scholarly journals Evaluasi Manfaat Penggantian Chemical Amine N1800 menjadi N1805 dalam rangka Pengurangan Jejak Karbon

2021 ◽  
Vol 15 (2) ◽  
pp. 163
Author(s):  
Wahyu Widiyantara ◽  
Muhammad Kurniawan Adiputra ◽  
Eka Wijayanto ◽  
Lisendra Marbelia
Keyword(s):  

Inovasi berkelanjutan pada alat dan atau proses di dalam industri kimia untuk mencapai efisiensi dan industri yang ramah lingkungan wajib dilakukan. Dalam mendukung hal ini PT. KMI melakukan modifikasi proses dengan mengganti bahan neutralizing amine yang digunakan pada sistem boiler feed water. Penggantian amine dilakukan pada pertengahan tahun 2017, dari amine N1800 menjadi N1805. Data konsumsi amine dan air pelarut tahun 2015-2020 digunakan sebagai dasar evaluasi. Estimasi jumlah emisi juga dilakukan dengan menghitung kebutuhan air pelarut, drum kontainer bahan amine dan juga transportasi bahan dari produsen ke PT. KMI. Dari hasil perhitungan, dapat disimpulkan bahwa penggantian bahan amine dari N1800 ke N1805 memberikan benefit yang baik, yaitu: (1) menurunkan biaya tahunan untuk konsumsi amine, (2) menurunkan kebutuhan air pelarut dan beban pencemar air dan (3) menurunkan emisi secara signifikan. Penurunan emisi sebagian besar berasal dari penghematan penggunaan drum kontainer dan transportasi, sedangkan dari penurunan penggunaan air kurang signifikan.

1994 ◽  
Vol 38 (7-8) ◽  
pp. 456-460 ◽  
Author(s):  
S. Vatsala ◽  
V. Bansal ◽  
D. K. Tuli ◽  
M. M. Rai ◽  
S. K. Jain ◽  
...  

2015 ◽  
Vol 24 (10) ◽  
pp. 3773-3782
Author(s):  
R. Rihan ◽  
M. Basha ◽  
A. Al-Meshari ◽  
A. Bayramov ◽  
G. van Zyl ◽  
...  

2021 ◽  
Vol 287 ◽  
pp. 03004
Author(s):  
Mohamad Hafizi Zakria ◽  
Mohd Ghazali Mohd Nawawi ◽  
Mohd Rizal Abdul Rahman

Ethylene yield is significant in showing the performance of the steam cracker furnace in the olefin plant. This study was conducted in the actual large-scale olefin plant to see the impact of various variables towards the ethylene yield. The analysis was conducted utilizing Regression Analysis in Minitab Software Version 18 to develop a reliable ethylene yield model. The model concluded that ethylene yield in the studied plant was contributed by the factor of -0.000901, 0.02649, -0.282, 0.16, -0.0834, 0.1268, and 0.0057 of Hearth Burner Flow, Integral Burner Flow, Steam Drum Pressure, Super High-Pressure Steam (SHP) Boiler Feed Water Flow, SHP Flow, Naphtha Feed Flow, and Stack NOx Emission respectively. The Response Optimizer tool also showed that the ethylene yield from naphtha liquid feed utilizing pyrolysis cracking can be maximized at 32.55% with control setting at 9,476.41 kg/hr of Hearth Burner Flow, 608.56 kg/hr of Integral Burner Flow, 112.93 Barg of Steam Drum Pressure, 109.11 t/hr of SHP Boiler Feed Water Flow, 86.42 t/hr of SHP Flow, 63.49 t/hr of Naphtha Feed Flow and 126.23 mg/m3 of Stack NOx Emission.


Water ◽  
2019 ◽  
Vol 11 (10) ◽  
pp. 1965 ◽  
Author(s):  
Skoczko ◽  
Szatyłowicz

The aim of the study was the assessment of corrosivity and aggressiveness for boiler feed water. The negative effects of water corrosivity and aggressiveness may include silting up of the steel water supply system and the destruction of boiler equipment touched or washed by such water. They may cause the whole industrial production system to fail or be destroyed. That is why it was important to reach a high water purification level, including the calculation of water aggressiveness and corrosivity indicators. The carried out test showed that the simple system used before the modernization of the industrial water treatment plant is not sufficient to reach clean and stable water. The authors proposed modernization, including additional processes to improve boiler water quality, and designed new devices for water treatment. As a result of the new idea, groundwater taken as raw water was treated in individual and complex processes, such as pre-aeration, filtration, ion exchange (cation and anion exchange resigns), extra aeration, and extra degassing. The conducted research included chemical analyses of raw and treated water. In the conducted studies, the indirect method of water aggressiveness and corrosivity assessment was applied using mathematical calculation of the Langelier Saturation Index (LSI), the Ryznar Stability Index (RI), the Larson–Skold Index (LI), and the Singley Index (SI). The results proved that the new proposed processes for the boiler feed water treatment station allow reaching a high water quality and low level of water aggressiveness and corrosion.


2012 ◽  
Vol 84 (9) ◽  
pp. 725-732 ◽  
Author(s):  
Adel Guirgis ◽  
Jyoti P. Ghosh ◽  
Gopal Achari ◽  
Cooper H. Langford ◽  
Daliya Banerjee

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