Feed Enzymes Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Type (Phytases, Carbohydrases, Proteases), By Livestock (Poultry, Ruminants, Swine, Aquatic Animals, Others), By Form (Dry, Liquid), By Source (Microorganisms, Plants), By Region and Competition 2018-2028
Published Date: February - 2025 | Publisher: MIR | No of Pages: 320 | Industry: Agriculture | Format: Report available in PDF / Excel Format
View Details Buy Now 2890 Download Sample Ask for Discount Request CustomizationFeed Enzymes Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Type (Phytases, Carbohydrases, Proteases), By Livestock (Poultry, Ruminants, Swine, Aquatic Animals, Others), By Form (Dry, Liquid), By Source (Microorganisms, Plants), By Region and Competition 2018-2028
Feed Enzymes Market Size was valued at USD 2.70 billion in 2023. The Feed Enzymes market is projected to grow from USD 2.84 Billion in 2024 to USD 4.14 billion by 2032, exhibiting a compound annual growth rate (CAGR) of 4.85% during the forecast period (2024 - 2032). consumers are switching to prefer organic meat, and increased consumption of feed additives is the key market driver enhancing the market growth.
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In 2021, the compound feed production in South Korea amounted to approximately 19 million tonnes.
Global Feed Enzymes Market is expected to expand during the projected period due to growing compound feed production as increasing demand for animal protein, rising livestock and poultry population, and the adoption of modern animal production practices. Feed enzymes are known to be utilized to improve the quality of animal nutrition as well as enhance the nutritional attributes of animal fodder. Enzymes can be referred to as natural proteins that are secreted by animals as a part of the feed digestion procedure as it provides huge energy and helps to improve starch digestion in monogastric animals. Therefore, the use of feed enzymes in animal feed fuels the growth of the market in the upcoming years.
Growing Demand and Consumption of Livestock-Based Products
Livestock-based products included eggs, dairy goods, and meat products. Consumption of animal products will increase when consumers’ demand for staple foods (starchy meals and other foods with a plant origin) are achieved. Increasing demand for resources to produce animal goods will result from greater use of animal products, competing with the usage of grains for direct human consumption as well as other agricultural products.
For instance, in 2020,
The addition of feed enzymes to the diet of livestock helps in breakdown, digestion, and absorption of those naturally occurring elements like fiber (non-starch polysaccharides) and phytate in various feed ingredients. They not only aid in digestion, but improve the nutrient content of the feed, which results in better energy and nutrient utilization. In addition to increasing milk and meat production at a cheap cost, adding enzyme supplements to the feed of livestock helps to enhance their long-term health and lower their mortality rate. It increases the profit margin of farmers as well as enzymes help to minimize environmental pollution by reducing waste and feed management costs, by improving the digestive health of the animals.
For instance, In 2020, DuPont launched a new phytase enzyme, Axtra PHY GOLD, which is flagged as capable of delivering significant feed cost savings to producers while helping reduce challenges faced during feed production like the environmental impact.
Therefore, increasing demand and consumption of livestock-based products drive the growth of market during the projected period.
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Growing Production of Compound Feed
In the animal agriculture sector, compound feed is frequently utilized since it offers a practical and affordable solution to address the dietary demands of animals. Compound feed production has been steadily increasing due to the growing demand for animal protein, increasing livestock and poultry populations, and the adoption of modern animal production practices. The supply of food globally continues to be heavily dominated by animals. As a result, the role of animal feeds in the entire food chain has increased. The capacity to fulfil the increasing demand for animal protein in the form of eggs, meat, milk, and other animal-based products rests in large part on the steady supply of appropriate, affordable, and secure compound feeds. As a result of the enormous increase in demand for animal products, there is a rising need for new feed supplies, sources, and alternatives. Increasing demand for high quality feed from various industry such as broiler, pig, and the dairy industry, witnesses a substantial and healthy growth which results in growing feed production. This in turn increases the sale and demand of high-quality enzymes from various animal feed producers.
For instance, according to Alltech Agri-Food Outlook 2022, it is estimated that international feed production has increased by 2.3%, to 1.235 billion metric tons of feed produced in 2021.
Moreover, rising compound feed production is benefited by the favorable government regulations which in turn increases the demand for the feed enzymes that can be added in the animal feed to enhance the quality of animal-sourced products.
For instance, in 2021, Department of Animal Husbandry and Dairying (DAHD), Government of India, commenced a training on all aspects of Animal Husbandry Practices including that of animal feed production for packaged animal feed producers.
