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Previous Speakers

Davis L Ford

Davis L Ford

The University of Texas at Austin, USA

Adango Miadonye

Adango Miadonye

Cape Breton University, Canada

Ramesh Agarwal

Ramesh Agarwal

Washington University in St. Louis, USA

Anand Prakash

Anand Prakash

University of Western Ontario, Canada

Denis S Kuprin

Denis S Kuprin

Saint Petersburg State University, Russia

Milorad Ninkovic

Milorad Ninkovic

University of Novi Sad, Serbia

Gui-huan Yao

Gui-huan Yao

Nanjing Tech University, China

Christo Boyadjiev

Christo Boyadjiev

Bulgarian Academy of Sciences, Bulgaria

Chemical Engineering 2020

About Conference


Chemical Engineering Conferences is glad to announce 8th World Summit on Chemical Engineering and Catalysis at Vienna, Austria on July 15-16, 2020.

Chemical engineering is a field influencing numerous areas of technology. In massive terms, chemical engineers conceive and design techniques to produce, transform and transport substances — starting with experimentation within the laboratory followed by the use of implementation of the generation in full-scale production.

Chemical engineers conference are in great demand because of the large number of industries that depend on the synthesis and processing of chemicals and materials. In addition to traditional careers in the chemical, energy and oil industries, chemical engineers enjoy increasing opportunities in biotechnology, pharmaceuticals, electronic device fabrication and environmental engineering. The unique training of the chemical engineer becomes essential in these areas when processes involve the chemical or physical transformation of matter.

For example, chemical engineers working in the chemical industry investigate the creation of new polymeric materials with important electrical, optical or mechanical properties. This requires attention not only to the synthesis of the polymer, but also to the flow and forming processes necessary to create a final product. In biotechnology, chemical engineers help design production facilities that use microorganisms and enzymes to synthesize new drugs. Problems in environmental engineering that engage chemical engineers include the development of processes (catalytic converters, effluent treatment facilities) to minimize the release of or deactivate products harmful to the environment.

To do these jobs, the chemical engineer must have a complete and quantitative understanding of both the engineering and scientific principles underlying these technological processes. This is reflected in the curriculum of the Chemical Engineering Department, which includes the study of applied mathematics, material and energy balances, thermodynamics, fluid mechanics, energy and mass transfer, separations technologies, chemical reaction kinetics and reactor design, and process design. These courses are built on a foundation in the sciences of chemistry, physics and biology.

Young Scientist Benefits:

  • Our conferences provide best Platform for your research through oral presentations.
  • Share the ideas with both eminent researchers and mentors.
  • Young Scientist Award reorganization certificate and memento to the winners
  • Young Scientists will get appropriate and timely information by this Forum.
  • Platform for collaboration among young researchers for better development
  • Award should motivate participants to strive to realize their full potential which could in turn be beneficial to the field as whole.

Deadline for Registrations:          

  • Till December 30, 2019 – $399   
  • Till January 30, 2020 – $449        
  • Till February 28, 2020 – $499

Target of audience:

  • Chemical Engineers
  • Chemists
  • Chemical Scientists
  • Chemical engineering Students
  • Chemical Industries
  • Chemical engineering Associations and Societies
  • Biochemical engineers
  • Polymer engineers
  • Chemical Companies
  • Petroleum Engineers
  • The people who are specialized with geologists, geophysicists, reservoir engineers, production engineers, Chemical Engineers

Sessions/Tracks

Track 1: Chemical Engineering

Chemical Engineering Conference addresses the physical science application (e.g., chemistry and physics), and life sciences with mathematics and economics, the process of changing raw materials or chemicals into more useful or valuable forms. In addition to develop useful materials, modern chemical engineering is also concerned with pioneering valuable new materials and new methods such as nanotechnology, fuel cells and biomedical engineering. The global chemical industry and market analysis, estimated at U.S. $2.4 trillion, is one of the fastest growing business sectors of the manufacturing industry. It also shipped 3.4 billion dollars’ worth of chemicals globally across regions in 2009.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

