Solid Phase Extraction (SPE) Market Synopsis

Solid Phase Extraction (SPE) Market Size Was Valued at USD 522.93 Million in 2023 and is Projected to Reach USD 794.02 Million by 2032, Growing at a CAGR of 4.75% From 2024-2032.

Solid Phase Extraction (SPE) is a sample preparation technique used in analytical chemistry to isolate and concentrate analytes from a liquid sample. In the SPE market, companies manufacture and supply SPE cartridges, disks, plates, and other consumables, as well as instruments and systems used for sample extraction. These products are utilized in various industries including pharmaceuticals, environmental testing, food and beverage analysis, and forensic science to improve the sensitivity, accuracy, and efficiency of analytical processes.

  • SPE is a widely used technique in environmental analysis, pharmaceutical analysis, food and beverage analysis, clinical and forensic toxicology, chemical analysis, bioanalysis, water quality monitoring, phytochemical analysis, and industrial processes. It is used to extract and concentrate pollutants, pesticides, herbicides, and other contaminants from water, soil, and air samples, ensuring environmental quality monitoring and regulatory compliance. In pharmaceutical analysis, SPE is used for sample clean-up and pre-concentration of drugs, metabolites, and impurities from biological fluids.
  • In food and beverage analysis, SPE extracts additives, pesticides, mycotoxins, and other contaminants to ensure food safety and quality control. In clinical and forensic toxicology, SPE extracts drugs, metabolites, and toxins from biological matrices, aiding in drug screening and forensic investigations. In bioanalysis, SPE extracts and concentrates biomolecules from biological samples, crucial for research in proteomics, genomics, metabolomics, and biomarker discovery. SPE is a crucial tool in sample preparation for analytical techniques like chromatography and mass spectrometry, enabling the extraction, concentration, and purification of analytes from complex sample matrices. It offers high selectivity and sensitivity, enabling the isolation of specific compounds from interfering substances in the sample matrix.
  • SPE methods can be tailored to target different classes of compounds based on their physicochemical properties, making it suitable for various applications. Automation and throughput have made automated SPE systems more accessible, reducing labor costs and improving reproducibility. SPE plays a vital role in environmental analysis, enabling the extraction and quantification of trace levels of contaminants, pollutants, and toxins in soil, water, air, and biological samples. Research and development efforts have led to the development of novel sorbent materials with enhanced selectivity, capacity, and stability for SPE applications, making them more efficient and reliable for various analytical challenges.

Solid Phase Extraction (SPE) Market Trend Analysis

Increasing Growth in Generics Industry

  • The increasing production and consumption of generic drugs necessitates strict testing to ensure their quality, purity, and consistency. Regulatory agencies worldwide demand thorough testing of generic formulations to demonstrate their bioequivalence with branded drugs. SPE provides a robust method for extracting, isolating, and concentrating drug compounds from complex matrices, facilitating accurate quantification and characterization during quality control processes.
  • Cost-efficiency is a key consideration for manufacturers, as generics are often marketed as more affordable alternatives to brand-name drugs. SPE offers advantages in sample preparation, including higher throughput, reduced solvent consumption, and enhanced sensitivity, contributing to cost savings in analytical workflows. As the generics industry seeks to optimize production processes and minimize expenses, the adoption of SPE becomes increasingly attractive.
  • The generics industry's market share continues to expand globally due to factors like patent expirations, healthcare cost containment measures, and increasing demand for accessible healthcare solutions. SPE enables rapid and reliable extraction of target compounds from various sample matrices, facilitating the timely release of generic drug products to the market.
  • SPE techniques find applications across various analytical scenarios within the generics industry, including method development, impurity profiling, stability testing, and pharmacokinetic studies. By adopting state-of-the-art SPE technologies and methodologies, generics manufacturers can streamline compliance efforts and expedite regulatory approvals for their products.

