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Antifouling Coatings Market Research Report Information By Type (Copper Based, Biocides, Self-Polishing Copolymer, Hybrid), Application (Shipping Vessels, Drilling Rigs, Fishing Boat, Yachts, Boats, Mooring Lines, and Inland Water Transportation) And By Region (North America, Europe, Asia-Pacific, And Rest Of The World) –Market Forecast Till 2032


ID: MRFR/CnM/4092-CR | 150 Pages | Author: Chitranshi Jaiswal| February 2021

Antifouling Coatings Type Outlook (USD Billion, 2022-2032)




  • Copper Based




  • Biocides




  • Self-Polishing Copolymer




  • Hybrid




Antifouling Coatings Application Outlook (USD Billion, 2022-2032)




  • Shipping Vessels




  • Drilling Rigs




  • Fishing Boat




  • Yachts & Boats




  • Mooring Lines




  • Inland Water Transportation




Antifouling Coatings Regional Outlook (USD Billion, 2022-2032)




  • North America Outlook (USD Billion, 2022-2032)




    • North America Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • North America Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • US Outlook (USD Billion, 2022-2032)




    • US Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • US Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • CANADA Outlook (USD Billion, 2022-2032)




    • CANADA Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • CANADA Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation








  • Europe Outlook (USD Billion, 2022-2032)




    • Europe Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Europe Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Germany Outlook (USD Billion, 2022-2032)




    • Germany Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Germany Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • France Outlook (USD Billion, 2022-2032)




    • France Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • France Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • UK Outlook (USD Billion, 2022-2032)




    • UK Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • UK Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • ITALY Outlook (USD Billion, 2022-2032)




    • ITALY Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • ITALY Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • SPAIN Outlook (USD Billion, 2022-2032)




    • Spain Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Spain Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Rest Of Europe Outlook (USD Billion, 2022-2032)




    • Rest Of Europe Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • REST OF EUROPE Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation








  • Asia-Pacific Outlook (USD Billion, 2022-2032)




    • Asia-Pacific Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Asia-Pacific Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • China Outlook (USD Billion, 2022-2032)




    • China Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • China Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Japan Outlook (USD Billion, 2022-2032)




    • Japan Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Japan Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • India Outlook (USD Billion, 2022-2032)




    • India Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • India Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Australia Outlook (USD Billion, 2022-2032)




    • Australia Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Australia Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Rest of Asia-Pacific Outlook (USD Billion, 2022-2032)




    • Rest of Asia-Pacific Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Rest of Asia-Pacific Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation








  • Rest of the World Outlook (USD Billion, 2022-2032)




    • Rest of the World Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Rest of the World Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Middle East Outlook (USD Billion, 2022-2032)




    • Middle East Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Middle East Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Africa Outlook (USD Billion, 2022-2032)




    • Africa Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Africa Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation






    • Latin America Outlook (USD Billion, 2022-2032)




    • Latin America Antifouling Coatings by Type




      • Copper Based




      • Biocides




      • Self-Polishing Copolymer




      • Hybrid






    • Latin America Antifouling Coatings by Application




      • Shipping Vessels




      • Drilling Rigs




      • Fishing Boat




      • Yachts & Boats




      • Mooring Lines




      • Inland Water Transportation







Research Methodology on Antifouling Coatings Market 


Market Research Future uses comprehensive research strategies to obtain a detailed and accurate understanding of the global market for Antifouling Coatings. Our research strategy is focused on combining a combination of primary and secondary research with market trends, industry analysis, and company-specific data to enable our readers to make an informed decision.


Primary Research


Primary research is the method that involves interviewing end users, experts, industry experts and market experts. It helps to gather first-hand information about the market and company. The primary data which is collected in the process of primary research includes customer base analysis, competitor analysis, product review, demand patterns, and other market trends. Primary research also helps to understand the competition and industry environment and easily determine business strategies and plans.