Related societies and associations

European Federation of Chemical Engineering, American Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New Zealand, Society of Chemical Engineers, Thai Institute of Chemical Engineering and Applied Chemistry, Israel Institute of Chemical Engineers (IIChe), American Chemical Society, World Chemical Engineering Council

Track 2: Electrochemistry and Electrochemical Engineering

An Electrochemical Synthesis is a chemical reaction that is caused by the movement of electrical current. These processes are a type of oxidation-reduction chemical reactions in which one atom or molecule loses an electron to another atom or molecule. In electrochemical process, the atoms or molecules in the reaction are relatively far apart from each other compared to other reactions, forcing the electrons being transferred to travel a greater distance and thereby produce an electrical current. Many natural phenomena are depend on Electrochemical Methods, such as the corrosion of metals, the ability of some sea creatures to produce electrical fields, and the workings of the nervous systems of humans and other animals. They also play an important part in modern Chemical technology, most prominently in the storage of electrical power in batteries, and the electrochemical process called electrolysis is important in modern industry. Neurons use electrochemical processes to transmit data through the nervous system, allowing the nervous system to communicate with itself and with the rest of the body. The electrochemical instruments market is segmented on the basis of products, methodologies, end user, and region. The global electrochemical instruments market was valued at $1,713.0 Million in 2014 and is poised to increase at a CAGR of 5.2% during the forecasted period.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 3: Petroleum Refining and Petrochemicals

Petrochemicals are chemical products developed from petroleum. Some chemical compounds made from petroleum are also obtained from fossil fuels, such as coal or natural gas, and renewable sources such as corn or sugar cane. The most common petrochemicals are olefins and aromatics (including benzene, toluene and xylene isomers), Synthesis gas. Oil refineries produce olefins and aromatics by method of fluid catalytic cracking of petroleum fractions. Chemical plants produce olefins by a steam cracking of natural gas liquids like ethane and propane. Aromatics are produced by a process of catalytic reforming of naphtha. Petroleum refining processes are nothing but chemical engineering processes used in petroleum refineries to change crude oil into useful products such as liquefied petroleum gas (LPG), gasoline, petrol, kerosene, jet fuel, diesel oil and fuel oils. Each refinery has its own specific arrangement and combination of refining processes largely determined by the refinery places, desired products and economic considerations. The oil and gas security and service market size is estimated to increase from USD 26.34 Billion in 2015 to USD 33.90 Billion by 2020, at an estimated (CAGR) of 5.2% from 2015 to 2020.

Track 4: Applications of Chemical Technology

The branch of engineering that handles with the technology of large-scale chemical production and the manufacture of products through chemical process. The Modern products of chemistry lead to cutting edge advancements applied technology in medical devices, aerospace, computing, fuels and more. As technology advances our nation’s primary chemicals management law must be updated to adapt to scientific progress and to promote that chemical products are safe for intended use. Chemistry Usage in Nanotechnology has many diverse applications, some of which include delivering drugs to specific cells, and repairing of damaged human tissue, improving efficiency of solar energy production and enabling both lighter, higher performance plastics for aerospace, construction and vehicles. Chemistry in the Space Age Aerospace needs the products of chemistry such as plastic space suits that can withstand 600 degree (Fahrenheit) temperature ranges. Chemistry in Computing has widespread use of touch screens, enabled by plastics, adhesives and other products of chemical technology are employed on cell phones, PDAs, computer screens. The global construction chemicals market (2015–2020) is estimated to reach USD 33.98 Billion by 2020 increasing at a rate of 7.62% between 2015 and 2020.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 5: Biomolecular Engineering

Biomolecular Engineering is an emerging discipline at the interface of molecular biology, biophysical chemistry, and chemical engineering. Biomolecular engineering is the application of engineering principles and practices to the purposeful manipulation of molecules of biological origin. A biomolecular engineer studies and manufactures new molecules to create products and processes that don't already exist in the natural world. Biomolecular engineering research includes mathematical modelling of biomolecules and biological processes, their quantitative measurements, visiualizations, multidimensional and detailed structural analyses, protein structure prediction using current approaches protein structure-function relationships, rational design of bioactive molecules discovery of new target molecules leading to new drug discoveries, construction of artificial gene circuits to produce novel gene products. Worldwide, biomedical engineering is rapidly developing given its crucial role in the biomedical field.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 6: Chemical Polymer Technology