Restraint

SPE Effectiveness can be Compromised by Sample Matrix Interferences

  • Samples subjected to SPE often come from complex matrices, including biological fluids, environmental samples, and food extracts. These matrices can contain various compounds, such as salts, proteins, and lipids, which can negatively impact the performance of SPE. These interference effects can lead to non-specific adsorption, poor analyte recovery, and decreased chromatographic resolution, compromising the accuracy and reliability of analytical results.
  • Material interferences can manifest in various ways, such as co-elution of matrix components with target analytes, peak broadening, reduced signal-to-noise ratios, and inaccurate quantification. They can also competitively adsorb to SPE sorbents, reducing analyte retention or displacement from the extraction phase. Addressing these interferences in SPE methods requires extensive method development and optimization efforts, which can increase method development complexity and time-to-result time.
  • Matrix interferences can compromise the accuracy, precision, and robustness of SPE-based analytical methods, leading to erroneous conclusions and unreliable data. Mitigation strategies, such as sample cleanup, matrix removal, or analyte enrichment techniques, may be necessary to overcome these interferences, but these steps can increase method complexity, sample handling requirements, and resource consumption.

Opportunity

SPE is Utilized in Various Research Fields

  • SPE is a method that efficiently extracts target analytes from complex sample matrices by selectively adsorbing them onto a solid phase sorbent. This enhances the sample preparation process, making it useful in fields like environmental analysis, pharmaceuticals, food and beverage testing, and forensic science. SPE also improves analytical sensitivity by concentrating analytes and reducing interference from matrix components, making it crucial in environmental monitoring.
  • SPE is versatile, adaptable to various research applications, and compatible with various analytical techniques like chromatography, mass spectrometry, and spectroscopy. Advances in SPE technology have led to automated systems that can process large volumes of samples rapidly and reproducibly. The field of SPE continues to evolve with ongoing research, creating opportunities for new sorbents and methodologies to address emerging challenges in sample preparation.

Challenge

Achieving Optimal Extraction Conditions

  • Selecting the right sorbent material is crucial for optimal extraction conditions, as it varies in selectivity, capacity, and retention properties. Minimizing matrix interference is essential for efficient extraction and ensuring analytical results. Sample loading is another crucial factor, with overloading causing reduced analyte recovery and underloading causing poor sensitivity. The maximum capacity of the sorbent and sample volume should be determined. The choice of elution solvent is also crucial, with factors like solvent polarity, compatibility with the analytical method, and desired concentration of eluted analytes to consider.
  • Elution efficiency is also crucial, with factors like solvent flow rate, contact time, and multiple elution steps affecting efficiency. Reproducibility and robustness are essential for reliable analytical measurements, and optimizing SPE conditions involves assessing factors like extraction recovery, precision, and method ruggedness under different experimental conditions.

Solid Phase Extraction (SPE) Market Segment Analysis:

Solid Phase Extraction (SPE) Market Segmented on the basis of type, and application.

By Type, Cartridges segment is expected to dominate the market during the forecast period

  • Cartridge-based SPE systems are preferred due to their simplicity, ease of use, consistency, and versatility. They come pre-packed with stationary phase material, eliminating the need for handling loose sorbents. Cartridges offer better reproducibility, which is crucial for accurate analytical results in various applications. They are versatile, suitable for chromatography, environmental analysis, drug discovery, and clinical diagnostics.
  • They are available in various sizes and formats, allowing users to scale extraction procedures based on sample volume and throughput requirements. Many cartridge-based SPE systems are compatible with automated sample preparation platforms, increasing throughput and efficiency. Although initial investment costs may be higher, their ease of use, reproducibility, and scalability often result in cost savings in labor, time, and consumables over the long term.

By Application, Pharmaceutical & biotechnology Industries segment held the largest share of 48.67% in 2023

  • Pharmaceutical and biotechnology industries rely on SPE for complex samples that require thorough preparation before analysis. SPE is crucial for compliance with regulatory standards and maintaining product quality. Its versatility allows it to be used in drug development, environmental monitoring, clinical diagnostics, and food safety testing.
  • As analytical techniques advance, there is a growing demand for efficient sample preparation techniques like SPE to enhance sensitivity, selectivity, and accuracy. SPE supports R&D efforts by enabling researchers to isolate and analyze target compounds from complex matrices. As environmental and health issues become more prevalent, SPE is used to monitor and analyze contaminants in environmental samples, food products, and biological fluids.