Secondary Research


Secondary research involves the extensive use of secondary sources such as published literature, magazines, and other electronic databases. Secondary research is used to determine customer’s preferences and insights, industry trends, forecasts, and market size. Secondary research also helps to identify and estimate market dynamics, market structure and key players. Market Research Future also takes into account the customer’s industry and company overview, product reviews, business surveys, and media study as well as analysis of the customer’s product and services.


Market Research Future extracts data from publicly and privately available sources, such as technology and product data along with marketing and advertising intelligence. The data is validated through extensive methods while collecting information from multiple sources. 


Data Triangulation


Data triangulation is an important process, as it helps to simultaneously analyze market trends from multiple sources. It helps to identify various data points and validate the found data by comparing different points. Market Research Future employs a multi-dimensional approach to triangulate the data and resolve discrepancies from the various sources.


Approaches Used


Bottom-Up Approach


The bottom-up approach is an effective approach to analyze and present the Antifouling Coatings market. This approach helps in validating the assumptions, creating an intelligence document, and using the collected information to develop estimates and forecasts from 2023 to 2030. At Market Research Future, estimates and forecasts are created from the bottom and then the top-down approach is used to refine the estimates and forecasts.


Top Down Approach


The top-down approach is used to analyze and forecast the Antifouling Coatings market. It involves analyzing several market verticals, such as global size and market dynamics. This helps to identify the existing trends in the market and determine the growth potential in the market.


Factor Analysis


The factor analysis is used to identify the potential drivers and restraints that can influence the Antifouling Coatings market. It is used to analyze the historical trends and develop estimates and forecasts for the Antifouling Coatings market.


Time-series Analysis


The time-series analysis is used to analyze the historical data for the Antifouling Coatings market. It helps to develop estimates and forecasts based on the historical data.


Demand Side and Supply Side Data Triangulation


The process of demand-side and supply-side data triangulation is used to validate the data collected from multiple sources. Using this approach, the data is analyzed and triangulated using both demand-side and supply-side data. This helps to identify discrepancies and validate the identified market size, share, and segmentation.


Conclusion


This research methodology provides a comprehensive understanding of the global market for Antifouling Coatings. Market Research Future uses a mix of primary and secondary research with a top-down and bottom-up approach to develop an accurate and detailed understanding of the market. Our analytical capabilities are also used in triangulating the data to ensure the validity of the analytical results.