Polymerization is the process of combination of many small biochemical molecules known as monomers into a covalently bonded chain. During the polymerization process, few chemical groups may be lost from each monomer. Monomers are terephthalic acid, ethylene glycol Laboratory synthetic method are step-growth polymerization and chain-growth polymerization. The essential variation between the two is that in chain growth polymerization, monomers are added to the chain one at a time only, such as in polyethylene, But in step-growth polymerization chains of monomers may combine with one another directly. The global polymer chemistry market is projected to reach USD 4.4 Billion by 2020, signifying firm annualized growth of 7% between 2015 and 2020.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

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Track 7: Biofuels

Biofuel are manufactured using a wide range of resources. This variety has grown in recent years, aiding to shape a dexterous industry that is steadily searching for a new technology and feedstock.

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Track 8: Organic Chemistry

Organic chemistry handles with the synthesis and behaviour of inorganic and organometallic compounds. This field covers all chemical compounds but not the carbon based compounds which are the subjects of organic chemistry. It has applications in every aspect of the chemical industry catalysis, material science, pigments, surfactants, coatings, medicine, fuel, agriculture. And many inorganic compounds are ionic compounds, consisting of cat-ions and anions joined by ionic bonding. Inorganic compounds are naturally found in nature as minerals. The easiest inorganic reaction is double displacement when in mixing of two salts the ions are swapped without a change in oxidation state. In redox reactions one reactant, the oxidant lowers its oxidation state and the other reactant has its oxidation state increased. Different classifications are: Coordination compounds, Main group compounds, Transition metal compounds, Organometallic compounds , Bioinorganic compounds, Solid state compounds. The global inorganic scintillators market is broadly categorized into healthcare, nuclear power plants, industrial and defence. In 2013, the healthcare accounted for the largest share of the global inorganic scintillators market, by application.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 9: Thermodynamics

Thermodynamics is a division of physics involved with heat and temperature and their relation to energy and work .Thermodynamics applies to a wide range of subjects in science and engineering, mainly physical chemistry, chemical engineering and mechanical engineering. Thermodynamic equilibrium is one of the very important concepts of thermodynamics. A thermodynamic operation usually results in thermodynamic process of transfer of mass or energy that modifies the state of the system, and the transfer occurs in natural accord with the laws of thermodynamics. Thermodynamic systems are theoretical constructions used to model physical systems that convert matter and energy in terms of the laws of thermodynamics. The global Distributed Control System (DCS) market is expected to range USD 19.82 Billion by 2020, at a CAGR of 4.91% from 2015 to 2020. Distributed control systems are helping end-users to address complex process automation challenges effectively.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 10: Biochemical Engineering

Biochemical engineering is a department of Chemical Engineering that mainly deals with the design and construction of unit operations that involve biological organisms or molecules, such as bioreactors. Its applications are in the petrochemical industry, food and pharmaceutical, biotechnology, and water treatment industries. A bioreactor may also refer to a device meant to grow cells or tissues in the ambience of cell culture. These devices are being developed for use in tissue engineering or biochemical engineering. Different types of Bioreactors are Photo bioreactor, Sewage treatment, Up and Down agitation bioreactor, NASA tissue cloning bioreactor, Moss bioreactor. The biomaterials market currently generates more than $30 billion globally, and is expected to increase at a double-digit CAGR in the next few years. Orthopaedic applications form the largest division of the overall biomaterials market. Polymer-based biomaterials are expected to initiate the next wave of market growth; and the future biochips and biosensors business segments also offer huge growth potential.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 11: Environmental and Sustainable Chemical Engineering

Environmental Engineering basically is a branch of applied science which involves the issues of energy preservation, protection and control of wastes from human and animal activities. It also includes waste water management, air pollution control, recycling, waste disposal, radiation protection, industrial hygiene, animal agriculture, environmental sustainability, public health and environmental engineering law.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 12: Crystallization

Crystallization is also a chemical solid–liquid separation technique, in which mass transfer of a solute from the liquid solution to a pure solid crystalline phase occurs. In chemical engineering, crystallization occurs in a crystallizer.