Solid Phase Extraction (SPE) Market Regional Insights:

North America is Expected to Dominate the Market Over the Forecast period

  • North America's research infrastructure, including academic institutions, laboratories, and pharmaceutical companies, drives demand for SPE products for drug discovery, environmental analysis, and food testing. The region's stringent regulatory environment, including FDA and EPA regulations, necessitates advanced analytical techniques like SPE. Technological advancements in North America lead to more efficient and reliable SPE products.
  • The region's advanced healthcare infrastructure and emphasis on quality control drive high adoption rates of SPE techniques in pharmaceutical and clinical laboratories. Key players in the market include leading manufacturers and suppliers, often collaborating with research institutions and end-user industries. High market awareness and education among researchers, scientists, and laboratory professionals contribute to the widespread adoption of SPE techniques in various applications.

Solid Phase Extraction (SPE) Market Top Key Players:

  • Thermo Fisher Scientific Inc. (US)
  • Agilent Technologies, Inc. (US)
  • Waters Corporation (US)
  • PerkinElmer, Inc. (US)
  • Fluid Management Systems (FMS) (US)
  • Gilson, Inc. (US)
  • Restek Corporation (US)
  • Phenomenex, Inc. (US)
  • LECO Corporation (US)
  • Orochem Technologies Inc. (US)
  • Horizon Technology, Inc. (US)
  • Agela Technologies Inc. (US)
  • Ace Glass, Inc. (US)
  • MACHEREY-NAGEL GmbH & Co. KG (Germany)
  • GERSTEL GmbH & Co. KG (Germany)
  • Sartorius AG (Germany)
  • Merck KGaA (Germany)
  • Scion Instruments (UK)
  • Tecan Group Ltd. (Switzerland)
  • Buchi Corporation (Switzerland)
  • ANPEL Laboratory Technologies Inc. (China)
  • Shimadzu Corporation (Japan)
  • GL Sciences Inc. (Japan)
  • Biotage AB (Sweden), and other major players

Key Industry Developments in the Solid Phase Extraction (SPE) Market:

  • In October 2023, Waters Corporation introduced Extraction Connected Device, a new software-controlled product for the Waters™ Andrew+™ Pipetting Robot that automates the preparation of biological, food, forensics, and environmental samples by solid phase extraction (SPE).
  • In December 2023, Fluid Management Systems (FMS), a leader in automated sample preparation systems, announced a co-marketing agreement with Agilent Technologies to create and market workflows for the testing and analysis of persistent organic pollutants (POPs), including PFAS, Dioxins, PCBs, and other emerging contaminants in environmental and food matrices.

Global Solid Phase Extraction (SPE) Market

Base Year:

2023

Forecast Period:

2024-2032

Historical Data:

2017 to 2023

Market Size in 2023:

522.93 Mn

Forecast Period 2024-32 CAGR:

4.75%

Market Size in 2032:

794.02 Mn

Segments Covered:

By Type

  • Cartridges
  • Disks
  • Plates

By Application

  • Pharmaceutical & biotechnology Industries
  • Academic & Research Institutes
  • Environmental Laboratories
  • Hospitals & Clinics, and Others

By Region

  • North America (U.S., Canada, Mexico)
  • Eastern Europe (Bulgaria, The Czech Republic, Hungary, Poland, Romania, Rest of Eastern Europe)
  • Western Europe (Germany, UK, France, Netherlands, Italy, Russia, Spain, Rest of Western Europe)
  • Asia Pacific (China, India, Japan, South Korea, Malaysia, Thailand, Vietnam, The Philippines, Australia, New-Zealand, Rest of APAC)
  • Middle East & Africa (Turkey, Bahrain, Kuwait, Saudi Arabia, Qatar, UAE, Israel, South Africa)
  • South America (Brazil, Argentina, Rest of SA)

Key Market Drivers:

  • Increasing Growth in Generic Industry

Key Market Restraints:

  • SPE Effectiveness can be Compromised by Sample Matrix Interferences

Key Opportunities:

  • SPE is Utilized in Various Research Fields

Companies Covered in the report:

