MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING SYSTEM FOR AMMONIA-UREA PRODUCTION
Cost and energy efficiency improvements through the reaction coupling of ammonia and urea can help to reduce the cost of food production. The existing rigorous models contain more parameters, variables, and equations. Thus, rigorous models consume more time and require greater computational effor...
| Main Author: | CHIAH, YOKE YI |
|---|---|
| Format: | Thesis |
| Language: | English |
| Institution: | Universiti Teknologi Petronas |
| Record Id / ISBN-0: | utp-utpedia.21971 / |
| Published: |
2017
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| Subjects: | |
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http://utpedia.utp.edu.my/21971/1/2017%20-%20CHEMICAL%20-%20MODELING%20AND%20SIMULATION%20OF%20A%20CONCEPTUAL%20REACTION%20COUPLING%20SYSTEM%20FOR%20AMMONIA-UREA%20PRODUCTION%20-%20CHIAH%20YOKE%20YI.pdf http://utpedia.utp.edu.my/21971/ |
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utp-utpedia.219712021-09-28T16:02:41Z http://utpedia.utp.edu.my/21971/ MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING SYSTEM FOR AMMONIA-UREA PRODUCTION CHIAH, YOKE YI TP Chemical technology Cost and energy efficiency improvements through the reaction coupling of ammonia and urea can help to reduce the cost of food production. The existing rigorous models contain more parameters, variables, and equations. Thus, rigorous models consume more time and require greater computational efforts besides being more rigid for the simulation of any significant change from the base case. Simple models of the individual ammonia and urea synthesis reactions with acceptable accuracy are generated to simulate the ammonia-urea reaction coupling. The adiabatic and non-adiabatic energy balances are included in the modeling works. 2017-08 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/21971/1/2017%20-%20CHEMICAL%20-%20MODELING%20AND%20SIMULATION%20OF%20A%20CONCEPTUAL%20REACTION%20COUPLING%20SYSTEM%20FOR%20AMMONIA-UREA%20PRODUCTION%20-%20CHIAH%20YOKE%20YI.pdf CHIAH, YOKE YI (2017) MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING SYSTEM FOR AMMONIA-UREA PRODUCTION. Masters thesis, Universiti Teknologi PETRONAS. |
| institution |
Universiti Teknologi Petronas |
| collection |
UTPedia |
| language |
English |
| topic |
TP Chemical technology |
| spellingShingle |
TP Chemical technology CHIAH, YOKE YI MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING SYSTEM FOR AMMONIA-UREA PRODUCTION |
| description |
Cost and energy efficiency improvements through the reaction coupling of
ammonia and urea can help to reduce the cost of food production. The existing rigorous
models contain more parameters, variables, and equations. Thus, rigorous models
consume more time and require greater computational efforts besides being more rigid
for the simulation of any significant change from the base case. Simple models of the
individual ammonia and urea synthesis reactions with acceptable accuracy are
generated to simulate the ammonia-urea reaction coupling. The adiabatic and
non-adiabatic energy balances are included in the modeling works. |
| format |
Thesis |
| author |
CHIAH, YOKE YI |
| author_sort |
CHIAH, YOKE YI |
| title |
MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING
SYSTEM FOR AMMONIA-UREA PRODUCTION |
| title_short |
MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING
SYSTEM FOR AMMONIA-UREA PRODUCTION |
| title_full |
MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING
SYSTEM FOR AMMONIA-UREA PRODUCTION |
| title_fullStr |
MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING
SYSTEM FOR AMMONIA-UREA PRODUCTION |
| title_full_unstemmed |
MODELING AND SIMULATION OF A CONCEPTUAL REACTION COUPLING
SYSTEM FOR AMMONIA-UREA PRODUCTION |
| title_sort |
modeling and simulation of a conceptual reaction coupling
system for ammonia-urea production |
| publishDate |
2017 |
| url |
http://utpedia.utp.edu.my/21971/1/2017%20-%20CHEMICAL%20-%20MODELING%20AND%20SIMULATION%20OF%20A%20CONCEPTUAL%20REACTION%20COUPLING%20SYSTEM%20FOR%20AMMONIA-UREA%20PRODUCTION%20-%20CHIAH%20YOKE%20YI.pdf http://utpedia.utp.edu.my/21971/ |
| _version_ |
1741195809029881856 |
| score |
11.62408 |