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Industrial Enzymes Market

Report Code FB 2277
Published in Jun, 2025, By MarketsandMarkets™
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Industrial Enzymes Market by Type (Carbohydrases, Proteases, Lipases, Polymerases, and Nucleases), Application (Food & Beverages, Bioethanol, Feed, Detergents, Wastewater, Soil, and Oil Treatment), Source, Formulation, and Region - Global Forecast to 2030

Overview

The industrial enzymes market is projected to expand from USD 8.42 billion in 2025 to USD 12.01 billion by 2030, at a CAGR of 7.3% during the forecast period. The industrial enzymes market worldwide is set for fast growth due to the rising need for sustainable and efficient production processes in most industries. Enzymes, being biological catalysts, provide environmentally friendly substitutes for conventional chemical processes, which help industries decrease energy usage, lower waste generation, and improve product quality. This change is especially seen in industries such as food & beverage, biofuels, textiles, and wastewater treatment, wherein enzymes are responsible for maximizing operations and complying with strict environmental laws. Biotechnology and enzyme engineering have further extended the scope of industrial enzymes. New technologies like protein engineering and metagenomics have facilitated the creation of more stable, specific, and efficient enzymes in response to the unique requirements of various industrial applications. In addition, the application of machine learning and artificial intelligence in bioprocess design is accelerating enzyme production and process optimization and driving the growth curve of the market.

As companies continue to focus on sustainability and operational effectiveness, the use of industrial enzymes is likely to increase, placing the market for strong growth in the next few years.

Industrial Enzymes Market

Attractive Opportunities in the Industrial Enzymes Market

ASIA PACIFIC

Rising industrialization, supportive biotech policies, and growing demand for clean processing in food, textiles, and wastewater sectors present strong opportunities for enzyme manufacturers to localize production and expand market presence.

The development of thermostable and pH-tolerant enzymes enables broader application in harsh industrial environments, such as pulp, paper, and oil treatment.

Expansion in bioethanol production using enzymes as countries adopt renewable energy targets and shift toward low-emission fuel alternatives.

Environmental regulations and industrial expansion in emerging economies and urban regions are driving the rising demand for enzyme-based wastewater treatment.

The increased use of enzymes in textile processing for chemical-free bleaching, desizing, and finishing aligns with sustainable fashion trends.

Global Industrial Enzymes Market Dynamics

DRIVERS:Shift toward sustainable and regulatory-compliant manufacturing

One of the key propellants in the market for industrial enzymes is the increasing need for ecologically friendly and regulation-acceptable processes of production. Conventional chemical processing in textiles, pulp & paper, and detergents industries tends to use high energy, toxic effluents, and poses occupational risk. Enzymes provide a bio-alternative that minimizes water consumption, energy inputs, and chemical residues. For instance, in the textile sector, cellulases and amylases are used to displace bleaching chemicals and alkali scouring agents, lowering the effluent load as well as enhancing the quality of fabrics. In detergent formulations, too, enzymes enable effective removal of stains with lower temperatures, resulting in considerable savings on energy. Rules by the European Chemicals Agency (ECHA) and India's National Green Tribunal (NGT) are supporting the move toward greener inputs. With carbon neutrality and ESG reporting becoming business necessities, industrial enzymes present a make-or-break pathway for sustainable transformation.

RESTRAINTS: High production costs and technical barriers in scale-up

The high cost of producing and scaling up the manufacture of enzymes is a major constraint in the industrial enzymes market. It takes investment in controlled fermentation systems, purification facilities, and cold-chain logistics to ensure the stability of enzymes when manufactured at industrial scale. The cost of inputs like fermentation substrates and microbial strain development also contributes to the cost of production. For example, proteases and lipases employed in detergent or food processing must be active over temperature and pH fluctuations, requiring sophisticated formulation, which increases expense. Additionally, SMEs in developing countries generally have no access to capital and technical know-how to embrace enzyme-based technologies. The cost-consciousness of industries such as textiles and wastewater treatment further limits adoption. Although innovations like solid-state fermentation (SSF) and recombinant DNA technology are helping reduce costs, the price-performance ratio remains a constraint, particularly in low-margin industries.