  • Thermo Fisher Scientific Inc. (US), Agilent Technologies, Inc. (US), Waters Corporation (US), PerkinElmer, Inc. (US), Fluid Management Systems (FMS) (US), and Other Major Players.
  1. INTRODUCTION
    1. RESEARCH OBJECTIVES
    2. RESEARCH METHODOLOGY
    3. RESEARCH PROCESS
    4. SCOPE AND COVERAGE
      1. Market Definition
      2. Key Questions Answered
    5. MARKET SEGMENTATION
  2. EXECUTIVE SUMMARY
  3. MARKET OVERVIEW
  4. GROWTH OPPORTUNITIES BY SEGMENT
  5. MARKET LANDSCAPE
    1. PORTER’S FIVE FORCES ANALYSIS
      1. Bargaining Power Of Supplier
      2. Threat Of New Entrants
      3. Threat Of Substitutes
      4. Competitive Rivalry
      5. Bargaining Power Among Buyers
    2. INDUSTRY VALUE CHAIN ANALYSIS
    3. MARKET DYNAMICS
      1. Drivers
      2. Restraints
      3. Opportunities
      4. Challenges
    4. MARKET TREND ANALYSIS
    5. REGULATORY LANDSCAPE
    6. PESTLE ANALYSIS
    7. PRICE TREND ANALYSIS
    8. PATENT ANALYSIS
    9. TECHNOLOGY EVALUATION
    10. MARKET IMPACT OF THE RUSSIA-UKRAINE WAR
      1. Geopolitical Market Disruptions
      2. Supply Chain Disruptions
      3. Instability in Emerging Markets
    11. ECOSYSTEM
  6. SOLID PHASE EXTRACTION (SPE) MARKET BY TYPE (2017-2032)
    1. SOLID PHASE EXTRACTION (SPE) MARKET SNAPSHOT AND GROWTH ENGINE
    2. MARKET OVERVIEW
    3. CARTRIDGES
      1. Introduction And Market Overview
      2. Historic And Forecasted Market Size in Value (2017 – 2032F)
      3. Historic And Forecasted Market Size in Volume (2017 – 2032F)
      4. Key Market Trends, Growth Factors And Opportunities
      5. Geographic Segmentation Analysis
    4. DISKS
    5. PLATES
  7. SOLID PHASE EXTRACTION (SPE) MARKET BY APPLICATION (2017-2032)
    1. SOLID PHASE EXTRACTION (SPE) MARKET SNAPSHOT AND GROWTH ENGINE
    2. MARKET OVERVIEW
    3. PHARMACEUTICAL & BIOTECHNOLOGY INDUSTRIES
      1. Introduction And Market Overview
      2. Historic And Forecasted Market Size in Value (2017 – 2032F)
      3. Historic And Forecasted Market Size in Volume (2017 – 2032F)
      4. Key Market Trends, Growth Factors And Opportunities
      5. Geographic Segmentation Analysis
    4. ACADEMIC & RESEARCH INSTITUTES
    5. ENVIRONMENTAL LABORATORIES
    6. HOSPITALS & CLINICS
  8. COMPANY PROFILES AND COMPETITIVE ANALYSIS
    1. COMPETITIVE LANDSCAPE
      1. Competitive Positioning
      2. Solid Phase Extraction (SPE) Market Share By Manufacturer (2023)
      3. Industry BCG Matrix
      4. Heat Map Analysis
      5. Mergers & Acquisitions
    2. THERMO FISHER SCIENTIFIC INC. (US)
      1. Company Overview
      2. Key Executives
      3. Company Snapshot
      4. Role of the Company in the Market
      5. Sustainability and Social Responsibility
      6. Operating Business Segments
      7. Product Portfolio
      8. Business Performance (Production Volume, Sales Volume, Sales Margin, Production Capacity, Capacity Utilization Rate)
      9. Key Strategic Moves And Recent Developments
      10. SWOT Analysis
    3. AGILENT TECHNOLOGIES, INC. (US)
    4. WATERS CORPORATION (US)
    5. PERKINELMER, INC. (US)
    6. FLUID MANAGEMENT SYSTEMS (FMS) (US)
    7. GILSON, INC. (US)
    8. RESTEK CORPORATION (US)
    9. PHENOMENEX, INC. (US)
    10. LECO CORPORATION (US)
    11. OROCHEM TECHNOLOGIES INC. (US)
    12. HORIZON TECHNOLOGY, INC. (US)
    13. AGELA TECHNOLOGIES INC. (US)
    14. ACE GLASS, INC. (US)
    15. MACHEREY-NAGEL GMBH & CO. KG (GERMANY)
    16. GERSTEL GMBH & CO. KG (GERMANY)
    17. SARTORIUS AG (GERMANY)
    18. MERCK KGAA (GERMANY)
    19. SCION INSTRUMENTS (UK)
    20. TECAN GROUP LTD. (SWITZERLAND)
    21. BUCHI CORPORATION (SWITZERLAND)
    22. ANPEL LABORATORY TECHNOLOGIES INC. (CHINA)
    23. SHIMADZU CORPORATION (JAPAN)
    24. GL SCIENCES INC. (JAPAN)
    25. BIOTAGE AB (SWEDEN)
  9. GLOBAL SOLID PHASE EXTRACTION (SPE) MARKET BY REGION
    1. OVERVIEW
    2. NORTH AMERICA
      1. Key Market Trends, Growth Factors And Opportunities
      2. Key Manufacturers
      3. Historic And Forecasted Market Size By Type
      4. Historic And Forecasted Market Size By Application
      5. Historic And Forecasted Market Size By Country
        1. USA
        2. Canada
        3. Mexico
    3. EASTERN EUROPE
      1. Key Market Trends, Growth Factors And Opportunities
      2. Key Manufacturers
      3. Historic And Forecasted Market Size By Segments
      4. Historic And Forecasted Market Size By Country
        1. Russia
        2. Bulgaria
        3. The Czech Republic
        4. Hungary
        5. Poland
        6. Romania
        7. Rest Of Eastern Europe
    4. WESTERN EUROPE
      1. Key Market Trends, Growth Factors And Opportunities
      2. Key Manufacturers
      3. Historic And Forecasted Market Size By Segments
      4. Historic And Forecasted Market Size By Country
        1. Germany
        2. United Kingdom
        3. France
        4. The Netherlands
        5. Italy
        6. Spain
        7. Rest Of Western Europe
    5. ASIA PACIFIC
      1. Key Market Trends, Growth Factors And Opportunities
      2. Key Manufacturers
      3. Historic And Forecasted Market Size By Segments
      4. Historic And Forecasted Market Size By Country
        1. China
        2. India
        3. Japan
        4. South Korea
        5. Malaysia
        6. Thailand
        7. Vietnam
        8. The Philippines
        9. Australia
        10. New-Zealand
        11. Rest Of APAC
    6. MIDDLE EAST & AFRICA
      1. Key Market Trends, Growth Factors And Opportunities
      2. Key Manufacturers
      3. Historic And Forecasted Market Size By Segments
      4. Historic And Forecasted Market Size By Country
        1. Turkey
        2. Bahrain
        3. Kuwait
        4. Saudi Arabia
        5. Qatar
        6. UAE
        7. Israel
        8. South Africa
    7. SOUTH AMERICA
      1. Key Market Trends, Growth Factors And Opportunities
      2. Key Manufacturers
      3. Historic And Forecasted Market Size By Segments
      4. Historic And Forecasted Market Size By Country
        1. Brazil
        2. Argentina
        3. Rest of South America
  10. INVESTMENT ANALYSIS
  11. ANALYST VIEWPOINT AND CONCLUSION
    1. Recommendations and Concluding Analysis
    2. Potential Market Strategies

