Industrial Chemical Technology I, Chemistry tutorial


Chemical technicians play a vital role in a variety of industries by working with chemists and chemical engineers to develop, test, and manufacture chemical products. These technicians are highly skilled scientific professionals who are critical members of scientific teams that conduct much of the hands-on work that is required. Some technicians assist senior researchers in the laboratory, but many work independently to collect valuable information for review. Chemical technicians work in laboratories, making sure that procedures are carried out securely, cost-effectively, and according to the highest professional standards.

Chemical technicians work in every aspect of the chemical process industry-from basic research to hazardous waste management. For several people, accepting a chemical technician position is a great way to test the waters before deciding whether to join the industrial chemistry workforce on a permanent basis, while others might want to dive right in and enjoy a variable and rewarding lifetime career.

Types of Chemical Technicians

Laboratory technician-operates ordinary laboratory equipment and conducts laboratory procedures ranging from routine procedure manage to complex research projects procedure technician-performs chemical tests and experiments for quality, performance, or composition

Typical Work Duties

Set up apparatus for chemical reactions

Help devise and troubleshoot syntheses and analytical procedures

Manage databases

Ensure that packaging of hazardous substances complies through regulations

Work in pilot plants, assisting engineers by running experiments in a miniature version of a manufacturing process

Characteristics of the chemical industry

  • Quick growth
  • International trade of chemicals
  • High R&D expenditure, in average 4-5% of GP
  • Strong competition
  • Indispensable
  • Capital demanding
  • Minimal profitable production capacity
  • Fast depreciation
  • Cyclic price changes

Applications in Chemical Production

Many of the chemicals we use daily are manufactured with the help of our products. The production of chemicals contributes to and safeguards our comfortable lifestyle, our health and our nutrition. Because our products satisfy the most stringent criteria of legislators and the chemical industry in all the main application areas, GF Piping Systems makes a significant contribution to progress and securing the future globally. Customers are invited to consult with our specialists on site to determine where our products can best be used.

Chemical technology

Chemical technology can be described as the scientific techniques used in the chemical industry. It is the science of those operations which convert raw materials into desired products on an industrial scale, applying one or more chemical conversions. The route along which a raw material is converted to products is a logical coupling of interconnected operations terms industrial processes which involve unit operation and unit process

Chemical technology equipment

These are equipments used in facilitating or involved in the transformation of raw materials into products. The equipment helps in transfer of heat and mass from one point to another in order to achieve production processes. The first steps in a process, such as the mechanical operations of grinding or crushing, are often followed by physical treatments such as mixing, heating, evaporating, distilling, condensing e.t.c. are carried out via chemical technology equipment.

Chemical Engineering and Chemical Technology

A wide range of sciences and engineering relevant to the technology of the process industries are covered by chemical engineering and chemical technology at Imperial College London. Research areas range from technological studies of the behaviour of processes and equipment, and fundamental scientific study of the essential physical and chemical phenomena, to the expansion of techniques for planning, design and manage of processes.

The department offers world-class facilities for together research and teaching, including: 150 networked PCs for student use; three 100+ seat lecture theatres by occupied audio-visual facilities; dedicated tutorial and group design/project work spaces; pilot plant facilities; and fully equipped laboratories for practical/experimental studies. Research facilities include: a mechanical workshop with full CNC lathe and milling facilities; an electronics workshop; an analytical laboratory through state-of-the-art facilities for chemical and physical characterization; and a 100-node Linux workstation cluster.

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