Additionally, customized compound feed formulations have been created for use as precision nutrition, which can improve animal performance and reduce feed waste. Furthermore, appropriate dietary intensity is one of the costliest feed formulation ingredients in animal diets. Manufacturers are addressing this problem by raising the quality and safety of their products while being cost effective in response to the rising demand for secure and nutrient-rich animal feed. Many feed manufacturers, such as Novozymes, DSM, and BASF SE, are actively using commercial feed enzymes in poultry feeds due to their advantages, such as improved performance and feed utilization, and minimized environmental pollution due to reduced nutrients in manure. As a result, it is becoming a practical and affordable method for increasing animal output for long-term food security.
For instance, according to the International Feed Industry Federation (IFIF), compound feed production has reached 0.9 billion tonnes globally.
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According to IFIF, in 2020, Compound feed production in the USA was more than 215.79 MT.
Phytases will be the Key Type
Phytases are a group of enzymes that hydrolyze the phospho-monoester bonds of phytate that is a salt or ester of phytic acid which is the principal storage form of phosphorus in many plant tissues consisting of 40-90% of phosphorus, occurring in plants, especially cereal grains, and poses nutritional advancement properties in mono-gastric animal feeds. of 40-90% of P as phytate P. Phytase starts its effect by initiating the breakdown of Myo-inositol hexaphosphate (phytate) and subsequently releases the phosphate content to overcome the deficiency of nutrition. Due to unhygienic and inhumane conditions at the farms, poultry, and household facilities their digestive power decreases. Therefore, enzymes like phytase are considered to ensure animal health and increase the overall yield.
For Instance, Noor Enzymes produced BioScour – ACPH a Phytase enzyme for Animal Feed Industry derived from a selected strain of Non-GMO fungal species which help to breakdown Phytic Acid / Phytate present in animal diets composed of plant matter which contains phosphorous bound complexes.
All these factors increase the
Recent Developments
- In March 2023, BASF and Cargill (Provimi) further expand their partnership to offer high-performance enzyme solutions to animal protein producers in South Korea.
- BASF and Cargill offer high-performance enzyme solutions to animal protein producers in the United States in January 2023.
- In November 2022, Kemin Industries has expanded its encapsulation production site in Cavriago, Italy.
- DSM-Novozymes Alliance launches its new generation phytase, HiPhorius which helps poultry producers achieve sustainable and profitable protein production in January 2022.
Market Segmentation
Global Feed Enzymes Market
Key Companies in the Feed Enzymes market include
- BASF SE (Germany)
- I. du Pont de Nemours and Company (U.S.)
- Associated British Foods plc (U.K)
- Koninklijke DSM N.V. (the Netherlands)
- Behn Meyer Holding AG (Germany)
- Adisseo France SAS (France)
- Azelis Holding S.A. (Belgium)
- Novus International Inc. (U.S.)
- Rossari Biotech Ltd. (India)
- Alltech Inc. (U.S.)
Company Profiles
Koninklijke DSM N.V., BASF SE, Bluestar Adisseo Co, Infinita Biotech Private Limited, Antozyme Biotech Pvt Ltd, BioResource International, Inc., Kemin Industries, Inc., Advanced Enzyme Technologies, Novozymes A/S, Huvepharma Inc. are some of the key players of Global Feed Enzymes Market.
Attribute |
Details |
Base Year |
2022 |
Historic Data |
2018 – 2021 |
Estimated Year |
2023 |
Forecast Period |
2024 – 2028 |
Quantitative Units |
Revenue in USD Million, and CAGR for 2018-2022 and 2023-2028 |
Report coverage |
Revenue forecast, company share, competitive landscape, growth factors, and trends |
Segments covered |
Type Livestock Form Source |
Regional scope |
North America, Europe, Asia Pacific, South America, Middle East & Africa |