Global Solid Phase Extraction (SPE) Market

Base Year:

2023

Forecast Period:

2024-2032

Historical Data:

2017 to 2023

Market Size in 2023:

522.93 Mn

Forecast Period 2024-32 CAGR:

4.75%

Market Size in 2032:

794.02 Mn

Segments Covered:

By Type

  • Cartridges
  • Disks
  • Plates

By Application

  • Pharmaceutical & biotechnology Industries
  • Academic & Research Institutes
  • Environmental Laboratories
  • Hospitals & Clinics, and Others

By Region

  • North America (U.S., Canada, Mexico)
  • Eastern Europe (Bulgaria, The Czech Republic, Hungary, Poland, Romania, Rest of Eastern Europe)
  • Western Europe (Germany, UK, France, Netherlands, Italy, Russia, Spain, Rest of Western Europe)
  • Asia Pacific (China, India, Japan, South Korea, Malaysia, Thailand, Vietnam, The Philippines, Australia, New-Zealand, Rest of APAC)
  • Middle East & Africa (Turkey, Bahrain, Kuwait, Saudi Arabia, Qatar, UAE, Israel, South Africa)
  • South America (Brazil, Argentina, Rest of SA)

Key Market Drivers:

  • Increasing Growth in Generic Industry

Key Market Restraints:

  • SPE Effectiveness can be Compromised by Sample Matrix Interferences

Key Opportunities:

  • SPE is Utilized in Various Research Fields

Companies Covered in the report:

  • Thermo Fisher Scientific Inc. (US), Agilent Technologies, Inc. (US), Waters Corporation (US), PerkinElmer, Inc. (US), Fluid Management Systems (FMS) (US), and Other Major Players.

