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Fly Control Chemicals Market for Waste Management by Type, Waste Treatment Method and Method of Application: Global Opportunity Analysis and Industry Forecast, 2019-2026

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    Report

  • 225 Pages
  • December 2019
  • Region: Global
  • Allied Market Research
  • ID: 4990115
The fly control chemicals market for waste management accounted for $74.4 billion in 2018 and is anticipated to reach $120.9 billion by 2026, registering a CAGR of 6.1% from 2019 to 2026. Waste management is a systematic procedure of treating waste, comprising numerous activities such as collecting, transportation, and treatment (mechanical/ biological/ chemical).

The growth of the market is driven by factors such as increase in environmental concerns and implementation of stringent government regulations toward open dumping. However, along with difficulties in storage & handling of fly control chemicals, and their high prices are some of the major factors expected to hinder the market growth during the analysis period.

The fly control chemicals market for waste management is segmented based on type, waste treatment method, method of application, and region. Depending on type, the market is bifurcated into larvicide and adulticide. On the basis of waste treatment method, it is classified into mechanical biological treatment (MBT) and anaerobic digestion. By method of application, it is segregated into toxic bait, dichlorvos vaporizer, outdoor space-spraying, larvicide sprayers, and others. By region, the market is analyzed across North America, Europe, Asia-Pacific, and LAMEA.

KEY BENEFITS FOR STAKEHOLDERS
  • The report provides an extensive qualitative and quantitative analysis of the current trends and future estimations of the market from 2019 to 2026 to determine the prevailing opportunities
  • A comprehensive analysis of the factors that drive and restrict the growth of the market is provided
  • The market size is provided in terms of revenue
  • Porter’s five forces analysis helps analyze the potential of the buyers & suppliers and the competitive scenario of the industry for strategy building
  • Profiles of leading players operating in the market are provided to understand the competitive scenario
  • The report provides extensive qualitative insights on the significant segments and regions exhibiting favorable market growth

KEY MARKET SEGMENTS

By Type
  • Larvicide
  • Adulticide
  • By Treatment Method
  • Mechanical Biological Treatment
  • Incineration
  • Anaerobic Digestion

By Method of Application
  • Toxic Bait
  • Dichlorvos Vaporizer
  • Outdoor space spraying
  • Larvicide Sprayers
  • Others

By Region
  • North America
  • U.S.
  • Canada
  • Mexico
  • Europe
  • Germany
  • France
  • UK
  • Italy
  • Spain
  • Rest of Europe
  • Asia-Pacific
  • India
  • China
  • Australia
  • South Korea
  • Rest of Asia-Pacific