Country scope |
United States; Mexico; Canada; France; Germany; United Kingdom; Spain; Italy; China; India; South Korea; Japan; Indonesia; Brazil; Argentina; South Africa; Saudi Arabia; UAE |
Key companies profiled |
Koninklijke DSM N.V., BASF SE, Bluestar Adisseo Co, Infinita Biotech Private Limited, Antozyme Biotech Pvt Ltd, BioResource International, Inc., Kemin Industries, Inc., Advanced Enzyme Technologies, Novozymes A/S, Huvepharma Inc. |
Customization scope |
10% free report customization with purchase. Addition or alteration to country, regional & segment scope. |
Pricing and purchase options |
Avail customized purchase options to meet your exact research needs. Explore purchase options |
Delivery Format |
PDF and Excel through Email (We can also provide the editable version of the report in PPT/Word format on special request) |
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Table of Content
Table of Contents
Chapter 1. Methodology and Scope
1.1. Research Methodology
1.1.1 Initial Data Exploration
1.1.2 Statistical Modelling and Forecast
1.1.3 Industry Insights and Validation
1.2. Data Sources
Chapter 2. Executive Summary
2.1. Feed Enzymes Market Synopsis, 2023-2030
2.1.1 Business Trends
2.1.2 Product Type Trends
2.1.3 Product Livestock Trends
2.1.4 Product Form Trends
Chapter 3 Feed Enzymes Market Insights
3.1 Industry Segmentation
3.2 Industry Size and Forecast
3.3 Industry Ecosystem Analysis
3.4 Industry Impact forces
3.4.1 Growth Drivers
3.4.1.1 Increasing demand of animal-based products
3.4.1.2 Increasing demand for feed enzymes in animal food
3.4.1.3 Rising livestock health awareness among the population
3.4.2 Industry Pitfalls & Challenges
3.4.2.1 High processing cost involved in feed enzymes synthesis
3.5 Growth Potential Analysis
3.6 Company Market Share Analysis, 2016
3.7 Porter’s Analysis
3.8 PESTEL Analysis
Chapter 4 Feed Enzymes Market by Type Insights
4.1 Global Feed Enzymes Market Volume Share by Type, 2023-2030
4.1.1 Protease
4.1.1.1 Market Estimates & Forecast, 2023-2030
4.1.2 Phytase
4.1.2.1 Market Estimates & Forecast, 2023-2030
4.1.3 Others
4.1.3.1 Market Estimates & Forecast, 2023-2030
Chapter 5 Feed Enzymes Market by Livestock Insights
5.1 Global Feed Enzymes Market Volume Share by Livestock, 2023 & 2030
5.1.1 Swine
5.1.1.1 Market Estimates & Forecast, 2023– 2030
5.1.2 Poultry
5.1.2.1 Market Estimates & Forecast, 2023 – 2030
5.1.3 Ruminants
5.1.3.1 Market Estimates & Forecast, 2023 – 2030
5.1.4 Aquatic Animals
5.1.4.1 Market Estimates & Forecast, 2023 – 2030
5.1.5 Others
5.1.5.1 Market Estimates & Forecast, 2023 – 2030
Chapter 6 Feed Enzymes Market by Form Insights
6.1 Global Feed Enzymes Market Volume Share by Form, 2023 & 2030
6.1.1 Dry
6.1.1.1 Market Estimates & Forecast, 2023– 2030
6.1.2 Liquid
6.1.2.1 Market Estimates & Forecast, 2023 – 2030
6.1.3 Others
6.1.3.1 Market Estimates & Forecast, 2023 – 2030
Chapter 7 Feed Enzymes Market Regional Insights
7.1 Feed Enzymes Market Volume Share by Region, 2023 & 2030.
7.2 North America
7.2. A Market Estimates & Forecast, 2023-2030
7.2. B Market Estimates & Forecast, by Type, 2023-2030
7.2. C Market Estimates & Forecast, by Livestock, 2023-2030
7.2. D Market Estimates & Forecast, by Form, 2023-2030
7.2.1 U.S.
7.2.1.1 Market Estimates & Forecast, 2023-2030
7.2.1.2 Market Estimates & Forecast, by Type, 2023-2030
7.2.1.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.2.1.4 Market Estimates & Forecast, by Form, 2023-2030
7.2.2 Canada
7.2.2.1 Market Estimates & Forecast, 2023-2030
7.2.2.2 Market Estimates & Forecast, by Type, 2023-2030
7.2.2.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.2.2.4 Market Estimates & Forecast, by Form, 2023-2030
7.2.3 Mexico
7.2.3.1 Market Estimates & Forecast, 2023-2030
7.2.3.2 Market Estimates & Forecast, by Type, 2023-2030
7.2.3.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.2.3.4 Market Estimates & Forecast, by Form, 2023-2030
7.3 Europe
7.3. A Market Estimates & Forecast, 2023-2030
7.3. B Market Estimates & Forecast, by Type, 2023-2030
