Natural Chelating Agents Market Size By Product (Sodium Gluconate, Sodium Iminodisuccinate, Ethylene Diamine Disuccinate (EDDS), Glutamic Acid Diacetate (GLDA), Iminodisuccinic Acid (IDSA), Methylglycine Diacetic Acid (MGDA)), By Source (Plants, Microorga

Natural Chelating Agents Market Size By Product (Sodium Gluconate, Sodium Iminodisuccinate, Ethylene Diamine Disuccinate (EDDS), Glutamic Acid Diacetate (GLDA), Iminodisuccinic Acid (IDSA), Methylglycine Diacetic Acid (MGDA)), By Source (Plants, Microorganism), By Application (Detergents & Cleaning Agents, Personal Care & Cosmetics, Pulp and Paper, Agrichemicals, Food and Beverage, Water Treatment ) Industry Analysis Report, Regional Outlook, Growth Potential, Price Trends, Competitive Market Share & Forecast, 2022 - 2030

The global natural chelating agents market is anticipated to register commendable growth over the forecast period, on account of the increasing adoption of novel cleaning technologies.

Green chelating agents can improve the performance of laundry detergents, industrial cleaning products, and household cleaners. The elimination of metal ions is a crucial part of many domestic and industrial processes that utilize water. Therefore, companies are developing innovative chelating products to provide a sustainable alternative to conventional solutions such as phosphates.

A notable example is the Dissolvine® M (MGDA) and Dissolvine® GL (GLDA) green chelating agents from Nouryon, developed for use in most cleaning applications. These compounds outperform phosphate alternatives such as gluconates, zeolites, and citrates, by forming stronger bonds with the metal ions. Innovative product introductions such as these may augment industry growth.

The natural chelating agents market is bifurcated in terms of product, source, application, and region.

In terms of the product, the Iminodisuccinic acid (IDSA) segment is poised to register appreciable proceeds over the estimated timeline. IDSA is considered a greener high-performance complexing alternative to conventional agents such as NTA and EDTA.

The compound has an exceptional ability to combine calcium, iron, and copper ions into quintuple-bonded structures. Additionally, IDSA possesses excellent biodegradability which facilitates sustainability, thereby increasing product usage in agrichemicals, personal care products and detergents.

Based on application, the natural chelating agents market from the pulp and paper segment is projected to register substantial growth over 2022-2030, given the growing importance of green chelating agents for bleaching applications in the industry. The accelerated decomposition of oxygen, hydrogen peroxide, and ozone by transition metal ions such as iron, manganese, and copper has led to a decline in the use of chlorine and oxygen-based chemicals for pulp bleaching.

Natural chelating agents optimize the control of metal ions in the pulp which improves the quality of the final product. These factors are anticipated to enhance the demand for green chelates in associated industries, including packaging.

The industry value from the agrichemicals application segment is projected to be worth over USD 215 million by 2030, given the increased usage of bio-based fertilizers.

The use of green chelates in these chemicals and fertilizers bend around the nutrient and protect it from other elements. This allows the absorption of trace elements and improves the nutritional value of crops. Attributes such as these are expected to further augment product demand in agrichemical applications.

Regionally speaking, the Latin America natural chelating agents industry is poised to exhibit more than 5% CAGR from 2022-2030. This growth can be credited to the rising foreign direct investment initiatives for the pharmaceutical sector in the region.

Citing an instance, in September 2022, the Pharmaceuticals Export Promotion Council of India (Pharmexcil) announced exports of pharmaceuticals in South American nations such as Bolivia, Brazil, Colombia, and Peru. This initiative was intended to expand the access of pharma companies in the region and may, in turn, influence market dynamics over the forthcoming years.