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TABLE OF CONTENTS

1 EXECUTIVE SUMMARY 10

1.1 MARKET ATTRACTIVENESS ANALYSIS 13

1.1.1 GLOBAL ANTIFOULING COATINGS MARKET, BY TYPE 14

1.1.2 GLOBAL ANTIFOULING COATINGS MARKET, BY APPLICATION 15

2 MARKET INTRODUCTION 16

2.1 DEFINITION 16

2.2 SCOPE OF THE STUDY 16

2.3 MARKET STRUCTURE 16

3 MARKET DYNAMICS 17

3.1 INTRODUCTION 17

3.2 DRIVERS 18

3.2.1 IMPROVED PERFORMANCE DUE TO ANTIFOULING COATINGS 18

3.2.2 GROWING MARITIME TRADE 19

3.2.3 GROWTH OF THE OFFSHORE OIL & GAS INDUSTRY AND GLOBAL ENERGY DEMAND 20

3.2.4 DRIVERS IMPACT ANALYSIS 21

3.3 RESTRAINT 21

3.3.1 STRINGENT ENVIRONMENT REGULATIONS 21

3.3.2 RESTRAINT IMPACT ANALYSIS 22

3.4 OPPORTUNITY 22

3.4.1 PROJECTED RISE IN DEMAND FOR ENVIRONMENT FRIENDLY ANTIFOULING COATINGS 22

3.5 CHALLENGES 23

3.5.1 LOW EFFICIENCY OF COPPER-FREE ANTIFOULING COATING TECHNOLOGIES 23

3.5.2 VOLATILE RAW MATERIAL PRICES 23

4 MARKET FACTOR ANALYSIS 25

4.1 SUPPLY CHAIN ANALYSIS 25

4.1.1 RAW MATERIALS SUPPLIERS 26

4.1.1.1 RAW MATERIAL SUPPLIERS OF COPPER AND ITS OXIDES 26

4.1.1.2 RAW MATERIAL SUPPLIERS OF POLYDIMETHYLSILOXANE (PDMS) 26

4.1.2 ANTIFOULING COATING PRODUCERS 26

4.1.3 DISTRIBUTION CHANNELS 26

4.1.4 APPLICATION 26

4.2 PORTER’S FIVE FORCES MODEL 27

4.2.1 THREAT OF NEW ENTRANTS 27

4.2.2 INTENSITY OF RIVALRY 28

4.2.3 THREAT OF SUBSTITUTES 28

4.2.4 BARGAINING POWER OF SUPPLIERS 28

4.2.5 BARGAINING POWER OF BUYERS 28

4.3 PRICING OVERVIEW – BY REGION, 2017–2019 (USD/TONS) 29

4.4 REGULATORY ANALYSIS 29

4.4.1 REGULATORY OVERVIEW AT THE REGIONAL LEVEL 29

4.4.2 REGULATORY FRAMEWORK AND TIMELINE FOR ENVIRONMENTALLY HARMFUL PRODUCTS 33

4.4.3 PRODUCT TESTING 36

4.4.3.1 INTRODUCTION 36

4.4.3.2 ANTIFOULING STANDARDS AND SPECIFICATIONS 36

4.4.3.3 ASTM STANDARDS RELATED TO MARINE COATINGS 37

4.4.3.4 SIGNIFICANT & USES OF THE ASTM STANDARDS FOR MARINE COATINGS 37

4.4.3.4.1 D3623-78A: STANDARD TEST METHOD FOR TESTING ANTIFOULING PANELS IN SHALLOW SUBMERGENCE 37

4.4.3.4.2 D4938-89: STANDARD TEST METHOD FOR EROSION TESTING OF ANTIFOULING PAINTS USING HIGH-VELOCITY WATER 37

4.4.3.4.3 D4939-89: STANDARD TEST METHOD FOR SUBJECTING MARINE ANTIFOULING COATING TO BIOFOULING AND FLUID SHEAR FORCES IN NATURAL SEAWATER 38

4.4.3.4.4 D5063-90: STANDARD GUIDE FOR THE USE OF CERTIFICATION OF COATING CONFORMANCE FORM 38

4.4.3.4.5 D5479-94: STANDARD PRACTICE FOR TESTING BIOFOULING RESISTANCE OF MARINE COATINGS PARTIALLY IMMERSED 38

4.4.3.4.6 D6442-06: STANDARD TEST METHOD FOR DETERMINATION OF COPPER RELEASE RATE FROM ANTIFOULING COATINGS IN SUBSTITUTE OCEAN WATER 38

4.4.3.4.7 D6903-07: STANDARD TEST METHOD FOR DETERMINATION OF ORGANIC BIOCIDE RELEASE RATE FROM ANTIFOULING COATINGS IN SUBSTITUTE OCEAN WATER 38

