Design and development of process and production plant for agarwood oil /

Agarwood oil is very valuable oil and widely used in medicine, perfume, religious, cultural applications and cosmetic industries. In addition, the production of agarwood has a diverse range of prospects in Malaysia. However, knowledge on distillation process and standard for quality of the oil are f...

Πλήρης περιγραφή

Αποθηκεύτηκε σε:
Λεπτομέρειες βιβλιογραφικής εγγραφής
Κύριος συγγραφέας: Norul Rasyidi Muhammad Nasardin (Συγγραφέας)
Μορφή: Λογισμικό Ηλ. βιβλίο
Γλώσσα:English
Έκδοση: 2018.
Θέματα:
Ετικέτες: Προσθήκη ετικέτας
Δεν υπάρχουν, Καταχωρήστε ετικέτα πρώτοι!
LEADER 03569pam a2200457 i 4500
001 116864
003 UTeM
005 20201013135516.0
007 co ag ||||||||
008 200625s2018 my ||||| |||| 00| | eng d
999 |c 116864  |d 116864 
020 |c gift 
040 |a UTeM  |b eng  |c UTeM  |e rda 
090 0 0 |a TS183  |b .N68 2018 
100 0 |a Norul Rasyidi Muhammad Nasardin,  |e author.  |9 24513 
245 1 0 |a Design and development of process and production plant for agarwood oil /  |c Norul Rasyidi Muhammad Nasardin. 
264 1 |c 2018. 
300 |a xiv, 148 pages :  |b colour illustrations, charts ;  |c 30 cm +  |e 1 computer disc (12 cm) 
336 |a text  |2 rdacontent 
336 |a still image  |2 rdacontent 
337 |a unmediated  |2 rdamedia 
338 |a volume  |2 rdacarrier 
347 |a text file  |b PDF  |c 7.08 MB  |2 rda 
500 |a Accompanied by CD : CDR 20473. 
504 |a Reference : pages 132-139. 
520 |a Agarwood oil is very valuable oil and widely used in medicine, perfume, religious, cultural applications and cosmetic industries. In addition, the production of agarwood has a diverse range of prospects in Malaysia. However, knowledge on distillation process and standard for quality of the oil are far from sufficient. Nowadays, the quality of agarwood oil is difficult to maintain because of the uncontrolled the process system. Therefore, the purpose of this research is to design a fully automated system for hydro distillation process that can produce higher oil yield with better quality with high monitoring security. The hydro distillation process takes into account of several parameters which is emphasizes on two most significant process parameters: temperature and pressure. In this study, the Agarwood raw materials will be soaked with mineral water for a certain period of time before going through the hydro-distillation process. The raw materials boiling will be closely monitored and will be automatically agitated at periodically at certain speeds by using a fully automated PLC-based control system with the help of HMI/SCADA. The whole hydro-distillation process itself can also be monitored and operated remotely using HMI/SCADA. For the result, the process with fully automated system has increased 60% oil yield compared to manual system. In addition, the yield of oil also increased by 13% using the inoculated wood (Roselle biotech formula Inoculation) compared to natural wood. The analysis of FTIR and GCMS has shown that there are less organic alcohol presence and many organic nature compound was detect. In conclusion, the improvement of the process system had been shown that the system has increases the profit, high monitoring, less human error, increases inefficiency of process and reduce capital cost. 
650 0 |a Manufacturing processes  |x Automation  |9 167121 
650 0 |a Agarwood (Wood)  |z Malaysia  |9 167121 
650 0 |9 3784  |a Programmable controllers. 
710 2 |a Universiti Teknikal Malaysia Melaka,  |e issuing body.  |9 558 
720 |a Associate Professor Mohd Ariff Mat Hanafiah 
790 |a Faculty of Electrical Engineering 
791 |a Master of Science in Electrical Engineering 
792 |a 2018 
942 |2 lcc  |c THM - A  |k a 
996 |a MEKA 
997 |a FKE 
998 0 0 |a mhj/250620 
998 0 0 |a fzh/121020 
952 |0 0  |1 0  |2 lcc  |4 0  |6 TS0183 N68 02018  |7 0  |9 145452  |a PLHKI  |b PLHKI  |c 1  |d 2020-06-25  |o TS183 .N68 2018  |p 87506084  |r 2020-06-25  |w 2020-06-25  |y THM - A 
952 |0 0  |1 0  |2 lcc  |4 0  |6 CDR20473  |7 0  |9 145453  |a MEDIA  |b MEDIA  |c 5  |d 2020-06-25  |o CDR 20473  |p 87506085  |r 2020-06-25  |w 2020-06-25  |y CDR - MEA