 

OPPORTUNITIES: Growth in wastewater treatment and environmental remediation

The increasing need for environmentally friendly wastewater treatment solutions presents a significant opportunity for industrial enzyme producers. With fast industrialization, urbanization, and tighter discharge controls, particularly in Asia Pacific and Europe, enzymes are becoming highly regarded as powerful instruments for biological treatment. Enzymes like proteases, lipases, and cellulases are capable of degrading organic material, fats, oils, and fibers effectively, and lowering Chemical Oxygen Demand (COD) and Biological Oxygen Demand (BOD). One of the prime examples is the application of multi-enzyme mixes in food processing and textile industries to dispose of high-strength effluents. In May 2025, scientists at the National Institute of Technology (NIT) Rourkela invented an economical enzymatic wastewater treatment system that can run in natural sunlight with over 82% COD removal using reusable photocatalytic beads. Such innovations are a sign of increasing institutional and industrial desire for enzymes for environmental usage, presenting new markets for enzyme suppliers.

CHALLENGES: Ensuring enzyme stability in harsh industrial environments

Maintaining the stability and activity of the enzyme in extreme operating conditions is perhaps the most vital challenge in the industrial deployment of enzymes. Industrial operations in industries such as bioethanol, pulp & paper, and oil treatment involve high temperatures, alkalinity or acidity, and mechanical agitation, conditions that can denature enzymes. For example, enzymes utilized in the production of bioethanol need to withstand heat and shear stress during saccharification. Although thermostable enzymes have been made available—e.g., Novozymes' Termamyl® family for starch liquefaction—they tend to be application-specific and premium-priced. Moreover, the performance of enzymes can vary depending on the source of substrate, water hardness, or contaminant level, resulting in erratic outcomes. Overcoming this will necessitate ongoing investment in protein engineering, immobilization methods, and enzyme formulation to match industrial process variability. Until these innovations are widely accepted and affordable, enzyme stability is a technical obstacle to widespread adoption.

Global Industrial Enzymes Market Ecosystem Analysis

This image illustrates the dynamic ecosystem of the enzyme industry, highlighting key stakeholders across the value chain. Primary enzyme application companies such as Kraft Heinz (US), P&G (US), Pfizer (US), Kellogg’s (US), AB InBev (Belgium), and L'Oréal (France) represent major players leveraging enzymes in food, pharma, and consumer goods. Key enzyme manufacturers like BASF (Germany), IFF (US), DSM-Firmenich (Netherlands/Switzerland), AB Enzymes (Germany), and Kerry (Ireland) drive innovation and supply. Regulatory bodies and associations, including the FDA, ISO, WHO, and USDA, ensure safety and compliance. Startups like Alltech (US) and Brandon Biocatalyst (Canada) are emerging as agile innovators in this fast-growing industry.

Top Companies in Industrial Enzymes Market

Note: The above diagram only shows the representation of the Industrial Enzymes Market ecosystem; it is not limited to the companies represented above.
Source: Secondary Research and MarketsandMarkets Analysis

 

The proteases segment is projected to hold a significant market share in the industrial enzymes market during the forecast period.

Proteases are now the most rapidly expanding enzyme form in industrial enzymes, driven by the broad functionality, scalability, and high demand for them across various industries. These enzymes catalyze protein cleavage into peptides and amino acids, which makes them extremely efficient for use in detergents, the food industry, leather, and feed. Proteases are essential in the detergent industry for cleaning protein-based stains (blood, food, sweat) at low wash temperatures, which promotes energy-saving laundry compositions. In the feed industry, proteases increase nutrient digestibility and lower nitrogen excretion, consistent with sustainable livestock farming. In food processing, they tenderize meat and alter protein-rich ingredients for enhanced texture and digestibility.

One of the most significant developments came in January 2024, when Novonesis (formerly known as Novozymes) introduced a next-generation protease enzyme for laundry detergents that delivers performance in cold water and shorter cycle washing. This innovation is backing the growing demand for low-impact cleaning products and demonstrates how proteases are helping industries achieve both performance and sustainability objectives.

The textile and leather industries hold a significant market share in the industrial application of enzymes.