Table of Contents

Chapter 1: Introduction
1.1. Report Description
1.2. Key Benefits For Stakeholders
1.3. Key Market Segments
1.4. Research Methodology
1.4.1. Primary Research
1.4.2. Secondary Research
1.4.3. Analyst Tools And Models
Chapter 2: Executive Summary
2.1. Key Findings of The Study
2.2. Key Findings
2.2.1. Top Investment Pockets
2.3. CXO Perspective
Chapter 3: Market Overview
3.1. Market Definition And Scope
3.2. Key Forces Shaping Global Fly Control Chemicals Market For Waste Management
3.3. Market Dynamics
3.3.1. Drivers
3.3.1.1. High Waste Generation
3.3.1.2. Rapid Increase In Insects
3.3.2. Restraint
3.3.2.1. Storage And Handling of Insecticides
3.3.3. Opportunity
3.3.3.1. Rise In Stringent Government Regulation For Waste Management
3.4. Impact of Government Regulations On Fly Control Chemicals Market For Waste Management
3.5. Value Chain Analysis
3.6. Patent Analysis
3.6.1. By Region, 2012–2018
Chapter 4: Global Fly Control Chemicals Market For Waste Management, By Type
4.1. Overview
4.1.1. Market Size And Forecast
4.2. Larvicide
4.2.1. Key Market Trends, Growth Factors And Opportunities
4.2.2. Market Size And Forecast, By Region
4.2.3. Market Share Analysis, By Country
4.3. Adulticide
4.3.1. Key Market Trends, Growth Factors And Opportunities
4.3.2. Market Size And Forecast, By Region
4.3.3. Market Share Analysis, By Country
Chapter 5: Global Fly Control Chemicals Market For Waste Management, By Waste Treatment Method
5.1. Overview
5.1.1. Market Size And Forecast
5.2. Mechanical Biological Treatment
5.2.1. Key Market Trends, Growth Factors And Opportunities
5.2.2. Market Size And Forecast, By Region
5.2.3. Market Share Analysis, By Country
5.3. Incineration
5.3.1. Key Market Trends, Growth Factors And Opportunities
5.3.2. Market Size And Forecast, By Region
5.3.3. Market Share Analysis, By Country
5.4. Anaerobic Digestion
5.4.1. Key Market Trends, Growth Factors And Opportunities
5.4.2. Market Size And Forecast, By Region
5.4.3. Market Share Analysis, By Country
Chapter 6: Global Fly Control Chemicals Market For Waste Management, By Method of Application
6.1. Overview
6.1.1. Market Size And Forecast
6.2. Toxic Bait
6.2.1. Key Market Trends, Growth Factors And Opportunities
6.2.2. Market Size And Forecast, By Region
6.2.3. Market Share Analysis, By Country
6.3. Dichlorvos Vaporizer
6.3.1. Key Market Trends, Growth Factors And Opportunities
6.3.2. Market Size And Forecast, By Region
6.3.3. Market Share Analysis, By Country
6.4. Outdoor Space Spraying
6.4.1. Key Market Trends, Growth Factors And Opportunities
6.4.2. Market Size And Forecast, By Region
6.4.3. Market Share Analysis, By Country
6.5. Larvicide Sprayers
6.5.1. Key Market Trends, Growth Factors And Opportunities
6.5.2. Market Size And Forecast, By Region
6.5.3. Market Share Analysis, By Country
6.6. Others
6.6.1. Key Market Trends, Growth Factors And Opportunities
6.6.2. Market Size And Forecast, By Region
6.6.3. Market Share Analysis, By Country
Chapter 7: Fly Control Chemicals Market For Waste Management, By Region
7.1. Overview
7.1.1. Market Size And Forecast
7.2. North America
7.2.1. Key Market Trends, Growth Factors, And Opportunities
7.2.2. Market Size And Forecast, By Type
7.2.3. Market Size And Forecast, By Waste Treatment Method
7.2.4. Market Size And Forecast, By Method of Application
7.2.5. Market Share Analysis, By Country
7.2.6. U.S.
7.2.6.1. Market Size And Forecast, By Type
7.2.6.2. Market Size And Forecast, By Waste Treatment Method
7.2.6.3. Market Size And Forecast, By Method of Application
7.2.7. Canada
7.2.7.1. Market Size And Forecast, By Type
7.2.7.2. Market Size And Forecast, By Waste Treatment Method
7.2.7.3. Market Size And Forecast, By Method of Application
7.2.8. Mexico
7.2.8.1. Market Size And Forecast, By Type
7.2.8.2. Market Size And Forecast, By Waste Treatment Method
7.2.8.3. Market Size And Forecast, By Method of Application
7.3. Europe
7.3.1. Key Market Trends, Growth Factors, And Opportunities
7.3.2. Market Size And Forecast, By Type
7.3.3. Market Size And Forecast, By Waste Treatment Method
7.3.4. Market Size And Forecast, By Method of Application
7.3.5. Market Share Analysis, By Country
7.3.6. Germany
7.3.6.1. Market Size And Forecast, By Type
