Flow Chemistry Market to cross $2bn by 2024

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Global Flow Chemistry Market to grow at 10% CAGR from 2016 – 2024: Fractovia.org Flow Chemistry industry analysis is covered in this latest research report that aims to help those taking daily business decisions by providing market trends information, competitive landscape scenario, forecasts and more. The numerous advantages offered by process reactors over batch reactors will impel flow chemistry market over the next few years. Flow chemistry encompasses a range of chemical processes that occur in a consistent flow, by means of pumping reagents using multiple reactors. Fume emissions due to conventional chemical processes and safety concerns over health have necessitated the deployment of organic synthesis in laboratories, which will propel flow chemistry industry. As per Global Market Insights, Inc., “Flow chemistry market size, worth USD 900 million in the year 2015, is anticipated to cross USD 2 billion by 2024, with a CAGR estimation of 10% over 20162024.�

The flow chemistry process finds applications across the chemical, petrochemical, academic research, pharmaceutical, and industrial research sectors. Flow chemistry market from pharmaceutical applications is touted to be the segment to witness the highest gains over 2016-2024. This growth can primarily be attributed to the fact that the flow chemistry process offers the benefits of low operational cost, high safety measures, and a high yield, which are vital in the pharma sector. Furthermore, most pharmaceutical companies have been deploying the flow chemistry process for drug manufacturing, thereby spurring flow chemistry market from the pharmaceutical domain. The pharmaceutical industry has been growing rapidly across the developed regions such as Europe and North America. Subject to this factor, flow chemistry industry in North America, led by the U.S., is projected to grow at a rate of 9% over 2016-2024. Additionally, the United States boasts of an abundance of petrochemical and natural gas feedstock, which is likely to impel this market. In 2015, continuous stirred tank reactor (CSTR) led the product segment of global flow chemistry market. Functioning in a serial operation and operating with a considerably less cost, these reactors are massively used in chemical and petrochemical sectors, which will impel CSTR flow chemistry industry in the years to come. In addition, these 1|Page


reactors display high productivity and consume less energy, which will further propel CSTR market size. Microreactor system flow chemistry market is expected to have the highest growth of 15% over 2016-2024, subject to high heat transfer properties. U.S Flow Chemistry Market share, by end-user, 2013-2024 (USD Million)

Key participants of global flow chemistry industry held more than 40% of the overall share in 2015, these statistics prove that this market is fairly consolidated. Leading players adopt strategies such as collaborations and partnerships with chemical and pharmaceutical companies to enhance their business position. Major firms operating in this market include Chemtrix BV, ThalesNano Inc., Uniqsis Ltd., Vapourtec Ltd., AM Technology, ThalesNano Inc., Milestone Srl, Koninklijke DSM N.V., and FutureChemistry Holding BV.

Report Content Of Flow Chemistry Market:

Chapter 1 1.1

Methodology & Scope Research Methodology 1.1.1

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Initial data exploration


1.2

Chapter 2 2.1

Chapter 3

1.1.2

Statistical modeling and forecast

1.1.3

Industry insights and validation

1.1.4

Research scope & assumptions

Data Sources 1.2.1

Primary sources

1.2.2

Secondary sources

Executive Summary Flow chemistry industry 3600 synopsis, 2013 – 2024 2.1.1

Business trends

2.1.2

Regional trends

2.1.3

End-user trends

Flow Chemistry Industry Insights

3.1

Flow chemistry Industry Segmentation

3.2

Industry Size and forecast, 2013 - 2024

3.3

Industry ecosystem analysis 3.3.1

3.4

Distribution analysis

Flow chemistry Industry Impact forces 3.4.1

Growth drivers 3.4.1.1 Rising flow chemistry demand owing to its low operating costs and sustainable characteristics 3.4.1.2

3.4.2

Safety in production process along with low emissions

Industry pitfalls and challenges 3.4.2.1 Concerns regarding technology scale up for commercialization

3.5 3|Page

Growth potential analysis


3.6

Porter’s analysis

3.7

Company market share analysis, 2015 3.7.1

Strategic landscape

3.8

PESTEL analysis

3.9

Regional price trends 3.9.1

Cost structure analysis

Market research reports: Key analytical components

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