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Track 13: Chemical Reaction Engineering

Chemical reaction engineering involves organising plant processes and conditions to ensure optimal plant operation to construct models for reactor process design and analysis. Many applications of chemical engineering involves in day to day life like rubber, plastic, cement, sugar, ceramic etc.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 14: Advances in Renewable Chemicals

Renewable chemicals are used for increasing the use of renewable resources rather than fossil fuels. Renewable chemicals contain all the chemicals which are produced from renewable feedstock such as microorganisms, biomass (plant, animal, and marine), and agricultural raw materials. Renewable chemicals are utilized in several applications across different Chemical industries such as in food processing, housing, textiles, environment, transportation, hygiene, pharmaceutical, and other applications. Renewable chemicals are mainly available as ketones, alcohols, organic acids, and bio-polymers. They are used in surfactants and lubricants, consumer goods, resins, and plastics for environmental purpose. There are diverse technologies available in chemical engineering which are used for making renewable chemicals The renewable chemicals market is expanding primarily the resources of renewable chemicals, and the consumer’s inclination towards using eco-friendly products. The high cost and certain subjects related to the production of renewable chemicals are the factors that are hampering the development of this market. Presently Europe forms the largest market for renewable chemicals, but Asia-Pacific is driving the market growth, and is expected to override the renewable chemicals market by 2020.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 15: Chemical Industry and Market Analysis

The Chemical Industry and Market Analysis is one of the quickest growing segments in manufacturing industry. Chemicals broadly contain bulk petrochemicals and intermediates, minerals, polymers, more derivatives, etc. The industry has been undergoing through important structural modifications in the recent years, such as new developing markets, change in manufacturing places, superior technologies, and rising raw material cost. The key challenges for the industry are government regulations, carbon-emission policies, and economies of scale. Transparency Market Research provides study on sealants, adhesives, explosives, chemicals, agro-chemicals, petrochemicals, renewable chemicals paints and coatings, colorants, biodegradable plastics, and other chemicals.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 16: Unit operation and Separation Process

In the field of Chemical Engineering separation process is the mass transfer that converts the substance mixture into specific product mixtures. In some cases, a separation may fully divide the mixture into its pure constituents. Separation Techniques are conducted based on the differences between chemical properties, or physical properties like size, shape, mass, density and chemical affinity, between the constituents of a mixture, and are often differentiated according to the specific differences they use to achieve .The Global process Instrumentation market is expected to reach $18.96 Billion by 2020, at a CAGR of 3.34% from 2014 to 2020. Region leads the overall Process Instrumentation market.

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 17: Physical and Organic Chemistry

Physical Organic Chemistry is the study of the relationship between structure and reactivity of organic molecules. More specifically, physical organic chemistry applies the experimental tools of physical chemistry to the study of the structure of organic molecules and provides a theoretical framework that interprets how structure influences both mechanisms and rates of organic reaction.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 18: Material Science and Engineering

Material Science and Engineering involves the discovery and design of new materials.  Many of the most pressing scientific problems humans currently face is due to the limitations of the materials that are available and, as a result, major breakthroughs in materials science are likely to affect the future of technology significantly. Materials scientists lay stress on understanding how the history of a material influences its structure, and thus its properties and performance. All engineered products from airplanes to musical instruments, alternative energy sources related to ecologically-friendly manufacturing processes, medical devices to artificial tissues, computer chips to data storage devices and many more are made from materials. The intellectual origins of materials science stem from the Enlightenment, when researchers began to use analytical thinking from chemistry, physics, and engineering to understand ancient, phenomenological observations in metallurgy and mineralogy.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 19: Oil, Gas and Petroleum Refineries

Dimerization Unit

Isomerization Unit

Petroleum Refining

Mining & Metallurgy

Fluid Catalytic Converter Unit

Downstream and Upstream Process

Distillation Unit and Heat Exchangers

Petrochemicals, Chemicals & fertilizers

Atmospheric Distillation (distills crude oil into fractions)

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

Related societies and associations

European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 20: Biotechnology and Biochemical Engineering

Biotechnology is the use of living systems and organisms to develop or make products, or "any technological application that uses biological systems, living organisms, or derivatives thereof, to make or modify products or processes for specific use.

