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Kemi og katalysator

Kemi og katalysator. En Kanon Kombination. Katalysators betydning. Katalysator i 90% af alle kemiske processer 10% af I-landenes BNP Mindre miljøbelastning Livsnødvendigt i U-lande. Nikkel kat. Jernholdig kat. kobber kat. Ammoniak syntese. » Haber-Bosch «

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Kemi og katalysator

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  1. Kemi og katalysator En Kanon Kombination

  2. Katalysators betydning Katalysator i 90% af alle kemiske processer 10% af I-landenes BNP Mindre miljøbelastning Livsnødvendigt i U-lande

  3. Nikkel kat. Jernholdig kat. kobber kat. Ammoniak syntese »Haber-Bosch« N2(g) + 3 H2(g) 2 NH3(g) 200 bar og 400 ºC »Steam-reforming« CH4(g) + H2O(g) CO(g)+ 3 H2(g) »Water-gas shift« CO(g) + H2O(g) CO2(g) + H2(g)

  4. Homogen katalyse Reaktanter og katalysator i samme fase

  5. Heterogen katalyse Kemisk reaktion på en overflade

  6. Katalysators virkning

  7. Teoretisk forskning

  8. Katalytisk cyklus

  9. Nikkel Påvirkede Nikkelatomer Guld Nanoteknologi siden 1990

  10. LASER DETEKT LASER DETEKT OR OR overflade overflade overflade Den atomare grammofon

  11. Surface tunneling microskope STM

  12. Den mindste skrift

  13. Nanomanipulation

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