Prepare and draw the P&ID by AutoCAD, Line schedule, Test pressure package for M/C and Pre-commissioning, Hydraulic calculation and Fire-fighting system calculation (e.g. amount of spray nozzle and size orifice) and clarify and re-check the detail of special specification process liquid, equipment or operating condition for petrochemical industry project (EPC).
ประวัติการฝึกอบรม
ความสามารถ
ความสามารถทางภาษา
พูด (ดีมาก) อ่าน (ดีมาก) เขียน (ดีมาก)
พูด (ดี) อ่าน (ดีมาก) เขียน (ดีมาก)
ไทย คำ/นาที อังกฤษ คำ/นาที
รถยนต์ ,รถจักรยานยนต์ ,
TOEIC score : 730
MS office , AutoCAD , ASPEN Plus , PRO/II , Navisworks , HTRI
โครงการ / ผลงาน / เกียรติประวัติ / บุคคลอ้างอิง
Senior Project : Estimating the kinetic parameters of polyethylene from Borstar-Process with
multiple site types catalyst by Deconvolution method.
The polyethylene structures significantly affect the final properties and applications. Polyethylene have been used in a wide range of applications. Polyethylene are generally produced on multiple-site-type catalyst, where each site type has different kinetic parameters and, therefore, produces polyethylene with different structures. At present, no characterization technique can directly estimate kinetic parameters of each site type. Deconvolution is a technique used to estimate the number of site-type and kinetic parameters of each site-type. This project studied estimation of kinetic parameter of polyethylene produced from multiple site-type catalysts in Borstar process, which consists of 2 reactors in series. The model was developed for the deconvolution of Molecular Weight Distribution (MWD) and Short-Chain Branching Distribution (SCB). From the deconvolution of Molecular Weight Distribution (MWD) and Short-Chain Branching Distribution (SCB) of polyethylene produced from Borstar process. It was found that technique can adequately estimate kinetic parameters of polyethylene produced on each site-type in each reactor. The results were found to be in a good agreement with the results previously reported in the literature.