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  • Chemocatalytic conversion of ethanol into butadiene and other bulk chemicals.

Chemocatalytic conversion of ethanol into butadiene and other bulk chemicals.

ChemSusChem (2013-05-25)
Carlo Angelici, Bert M Weckhuysen, Pieter C A Bruijnincx
ABSTRACT

The development of new and improved processes for the synthesis of bio-based chemicals is one of the scientific challenges of our time. These new discoveries are not only important from an environmental point of view, but also represent an important economic opportunity, provided that the developed processes are selective and efficient. Bioethanol is currently produced from renewable resources in large amounts and, in addition to its use as biofuel, holds considerable promise as a building block for the chemical industry. Indeed, further improvements in production, both in terms of efficiency and feedstock selection, will guarantee availability at competitive prices. The conversion of bioethanol into commodity chemicals, in particular direct 'drop-in' replacements is, therefore, becoming increasingly attractive, provided that the appropriate (catalytic) technology is in place. The production of green and renewable 1,3-butadiene is a clear example of this approach. The Lebedev process for the one-step catalytic conversion of ethanol to butadiene has been known since the 1930s and has been applied on an industrial scale to produce synthetic rubber. Later, the availability of low-cost oil made it more convenient to obtain butadiene from petrochemical sources. The desire to produce bulk chemicals in a sustainable way and the availability of low-cost bioethanol in large volumes has, however, resulted in a renaissance of this old butadiene production process. This paper reviews the catalytic aspects associated with the synthesis of butadiene via the Lebedev process, as well as the production of other, mechanistically related bulk chemicals that can be obtained from (bio)ethanol.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Reagent Alcohol, suitable for HPLC
Sigma-Aldrich
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Supelco
Dehydrated Alcohol, Pharmaceutical Secondary Standard; Certified Reference Material
Supelco
Ethanol-20 (10 ampules/kit), 20 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
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Ethanol-500, 500 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
Supelco
Ethanol-25, 25 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
Supelco
Ethanol-400 (10 ampules/kit), 400 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
Sigma-Aldrich
Ethanol, JIS first grade, 94.8-95.8%
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Reagent Alcohol, anhydrous, ≤0.003% water
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Reagent Alcohol, reagent grade
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Ethanol solution, certified reference material, 2000 μg/mL in methanol
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Reagent Alcohol, anhydrous, ≤0.005% water
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Ethanol Fixative 80% v/v, suitable for fixing solution (blood films)
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Ethanol Calibration Kit, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
USP
Dehydrated Alcohol, United States Pharmacopeia (USP) Reference Standard
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Ethanol, ≥99.5%
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Ethanol, ≥99.5%, SAJ super special grade
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Ethanol, ≥99.5%, suitable for HPLC
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Ethanol, JIS 300, ≥99.5%, for residue analysis
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Ethanol-150, 150 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
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Ethanol-40, 40 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
Supelco
Ethanol-10, 10 mg/dL in H2O, pack of 10 × 1.2 mL ampules, certified reference material, Cerilliant®
Supelco
Ethanol-80, 80 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
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Ethanol-300, 300 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®
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Ethyl alcohol, denatured, reagent grade
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Ethyl alcohol, Pure, 200 proof, anhydrous, ≥99.5%
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Ethyl alcohol, Pure, 190 proof, meets USP testing specifications
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Ethanol standards 10% (v/v), 10 % (v/v) in H2O, analytical standard
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Ethyl alcohol, Pure, 190 proof, ACS spectrophotometric grade, 95.0%
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Ethanol-50, 50 mg/dL in H2O, ampule of 10 × 1.2 mL, certified reference material, Cerilliant®