Chapter 1 Methodology and Scope
1.1 Market definitions
1.2 Base estimates & calculations
1.3 Forecast parameters
1.4 Data Sources
1.4.1 Primary
1.4.2 Secondary
1.4.2.1 Paid Sources
1.4.2.2 Public Sources
Chapter 2 Executive Summary
2.1 Green chelates/natural chelating agents market 360 degree synopsis, 2017 - 2030
2.1.1 Business trends
2.1.2 Product trends
2.1.3 Source trends
2.1.4 Application trends
2.1.5 Regional trends
Chapter 3 Natural Chelating Agents Industry Insights
3.1 Industry segmentation
3.2 COVID-19 impact on world economy
3.3 Industry ecosystem analysis
3.3.1 Vendor matrix
3.3.2 Distribution channel analysis
3.4 Technology landscape
3.5 Raw material analysis
3.6 Circular economy
3.6.1 Chelation Technology: An Eco-Friendly Path for Environment
3.6.2 Sustainable extraction of hazardous metals from crystal glass waste using biodegradable chelating agents
3.6.3 Bioavailability of Heavy Metals in Soil: Impact on Microbial Biodegradation of Organic Compounds and Possible Improvement Strategies
3.7 COVID - 19 impacts on raw material supply
3.8 Pricing analysis, by region
3.8.1 Regional pricing
3.8.1.1 North America
3.8.1.2 Europe
3.8.1.3 Asia Pacific
3.8.1.4 Latin America
3.8.1.5 MEA
3.8.1.6 Covid-19 impact on natural chelating agent prices
3.8.2 Cost structure analysis
3.9 Regulatory landscape
3.9.1 U.S.
3.9.2 Europe
3.9.3 China
3.10 Industry impact forces
3.10.1 Growth drivers
3.10.1.1 Increasing paper & pulp production for lightweight packaging
3.10.1.2 Stringent water and environment protection regulations will drive the demand for green chelates
3.10.1.3 Rising demand from industrial and institutional cleaners for green products
3.10.2 Industry pitfalls & challenges
3.10.2.1 High production cost along with fluctuating raw material prices
3.11 Innovation & sustainability
3.12 Growth potential analysis, 2021
3.13 Porter's analysis
3.14 PESTEL analysis
3.15 Russia-Ukraine War impact on natural chelating agent demand
3.16 COVID-19 impact on natural chelating agent demand, by application
3.16.1 Detergents & Cleaning Agents
3.16.2 Personal Care & Cosmetics
3.16.3 Pulp and Paper
3.16.4 Agrichemicals
3.16.5 Food and Beverage
3.16.6 Water Treatment
3.16.7 Others
Chapter 4 Competitive Landscape, 2021
4.1 Introduction
4.2 Company market share, 2021
4.3 Competitive analysis of major market players
4.4 Vendor adoption matrix
4.5 Strategic outlook matrix
Chapter 5 Natural Chelating Agents Market, By Product
5.1 Key product trends
5.2 Sodium Gluconate
5.2.1 Market estimates and forecast, 2017 - 2030
5.2.2 Market estimates and forecast, by region, 2017 - 2030
5.3 Sodium Iminodisuccinate
5.3.1 Market estimates and forecast, 2017 - 2030
5.3.2 Market estimates and forecast, by region, 2017 - 2030
5.4 Ethylene diamine disuccinate (EDDS)
5.4.1 Market estimates and forecast, 2017 - 2030
5.4.2 Market estimates and forecast, by region, 2017 - 2030
5.5 Glutamic acid diacetate (GLDA)
5.5.1 Market estimates and forecast, 2017 - 2030
5.5.2 Market estimates and forecast, by region, 2017 - 2030
5.6 Iminodisuccinic acid (IDSA)
5.6.1 Market estimates and forecast, 2017 - 2030
5.6.2 Market estimates and forecast, by region, 2017 - 2030
5.7 Methylglycine Diacetic Acid (MGDA)
5.7.1 Market estimates and forecast, 2017 - 2030
5.7.2 Market estimates and forecast, by region, 2017 - 2030
5.8 Others
5.8.1 Market estimates and forecast, 2017 - 2030
5.8.2 Market estimates and forecast, by region, 2017 - 2030
Chapter 6 Natural Chelating Agents Market, By Source