LIST OF TABLES

TABLE 001. EXECUTIVE SUMMARY
TABLE 002. SOLID PHASE EXTRACTION (SPE) MARKET BARGAINING POWER OF SUPPLIERS
TABLE 003. SOLID PHASE EXTRACTION (SPE) MARKET BARGAINING POWER OF CUSTOMERS
TABLE 004. SOLID PHASE EXTRACTION (SPE) MARKET COMPETITIVE RIVALRY
TABLE 005. SOLID PHASE EXTRACTION (SPE) MARKET THREAT OF NEW ENTRANTS
TABLE 006. SOLID PHASE EXTRACTION (SPE) MARKET THREAT OF SUBSTITUTES
TABLE 007. SOLID PHASE EXTRACTION (SPE) MARKET BY TYPE
TABLE 008. SPE DISK MARKET OVERVIEW (2016-2028)
TABLE 009. SPE CARTRIDGE MARKET OVERVIEW (2016-2028)
TABLE 010. SOLID PHASE EXTRACTION (SPE) MARKET BY APPLICATION
TABLE 011. PHARMACEUTICAL INDUSTRIES MARKET OVERVIEW (2016-2028)
TABLE 012. FOOD & BEVERAGE MARKET OVERVIEW (2016-2028)
TABLE 013. HOSPITALS & CLINICS MARKET OVERVIEW (2016-2028)
TABLE 014. ENVIRONMENTAL MARKET OVERVIEW (2016-2028)
TABLE 015. ACADEMIC & RESEARCH INSTITUTES MARKET OVERVIEW (2016-2028)
TABLE 016. NORTH AMERICA SOLID PHASE EXTRACTION (SPE) MARKET, BY TYPE (2016-2028)
TABLE 017. NORTH AMERICA SOLID PHASE EXTRACTION (SPE) MARKET, BY APPLICATION (2016-2028)
TABLE 018. N SOLID PHASE EXTRACTION (SPE) MARKET, BY COUNTRY (2016-2028)
TABLE 019. EUROPE SOLID PHASE EXTRACTION (SPE) MARKET, BY TYPE (2016-2028)
TABLE 020. EUROPE SOLID PHASE EXTRACTION (SPE) MARKET, BY APPLICATION (2016-2028)
TABLE 021. SOLID PHASE EXTRACTION (SPE) MARKET, BY COUNTRY (2016-2028)
TABLE 022. ASIA PACIFIC SOLID PHASE EXTRACTION (SPE) MARKET, BY TYPE (2016-2028)
TABLE 023. ASIA PACIFIC SOLID PHASE EXTRACTION (SPE) MARKET, BY APPLICATION (2016-2028)
TABLE 024. SOLID PHASE EXTRACTION (SPE) MARKET, BY COUNTRY (2016-2028)
TABLE 025. MIDDLE EAST & AFRICA SOLID PHASE EXTRACTION (SPE) MARKET, BY TYPE (2016-2028)
TABLE 026. MIDDLE EAST & AFRICA SOLID PHASE EXTRACTION (SPE) MARKET, BY APPLICATION (2016-2028)
TABLE 027. SOLID PHASE EXTRACTION (SPE) MARKET, BY COUNTRY (2016-2028)
TABLE 028. SOUTH AMERICA SOLID PHASE EXTRACTION (SPE) MARKET, BY TYPE (2016-2028)
TABLE 029. SOUTH AMERICA SOLID PHASE EXTRACTION (SPE) MARKET, BY APPLICATION (2016-2028)
TABLE 030. SOLID PHASE EXTRACTION (SPE) MARKET, BY COUNTRY (2016-2028)
TABLE 031. THERMO FISHER SCIENTIFIC: SNAPSHOT
TABLE 032. THERMO FISHER SCIENTIFIC: BUSINESS PERFORMANCE
TABLE 033. THERMO FISHER SCIENTIFIC: PRODUCT PORTFOLIO
TABLE 034. THERMO FISHER SCIENTIFIC: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 034. AGILENT TECHNOLOGIES: SNAPSHOT
TABLE 035. AGILENT TECHNOLOGIES: BUSINESS PERFORMANCE
TABLE 036. AGILENT TECHNOLOGIES: PRODUCT PORTFOLIO