Industrial enzymes play a vital role in the textile and leather industries, facilitating cleaner, more efficient, and sustainable use of resources. Examples of textiles involve bio-scouring using cellulases and amylases that are environmentally friendly methods to strip natural impurities in cotton in the (Luthra et al., 2019) from USDA ARS. Their method requires less water than conventional methods, does away with the use of strong alkali to effect scouring, and reduces environmental effects. Nonconventional enzymes like proteases, lipases, and laccases are employed in leather at different stages of processing (pickling, tanning, degreasing) to substitute conventional chemicals or reduce their consumption. A targeted study by the US EPA demonstrated that enzymatic tanning using transglutaminase and laccase/tyrosinase can effectively process goat hides into leather while reducing toxic effluent burdens on the environment. These and other alternative enzyme-based processes can enhance throughput and quality of products while minimizing water and chemical consumption. Enzymes are thus a solution to meet sustainability targets and regulatory challenges. Enzyme immobilization research provides stability solutions for re-use and has made continued use and adoption possible in these industries.

Asia Pacific is projected to remain the largest market for enzymes during the forecast period.

Asia Pacific is the leading region of the industrial enzymes market, fueled by industrialization, population growth, and growing manufacturing industries. Regions like China, India, Japan, and Southeast Asian countries are experiencing robust growth in enzyme-consuming industries like food and beverages, textiles, feed, bioethanol, and water treatment. Increasing consumer demand for processed foods, dairy products, and drinks is driving enzyme use in food applications, while increasing environmental concerns are promoting the use of enzyme-based solutions in wastewater and effluent treatment.

Moreover, regional governments are encouraging biotechnology and clean manufacturing processes. India's BioE3 policy (instituted during August 2024) and China's industrial biotechnology plans are enhancing local enzyme manufacturing and R&D capabilities. The presence of inexpensive labor, available raw materials, and increasing foreign investment further increases Asia Pacific’s position as both a production and consumption center.

One recent instance is Novus International's March 2024 purchase of BioResource International, which was intended to develop enzyme-based feed solutions in Asia. The action points toward the strategic attention of the world leaders toward the industrial and agricultural base developing in the region. All these factors make Asia Pacific the most impactful and rapidly developing area for the global industrial enzymes market. A number of high-profile players have a leading influence on the Asia Pacific market for industrial enzymes, drawing on regional capabilities in biotechnology, manufacturing, and demand. Novozymes A/S, part of the Novozymes Group, has a strong presence with sites for manufacturing and R&D in China, India, and Southeast Asia, targeting food processing, biofuels, and detergent enzymes. Amano Enzyme Inc., with its base in Japan, offers microbial enzymes for food, beverage, and pharmaceutical uses and has extended its reach throughout Asia to cater to increasing demand. Advanced Enzyme Technologies Ltd., India-based, is a prominent player providing enzyme solutions in animal nutrition, food processing, and wastewater treatment with a robust export network within the Asia Pacific region. Moreover, firms such as AB Enzymes and BASF SE have set up major operations in the region, supporting multiple industrial requirements. The strategic investments by these firms in regional manufacturing, R&D, and partnerships highlight their central function in propelling the growth and advancement of the industrial enzymes market in Asia Pacific.

LARGEST MARKET SHARE IN 2024
INDIA: FASTEST-GROWING MARKET IN THE REGION
Industrial Enzymes Market by region

Recent Developments of Industrial Enzymes Market

  • In June 2025, Novonesis acquired DSM-Firmenich’s stake in the Feed Enzymes Alliance for €1.5 billion, strengthening its position in enzyme-based animal nutrition. This strategic acquisition expands Novonesis’s enzyme portfolio and enhances its control over product innovation, distribution, and global market access in the industrial feed enzyme space.
  • In May 2025, Novozymes launched a next-generation enzyme range for cold-water detergent formulations, enabling effective stain removal at lower temperatures. These enzymes help reduce energy usage in laundry applications, supporting sustainability goals and consumer demand for eco-efficient cleaning products in both developed and emerging markets.
  • In May 2025, BASF’s enzyme research team in San Diego, led by Dr. Melissa Scranton, announced new R&D focus areas, including high-performance enzymes for cleaning products and animal nutrition. This initiative aims to deliver more sustainable enzyme-based formulations aligned with industrial decarbonization trends.
  • In July 2024, BASF, in collaboration with the University of Graz and the Austrian Research Centre of Industrial Biotechnology, developed a computer-assisted enzyme optimization model, accelerating the design of enzymes with improved performance and stability. This innovation supports scalable, resource-efficient biocatalytic production in industrial settings.