4.4.3.5 ISO STANDARDS FOR ANTIFOULING PAINTS AND COATINGS 39

4.4.3.5.1 ISO 15181-1 39

4.4.3.5.2 ISO 15181-2 39

4.4.3.5.3 ISO 15181-3 39

4.4.3.5.4 ISO 15181-4 39

4.4.3.5.5 ISO 15181-5 39

4.4.3.5.6 ISO 15181-6 39

4.4.3.5.7 ISO 10890 39

4.4.3.5.8 ISO DIS 22987 40

4.4.3.5.9 ISO 13073-1 40

4.4.3.5.10 ISO 13073-2 40

4.4.3.5.11 ISO 13073-3 40

4.5 ENVIRONMENT-FRIENDLY PRODUCTS AND TECHNOLOGIES 40

4.6 IMPACT OF COVID-19 ON THE GLOBAL MARKET FOR ANTIFOULING COATINGS 44

5 GLOBAL ANTIFOULING COATINGS MARKET, BY TYPE 45

5.1 INTRODUCTION 45

5.2 SELF-POLISHING COPOLYMER 47

5.3 COPPER BASED 48

5.4 HYBRID 49

5.5 OTHERS 50

6 GLOBAL ANTIFOULING COATINGS MARKET, BY APPLICATION 52

6.1 INTRODUCTION 52

6.2 SHIPPING VESSELS 54

6.3 DRILLING RIGS 55

6.4 FISHING BOAT 56

6.5 YACHTS AND BOATS 57

6.6 MOORING LINES 58

6.7 OTHERS 59

6.7.1 REGULATIONS BY APPLICATION 60

6.8 MAINTENANCE CYCLE FOR EACH APPLICATION 61

7 GLOBAL ANTIFOULING COATINGS MARKET, BY REGIONAL OVERVIEW 63

8 COMPETITIVE LANDSCAPE 65

8.1 INTRODUCTION 65

8.2 MARKET STRATEGY ANALYSIS 65

8.3 KEY DEVELOPMENTS & GROWTH STRATEGIES 66

8.4 COMPETITIVE BENCHMARKING 69

8.5 MARKET PLAYERS ANALYSIS 70

8.5.1 MARKET SHARE AND REGIONAL PRESENCE 70

8.5.2 EFFORTS AND DETAILS ON ENVIRONMENTAL-FRIENDLY PRODUCTS 76

8.5.3 LIST OF EXISTING ENVIRONMENTAL-FRIENDLY PRODUCTS 77

9 COMPANY PROFILES 79

9.1 PPG INDUSTRIES, INC. 79

9.1.1 COMPANY OVERVIEW 79

9.1.2 FINANCIAL OVERVIEW 80

9.1.3 PRODUCTS OFFERED 81

9.1.4 KEY DEVELOPMENTS 82

9.1.5 SWOT ANALYSIS 82

9.1.6 KEY STRATEGIES 83

9.2 NIPPON PAINT HOLDINGS CO., LTD. 84

9.2.1 COMPANY OVERVIEW 84

9.2.2 FINANCIAL OVERVIEW 84

9.2.3 PRODUCTS OFFERED 85

9.2.4 KEY DEVELOPMENTS 85

9.2.5 SWOT ANALYSIS 86

9.2.6 KEY STRATEGIES 86

9.3 THE SHERWIN-WILLIAMS COMPANY 87

9.3.1 COMPANY OVERVIEW 87

9.3.2 FINANCIAL OVERVIEW 88

9.3.3 PRODUCTS OFFERED 88

9.3.4 KEY DEVELOPMENT 89

9.3.5 SWOT ANALYSIS 89

9.3.6 KEY STRATEGIES 89

9.4 AKZO NOBEL N.V. 90

9.4.1 COMPANY OVERVIEW 90

9.4.2 FINANCIAL OVERVIEW 90

9.4.3 PRODUCTS OFFERED 91

9.4.4 KEY DEVELOPMENTS 92

9.4.5 SWOT ANALYSIS 92

9.4.6 KEY STRATEGIES 92

9.5 BASF SE 93

9.5.1 COMPANY OVERVIEW 93

9.5.2 FINANCIAL OVERVIEW 94

9.5.3 PRODUCTS OFFERED 94