Biochemical Engineering is an essential area in modern biotechnology. Biochemical Engineering includes Bioreactor and fermenter design aspects, Industrial biotechnology, Photo Bioreactor Electrochemical Energy Conversion, Biological Hydrogen production (Algae), Biofuel from algae, Bioreactor landfill, and Moss bioreactor.

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6th International Conference on Advances in Chemical Engineering & Technology, March 02-03, 2020 London, UK; 7th World Congress on Chemical Engineering and Catalysis, July 22-23, 2020 Florence, Italy; 11th International Conference on Chemistry, July 20-21, 2020 Florence, Italy; 15th World Bioenergy Congress and Expo, April 20-21, 2020 Berlin, Germany; 11th Annual Congress on Bioenergy and Biofuels, October 28-29, 2020 Dubai, UAE

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European Federation of Chemical EngineeringAmerican Chemical Society (ACS),Canadian Society for Chemical Engineering (CSChE), Society of Chemical Engineers New ZealandSociety of Chemical EngineersThai Institute of Chemical Engineering and Applied ChemistryIsrael Institute of Chemical Engineers (IIChe), American Chemical SocietyWorld Chemical Engineering Council

Track 21: Electrochemistry and Electrochemical Engineering

An Electrochemical Synthesis is a chemical reaction that is caused by the movement of electrical current. These processes are a type of oxidation-reduction chemical reactions in which one atom or molecule loses an electron to another atom or molecule. In electrochemical process, the atoms or molecules in the reaction are relatively far apart from each other compared to other reactions, forcing the electrons being transferred to travel a greater distance and thereby produce an electrical current. Many natural phenomena are depend on Electrochemical Methods, such as the corrosion of metals, the ability of some sea creatures to produce electrical fields, and the workings of the nervous systems of humans and other animals. They also play an important part in modern Chemical technology, most prominently in the storage of electrical power in batteries, and the electrochemical process called electrolysis is important in modern industry. Neurons use electrochemical processes to transmit data through the nervous system, allowing the nervous system to communicate with itself and with the rest of the body. The electrochemical instruments market is segmented on the basis of products, methodologies, end user, and region. The global electrochemical instruments market was valued at $1,713.0 Million in 2014 and is poised to increase at a CAGR of 5.2% during the forecasted period.

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Market Analysis

Chemical production in the European Union is expected to barely grow faster than in 2016. In general, the increase in production will remain modest against the backdrop of a sluggish domestic market. We expect competitive pressure on export markets to remain intense, even though the naphtha-based European chemical industry benefits more from low oil prices than the gas-based production in the United States.

 In the United States, we expect somewhat faster growth in chemical production, at just under 2%, as new production capacity, which will also be used for export, comes onstream. Overall chemical growth is likely to decelerate somewhat in the emerging markets of Asia, mainly due to the slowdown in China, which will affect the other developing countries in the region. In Japan, we presume a weak overall economic environment and minimal growth in chemical production. In South America, the anticipated end of the recession in Argentina and Brazil will result in slight growth in chemical production in the region.

 

                                                            Figure 1: Chemical production Data

Materials Chemistry:

Today, many materials chemists are synthesizing functional device materials, and the discipline is often seen as directed towards producing materials with function—electrical, optical, or magnetic. Material chemistry is involved in the designing and processing of materials. Global market for catalysts is expected to reach $28.5 billion by 2020, growing at a CAGR (2015 to 2020) of over 3%. Asia-Pacific is having the largest market for catalysts accounting for more than 35% share.

