28-Dec-2022 | Zion Market Research
The global chromatography reagents market size was worth around USD 8.5 billion in 2021 and is predicted to grow to around USD 14.2 billion by 2030 with a compound annual growth rate (CAGR) of roughly 5.9% between 2022 and 2030.
Chromatography is a parting method utilized to separate solutes and components in the moving fluid stream via chromatographic reagents. Chromatography has several applications in chemical and biological fields. The chromatography method and its reagents are utilized in the manufacturing of pure drug components. The process utilizes chromatography reagents to estimate the drug purity.
The major factors propelling the global market for chromatography reagents include the increase in the need for the technique and owing to the growing digit of pharmaceutical & biotech companies. Also, the rise in utilization of this technique in genomics, proteomics, innovation, and metabolomics medicine is expected to boost the global chromatography reagents market in the coming period. Furthermore, the need for chromatography reagents to meet the requirements of food & beverage, semiconductor industries, chemical, and environmental testing is also anticipated to boost the market. However, the huge price of the technology which includes the automated characteristics and the design of the system is expected to hinder the growth of the market for chromatography reagents.
The global chromatography reagents market is segmented based on type, separation mechanism, application, end user, and region.
Based on the separation mechanism, the market is segmented into adsorption, partition, ion exchange, size exclusion, affinity, and others. The adsorption segment is expected to grow at a significant rate over the forecast period. In a specific type of liquid chromatography called adsorption chromatography, molecules are maintained depending on their adsorption and desorption at the surface of the support, which also serves as the stationary phase. The term "liquid-solid chromatography" is also sometimes used to describe this technique.
As both analytes and mobile phase molecules bind to the surface of the support, retention in this approach is dependent on competition. In adsorption chromatography, the degree of a chemical's retention will be influenced by the chemical's affinity for the support, the support's surface area, the amount of mobile phase the chemical displaces from the support, and the affinity of the mobile phase for the support. A wide range of applications and higher adoption of adsorption as a separation mechanism in various industries is a key factor driving the growth of this market.
Based on the end user, the market is divided into GC reagents, LC reagents, SFC reagents, TLC, paper chromatography, and others. The LC reagents segment is growing at the highest CAGR over the forecast period. Due to its effectiveness and adaptability, liquid chromatography (LC) is the most popular type of chromatography. LC is used to separate a variety of high-molecular-weight and less-stable substances, including proteins, polysaccharides, synthetic polymers, nucleic acids, plant colors, and surfactants. It is also used to separate macromolecules and ionic species of biomedical significance.
The mobile phase in this method is liquid. In the fields of chemical, biological, and pharmaceutical sciences, HPLC is one of the most potent analytical methods available. Any material that can dissolve in a liquid can have its various components separated, identified, quantitated, and purified using this technique. Compounds with traces as low as parts per trillion (ppt) can be easily identified using HPLC. HPLC is used for the analysis of samples used in forensic institutes and industries such as pharmaceuticals, food, nutraceuticals, cosmetics, and environmental testing.
Regionally, the rapidly developing pharmaceutical industry, primarily in the United States, will drive growth in the chromatography reagents market in North America. The number of clinical research studies has increased as a result of rising government support, an increase in drug development activities, and the spread of technologically enhanced solutions. The region now spends a lot on healthcare due to the expanding elderly population and the prevalence of chronic conditions. The need for chromatography methods and reagents has also been supported by the presence of a well-established R&D infrastructure together with increased investments for drug development and production. The regional market will expand as a result of increasing penetration in the food and beverage and pharmaceutical industries.
This review is based on a report by Zion Market Research, titled “Chromatography Reagents Market By Type (Solvents, Buffers, Derivatization Reagents, Ion-Pair Reagents, and Others), By Separation Mechanism (Adsorption, Partition, Ion Exchange, Size Exclusion, Affinity, and Others), By Application (Pharmaceutical Testing, Biopharma-Biotech Applications, Cosmeceutical Applications, Environmental Testing, Food & Beverage Testing, Petrochemical Analysis, Forensic Testing, Clinical Testing, and Research & Academic Applications), By End User (GC Reagents, LC Reagents, SFC Reagents, TLC, Paper Chromatography, and Others) and By Region - Global and Regional Industry Overview, Market Intelligence, Comprehensive Analysis, Historical Data, and Forecasts 2022 – 2030.”- Report at https://www.zionmarketresearch.com/report/waste-management-software-market
The global chromatography reagents market is dominated by players like:
The global chromatography reagents market is segmented as follows:
By Separation Mechanism
By End User
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