6.1 Key source trends
6.2 Plants
6.2.1 Market estimates and forecast, 2017 - 2030
6.2.2 Market estimates and forecast, by region, 2017 - 2030
6.3 Microorganisms
6.3.1 Market estimates and forecast, 2017 - 2030
6.3.2 Market estimates and forecast, by region, 2017 - 2030
Chapter 7 Natural Chelating Agents Market, By Application
7.1 Key application trends
7.2 Detergents & Cleaning
7.2.1 Market estimates and forecast, 2017 - 2030
7.2.2 Market estimates and forecast, by region, 2017 - 2030
7.3 Personal Care & Cosmetics
7.3.1 Market estimates and forecast, 2017 - 2030
7.3.2 Market estimates and forecast, by region, 2017 - 2030
7.4 Pulp and Paper
7.4.1 Market estimates and forecast, 2017 - 2030
7.4.2 Market estimates and forecast, by region, 2017 - 2030
7.5 Agrichemicals
7.5.1 Market estimates and forecast, 2017 - 2030
7.5.2 Market estimates and forecast, by region, 2017 - 2030
7.6 Food and Beverage
7.6.1 Market estimates and forecast, 2017 - 2030
7.6.2 Market estimates and forecast, by region, 2017 - 2030
7.7 Water Treatment
7.7.1 Market estimates and forecast, 2017 - 2030
7.7.2 Market estimates and forecast, by region, 2017 - 2030
7.8 Others
7.8.1 Market estimates and forecast, 2017 - 2030
7.8.2 Market estimates and forecast, by region, 2017 - 2030
Chapter 8 Natural Chelating Agents Market, By Region
8.1 Key regional trends
8.2 North America
8.2.1 Market estimates and forecast, 2017 - 2030
8.2.2 Market estimates and forecast, by product, 2017 - 2030
8.2.3 Market estimates and forecast, by source, 2017 - 2030
8.2.4 Market estimates and forecast, by application, 2017 - 2030
8.2.5 U.S.
8.2.5.1 Market estimates and forecast, 2017 - 2030
8.2.5.2 Market estimates and forecast, by product, 2017 - 2030
8.2.5.3 Market estimates and forecast, by source, 2017 - 2030
8.2.5.4 Market estimates and forecast, by application, 2017 - 2030
8.2.6 Canada
8.2.6.1 Market estimates and forecast, 2017 - 2030
8.2.6.2 Market estimates and forecast, by product, 2017 - 2030
8.2.6.3 Market estimates and forecast, by source, 2017 - 2030
8.2.6.4 Market estimates and forecast, by application, 2017 - 2030
8.3 Europe
8.3.1 Market estimates and forecast, 2017 - 2030
8.3.2 Market estimates and forecast, by product, 2017 - 2030
8.3.3 Market estimates and forecast, by source, 2017 - 2030
8.3.4 Market estimates and forecast, by application, 2017 - 2030
8.3.5 Germany
8.3.5.1 Market estimates and forecast, 2017 - 2030
8.3.5.2 Market estimates and forecast, by product, 2017 - 2030
8.3.5.3 Market estimates and forecast, by source, 2017 - 2030
8.3.5.4 Market estimates and forecast, by application, 2017 - 2030
8.3.5.5
8.3.6 UK
8.3.6.1 Market estimates and forecast, 2017 - 2030
8.3.6.2 Market estimates and forecast, by product, 2017 - 2030
8.3.6.3 Market estimates and forecast, by source, 2017 - 2030
8.3.6.4 Market estimates and forecast, by application, 2017 - 2030
8.3.7 France
8.3.7.1 Market estimates and forecast, 2017 - 2030
8.3.7.2 Market estimates and forecast, by product, 2017 - 2030
8.3.7.3 Market estimates and forecast, by source, 2017 - 2030
8.3.7.4 Market estimates and forecast, by application, 2017 - 2030
8.3.8 Italy
8.3.8.1 Market estimates and forecast, 2017 - 2030
8.3.8.2 Market estimates and forecast, by product, 2017 - 2030
8.3.8.3 Market estimates and forecast, by source, 2017 - 2030
8.3.8.4 Market estimates and forecast, by application, 2017 - 2030
8.3.9 Russia
8.3.9.1 Market estimates and forecast, 2017 - 2030
8.3.9.2 Market estimates and forecast, by product, 2017 - 2030
