Annual Meeting on

Separation Techniques

Osaka, Japan   October 12-13, 2017

Separation Techniques 2017

Osaka, Japan October 12-13, 2017

Theme: Contemporary Advancements and Innovations in Analytical and Separation Techniques

Meetings International in collaboration with EuroSciCon, welcomes you to attend Annual Meeting on Separation Techniques to be held from October 12-13, 2017 in Osaka, JapanO
saka, JapanOsaka, Japan
EuroSciCon, founded in 2001 is a UK based independent life science Events Company with predominantly business and academic client base. The key strategic objective of EuroSciCon is to communicate science and medical research between academia, clinical practice and the pharmaceutical industry.  Most of its events are in Europe and London or live streamed. EuroSciCon expanded its operations to international in association with Meetings International, Singapore.  All major meetings of EuroSciCon and Meetings International are accredited with Continued Professional Education (CPD), Continued Education (CE), and Continued Medical Education (CME) Credits.
 
Separation Techniques 2017 is a global annual event to discuss and learn about Novel separation techniques in chemistry,Hyphenated Separation Techniques,Emerging separation technologies, Advancements in chromatography techniques,Advances in Sample Preparation Techniques, Spectroscopy, High Performance Liquid Chromatography, and Basic separation techniques and research related to these fields.

In the light of this theme, the Meetings International aims to provide a forum for international researchers from various areas of, Separation sciences ,Analytical research method development and validation by providing a platform for critical analysis of data , and to share latest cutting-edge research findings and results about all aspects of Separation Techniques.
 
The Separation Techniques industry is showing growth rapidly up from 164 billion dollars in the year 2010 with value expected to hit 228 billion dollars by 2016, up from 164 billion dollars in the year 2010, marking annual growth of nearly 7%, according to a research interesting support . Geographically, global separation technologies market has been segmented into four areas namely Europe, Asia-Pacific, North America, and Rest of the World.
 
We would like to invite in specialists working in adsorption, assimilation, bio-divisions, chromatography, crystallization, refining, films, novel innovations, and so forth. The emphasis will be on new detachment media, new division methods and new advancements breaking out. These perspectives are vital to the difficulties showing up in carbon catch and sequestration, desalination, and expanding application needs in bio-detachments among others. The issues of maintainability, vitality utilization and process strengthening will be ever present in the greater part of our consultations.
We expect high and continued interest in the conference on Separations Technology since it is such a crucial part of a number of major industrial processes around the world.
 

Why to attend???

Separation Techniques 2017 provides an invaluable opportunity to stay up-to-date and ahead on latest innovations. Unrivalled opportunity to do business and network with thousands of senior decision makers looking to discover the latest benefits solutions to engage their staff. This provides them with a perfect platform to promote the best opportunities. With members from around the world focused on learning about separation techniques and its advances, this is your best opportunity to reach the largest assemblage of participants from separation techniques community. This esteemed conference conduct meetings with current and potential scientists, distribute information, presentations.
At this 2-day event  Keynote Sessions, Speaker forum, Business to Business Meetings, Poster Sessions, Panel Discussions are hallmarks of this conference.
 

Target Audience:

Analytical Instrument Manufacturing Companies
Directors of Analytical Chemistry Department in various Universities and Institutions
Professor and Associate Professor of Analytical Chemistry
Analytical Experts in Chromatography
Marketing Teams of Industries with Novel Products to show case at the Conference
Theoretical Scientists working on Deriving Analytical Hypotheses
Relevant Graduate and Post Graduate Students
Research laboratories Scientist, Research Scholars
Analytical Experts in Pharmaceutical and Life Science
Industrial Expertise working with various Novel Solid and Liquid Columns
Leads from Pharmacy and Chemical Industries

Novel Separation Techniques in Chemistry

The process of separation is integral unit operation in most of the modern chemical, pharmaceutical and other process plants. These processes are quite common and the relevant technologies are well-studied and well developed. The novel separation and delivery system overcomes many of the current separation and purification challenges through novel application of Selective Capture Technology (Prime Separations [PSI], Woburn, MA). The novel separation techniques include: Super critical fluid extraction, Urea complexation method and enzymatic method.