Key Market Players

List of Top Industrial Enzymes Market Companies

The Industrial Enzymes Market is dominated by a few major players that have a wide regional presence. The major players in the Industrial Enzymes Market are

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Scope of the Report

Report Attribute Details
Market size available for years 2025–2030
Base year considered 2024
Forecast period 2025–2030
Forecast units Value (USD)
Segments Covered By Type, By Source, By Application, By Formulation
Regions covered North America, Europe, Asia Pacific, South America, and RoW

Key Questions Addressed by the Report

What is the size of the industrial enzymes market in 2030?

The industrial enzymes market is estimated to be USD 12.01 billion by 2030. This is driven by the growing adoption of enzymes in industries such as food processing, detergents, bioethanol, and wastewater treatment, helped by the growing need for sustainable and cost-effective industrial processes that substitute traditional chemical processes.

What is the anticipated CAGR during 2025-2030 for the industrial enzymes market?

The industrial enzymes market is anticipated to grow at a CAGR of 7.3% from 2025 to 2030. This growth is fueled by the worldwide trend toward environmentally friendly production, backed by innovation in stability, efficiency, and increased usage across emerging markets and regulated industrial applications.

What type of enzyme is developing the fastest in industrial use?

Proteases are developing the fastest, experiencing heightened demand for use in detergents, feed, and food processing. Their capacity to effectively degrade proteins under different conditions, combined with advancements in enzyme engineering, renders them extremely desirable for both energy reduction and increased product performance in industry.

Why is Asia Pacific the fastest-growing region in the industrial enzymes market?

Asia Pacific takes the lead with its growing food, textile, and biofuel industries, combined with favorable government initiatives and growing environmental concerns. China and India are investing in domestic enzyme manufacturing and R&D, and the low cost of manufacturing and growing demand for sustainable methods drive growth in the region.

What application makes the biggest contribution to the market for industrial enzymes?

The largest contribution comes from the food & beverage sector, which applies enzymes to baking, brewing, dairy processing, and juice clarification. Enzymes enable consistency of product, shelf life extension, and facilitation of clean-label manufacturing to respond to increasing consumer demands for natural, high-quality, and process-effective foods.

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Table of Contents

Exclusive indicates content/data unique to MarketsandMarkets and not available with any competitors.