 

                                           Figure 2: Growth forecast of material chemistry

Global Advanced CBRN Market:

The global chemical, biological, radiological, and nuclear (CBRN) security market is rising at a steady pace globally as demand for effective CBRN protection measures to combat terrorist attacks is at an all-time high. The threat of use of weapons of mass destruction by terrorist organizations have raised alarms to prevent possible attacks with CBRN systems. CBRN security is a rising market to address concerns related to protecting civilian lives and maintenance of economic stability.

In addition, CBRN systems are used for accidental incidents. These include events caused by human or technological errors such as accidental leaks or factory spillage of poisonous gas or liquids. Intentional CBRN incidents occur when CBRN materials are released into the environment with the intention of terrorism or war or when hazardous material is discharged into the environment deliberately.

One of the key factors driving the CBRN security market is increasing demand for CBRN security in developing countries such as India, China, and Brazil among others. In addition, African nations are expected to continue spending incessantly on CBRN surveillance systems to mitigate rising CBRN threats such as Ebola in the regaion. With continual technological advancements and increasing research initiatives worldwide, new-age CBRN security equipment are launched that primarily focus on government organizations, military, and law enforcement agencies.

Transparency Market Research estimates the global CBRN security market to be worth US$15074.8 mn by 2025 increasing from US$9890.0 mn in 2016, expanding at a CAGR of 4.8% between 2017 and 2025.

 

                                                             Figure 3: Global CNBR Security Market

Global Aroma Chemicals Market:

Aroma is a complex mixture of individual chemicals behaving according to their unique characteristics. These chemicals have several attributes such as polarity, volatility, stability, and surface activity among others. Among them, the chemicals with weight greater than 300 are called aroma chemicals. Perfumers use comprehensive palette of synthetic and natural aroma chemicals along with technical staff to create a peculiar commercial product.

Until a few years back, household care and personal care were the two primary segments exhibiting the demand for aroma chemicals. However, considering the latest research and development activities, the use of aroma chemicals has successfully penetrated medical and food and beverages industries. Spurred by this and efforts taken by the leading manufacturers to bolster product development and diversification, the global aroma chemicals market is forecast to exhibit a CAGR of 6.2% between 2016 and 2024. At this pace, the market’s valuation is expected to reach US$6.57 bn by the end of 2024. In 2015, the market was valued at US$3.85 bn.

 

                                                          Figure 4: Global Aroma Chemicals Report

Global Steam Boiler Systems Market:

 The global market for steam boiler systems is witnessing significant growth in its valuation, thanks to the rising demand for energy across the world. The augmenting need to improve energy efficacy of power plants and power generation process has been fueling the demand for steam boiler systems substantially. The rise in the government initiatives to encourage the usage of steam boiler systems, such as providing rebates and subsidies on their purchase, is also adding to the growth of this market remarkably. However, the high initial, as well as maintenance cost of these systems may limit their uptake, hindering the progress of this market soon.

In 2015, the global steam boiler systems market stood at US$12.0 bn. The opportunity in this market is likely to expand at a CAGR of 5.30% between 2016 and 2024 and is expected to reach US$18.9 bn by the end of 2024.

 

                                                                     Figure 5: Global Steam Boiler Report

 

Past Conference Report

Chemical Engineering Congress 2019

Thanks for attending Chemical Engineering 2019!!

Another Chemical Engineering has been successfully completed- The 3rd edition – and we must Thank the attendees, Executive Doubletree by Hilton Chicago & Conference Centre Staff, and the Organizing Committee, Ad-Sponsors & Media partners and everyone else that helped to make this 3rd International Conference on Chemical Engineering with the theme: The Future of Chemical Engineering - an Optimistic View a successful conference.

To Attendees,

We hope that you obtained the kind of advance technical information in the arena of Chemical Engineering and Biomolecular Engineering that you were seeking, and that your role in the field has been enhanced via your participation. We hope that you were able to take part in all the sessions and take advantage of the tremendous advancements in Chemical Engineering that scientists are working with.