8.3.9.3 Market estimates and forecast, by source, 2017 - 2030
8.3.9.4 Market estimates and forecast, by application, 2017 - 2030
8.3.10 Spain
8.3.10.1 Market estimates and forecast, 2017 - 2030
8.3.10.2 Market estimates and forecast, by product, 2017 - 2030
8.3.10.3 Market estimates and forecast, by source, 2017 - 2030
8.3.10.4 Market estimates and forecast, by application, 2017 - 2030
8.3.11 Netherlands
8.3.11.1 Market estimates and forecast, 2017 - 2030
8.3.11.2 Market estimates and forecast, by product, 2017 - 2030
8.3.11.3 Market estimates and forecast, by source, 2017 - 2030
8.3.11.4 Market estimates and forecast, by application, 2017 - 2030
8.3.12 Poland
8.3.12.1 Market estimates and forecast, 2017 - 2030
8.3.12.2 Market estimates and forecast, by product, 2017 - 2030
8.3.12.3 Market estimates and forecast, by source, 2017 - 2030
8.3.12.4 Market estimates and forecast, by application, 2017 - 2030
8.3.13 Belgium
8.3.13.1 Market estimates and forecast, 2017 - 2030
8.3.13.2 Market estimates and forecast, by product, 2017 - 2030
8.3.13.3 Market estimates and forecast, by source, 2017 - 2030
8.3.13.4 Market estimates and forecast, by application, 2017 - 2030
8.4 Asia Pacific
8.4.1 Market estimates and forecast, 2017 - 2030
8.4.2 Market estimates and forecast, by product, 2017 - 2030
8.4.3 Market estimates and forecast, by source, 2017 - 2030
8.4.4 Market estimates and forecast, by application, 2017 - 2030
8.4.5 China
8.4.5.1 Market estimates and forecast, 2017 - 2030
8.4.5.2 Market estimates and forecast, by product, 2017 - 2030
8.4.5.3 Market estimates and forecast, by source, 2017 - 2030
8.4.5.4 Market estimates and forecast, by application, 2017 - 2030
8.4.6 India
8.4.6.1 Market estimates and forecast, 2017 - 2030
8.4.6.2 Market estimates and forecast, by product, 2017 - 2030
8.4.6.3 Market estimates and forecast, by source, 2017 - 2030
8.4.6.4 Market estimates and forecast, by application, 2017 - 2030
8.4.7 Japan
8.4.7.1 Market estimates and forecast, 2017 - 2030
8.4.7.2 Market estimates and forecast, by product, 2017 - 2030
8.4.7.3 Market estimates and forecast, by source, 2017 - 2030
8.4.7.4 Market estimates and forecast, by application, 2017 - 2030
8.4.8 Australia
8.4.8.1 Market estimates and forecast, 2017 - 2030
8.4.8.2 Market estimates and forecast, by product, 2017 - 2030
8.4.8.3 Market estimates and forecast, by source, 2017 - 2030
8.4.8.4 Market estimates and forecast, by application, 2017 - 2030
8.4.9 South Korea
8.4.9.1 Market estimates and forecast, 2017 - 2030
8.4.9.2 Market estimates and forecast, by product, 2017 - 2030
8.4.9.3 Market estimates and forecast, by source, 2017 - 2030
8.4.9.4 Market estimates and forecast, by application, 2017 - 2030
8.4.10 Indonesia
8.4.10.1 Market estimates and forecast, 2017 - 2030
8.4.10.2 Market estimates and forecast, by product, 2017 - 2030
8.4.10.3 Market estimates and forecast, by source, 2017 - 2030
8.4.10.4 Market estimates and forecast, by application, 2017 - 2030
8.4.11 Thailand
8.4.11.1 Market estimates and forecast, 2017 - 2030
8.4.11.2 Market estimates and forecast, by product, 2017 - 2030
8.4.11.3 Market estimates and forecast, by source, 2017 - 2030
8.4.11.4 Market estimates and forecast, by application, 2017 - 2030
8.5 Latin America (LATAM)
8.5.1 Market estimates and forecast, 2017 - 2030
8.5.2 Market estimates and forecast, by product, 2017 - 2030
8.5.3 Market estimates and forecast, by source, 2017 - 2030
8.5.4 Market estimates and forecast, by application, 2017 - 2030