TITLE
PAGE NO
INTRODUCTION
1
  • 1.1 STUDY OBJECTIVES
  • 1.2 MARKET DEFINITION
  • 1.3 STUDY SCOPE
    MARKET SEGMENTATION
    INCLUSIONS & EXCLUSIONS
    REGIONS COVERED
    YEARS CONSIDERED
  • 1.4 UNIT CONSIDERED
    CURRENCY/ VALUE UNIT
    VOLUME UNIT
  • 1.5 STAKEHOLDERS
RESEARCH METHODOLOGY
2
  • 2.1 RESEARCH DATA
    SECONDARY DATA
    - KEY DATA FROM SECONDARY SOURCES
    PRIMARY DATA
    - KEY DATA FROM PRIMARY SOURCES
    - KEY INSIGHTS FROM INDUSTRY EXPERTS
    - BREAKDOWN OF PRIMARY INTERVIEWS
    - BOTTOM-UP APPROACH
  • 2.2 MARKET SIZE ESTIMATIONS
    - TOP-DOWN APPROACH
  • 2.3 DATA TRIANGULATION
    - ASSUMPTIONS OF THE STUDY
  • 2.4 RESEARCH ASSUMPTIONS
  • 2.5 LIMITATIONS AND RISK ASSESSMENT
EXECUTIVE SUMMARY
3
PREMIUM INSIGHTS
4
MARKET OVERVIEW
5
  • 5.1 INTRODUCTION
  • 5.2 MACROECONOMIC OUTLOOK
  • 5.3 MARKET DYNAMICS
    DRIVERS
    RESTRAINTS
    OPPORTUNITIES
    CHALLENGES
  • 5.4 IMAPCT OF GEN AI ON INDUSTRIAL ENZYMES MARKET
    INTRODUCTION
    USE OF GEN AI IN INDUSTRIAL ENZYMES MARKET
    CASE STUDY ANALYSIS
    IMPACT ON THE INDUSTRIAL ENZYMES MARKET
    ADJACENT ECOSYSTEM WORKING ON GEN AI
INDUSTRY TRENDS
6
  • 6.1 OVERVIEW
  • 6.2 VALUE CHAIN ANALYSIS
  • 6.3 SUPPLY CHAIN ANALYSIS
  • 6.4 TECHNOLOGY ANALYSIS
    KEY TECHNOLOGIES
    - ENZYME ENGINEERING AND OPTIMIZATION
    - DIRECTED EVOLUTION PLATFORMS
    SUPERCRITICAL COMPLEMENTARY TECHNOLOGIES
    - AI-DRIVEN PROTEIN MODELING TOOLS
    - HIGH-THROUGHPUT SCREENING SYSTEMS
    ADJACENT TECHNOLOGIES
    - SYNTHETIC BIOLOGY FOR METABOLIC PATHWAYS
  • 6.5 PATENTS ANALYSIS
    LIST OF MAJOR PATENTS PERTAINING TO THE MARKET
  • 6.6 PORTER’S FIVE FORCE ANALYSIS
  • 6.7 TRENDS/DISRUPTIONS IMPACTING THE CUSTOMER’S BUSINESS
  • 6.8 TRADE ANALYSIS
  • 6.9 PRICING ANALYSIS
    INDICATIVE PRICE TREND OF KEY PLAYERS, PRODUCT TYPE
    INDICATIVE PRICE TREND, BY SOURCE
    INDICATIVE PRICE TREND, BY REGION
    ECOSYSTEM ANALYSIS/ MARKET MAP
    - DEMAND SIDE
    - SUPPLY SIDE
    TARIFF AND REGULATORY LANDSCAPE
    - TARIFF RELATED TO JUICE PRODUCTS
    - REGULATORY BODIES, GOVERNMENT AGENCIES & OTHER ORGANISATIONS
    - KEY REGULATIONS
    IMPACT OF 2025 US TARIFFS
    - KEY TARIFF RATES ON JUICE PRODUCTS
    - PRICE IMPACT ANALYSIS
    - IMPACT ON COUNTRY/REGION
    - IMPACT ON END-USE INDUSTRIES
    KEY STAKEHOLDERS AND BUYING CRITERIA
    - KEY STAKEHOLDERS IN THE BUYING PROCESS
    - BUYING CRITERIA
    PORTER’S FIVE FORCES ANALYSIS
    - INTENSITY OF COMPETITIVE RIVALRY
    - THREAT OF NEW ENTRANTS
    - THREAT OF SUBSTITUTES
    - BARGAINING POWER OF SUPPLIERS
    - BARGAINING POWER OF BUYERS
    CASE STUDY ANALYSIS
    KEY CONFERENCES & EVENTS IN 2025-2026
    INVESTMENT AND FUNDING SCENARIO 
INDUSTRIAL ENZYMES MARKET, BY TYPE
7
  • 7.1 INTRODUCTION
  • 7.2 CARBOHYDRASES
  • 7.3 PROTEASES
  • 7.4 LIPASE
  • 7.5 POLYMERASES & NUCLEASES
  • 7.6 OTHERS
INDUSTRIAL ENZYMES MARKET, BY SOURCE
8
  • 8.1 INTRODUCTION
  • 8.2 MICROORGANISM
  • 8.3 PLANT