TABLE 037. AGILENT TECHNOLOGIES: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 037. WATERS: SNAPSHOT
TABLE 038. WATERS: BUSINESS PERFORMANCE
TABLE 039. WATERS: PRODUCT PORTFOLIO
TABLE 040. WATERS: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 040. GE WHATMAN: SNAPSHOT
TABLE 041. GE WHATMAN: BUSINESS PERFORMANCE
TABLE 042. GE WHATMAN: PRODUCT PORTFOLIO
TABLE 043. GE WHATMAN: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 043. AVANTOR PERFORMANCE MATERIALS: SNAPSHOT
TABLE 044. AVANTOR PERFORMANCE MATERIALS: BUSINESS PERFORMANCE
TABLE 045. AVANTOR PERFORMANCE MATERIALS: PRODUCT PORTFOLIO
TABLE 046. AVANTOR PERFORMANCE MATERIALS: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 046. PERKINELMER: SNAPSHOT
TABLE 047. PERKINELMER: BUSINESS PERFORMANCE
TABLE 048. PERKINELMER: PRODUCT PORTFOLIO
TABLE 049. PERKINELMER: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 049. 3M: SNAPSHOT
TABLE 050. 3M: BUSINESS PERFORMANCE
TABLE 051. 3M: PRODUCT PORTFOLIO
TABLE 052. 3M: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 052. W. R. GRACE & CO: SNAPSHOT
TABLE 053. W. R. GRACE & CO: BUSINESS PERFORMANCE
TABLE 054. W. R. GRACE & CO: PRODUCT PORTFOLIO
TABLE 055. W. R. GRACE & CO: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 055. UCT: SNAPSHOT
TABLE 056. UCT: BUSINESS PERFORMANCE
TABLE 057. UCT: PRODUCT PORTFOLIO
TABLE 058. UCT: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 058. MERCK: SNAPSHOT
TABLE 059. MERCK: BUSINESS PERFORMANCE
TABLE 060. MERCK: PRODUCT PORTFOLIO
TABLE 061. MERCK: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 061. BIOTAGE: SNAPSHOT
TABLE 062. BIOTAGE: BUSINESS PERFORMANCE
TABLE 063. BIOTAGE: PRODUCT PORTFOLIO
TABLE 064. BIOTAGE: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 064. GL SCIENCES: SNAPSHOT
TABLE 065. GL SCIENCES: BUSINESS PERFORMANCE
TABLE 066. GL SCIENCES: PRODUCT PORTFOLIO
TABLE 067. GL SCIENCES: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 067. RESTEK CORPORATION: SNAPSHOT
TABLE 068. RESTEK CORPORATION: BUSINESS PERFORMANCE
TABLE 069. RESTEK CORPORATION: PRODUCT PORTFOLIO
TABLE 070. RESTEK CORPORATION: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 070. OROCHEM TECHNOLOGIES: SNAPSHOT
TABLE 071. OROCHEM TECHNOLOGIES: BUSINESS PERFORMANCE
TABLE 072. OROCHEM TECHNOLOGIES: PRODUCT PORTFOLIO
TABLE 073. OROCHEM TECHNOLOGIES: KEY STRATEGIC MOVES AND DEVELOPMENTS
TABLE 073. OTHER MAJOR PLAYERS: SNAPSHOT
TABLE 074. OTHER MAJOR PLAYERS: BUSINESS PERFORMANCE
TABLE 075. OTHER MAJOR PLAYERS: PRODUCT PORTFOLIO
TABLE 076. OTHER MAJOR PLAYERS: KEY STRATEGIC MOVES AND DEVELOPMENTS