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Advancements in Sample Preparation Technique

Techniques such as dispersive disposable pipette extraction, solid-phase extraction, and micro-extraction by packed sorbent offer varieties of extraction phases and provide unique advantages to bio-Analytical methods. Sample preparation is an essential step in analysis greatly influencing the reliability and accuracy of result. Classical sample preparation techniques are time consuming, labour-intensive and multi-stage operations. The development of modern sample preparation techniques has significant advantages over conventional methods in this scenario.

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Evolution in Chromatography

The ideal mode of chromatography assumes that the column efficiency is infinite. Liquid chromatography one of the mostly employed and useful techniques in pharmaceutical industry for sample preparation. With the use of an applied voltage Capillary electrophoresis is other method which identifies and distributes ions depending on their electrophoretic mobility. Chromatography today is the most versatile, comprehensive and pervasive technique used in analytical chemistry.

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Process Chromatography and Process Analytical Technology (PAT)

The process of chromatography separates mixtures into their individual components. Process Analytical Technology (PAT) has been implemented for years, particularly by the chemical industry for the control of chemical processes. Process analytical technology (PAT) has been gaining a lot of momentum in the biopharmaceutical community due to the potential for continuous real time quality assurance resulting in improved operational control and compliance

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New Instrumentation and Multidimensional Separations

Future directions for the development of multidimensional separations are also considered. Multidimensional separation is equal to the product of the individual peak capacities of each dimension. High resolving power can be achieved. The system uses a microbe cat-ion exchange column, operated under gradient conditions, as the first dimension separation. Multidimensional separation format appears to have been developed much later than the original experimental work. The correlation problem haunts multidimensional separation system and ultimately determines their success or failure. multidimensional  approach  is  used,  where  a  complex  mixture is separated by an initial dimension, simpler fractions of that separation are collected and each of those fractions are analysed individually, highly complex mixtures can be resolved in relatively short amounts of time.

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Hyphenated Techniques

The term hyphenated techniques ranges from the combination of separation-identification , hyphenated techniques, e.g., GC-MS, LC-MS, LC-FTIR, LC-NMR, CE-MS, etc. Hyphenated techniques combine chromatographic and spectral methods to exploit the advantages of both .separation-separation techniques. These technique shows specificity and Sensitivity. This technique is also known as double hybrid. Main advantage is fast and accurate analysis, better reproducibility, reduction of contamination due to its closed system. A   Hyphenated   technique   is   combination   or coupling of two different analytical techniques with the help of two proper interfaces. The aim of   this coupling is obviously to obtain an information rich detection for both identification and quantification compared to that with a single analytical technique.

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Special Techniques

 Pyrolysis gas chromatography is another type of chemical analysis in which the sample is heated to decomposition to produce smaller molecules which are synthesized by gas chromatography and detected using mass spectrometry. There are different kinds of chromatographic techniques and these are classified according to the shape of bed, physical state of mobile phase, separation mechanisms. Reversed-phase chromatography (RPC) is any liquid chromatography procedure in which the mobile phase is significantly more polar than the stationary phase. A low-cost quadruple mass spectrometer as an independent detector has been mounted inside a mass spectrometer.

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Techniques by Chromatographic Bed Shape

 Planar chromatography is a technique in which the stationary phase is present as or on a plane. The plane can be a paper or stationary bed. Paper chromatography is a technique in which placing a small dot or line of sample solution onto a strip of chromatography paper. These instruments thus provide powerful methods for quantitative analysis. The motion of the solute and solvent through the stationary phase is called elution. Chromatography can be carried out in many ways .In column chromatography and in thin layer chromatography (TLC) a solution of the mixture flows over a solid adsorbent. In paper chromatography applications, the mixture is partitioned between water molecules adsorbed on the paper and a solvent that moves over the paper.