9.5.4 KEY DEVELOPMENTS 94

9.5.5 SWOT ANALYSIS 95

9.5.6 KEY STRATEGIES 95

9.6 JOTUN 96

9.6.1 COMPANY OVERVIEW 96

9.6.2 FINANCIAL OVERVIEW 96

9.6.3 PRODUCTS OFFERED 97

9.6.4 KEY DEVELOPMENTS 97

9.6.5 SWOT ANALYSIS 99

9.6.6 KEY STRATEGIES 99

9.7 KANSAI PAINT CO., LTD 100

9.7.1 COMPANY OVERVIEW 100

9.7.2 FINANCIAL OVERVIEW 100

9.7.3 PRODUCTS OFFERED 101

9.7.4 KEY DEVELOPMENTS 101

9.7.5 SWOT ANALYSIS 102

9.7.6 KEY STRATEGIES 102

9.8 BOERO 103

9.8.1 COMPANY OVERVIEW 103

9.8.2 FINANCIAL OVERVIEW 103

9.8.3 PRODUCTS OFFERED 103

9.8.4 KEY DEVELOPMENTS 104

9.8.5 SWOT ANALYSIS 104

9.8.6 KEY STRATEGIES 104

9.9 HEMPEL A/S 105

9.9.1 COMPANY OVERVIEW 105

9.9.2 FINANCIAL OVERVIEW 105

9.9.3 PRODUCTS OFFERED 106

9.9.4 KEY DEVELOPMENTS 107

9.9.5 SWOT ANALYSIS 108

9.9.6 KEY STRATEGIES 108

9.10 CHUGOKU MARINE PAINTS, LTD. 109

9.10.1 COMPANY OVERVIEW 109

9.10.2 FINANCIAL OVERVIEW 109

9.10.3 PRODUCTS OFFERED 110

9.10.4 KEY DEVELOPMENTS 110

9.10.5 SWOT ANALYSIS 111

9.10.6 KEY STRATEGIES 111

10 APPENDIX 112

10.1 REFERENCES 112

10.2 GLOBAL ANTIFOULING COATINGS MARKET, BY REGION 113

10.2.1 NORTH AMERICA 116

10.2.1.1 US 119

10.2.1.2 CANADA 121

10.2.2 EUROPE 123

10.2.2.1 GERMANY 126

10.2.2.2 UK 128

10.2.2.3 RUSSIA 130

10.2.2.4 FRANCE 132

10.2.2.5 SPAIN 134

10.2.2.6 ITALY 136

10.2.2.7 REST OF EUROPE 138

10.2.3 ASIA-PACIFIC 140

10.2.3.1 CHINA 143

10.2.3.2 JAPAN 145

10.2.3.3 INDIA 147

10.2.3.4 SOUTH KOREA 149

10.2.3.5 REST OF ASIA-PACIFIC 151

10.2.4 MIDDLE EAST & AFRICA 153

10.2.4.1 TURKEY 156

10.2.4.2 GCC 158

10.2.4.3 SOUTH AFRICA 160

10.2.4.4 REST OF THE MIDDLE EAST & AFRICA 162

10.2.5 LATIN AMERICA 164

10.2.5.1 BRAZIL 167

10.2.5.2 MEXICO 169

10.2.5.3 ARGENTINA 171

10.2.5.4 REST OF LATIN AMERICA 173

10.3 RESEARCH METHODOLOGY 175

10.3.1 RESEARCH PROCESS 175

10.3.2 PRIMARY RESEARCH 176

10.3.3 SECONDARY RESEARCH 177

10.3.4 MARKET SIZE ESTIMATION 177

10.3.5 FORECAST MODEL 178

10.3.6 LIST OF ASSUMPTIONS 179

10.4 SUMMARY OF RESPONDANT PROFILES AND QUESTIONNAIRE 179

10.4.1 RESPONDANT PROFILES 179

10.4.2 RESPONDANTS QUOTES 181

10.4.3 QUESTIONNAIRE 183

10.5 LIST OF TABLES 186

10.6 LIST OF FIGURES 190

10.7 RELATED REPORTS 191

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