According to the new market research report "Particle Size Analysis Market by Technology (Laser Diffraction, DLS, Imaging, Coulter Principle, Sieving, Nanoparticle Tracking), Dispersion (Wet, Dry, Spray), Enduser (Pharma-biotech, Cosmeceutical, Chemicals, Food, Academia) - Global Forecasts to 2026", published by MarketsandMarkets™, the market size is projected to reach USD 492 million by 2026 from USD 371 million in 2021, growing at a CAGR of 5.8%.
Browse in-depth TOC on "Particle
Size Analysis Market"
116 – Tables
37 – Figures
209 – Pages
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Increasing research activities in the field of
nanotechnology, increasing investments in pharmaceutical R&D, and stringent
regulatory guidelines for product quality across industries fueling the growth
of the market. Moreover, increasing government support for nanotechnology
research and rapidly growing pharmaceutical industry in emerging countries, are
some of the other major factors driving the growth of this market.
The laser diffraction segment accounted for the
largest share of the particle size analysis market, by technology, in 2020
Based on technology, the market is segmented into
laser diffraction, dynamic light scattering, imaging, coulter principle,
nanoparticle tracking analysis, sieve analysis and other technologies. The laser
diffraction segment accounted for the largest share of this market in 2020,
driven by growing initiatives to create awareness about laser diffraction,
increasing trainings conducted by companies, increasing R&D expenditure in
the pharma and biotech sectors, and rising food safety concerns.
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Dynamic imaging to dominate the imaging market
during the forecast period
Based on type, the imaging market is segmented into
two major types—dynamic imaging, and static imaging. Factors such as
high-quality/resolution images, better image recognition, user friendliness,
individual sample measurement, and high speed analysis are driving the growth
of the dynamic imaging segment.
Nanoparticle Tracking Analysis (NTA) to register the
highest growth over the forecast period among particle size analysis
technologies
The Nanoparticle Tracking Analysis (NTA) segment is
expected to register the highest growth over the forecast among the particle
size analysis technologies market over the forecast period. The significant
growth of this segment is attributed to advanced applications of these particle
size analyzers and growing research activities in the field of nanotechnology.
In addition, NTA is mainly used in biopharma and biotech applications and with
increasing R&D activities in the biopharmaceutical industry, this market
segment is expected to show growth during the forecast period.
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North
America to dominate the particle size analysis market
during the forecast period
The particle size analysis industry is segmented
into five regional segments, namely, North
America, Europe, Asia Pacific, Latin America,
and Middle East & Africa.
The North American region accounted for the largest share of this market in
2020. Presence of a large customer base in the region, relatively low energy
prices in the US market as compared to other competitive nations such as the UK
and Japan are
encouraging the growth of end-use markets (such as mining, minerals, chemicals,
petroleum) in the US. Moreover, significant funding for nanotechnology
development and strict industrial regulations for particle size analysis for
pharmaceutical drugs and food products with respect to drug development and
quality control are some of the major factors driving the growth of the life
science instrumentation sector in North
America.
The major players operating in the global particle
size analysis market include Malvern Panalytical Ltd. (UK), HORIBA (Japan), Beckman Coulter,
Inc. (US), Anton Paar GmbH (Austria),
Aimsizer (China),
Bettersize Instruments Ltd. (China),
Brookhaven Instruments (US), Fritsch GmbH (Germany),
LS Instruments (Switzerland),
METLLER TOLEDO (US),
Micromeritics Instrument Corporation (US), Microtrac Retsch GmbH (Germany),
Shimadzu Corporation (Japan),
Sympatec GmbH (Germany),
and TSI (US),
among others.
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