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Bio-separations:  Recent advances

 Mixtures come in many Phases. The kind of separation method depends on what kind of mixture it is. Chromatography is used in washing machines to squeeze water from wet clothes. Separation of different fractions from petroleum products is done by simple distillation. Used in washing machines to squeeze water from wet clothes is by centrifugation. Separating pigments from natural colours is by chromatography. The purpose of a separation may be analytical, can be used as a lie component in the original mixture without any attempt to save the fractions, or may be preparative, i.e. to "prepare" fractions or samples of the components that can be saved

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Market Growth of Chromatography

This global market report categorizes the market into 3 wide segments like Accessories & Consumables, Instrumentation, and Reagents. Some parts of European region, North America, Asia-Pacific and Rest of the World. These chromatography instrumentation techniques are used in various application areas such as genetic engineering, pharmaceutical, biotechnology, diagnostics, drug discovery, water analysis, food production. The market for chromatography instrumentation holds an immense potential due to increasing number of biotechnology and pharmaceutical industries. The instruments that are utilized in the chromatography have benefitted the researches due to their ability to separate.

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Chromatography as a Separation Technique

Chromatography is a method of separating compounds from a mixture. The technique is both preparative, analytical and is employed widely in laboratory as well as industrial standards. More than 70% of chemical analysis all over the world is done using Chromatography. It is a physical technique applied from basic organic chemistry to Forensic sciences. Some of the common applications include detection of cocaine in urine, alcohol in blood, PCB’s in fish, lead in water, etc. Chromatography is of various types-displacement chromatography, Paper chromatography, Thin layer chromatography, supercritical chromatography, expanded bed adsorption chromatography, liquid chromatography, Gas chromatography, Column fluid chromatography in various combinations.

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Mass spectrometry

Mass spectrometry is an analytical method with high specificity and a growing presence in laboratory medicine. Identification of unknown peaks in gas chromatography (GC/MS)-based discovery metabolomics is challenging, and remains necessary to permit discovery of novel or unexpected metabolites that may allergic diseases processes and/or further our understanding of how genotypes relate to phenotypes. New mass spectrometry (MS) methods, collectively known as data independent analysis and hyper reaction monitoring, have recently emerged. As per Fundamentals of Mass Spectrometry, Mass spectrometry is an analytical tool used for measuring the molecular mass of a sample.

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Separation Media Synthesis and Modeling

We have created permeable polymer stone monuments (PPMs) that are adaptable and strong switched stage chromatography media. The PPMs are thrown to-shape, UV-cured polymers that frame uniform packing’s inside pre-treated glass vessels and melded silica chips. No connected weight is ever expected to flush the PPMs since they bolster electro osmotic stream as cast. Such qualities make the PPMs valuable for chip-based gadgets. Our outcomes indicate efficiencies more prominent than or equivalent to 150 000 plates/m for both slender and chip-based detachments of polycyclic sweet-smelling hydrocarbons. By changing the monomers, the hydrophobicity of the polymers, and the bearing of the electro osmotic stream can be modified without corrupting chromatographic execution. We portray here the improvement of these acrylate-based materials alongside both physical and chromatographic portrayal.

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Crystallization and Solid/Liquid Separations

Micro porous films have been readied by means of thermally-initiated strong fluid stage division of polymer-diluent blends. The thermally-actuated strong fluid stage detachment process is examined as far as the arrangement thermodynamics of the twofold blend and the crystallization energy. Strong fluid stage detachment continues by means of nucleation and development of polymer precious stones to create an assortment of structures. Polypropylene, high thickness polyethylene, polychlorotrifluoroethylene, poly (4-methyl-1-pentene) and poly (vinylidene fluoride) films are displayed as examples. The physical type of potassium sulphate gems created in research center scale clump crystallizers by both cooling and by precipitation is contemplated regarding its ensuing impact on strong fluid detachment attributes. Control of working conditions enhances the gem estimate circulation in both cases and extensively builds the penetrability of the encourages.