  • 8.4 ANIMAL
INDUSTRIAL ENZYMES MARKET, BY APPLICATION
9
  • 9.1 INTRODUCTION
  • 9.2 FOOD & BEVERAGES
    MEAT PROCESSING PRODUCTS
    DAIRY PRODUCTS
    BEVERAGES
    BAKERY & CONFECTIONERY PRODUCTS
    NUTRACEUTICALS
    OTHER FOOD & BEVERAGES
  • 9.3 BIOETHANOL
  • 9.4 TEXTILES & LEATHER
  • 9.5 DETERGENTS
  • 9.6 PAPER & PULP
  • 9.7 WASTE WATER TREATMENT
  • 9.8 FEED
  • 9.9 SOIL TREATMENT
    OIL TREATMENT
    OTHERS
    INDUSTRIAL ENZYMES MARKET, FORMULATION
INDUSTRIAL ENZYMES MARKET, FORMULATION
10
  • 10.1 INTRODUCTION
  • 10.2 LYOPHILIZED POWDER
  • 10.3 LIQUID
  • 10.4 DRY
INDUSTRIAL ENZYMES MARKET, BY REGION
11
  • 11.1 INTRODUCTION
  • 11.2 NORTH AMERICA
    US
    CANADA
    MEXICO
  • 11.3 EUROPE
    UK
    GERMANY
    FRANCE
    ITALY
    SPAIN
    DENMARK
    NETHERLANDS
    REST OF EUROPE
  • 11.4 ASIA PACIFIC
    CHINA
    JAPAN
    INDIA
    AUSTRALIA & NEW ZEALAND
    SOUTH KOREA
    REST OF ASIA PACIFIC
  • 11.5 SOUTH AMERICA
    BRAZIL
    ARGENTINA
    REST OF SOUTH AMERICA
  • 11.6 REST OF THE WORLD
    AFRICA
    MIDDLE EAST
COMPETITIVE LANDSCAPE
12
  • 12.1 INTRODUCTION
  • 12.2 KEY PLAYER'S STRATEGIES/RIGHT TO WIN, 2021-2024
  • 12.3 REVENUE ANALYSIS, 2019-2024
  • 12.4 MARKET SHARE ANALYSIS, 2024
    MARKET RANKING ANALYSIS, 2024
  • 12.5 BRAND/ PRODUCT COMPARISON
  • 12.6 COMPANY VALUATION AND FINANCIAL METRICS
  • 12.7 GLOBAL SNAPSHOT OF KEY MARKET PARTICIPANTS
  • 12.8 COMPANY EVALUATION MATRIX: KEY PLAYERS, 2024
    STARS
    EMERGING LEADERS
    PERVASIVE PLAYERS
    PARTICIPANTS
    COMPANY FOOTPRINT: KEY PLAYER, 2024
    - COMPANY FOOTPRINT
    - REGION FOOTPRINT
    - TYPE FOOTPRINT
    - APPLICATION FOOTPRINT
  • 12.9 COMPANY EVALUATION MATRIX: START-UP/SME, 2024
    PROGRESSIVE COMPANIES
    RESPONSIVE COMPANIES
    DYNAMIC COMPANIES
    STARTING BLOCKS
    COMPETITIVE BENCHMARKING: START-UPS. SMES, 2024
    - DETAILED LIST OF KEY STARTUPS/SME
    - COMPETITIVE BENCHMARKING OF KEY STARTUPS/SME
    COMPETITIVE SCENARIO AND TRENDS
    - NEW PRODUCT LAUNCH
    - DEALS
    - EXPANSIONS
    - OTHER DEVELOPMENTS
COMPANY PROFILES
13
  • 13.1 KEY PLAYERS
    BASF SE
    - COMPANY OVERVIEW
    - OPERATIONAL BUSINESS OVERVIEW
    - PRODUCT PORTFOLIO
    - RECENT DEVELOPMENTS
    - MNM VIEW
    INTERNATIONAL FLAVORS & FRAGRANCES INC.
    DSM-FIRMENICH
    AB ENZYMES
    NOVOZYMES A/S
    KERRY GROUP PLC.
    DYADIC INTERNATIONAL INC
    ADVANCED ENZYME TECHNOLOGIES
    AUMGENE BIOSCIENCES
    - AMANO ENZYME INC
    - F. HOFFMANN-LA ROCHE LTD
    - CODEXIS, INC.
    - SANOFI
    - MERCK KGAA
    - ADISSEO
  • 13.2 OTHER PLAYERS
    LESAFFRE CORPORATION
    ENZYME SOLUTIONS
    ENZYMATIC DEINKING TECHNOLOGIES, LLC
    CREATIVE ENZYMES
    TEX BIOSCIENCES (P) LTD.
    DENYKEM
    METGEN
    BIOVET S.A.
    BIOCATALYSTS
    - ALLTECH
APPENDIX
14
  • 14.1 DISCUSSION GUIDE
  • 14.2 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL
  • 14.3 AVAILABLE CUSTOMIZATIONS
  • 14.4 RELATED REPORTS

