treatment

4.4.1.4 Disinfection & Oxidation

4.4.1.4.1 Main Technologies

4.4.1.4.1.1 Disinfection with chlorine-based compounds

4.4.1.4.1.2 Disinfection with ultraviolet light

4.4.1.4.1.3 Disinfection by Ozonation

4.4.1.4.1.4 Advanced oxidation processes

4.5 Patent Analysis

 

5. Market Segmentation and Analysis

5.1 By Technology

5.1.1 Suspended solids removal

5.1.2 Dissolved solids removal

5.1.3 Biological Treatment & Recovery

5.1.4 Disinfection & Oxidation

5.2 By Application

5.2.1 Crops

5.2.2 Soil Resources

5.2.3 Groundwater Resources

5.2.4 Others

 

6. Regional Market Analysis (Market size, growth and forecast)

6.1 Asia-Pacific

6.1.1 China

6.1.2 India

6.1.3 Japan

6.1.4 South Korea

6.1.5 Australia & New Zealand

6.1.6 Rest of Asia-Pacific

6.2 Europe

6.2.1 Germany

6.2.2 United Kingdom

6.2.3 France

6.2.4 Italy

6.2.5 Rest of Europe

6.3 North America

6.3.1 United States

6.3.2 Canada

6.3.3 Mexico

6.3.4 Rest of North America

6.4 South America

6.4.1 Brazil

6.4.2 Argentina

6.4.3 Rest of South America

6.5 Middle-East and Africa

6.5.1 Saudi Arabia

6.5.2 South Africa

6.5.3 UAE

6.5.4 Rest of Middle-East and Africa

 

7. Competitive Landscape

7.1 Mergers & Acquisitions

7.2 Joint Ventures Collaborations and Agreements

7.3 Market Shares Analysis

7.4 Strategies Adopted by Leading Players

 

8. Company Profiles

8.1 Aecom

8.2 Aquatech

8.3 Atkins

8.4 Black & Veatch

8.5 Cameron

8.6 Ch2m Hill

8.7 Degrémont Industry

8.8 Dow Water & Process Solutions

8.9 Evoqua Water Technologies

8.10 GE Water & Process Technologies

8.11 IDE Technologies

8.12 Kurita Water Industries Ltd.

8.13 Louis Berger

8.14 Mott Macdonald

8.15 Organo

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