If you have any feedback for us for future consideration or enhancements of this Conference, please provide your feedback to Conference Manager.

Katherine Rose at [email protected]

The meeting covered various sessions, in which the discussions included the scientific tracks:

Chemical Engineering

Advances in Renewable Chemicals

Chemical Polymer Technology

Petroleum Refining and Petrochemicals

Applications of Chemical Technology

Organic Chemistry

Electrochemistry and Electrochemical Engineering

Unit Operations and Separation Processes

Environmental and Sustainable Chemical Engineering

Biochemical Engineering

Crystallization

Chemical Reaction Engineering

Thermodynamics

Biomolecular Engineering

Chemical Industry and Market Analysis

Biofuels

The Keynote presentations were given by:

Nicolas Abatzoglou| Université de Sherbrooke | Canada

Ignacio Gracia | University of Castilla-La Mancha | Spain

Davis L. Ford | The University of Texas | USA

Adango Miadonye | Cape Breton University | Canada

Ramesh Agarwal | Washington University | USA

Melaz Tayakout Fayolle | University of Lyon | France

 

The Best Poster awards for this year:

Anna Kapranova | Yaroslavl State Technical University | Russia

Bookmark your dates: We hope to see you at Chemical Engineering 2020, Vienn, Austria during July 15-16, 2020

Organizing Committee

Chemical Engineering 2019


Past Reports  Gallery  

To Collaborate Scientific Professionals around the World

Conference Date July 15-16, 2020

For Sponsors & Exhibitors

[email protected]

Speaker Opportunity

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Journal of Chemical Engineering & Process Technology Journal of Advanced Chemical Engineering Journal of Biochemical Engineering & Bioprocess Technology

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Keytopics

  • Batch Production
  • Biochemical Engineering
  • Bioinformatics
  • Biological Engineering
  • Biomedical Engineering
  • Biomolecular Engineering
  • Bioprocess Engineering
  • Biotechnology
  • Biotechnology Engineering
  • Branches Of Chemical Engineering
  • Catalysts
  • Ceramics
  • Chemical
  • Chemical Engineer
  • Chemical Process Modeling
  • Chemical Reaction
  • Chemical Reaction Engineering
  • Chemical Reactor
  • Chemical Technologist
  • Chemical Weapons
  • Cheminformatics
  • Chemistry
  • Computational Fluid Dynamics
  • Corrosion Engineering
  • Cost Estimation
  • Crystallization Processes
  • Distillation Design
  • Distillation Processes
  • Distillation processes
  • Earthquake Engineering
  • Electrochemical Engineering
  • Electrochemistry
  • Engineering
  • Environmental Engineering
  • Fischer Tropsch Synthesis
  • Fluid Dynamics
  • Fluid Mechanics
  • Food Engineering
  • Fuel Cell
  • Gasification
  • Heat Transfer
  • Industrial Catalysts
  • Industrial Chemistry
  • Industrial Gas
  • Mass Transfer
  • Mass Transfer and Equilibrium Stages
  • Materials Science
  • Membrane Processes
  • Metallurgy
  • Microfluidics
  • Mineral Processing
  • Molecular Engineering
  • Nanotechnology
  • Natural Environment
  • Natural Gas Processing
  • Nuclear Reprocessing
  • Oil Exploration
  • Oil Refinery
  • Operations Involving particulate Solids.
  • Paper Engineering
  • Petroleum Engineering
  • Pharmaceutical Engineering
  • Physics
  • Plastics Engineering
  • Polymer Engineering
  • Polymerization
  • Polymers
  • Process Control
  • Process Design
  • Process Design Of Chemical Engineering
  • Process Development
  • Process Engineering
  • Process Miniaturization
  • Pulp And Paper
  • Safety Engineering
  • Semiconductor Device Fabrication
  • Semiconductors
  • Separation Processes
  • Syngas Production
  • Textile Engineering
  • Thermodynamics
  • Transport Phenomena
  • Unit Operations
  • Unit Operations Of Chemical Engineering
  • Water Technology