LIST OF FIGURES

FIGURE 001. YEARS CONSIDERED FOR ANALYSIS
FIGURE 002. SCOPE OF THE STUDY
FIGURE 003. SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY REGIONS
FIGURE 004. PORTER'S FIVE FORCES ANALYSIS
FIGURE 005. BARGAINING POWER OF SUPPLIERS
FIGURE 006. COMPETITIVE RIVALRYFIGURE 007. THREAT OF NEW ENTRANTS
FIGURE 008. THREAT OF SUBSTITUTES
FIGURE 009. VALUE CHAIN ANALYSIS
FIGURE 010. PESTLE ANALYSIS
FIGURE 011. SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY TYPE
FIGURE 012. SPE DISK MARKET OVERVIEW (2016-2028)
FIGURE 013. SPE CARTRIDGE MARKET OVERVIEW (2016-2028)
FIGURE 014. SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY APPLICATION
FIGURE 015. PHARMACEUTICAL INDUSTRIES MARKET OVERVIEW (2016-2028)
FIGURE 016. FOOD & BEVERAGE MARKET OVERVIEW (2016-2028)
FIGURE 017. HOSPITALS & CLINICS MARKET OVERVIEW (2016-2028)
FIGURE 018. ENVIRONMENTAL MARKET OVERVIEW (2016-2028)
FIGURE 019. ACADEMIC & RESEARCH INSTITUTES MARKET OVERVIEW (2016-2028)
FIGURE 020. NORTH AMERICA SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY COUNTRY (2016-2028)
FIGURE 021. EUROPE SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY COUNTRY (2016-2028)
FIGURE 022. ASIA PACIFIC SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY COUNTRY (2016-2028)
FIGURE 023. MIDDLE EAST & AFRICA SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY COUNTRY (2016-2028)
FIGURE 024. SOUTH AMERICA SOLID PHASE EXTRACTION (SPE) MARKET OVERVIEW BY COUNTRY (2016-2028)

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Frequently Asked Questions :

What would be the forecast period in the Solid Phase Extraction (SPE) Market research report?

The forecast period in the Solid Phase Extraction (SPE) Market research report is 2024-2032.

Who are the key players in the Solid Phase Extraction (SPE) Market?

Thermo Fisher Scientific Inc. (US), Agilent Technologies, Inc. (US), Waters Corporation (US), PerkinElmer, Inc. (US), Fluid Management Systems (FMS) (US), Gilson, Inc. (US), Restek Corporation (US), Phenomenex, Inc. (US), LECO Corporation (US), Orochem Technologies Inc. (US), Horizon Technology, Inc. (US), Agela Technologies Inc. (US), Ace Glass, Inc. (US), MACHEREY-NAGEL GmbH & Co. KG (Germany), GERSTEL GmbH & Co. KG (Germany), Sartorius AG (Germany), Merck KGaA (Germany), Scion Instruments (UK), Tecan Group Ltd. (Switzerland), Buchi Corporation (Switzerland), ANPEL Laboratory Technologies Inc. (China), Shimadzu Corporation (Japan), GL Sciences Inc. (Japan), Biotage AB (Sweden) and Other Major Players.

What are the segments of the Solid Phase Extraction (SPE) Market?

The Solid Phase Extraction (SPE) Market is segmented into Type, Application, and region. By Type, the market is categorized into Cartridges, Disks, Plates. By Application, the market is categorized into Pharmaceutical & biotechnology Industries, Academic & Research Institutes, Environmental Laboratories, Hospitals & Clinics, and Others. By region, it is analyzed across North America (U.S.; Canada; Mexico), Eastern Europe (Bulgaria; The Czech Republic; Hungary; Poland; Romania; Rest of Eastern Europe), Western Europe (Germany; UK; France; Netherlands; Italy; Russia; Spain; Rest of Western Europe), Asia-Pacific (China; India; Japan; Southeast Asia, etc.), South America (Brazil; Argentina, etc.), Middle East & Africa (Saudi Arabia; South Africa, etc.).

What is the Solid Phase Extraction (SPE) Market?

The Solid Phase Extraction (SPE) market involves the sale and utilization of techniques and equipment used in sample preparation for various analytical applications. SPE is a method used to isolate and concentrate analytes from a liquid sample by using solid materials. These materials selectively retain the target analytes while unwanted compounds are washed away. The market includes SPE cartridges, disks, plates, and other consumables, as well as automated SPE systems. It serves industries such as pharmaceuticals, environmental analysis, food and beverage, and clinical research, among others. The market is driven by increasing demand for accurate and efficient sample preparation techniques in research and quality control processes.

How big is the Solid Phase Extraction (SPE) Market?

Solid Phase Extraction (SPE) Market Size Was Valued at USD 522.93 Million in 2023 and is Projected to Reach USD 794.02 Million by 2032, Growing at a CAGR of 4.75% From 2024-2032.