7.3. C Market Estimates & Forecast, by Livestock, 2023-2030
7.3. D Market Estimates & Forecast, by Form, 2023-2030
7.3.1 Germany
7.3.1.1 Market Estimates & Forecast, 2023-2030
7.3.1.2 Market Estimates & Forecast, by Type, 2023-2030
7.3.1.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.3.1.4 Market Estimates & Forecast, by Form, 2023-2030
7.3.2 U.K
7.3.2.1 Market Estimates & Forecast, 2023-2030
7.3.2.2 Market Estimates & Forecast, by Type, 2023-2030
7.3.2.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.3.2.4 Market Estimates & Forecast, by Form, 2023-2030
7.3.3 France
7.3.3.1 Market Estimates & Forecast, 2023-2030
7.3.3.2 Market Estimates & Forecast, by Type, 2023-2030
7.3.3.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.3.3.4 Market Estimates & Forecast, by Form, 2023-2030
7.3.4 Italy
7.3.4.1 Market Estimates & Forecast, 2023-2030
7.3.4.2 Market Estimates & Forecast, by Type, 2023-2030
7.3.4.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.3.4.4 Market Estimates & Forecast, by Form, 2023-2030
7.4 Asia Pacific
7.4. A Market Estimates & Forecast, 2023-2030
7.4. B Market Estimates & Forecast, by Type, 2023-2030
7.4. C Market Estimates & Forecast, by Livestock, 2023-2030
7.4. D Market Estimates & Forecast, by Form, 2023-2030
7.4.1 China
7.4.1.1 Market Estimates & Forecast, 2023-2030
7.4.1.2 Market Estimates & Forecast, by Type, 2023-2030
7.4.1.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.4.1.4 Market Estimates & Forecast, by Form, 2023-2030
7.4.2 India
7.4.2.1 Market Estimates & Forecast, 2023-2030
7.4.2.2 Market Estimates & Forecast, by Type, 2023-2030
7.4.2.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.4.2.4 Market Estimates & Forecast, by Form, 2023-2030
7.4.3 Japan
7.4.3.1 Market Estimates & Forecast, 2023-2030
7.4.3.2 Market Estimates & Forecast, by Type, 2023-2030
7.4.3.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.4.3.4 Market Estimates & Forecast, by Form, 2023-2030
7.5 RoW
7.5.1 Market Estimates & Forecast, 2023-2030
7.5.2 Market Estimates & Forecast, by Type, 2023-2030
7.5.3 Market Estimates & Forecast, by Livestock, 2023-2030
7.5.4 Market Estimates & Forecast, by Form 2023-2030
Chapter 8 Competitor Profile
8.1 BASF SE (Germany)
8.1.1 Business Overview
8.1.2 Financial Data
8.1.3 Product Landscape
8.1.4 Key Developments
8.1.5 Business Strategy
8.1.6 SWOT Analysis
8.2 E. I. du Pont de Nemours and Company (U.S.)
8.2.1 Business Overview
8.2.2 Financial Data
8.2.3 Product Landscape
8.2.4 Key Developments
8.2.5 Business Strategy
8.2.6 SWOT Analysis
8.3 Associated British Foods plc (U.K)
8.3.1 Business Overview
8.3.2 Financial Data
8.3.3 Product Landscape
8.3.4 Key Developments
8.3.5 Business Strategy
8.3.6 SWOT Analysis
8.4 Koninklijke DSM N.V. (the Netherlands)
8.4.1 Business Overview
8.4.2 Financial Data
8.4.3 Product Landscape
8.4.4 Key Developments
8.4.5 Business Strategy
8.4.6 SWOT Analysis
8.5 Behn Meyer Holding AG (Germany)
8.5.1 Business Overview
8.5.2 Financial Data
8.5.3 Product Landscape
8.5.4 Key Developments
8.5.5 Business Strategy
8.5.6 SWOT Analysis
8.6 Adisseo France SAS (France)
8.6.1 Business Overview
8.6.2 Financial Data
8.6.3 Product Landscape
8.6.4 Key Developments
8.6.5 Business Strategy
8.6.6 SWOT Analysis
8.7 Azelis Holding S.A. (Belgium)
8.7.1 Business Overview
8.7.2 Financial Data
8.7.3 Product Landscape
8.7.4 Key Developments
8.7.5 Business Strategy
8.7.6 SWOT Analysis
8.8 Novus International, Inc. (U.S.)
8.8.1 Business Overview
8.8.2 Financial Data
8.8.3 Product Landscape
8.8.4 Key Developments
8.8.5 Business Strategy
8.8.6 SWOT Analysis
8.9 Rossari Biotech Ltd. (India)
8.9.1 Business Overview
8.9.2 Financial Data
8.9.3 Product Landscape
8.9.4 Key Developments
8.9.5 Business Strategy
8.9.6 SWOT Analysis
8.10 Alltech, Inc. (U.S.)
8.10.1 Business Overview
8.10.2 Financial Data
8.10.3 Product Landscape
8.10.4 Key Developments
8.10.5 Business Strategy
8.10.6 SWOT Analysis
List Tables Figures
List of Tables and Figures
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