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Practice of Preparation of a Cobalt Catalyst for Hydrocarbon Synthesis from CO and H2

https://doi.org/10.18412/1816-0387-2016-1-37-42

Abstract

The experience of the industrial technology of a cobalt catalyst supported on granulated silica is generalized. The catalyst is intended for selective synthesis of C5+ hydrocarbons, including high-molecular C35+ HC, from CO and H2. The technology is implemented by CJSC Samara Catalyst Plant. The process parameters were adapted for the available facilities during preparation of a pilot catalyst batch. Optimal technological conditions of the support pretreatment (vacuuming to prevent granule cleavage), impregnation (80 °C for 0,5 h) and the catalyst thermal treatment (programmed mode with the maximal temperature of 400 °C for 9 h in total) were determined. Physicochemical and catalytic properties of the prepared pilot batch (1 m3) meet the required specifications.

About the Authors

G. B. Narochny
Platov South-Russian State Polytechnic University, Novocherkassk
Russian Federation


R. E. Yakovenko
Platov South-Russian State Polytechnic University, Novocherkassk
Russian Federation


A. P. Savostianov
Platov South-Russian State Polytechnic University, Novocherkassk
Russian Federation


V. G. Bakun
Platov South-Russian State Polytechnic University, Novocherkassk
Russian Federation


References

1. Григорьев Д.А. // Нефть, газ и бизнес. 2011. № 3. С. 1–6.

2. Лапидус А.Л., Голосман Е.З., Стрижакова Ю.А. // Химия твердого топлива. 2011. № 3. С. 36–39.

3. Химическая энциклопедия в пяти томах под редакцией Н.С. Зефирова. М.: Большая Российская энциклопедия. Т. 5. 1998. С. 351.

4. Савостьянов А.П., Нарочный Г.Б., Яковенко Р.Е. и др. // Катализ в промышленности. 2014. № 4. С. 27–32.

5. Яковенко Р.Е., Нарочный Г.Б., Бакун. В.Г., Астахов А.В. // Известия вузов. Северо-Кавказский регион. Технические науки. 2014. № 6. С. 92–95.

6. Савостьянов А.П. Нарочный Г.Б., Яковенко Р.Е., Астахов А.В., Земляков Н.Д., Меркин А.А., Комаров А.А. // Катализ в промышленности. 2014. № 3. С. 43–48.

7. Мухленов И.П., Добкина Е.И., Дерюжкина В.И. Технология катализаторов. Л.: Химия, 1989, 272 с.

8. Хейфец Л.И., Неймарк А.В. Многофазные процессы в пористых средах. М.: Химия. 1982. С. 262.

9. PDF-2. The powder diffraction fileTM. International Center for Diffraction Data (ICDD), PDF-2 Release 2012, web site: www.icdd.com (2014).

10. Ламберов А.А., Гильманов Х.Х., Бусыгин В.М. // Катализ в промышленности. 2006. № 3. С. 12–16.

11. Иоффе И.И., Письмен Л.М. Инженерная химия гетерогенного катализа. Л.: Химия. 1972. С. 184.


Review

For citations:


Narochny G.B., Yakovenko R.E., Savostianov A.P., Bakun V.G. Practice of Preparation of a Cobalt Catalyst for Hydrocarbon Synthesis from CO and H2. Kataliz v promyshlennosti. 2016;16(1):37-42. (In Russ.) https://doi.org/10.18412/1816-0387-2016-1-37-42

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ISSN 1816-0387 (Print)
ISSN 2413-6476 (Online)