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Biomarker Bio analysis and Regulations:

The part of biomarkers in medication disclosure and advancement has picked up priority throughout the years. As biomarkers end up noticeably incorporated into medication advancement and clinical trials, quality confirmation and specifically examine approval ends up plainly basic with the need to set up institutionalized rules for investigative techniques utilized as a part of biomarker estimations. New biomarkers can alter both the advancement and utilization of therapeutics, however is dependent upon the foundation of a solid approval prepare that locations innovation reconciliation and strategy approval and in addition administrative pathways for productive biomarker improvement. This point of view concentrates on the general standards of the biomarker approval handle with an accentuation on examine approval and the collective endeavours attempted by different divisions to advance the institutionalization of this method for productive biomarker improvement. Biomarkers are assuming an inexorably vital part in medication disclosure and improvement from target ID and approval to clinical application, accordingly making the general procedure a more normal approach.

The role of biomarkers in rational drug development has been a major focus of the Food and Drug Administration (FDA) critical path initiative and the National Institutes of Health (NIH) roadmap, while the overwhelming majority of biomarkers are proteins used as surrogate end points for drug development, diagnostic biomarkers may also prove useful for understanding the biology of the disease. Successful biomarker development depends on a series of pathway approach that originates from the discovery phase and culminates in the clinical validation of an appropriately targeted biomarker.

Biomarkers are now increasingly used in the pharmaceutical industry for early proof-of-concept studies and, furthermore, much research is focusing on the development of diagnostic and predictive biomarkers for point-of-care biosensor systems in the clinical environment and beyond.

Sub Tracks:

Challenges of identifying Biomarkers

Standardization and regulation of Biomarkers

Biomarker technology innovation

Future of Biomarkers

Collaborating in Biomarker assay qualification & validation

Integrating Biomarkers into Drug Development

Bio Sensors

  • Advantages of Nano technological  approaches  to biosensor development
  • Applications of bio sensors
  • Advances in Biosensors Research

Biosensor refers to a powerful and innovative analytical device that combines a transducer with a biological sensing element. It is an analytical device which converts a biological response into an electrical signal .Biosensors obtained huge attention in recent years in medicine and nanotechnology. Biosensor products have found versatile applications in various industries including food and beverages, agricultural, environmental, medicinal diagnostics, and pharmaceutical enterprises and many more.

Novel Approaches to Analytical and Bio-Analytical Methods

  • Strategy development and validation reports
  • DNA sequencing
  • Ion sensors
  • Quality assurance in analytical chemistry
  • Recent advances in emerging imaging techniques

Analytical chemistry is that the study of the partition, identification, quality control and quality confirmation of the synthetic parts of natural and artificial materials. The maintenance of a desired coveted level of value in an exceedingly service or product, particularly by means that of consideration to every phase of the strategy of delivery or generation. Bio-analytical Chemistry could be a sub-category of Analytical Chemistry that covers the measuring of medicine, Ion sensors, Proteins and DNA Sequences in unnatural samples or concentrations.  Amend evaluation of the drug samples is extremely important for several scientific endeavours which can not hinder the result. Therefore the Bio-Analytical Techniques are in the main focussed to induce the correct results of the drug sample to supply a correct outcome.

Applications of Analytical and Bio-Analytical Methods

Chemometrics, marine products, and food science

Advances in micro/Nano-bio-Analysis

Micro and Nano technologies in bio-Analysis

Method development and validation reports

Bio-Analysis might be a sub-discipline of analytical chemistry covering the quantitative activity of xenobiotic (medications and their metabolites, and organic molecules in unnatural locations or concentrations) and biotic (large scale and small scale molecules, proteins, DNA, giant molecule medicine, metabolites) in natural frameworks. Applications for analytical and Bio-Analytical method development and validation are as per the following: biological safety test, clinical support, separation of mixture of compound, drug investigation. Importance of understanding proteomics and process of food science is essential, and can be discussed by using separation techniques.

