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Slide 1
Slide 1

Acylation of aromatic alcohols and phenols over InCl3
Acylation of aromatic alcohols and phenols over InCl3

Microwave-Enhanced Sulphated Zirconia and SZ/MCM
Microwave-Enhanced Sulphated Zirconia and SZ/MCM



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Document

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Slide 1

Selective Oxidation of Methane over Vycor Glass
Selective Oxidation of Methane over Vycor Glass

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Chapter 7 - Alkenes and Alkynes I less substituted alkene due to
Chapter 7 - Alkenes and Alkynes I less substituted alkene due to

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11_chapter 1

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Unit 3: Reactions of Alkenes. Thermodynamics and Kinetics

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Organic Reactions

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Liquid-phase hydrodechlorination of chlorobenzene by molecular

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Section 5b and c: crude oil and synthetic polymers Fractional

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Lecture 13a - UCLA Chemistry and Biochemistry

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Chapter 7: Structure and Synthesis of Alkenes

Chapter 1--Title
Chapter 1--Title

< 1 ... 30 31 32 33 34 35 36 37 38 ... 47 >

Fischer–Tropsch process

The Fischer–Tropsch process is a collection of chemical reactions that converts a mixture of carbon monoxide and hydrogen into liquid hydrocarbons. It was first developed by Franz Fischer and Hans Tropsch at the Kaiser-Wilhelm-Institut für Kohlenforschung in Mülheim an der Ruhr, Germany, in 1925. The process, a key component of gas to liquids technology, produces a synthetic lubrication oil and synthetic fuel, typically from coal, natural gas, or biomass. The Fischer–Tropsch process has received intermittent attention as a source of low-sulfur diesel fuel and to address the supply or cost of petroleum-derived hydrocarbons. A Fischer–Tropsch-type process has also been suggested to have produced a few of the building blocks of DNA and RNA within asteroids.
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