7.3.6.2. Market Size And Forecast, By Waste Treatment Method
7.3.6.3. Market Size And Forecast, By Method of Application
7.3.7. France
7.3.7.1. Market Size And Forecast, By Type
7.3.7.2. Market Size And Forecast, By Waste Treatment Method
7.3.7.3. Market Size And Forecast, By Method of Application
7.3.8. UK
7.3.8.1. Market Size And Forecast, By Type
7.3.8.2. Market Size And Forecast, By Waste Treatment Method
7.3.8.3. Market Size And Forecast, By Method of Application
7.3.9. Italy
7.3.9.1. Market Size And Forecast, By Type
7.3.9.2. Market Size And Forecast, By Waste Treatment Method
7.3.9.3. Market Size And Forecast, By Method of Application
7.3.10. Spain
7.3.10.1. Market Size And Forecast, By Type
7.3.10.2. Market Size And Forecast, By Waste Treatment Method
7.3.10.3. Market Size And Forecast, By Method of Application
7.3.11. Rest of Europe
7.3.11.1. Market Size And Forecast, By Type
7.3.11.2. Market Size And Forecast, By Waste Treatment Method
7.3.11.3. Market Size And Forecast, By Method of Application
7.4. Asia-Pacific
7.4.1. Key Market Trends, Growth Factors, And Opportunities
7.4.2. Market Size And Forecast, By Type
7.4.3. Market Size And Forecast, By Waste Treatment Method
7.4.4. Market Size And Forecast, By Method of Application
7.4.5. Market Share Analysis, By Country
7.4.6. India
7.4.6.1. Market Size And Forecast, By Type
7.4.6.2. Market Size And Forecast, By Waste Treatment Method
7.4.6.3. Market Size And Forecast, By Method of Application
7.4.7. China
7.4.7.1. Market Size And Forecast, By Type
7.4.7.2. Market Size And Forecast, By Waste Treatment Method
7.4.7.3. Market Size And Forecast, By Method of Application
7.4.8. Australia
7.4.8.1. Market Size And Forecast, By Type
7.4.8.2. Market Size And Forecast, By Waste Treatment Method
7.4.8.3. Market Size And Forecast, By Method of Application
7.4.9. South Korea
7.4.9.1. Market Size And Forecast, By Type
7.4.9.2. Market Size And Forecast, By Waste Treatment Method
7.4.9.3. Market Size And Forecast, By Method of Application
7.4.10. Rest of Asia-Pacific
7.4.10.1. Market Size And Forecast, By Type
7.4.10.2. Market Size And Forecast, By Waste Treatment Method
7.4.10.3. Market Size And Forecast, By Method of Application
7.5. LAMEA
7.5.1. Key Market Trends, Growth Factors, And Opportunities
7.5.2. Market Size And Forecast, By Type
7.5.3. Market Size And Forecast, By Waste Treatment Method
7.5.4. Market Size And Forecast, By Method of Application
7.5.5. Market Share Analysis, By Country
7.5.6. Brazil
7.5.6.1. Market Size And Forecast, By Type
7.5.6.2. Market Size And Forecast, By Waste Treatment Method
7.5.6.3. Market Size And Forecast, By Method of Application
7.5.7. Saudi Arabia
7.5.7.1. Market Size And Forecast, By Type
7.5.7.2. Market Size And Forecast, By Waste Treatment Method
7.5.7.3. Market Size And Forecast, By Method of Application
7.5.8. South Africa
7.5.8.1. Market Size And Forecast, By Type
7.5.8.2. Market Size And Forecast, By Waste Treatment Method
7.5.8.3. Market Size And Forecast, By Method of Application
7.5.9. Rest of LAMEA
7.5.9.1. Market Size And Forecast, By Type
7.5.9.2. Market Size And Forecast, By Waste Treatment Method
7.5.9.3. Market Size And Forecast, By Method of Application
Chapter 8: Competitive Landscape
8.1.1. Market Player Positioning, 2018
8.2. Product Mapping of Top 10 Player
8.3. Competitive Heatmap
Chapter 9: Company Profiles
9.1. Basf Se
9.1.1. Company Overview
9.1.2. Company Snapshot
9.1.3. Operating Business Segments
9.1.4. Product Portfolio
9.1.5. Business Performance
9.2. Bayer Ag
9.2.1. Company Overview
9.2.2. Company Snapshot
9.2.3. Operating Business Segments
9.2.4. Product Portfolio
9.2.5. Business Performance
9.3. Fmc Corporation
9.3.1. Company Overview
9.3.2. Company Snapshot
9.3.3. Operating Business Segments
9.3.4. Product Portfolio
9.3.5. Business Performance
9.5. Aimco Pesticides Ltd
9.5.1. Company Overview
9.5.2. Company Snapshot
9.5.3. Product Portfolio
9.5.4. Business Performance
9.6. Sumitomo Chemical Co., Ltd.
9.6.1. Company Overview
9.6.2. Company Snapshot
9.6.3. Operating Business Segments
9.6.4. Product Portfolio
9.6.5. Business Performance
9.7. Syngenta
9.7.1. Company Overview
9.7.2. Company Snapshot
9.7.3. Operating Business Segments
9.7.4. Product Portfolio
9.7.5. Business Performance