The study involved two major approaches in estimating the current size of the Industrial enzymes market. Exhaustive secondary research was done to collect information on the market, peer, and parent markets. The next step was to validate these findings, assumptions, and sizing with industry experts across the value chain through primary research. Both top-down and bottom-up approaches were employed to estimate the complete market size. After that, market breakdown and data triangulation were used to estimate the market size of segments and subsegments.

Secondary Research

This research study involved the extensive use of secondary sources—directories and databases such as Bloomberg Businessweek and Factiva—to identify and collect information useful for a technical, market-oriented, and commercial study of the market.

In the secondary research process, various sources, such as company annual reports, press releases, investor presentations, white papers, food journals, certified publications, articles from recognized authors, directories, and databases, were used to identify and collect information.

Secondary research was mainly used to obtain key information about the industry’s supply chain, the total pool of key players, and market classification and segmentation as per the industry trends to the bottom-most level, regional markets, and key developments from both market- and technology-oriented perspectives.

Primary Research

Extensive primary research was conducted after obtaining information regarding the Industrial enzymes market scenario through secondary research. Several primary interviews were conducted with market experts from both the demand and supply sides across major countries of North America, Europe, Asia Pacific, South America, and the Rest of the World. Primary data was collected through questionnaires, emails, and telephonic interviews. The primary sources from the supply side included various industry experts, such as Chief Experience Officers (CXOs), Vice Presidents (VPs), directors from business development, marketing, research, and development teams, and key opinion leaders. Primary interviews were conducted to gather insights such as market statistics, data on revenue collected from the products and services, market breakdowns, market size estimations, market forecasting, and data triangulation. Primary research provided valuable insights into various trends related to enzyme types, sources, applications, formulations, and regions. Stakeholders from the demand side, including representatives from research institutions, universities, and third-party vendors, were interviewed to gain a better understanding of the buyers' perspectives on these services. This included their current usage of enzymes and their business outlook, which will ultimately impact the overall market.

Industrial Enzymes Market Size, and Share

Note: The three tiers of the companies are defined based on their total revenues in 2023 or 2024, as per
the availability of financial data: Tier 1: Revenue > USD 1 billion; Tier 2: USD 100 million = Revenue = USD
1 billion; Tier 3: Revenue < USD 100 million.

To know about the assumptions considered for the study, download the pdf brochure

COMPANY NAME

DESIGNATION

Novozymes A/S (Denmark)

R&D Expert

Kerry Group plc. (Ireland)

Sales Manager

Dyadic International Inc (US)

Manager

Advanced Enzyme Technologies (India)

Sales Manager

Aumgene Biosciences (India)

Marketing Manager

Market Size Estimation

Both the top-down and bottom-up approaches were used to estimate and validate the total size of the Industrial enzymes market. These approaches were also used extensively to determine the size of various subsegments in the market. The research methodology used to estimate the market size includes the following details:

  • The key players in the industry and the overall markets were identified through extensive secondary research.
  • All shares, splits, and breakdowns were determined using secondary sources and verified through primary sources.
  • All possible parameters that affect the market covered in this research study were accounted for, viewed in extensive detail, verified through primary research, and analyzed to obtain final quantitative and qualitative data.
  • The research included the study of reports, reviews, and newsletters of top market players, along with extensive interviews for opinions from leaders, such as CEOs, directors, and marketing executives.

Industrial Enzymes Market : Top-Down and Bottom-Up Approach

Industrial Enzymes Market Top Down and Bottom Up Approach

Data Triangulation

After arriving at the overall market size from the estimation process explained above, the total market was split into several segments and subsegments. The data triangulation and market breakdown procedures were employed, wherever applicable, to estimate the overall industrial enzymes market and arrive at the exact statistics for all segments and subsegments. The data was triangulated by studying various factors and trends from the demand and supply sides. The market size was also validated using both the top-down and bottom-up approaches.

Market Definition

The industrial enzymes market comprises industrial enzymes and specialty enzymes.

Enzymes are proteins composed of amino acids and can convert a compound (substrate) into another product by catalytic reaction. These catalytic proteins assist in the performance of biochemical reactions. They lower the activation energy of the reaction and then induce it.

Enzymes used for industrial applications such as food & beverage processing, feed, bioethanol, textile & leather, detergent, paper & pulp, wastewater treatment, and other industrial applications are termed as industrial enzymes.