8.5.5 Brazil
8.5.5.1 Market estimates and forecast, 2017 - 2030
8.5.5.2 Market estimates and forecast, by product, 2017 - 2030
8.5.5.3 Market estimates and forecast, by source, 2017 - 2030
8.5.5.4 Market estimates and forecast, by application, 2017 - 2030
8.5.6 Argentina
8.5.6.1 Market estimates and forecast, 2017 - 2030
8.5.6.2 Market estimates and forecast, by product, 2017 - 2030
8.5.6.3 Market estimates and forecast, by source, 2017 - 2030
8.5.6.4 Market estimates and forecast, by application, 2017 - 2030
8.5.7 Mexico
8.5.7.1 Market estimates and forecast, 2017 - 2030
8.5.7.2 Market estimates and forecast, by product, 2017 - 2030
8.5.7.3 Market estimates and forecast, by source, 2017 - 2030
8.5.7.4 Market estimates and forecast, by application, 2017 - 2030
8.6 Middle East & Africa (MEA)
8.6.1 Market estimates and forecast, 2017 - 2030
8.6.2 Market estimates and forecast, by product, 2017 - 2030
8.6.3 Market estimates and forecast, by source, 2017 - 2030
8.6.4 Market estimates and forecast, by application, 2017 - 2030
8.6.5 Saudi Arabia
8.6.5.1 Market estimates and forecast, 2017 - 2030
8.6.5.2 Market estimates and forecast, by product, 2017 - 2030
8.6.5.3 Market estimates and forecast, by source, 2017 - 2030
8.6.5.4 Market estimates and forecast, by application, 2017 - 2030
8.6.6 UAE
8.6.6.1 Market estimates and forecast, 2017 - 2030
8.6.6.2 Market estimates and forecast, by product, 2017 - 2030
8.6.6.3 Market estimates and forecast, by source, 2017 - 2030
8.6.6.4 Market estimates and forecast, by application, 2017 - 2030
8.6.7 South Africa
8.6.7.1 Market estimates and forecast, 2017 - 2030
8.6.7.2 Market estimates and forecast, by product, 2017 - 2030
8.6.7.3 Market estimates and forecast, by source, 2017 - 2030
8.6.7.4 Market estimates and forecast, by application, 2017 - 2030
Chapter 9 Company Profiles
9.1 BASF SE
9.1.1 Business Overview
9.1.2 Financial Data
9.1.3 Product Landscape
9.1.4 SWOT Analysis
9.1.5 Strategic Outlook
9.2 Shandong Yuanlian Chemical Co., Ltd.
9.2.1 Business Overview
9.2.2 Financial Data
9.2.3 Product Landscape
9.2.4 SWOT Analysis
9.2.5 Strategic Outlook
9.3 Omya Kinetik
9.3.1 Business Overview
9.3.2 Financial Data
9.3.3 Product Landscape
9.3.4 SWOT Analysis
9.3.5 Strategic Outlook
9.4 Dow
9.4.1 Business Overview
9.4.2 Financial Data
9.4.3 Product Landscape
9.4.4 SWOT Analysis
9.4.5 Strategic Outlook
9.5 Akzo Noble N.V.
9.5.1 Business Overview
9.5.2 Financial Data
9.5.3 Product Landscape
9.5.4 SWOT Analysis
9.5.5 Strategic Outlook
9.6 Nippon Shokubai Co. Ltd
9.6.1 Business Overview
9.6.2 Financial Data
9.6.3 Product Landscape
9.6.4 SWOT Analysis
9.6.5 Strategic Outlook
9.7 Kemira OYJ
9.7.1 Business Overview
9.7.2 Financial Data
9.7.3 Product Landscape
9.7.4 SWOT Analysis
9.7.5 Strategic Outlook
9.8 Innospec
9.8.1 Business Overview
9.8.2 Financial Data
9.8.3 Product Landscape
9.8.4 SWOT Analysis
9.8.5 Strategic Outlook
9.9 Jungbuzlauer
9.9.1 Business Overview
9.9.2 Financial Data
9.9.3 Product Landscape
9.9.4 SWOT Analysis
9.9.5 Strategic Outlook
9.10 Van Iperen International
9.10.1 Business Overview
9.10.2 Financial Data
9.10.3 Product Landscape
9.10.4 SWOT Analysis
9.10.5 Strategic Outlook
9.11 ADOB
9.11.1 Business Overview
9.11.2 Financial Data
9.11.3 Product Landscape
9.11.4 SWOT Analysis
9.11.5 Strategic Outlook
9.12 Nouryon
9.12.1 Business Overview
9.12.2 Financial Data
9.12.3 Product Landscape
9.12.4 SWOT Analysis
9.12.5 Strategic Outlook

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