Executive Summary

According to the report titled 'Fly Control Chemicals Market for Waste Management by Type, Application, and End-Use: Global Opportunity Analysis and Industry Forecast, 2019-2026', the fly control chemicals market for waste management accounted for revenue of $74.4 billion in 2018 and is anticipated to generate $120.9 billion by 2026. The market is projected to experience growth at a CAGR of 6.1% from 2019 to 2026.

Waste management is the process of treating solid wastes. It includes different activities such as collection, transport, treatment, and disposal as well as examination and regulation of waste. Insecticides are utilized at the treatment stage of the waste management process.

Increase in waste generation and rapid rise in insects are the major factors expected to drive the growth of the global fly control chemicals market for waste management. In addition, factors that boost the insect population are rapid industrialization, urbanization, climate change, and improper waste management. Constant changes in climatic conditions is a prominent factor for growth of insects, as they thrive at elevated temperatures. Owing to warmer temperature, metabolic rate of insects increases, which boosts their appetite at a considerable rate. In addition, rise in temperature increases the reproductive rates of insects. Thus, change in climatic conditions have led to an increase in pests, thereby fueling the growth of the global fly control chemicals market for waste management. However, the difficulties related to the storage and handling of insecticides act as one of the significant factors restraining the growth of the market. On the contrary, implementation of government regulation for waste management is anticipated to offer lucrative growth opportunities during the analysis period.

The fly control chemicals market for waste management is segmented based on type, waste treatment method, method of application, active ingredient, and country. By type, the market is bifurcated into larvicide and adulticide. On the basis of waste treatment method, it is categorized into mechanical biological treatment (MBT) and anaerobic digestion. By method of application, it is classified into toxic bait, dichlorvos vaporizer, outdoor space spraying, larvicide sprayers, and others. On the basis of region the fly control chemicals market for waste management is analyzed across four main region i.e. North America, Europe, Asia-Pacific, and LAMEA. Fly control chemicals market share for waste management is analyzed across all the segments and regions.

Based on type, the adulticide segment occupied the highest share of 74.6% in terms of revenue in the overall market in 2018 and is expected to continue its dominance throughout the analysis period. Adulticide is a prominent type of insecticide used in waste management as there are large numbers of adult mosquitos and flies present in the waste treatment plants. These adults have a greater tendency to multiply rapidly in favorable temperature conditions. Thus, it is important to prevent their growth before their breeding season.

Based on waste treatment method, the mechanical biological treatment (MBT) segment accounted for the highest share of 40.0% in terms of revenue in 2018. It is widely adopted as compared to traditional treatment methods, owing to positive environmental externalities comprising improved landfill efficacy, such as the positive modification of leachate and landfill gas (LFG) production and quality.

Based on method of application, the outdoor space spraying segment dominated the market in 2018, with a revenue share of 25.0%. Outdoor space spraying method is widely adopted in Europe, as it has animmediate effect on the adult populations of insects, and less insecticide is required for one-time application.

Based on region, Asia-Pacific accounts for a major share in the market. This is attributed to rise in generation of organic waste, which correspondingly increases the adoption of insecticides.
The key players operating in the market include Biodegma GmbH, BTA International GmbH, Nehlsen AG, FCC Austria Abfall Service AG, Veolia, AMEY PLC, Biffa, Renewi PLC, Remondis SE & Co. KG, and LafargeHolcim Ltd.

Key findings of the study:

The fly control chemicals market for waste management is analyzed from 2018 to 2026
The Asia-Pacific is projected to grow at the highest CAGR of nearly 6.5%, in terms during the forecast period
The fly control chemicals market analysis for waste management covers in-depth information of the major industry participants
Based on the method of application, the outdoor spray spraying segment is anticipated to garner highest market share of 24.7%
Asia-Pacific dominated the market with a share of over 53.9% in 2018
A comprehensive analysis of the factors that drive and restrain the market growth is provided
The qualitative data in this report aims at the market dynamics, trends, and developments in the industry
The fly control chemicals market size for waste management is provided in terms of revenue

Companies Mentioned

  • BASF SE
  • Bayer AG
  • FMC Corporation
  • Aimco Pesticides Ltd.
  • Sumitomo Chemical Co. Ltd.
  • Syngenta.

Methodology

The analyst offers exhaustive research and analysis based on a wide variety of factual inputs, which largely include interviews with industry participants, reliable statistics, and regional intelligence. The in-house industry experts play an instrumental role in designing analytic tools and models, tailored to the requirements of a particular industry segment. The primary research efforts include reaching out participants through mail, tele-conversations, referrals, professional networks, and face-to-face interactions.

They are also in professional corporate relations with various companies that allow them greater flexibility for reaching out to industry participants and commentators for interviews and discussions.

They also refer to a broad array of industry sources for their secondary research, which typically include; however, not limited to:

  • Company SEC filings, annual reports, company websites, broker & financial reports, and investor presentations for competitive scenario and shape of the industry
  • Scientific and technical writings for product information and related preemptions
  • Regional government and statistical databases for macro analysis
  • Authentic news articles and other related releases for market evaluation
  • Internal and external proprietary databases, key market indicators, and relevant press releases for market estimates and forecast

Furthermore, the accuracy of the data will be analyzed and validated by conducting additional primaries with various industry experts and KOLs. They also provide robust post-sales support to clients.

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