Stakeholders

  • Enzyme raw material suppliers
  • Industrial enzyme manufacturers
  • Specialty enzyme manufacturers
  • Intermediate suppliers such as traders and distributors of enzymes
  • Government and research organizations
  • Associations, regulatory bodies, and other industry-related bodies:
    • European communities
    • World Health Organization (WHO)
    • Association of Manufacturers & Formulators of Enzyme Products (AMFEP)
    • Enzyme Technical Association (ETA)
    • OECD-FAO Agricultural Outlook
    • United States Department of Agriculture (USDA)

Report Objectives

  • To define and measure the global Industrial enzymes market with respect to type, source, formulation, application, and geography
  • Determining and projecting the size of the Industrial enzymes market, with respect to product type, source, type, application, and regional markets, over a five-year period, ranging from 2025 to 2030
  • Identifying the attractive opportunities in the market by determining the largest and fastest-growing segments across regions
  • Providing detailed information about the key factors influencing the growth of the market (drivers, restraints, opportunities, and industry-specific challenges)
  • Analyzing the micro markets, with respect to individual growth trends, prospects, and their contribution to the total market
  • To strategically profile key players of the global Industrial enzymes market and comprehensively analyze their core competencies in each segment
  • To track and analyze competitive developments, such as alliances, joint ventures, product developments, mergers, and acquisitions in the global industrial enzymes market

Available Customizations

With the given market data, MarketsandMarkets offers customizations according to company-specific scientific needs.

The following customization options are available for the report:

Service Analysis

  • Service Matrix, which gives a detailed comparison of the service portfolio of each company.

Geographic Analysis as per Feasibility

With the given market data, MarketsandMarkets offers customizations according to company-specific scientific needs.

  • Further breakdown of the Rest of European industrial enzymes market into key countries
  • Further breakdown of the Rest of Asia Pacific industrial enzymes market into key countries
  • Further breakdown of the Rest of South American industrial enzymes market into key countries

Company Information

  • Detailed analyses and profiling of additional market players (up to five)

Previous Versions of this Report

Industrial Enzymes Market by Type (Carbohydrases, Proteases, Lipases, Polymerases & Nucleases), Application (Food & Beverages, Bioethanol, Feed, Detergents, Wastewater, Soil, and Oil Treatment), Source, Formulation and Region - Global Forecast to 2028

Report Code FB 2277
Published in Jun, 2023, By MarketsandMarkets™

Industrial Enzymes Market by Type (Carbohydrases, Proteases, Lipases, Polymerases & Nucleases), Application (Food & Beverages, Bioethanol, Feed, Detergents, Wastewater, Soil, and Oil Treatment), Source, Formulation and Region - Global Forecast to 2026

Report Code FB 2277
Published in Jan, 2022, By MarketsandMarkets™

Industrial Enzymes Market by Type (Carbohydrases, Proteases, Lipases, Polymerases & Nucleases, Other Types), Source, Application (Food & Beverages, Feed, Bioethanol, Detergents, Pulp & Paper, Textiles & Leather, Wastewater Treatment, Other Applications), Form, and Region - Global Forecast to 2026

Report Code FB 2277
Published in Apr, 2020, By MarketsandMarkets™

Industrial Enzymes Market by Type (Amylases, Cellulases, Proteases, Lipases, and Phytases), Application (Food & Beverages, Cleaning Agents, and Animal Feed), Source (Microorganism, Plant, and Animal), and Region - Global Forecast to 2022

Report Code FB 2277
Published in Oct, 2016, By MarketsandMarkets™

Industrial Enzymes Market by Type (Carbohydrases, Proteases, Non-starch Polysaccharides & Others), Application (Food & Beverage, Cleaning Agents, Animal Feed & Others), Brands & Region - Global Trends and Forecasts to 2020

Report Code FB 2277
Published in Sep, 2015, By MarketsandMarkets™

Industrial Enzymes Market by Types (Carbohydrase, Protease, Lipase), Applications (Food & Beverages, Cleaning Agents, Bio-Fuel, Animal Feed), & Geography - Global Trends & Forecasts to 2018

Report Code FB 2277
Published in Mar, 2014, By MarketsandMarkets™
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Growth opportunities and latent adjacency in Industrial Enzymes Market

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