Market analysis:

Theme:  Contemporary Advancements and Innovations in Analytical and Separation Techniques

Summary:

A separation is a method to achieve any phenomenon that converts a mixture of chemical substance into two or more distinct product mixtures, which may be referred to as mixture. In some cases, a separation may fully divide the mixture into its pure constituents.

Global Industry Analysts announced the release of a comprehensive global report on chromatography systems market. The global market for chromatography systems is forecast to reach $1.2 billion by the year 2015.The global market of separation systems is forecasted to be around $28 billion by 2019, growing at an approximate CAGR of 10% in the forecasted years. America has the largest market growth followed by Asia-Pacific and Europe. The Global Cell Separation Techniques Market is poised to grow at a CAGR of around 10.6% over the next decade to reach approximately $6.04 billion by 2025. Based on technology, the market is segmented into gradient centrifugation and surface markers separation. By surface markers separation, the market is further categorized into fluorescence activated cell sorting (FACS) and magnetic activated cell sorting (MACS).

The U.S. market for fluorochemical and polymers is expected to increase from 2.1 billion pounds in 2016 to nearly 2.4 billion pounds in 2021 at a compound annual growth rate (CAGR) of 2.3% for 2016-2021. The global market for bio pesticides and synthetic pesticides reached $58.5 billion in 2015. The market should reach $60.2 billion in 2016 and $78.7 billion by 2021, growing at a compound annual growth rate (CAGR) of 5.5% from 2016 to 2021, the global specialty chemicals market for water treatment should reach $38.2 billion by 2021 from $28.5 billion in 2016 at a compound annual growth rate (CAGR) of 6.1%, from 2016 to 2021.

This research examines the in terms of the challenges faced by market participants; Market Size is roughly $ €543 billion a year. With a workforce of 1.2 million and sales of €527 billion (2013). Traditionally, the chemical sector was severely affected by the 2008-09 global recession, According to the data; the sector remains 7% below pre-crisis levels. World chemicals sales in 2012 are valued at €3,127 billion; total sales for the region were €673 billion in 2011–21.5 per cent of world chemicals sales in value terms. Eleven of the top 30 major chemicals producing countries sales of €582 billion. This figure accounts for 20.9 per cent share of chemicals sales in the top 30 chemicals producing countries and 18.6 per cent in the world. Developments during the last 20 years from 1992 to 2012 indicate that was in a much stronger position than today, during the period from 2002 to 2012, chemicals sales increased on average by 3 per cent per annum. By 2012, Chemicals sales and consumption in the Union registered little growth during the period from 2007 to 2012, while chemicals consumption increased by 0.7 per cent and sales by 1.3 per cent. During the 11-year period from 2001 to 2012, the chemical industry had an average production growth rate of 0.6 per cent, a rate slightly higher than the 0.4 per cent for all of the manufacturing industry. Growth in chemicals production in 2010 was spectacular, reaching 10.6 per cent year on year. The overall economic recovery was fragile, however, with anaemic production growth in 2011–1.9 per cent in volume terms, followed by a 2.3 per cent year-on-year contraction in 2012.ar contraction in 2012.

Importance and scope:

Separation technique-2016 aims to bring together leading academic Analyst, researchers and research scholars to exchange and share their experiences and research results about all aspects of Separation techniques and Advancements. It also provides the chance for researchers, practitioners and educators to present and discuss the most recent innovations, trends, and concerns, practical challenges encountered and the solutions adopted in the fields of separation techniques.

Separation Science is the leading global portal for fundamentals, best practice and troubleshooting information for users of chromatographic and mass spectrometric techniques.

The ideal mode of chromatography assumes that the column efficiency is infinite .Liquid chromatography one of the mostly employed and useful techniques in pharmaceutical industry for sample preparation. With the use of an applied voltage Capillary electrophoresis is other method which identifies and distributes ions depending on their electrophoretic mobility. Chromatography today is the most versatile, comprehensive and pervasive technique used in analytical chemistry.

This global market report categorizes the market into 3 wide segments like Accessories & Consumables, Instrumentation, and Reagents. Some parts of European region, North America, Asia-Pacific and Rest of the World. These chromatography instrumentation techniques are used in various application areas such as genetic engineering, pharmaceutical, biotechnology, diagnostics, drug discovery, water analysis, food production.

Why Japan???

The Market of chromatography in Asia will increase and expand its market share. Japan is prosperous organizations in the nation Furthermore need the mossy cup oak different economy for Asia. Those Japanese society will be a multi-layered and complex framework that need been Creating inside itself Furthermore shaping new layers. Japan need 4 unique seasons beginning for a frosty and dry winter. The welcome spring may be gentle Also acquires out Japan’s acclaimed cherry blossoms. The middle of the year begins with the blustery season to late June alternately promptly July. Osaka castle will be Japanese manor in Japan. The palace will be a standout amongst Japan's practically celebrated point of interest Also it assumed a major part in the unification from claiming japan.

Conference Highlights

Novel Separation Techniques in Chemistry

Advancements in Sample Preparation Technique

Evolution in Chromatography

Process Chromatography and Process Analytical Technology (PAT)

New Instrumentation and Multidimensional Separations

Hyphenated Techniques

Special Techniques

Techniques by Chromatographic Bed Shape

Bio-Separation Techniques

Market Growth of Chromatography

Chromatography as a Separation Technique

Mass Spectrometry

Separation Media Synthesis and Modeling

Crystallization and Solid/Liquid Separations

Major Separation Techniques Associations around the Globe

Chromatography Association of India (CSI)

American Chemical Society

Society of Analytical Psychology

Association of Separation Scientists and Technologists

American Organization of Analytical Chemists International (AOAC)

American Society for Mass Spectrometry

An International Separation Science Society

Association of Analytical Communities (AOAC) International

Association of Separation Scientists and Technologists

Australian and New Zealand Society for Mass Spectrometry

Austrian Society for Analytical Chemistry

California Separation Science Society (CaSSS)

Canadian Society for Analytical Sciences

Chinese American Chromatography Association (CACA)

Chromatographic Society of India (CSI)

Cooperation on International Traceability in Analytical Chemistry (CITAC)

International Council of Chemical Associations

Mendeleev Russian Chemical Society

Royal Australian Chemical Institute

Royal Society of Chemistry

Society for Applied Spectroscopy

Society for Chromatographic Sciences (SCS, Japan)

South African Chromatography Society (ChromSA)

The International Association for the Advancement of High Performance Thin Layer Chromatography (HPTLC Association)

The Japan Society for Analytical Chemistry (JSAC)

Major Associations in Japan:

Japan Association for International Chemical Information

Royal Society of Chemistry

Chemical Society of Japan

Statistical Analysis of Associations:

Major Universities in Japan:

University of Tokyo

Kyoto University

Osaka University

Japan Science and Technology Agency

Shizuoka University

University of Tsukuba

Target Audience

Industry 70%

Academia 20%

Others 10%

Chromatography instruments market, by Region

Asia-Pacific

  • Japan
  • China
  • India
  • Pacific Countries
  • Rest of Asia-Pacific (RoAPAC)
  • Novel Separation Techniques in Chemistry
  • Advancements in Sample Preparation Technique
  • Evolution in Chromatography
  • Process Chromatography and Process Analytical Technology (PAT)
  • New Instrumentation and Multidimensional Separations
  • Hyphenated Techniques
  • Special Techniques
  • Techniques by Chromatographic Bed Shape
  • Bio-Separations: Recent Advances
  • Market Growth of Chromatography
  • Chromatography as a Separation Technique
  • Mass spectrometry
  • Separation Media Synthesis and Modeling
  • Crystallization and Solid/Liquid Separations
  • Biomarker Bio analysis and Regulations:

4 Organizing Committee Members