Pra Rancangan Pabrik Magnesium Karbonat Dari Mineral Dolomit dan Gas CO2 Dengan Proses Hidrasi

Ningrum, Devy Shinta (2025) Pra Rancangan Pabrik Magnesium Karbonat Dari Mineral Dolomit dan Gas CO2 Dengan Proses Hidrasi. Undergraduate thesis, UPN "Veteran" Jawa Timur.

[img] Text (COVER)
COVER.pdf

Download (1MB)
[img] Text (BAB I)
BAB I.pdf

Download (2MB)
[img] Text (BAB II)
BAB II.pdf

Download (1MB)
[img] Text (BAB III)
BAB III.pdf
Restricted to Repository staff only until 5 December 2028.

Download (1MB)
[img] Text (BAB IV)
BAB IV.pdf
Restricted to Repository staff only until 5 December 2028.

Download (494kB)
[img] Text (BAB V)
BAB V.pdf
Restricted to Repository staff only until 5 December 2028.

Download (3MB)
[img] Text (BAB VI)
BAB VI.pdf
Restricted to Repository staff only until 5 December 2028.

Download (3MB)
[img] Text (BAB VII)
BAB VII.pdf
Restricted to Repository staff only until 5 December 2028.

Download (18MB)
[img] Text (BAB VIII)
BAB VIII.pdf
Restricted to Repository staff only until 5 December 2028.

Download (438kB)
[img] Text (BAB IX)
BAB IX.pdf
Restricted to Repository staff only until 5 December 2028.

Download (647kB)
[img] Text (BAB X)
BAB X.pdf
Restricted to Repository staff only until 5 December 2028.

Download (4MB)
[img] Text (BAB XI)
BAB XI.pdf

Download (786kB)
[img] Text (DAFTAR PUSTAKA)
DAFTAR PUSTAKA.pdf

Download (543kB)
[img] Text (LAMPIRAN)
LAMPIRAN.pdf
Restricted to Repository staff only until 5 December 2028.

Download (39MB)
[img] Text (FLOWSHEET)
FLOWSHEET.pdf

Download (774kB)

Abstract

This preliminary plant design evaluates the production of magnesium carbonate from dolomite and carbon dioxide through a hydration–carbonation mechanism at an industrial scale of 65,000 tons per year. The process begins with high-temperature calcination of dolomite at 900°C to yield reactive CaO and MgO phases. Subsequent hydration produces a Ca(OH)₂–Mg(OH)₂ slurry, which is carbonated at 60°C and 6 atm to generate magnesium bicarbonate, Mg(HCO₃)₂, and precipitated CaCO₃. Solid–liquid separation is conducted in a clarifier before thermal decomposition of Mg(HCO₃)₂ to MgCO₃ in a heating reactor. Final product conditioning involves drying, cooling, and milling to meet commercial specifications. The plant utilizes locally available dolomite resources and provides a pathway for CO₂ utilization, supporting national strategies for industrial sustainability. Techno-economic assessment demonstrates that the proposed plant is viable, with a total capital requirement of Rp 1.31 trillion, an ROI of 21% before tax, an IRR of 10.91%, and a payback period of 3.17 years, confirming its economic attractiveness.

Item Type: Thesis (Undergraduate)
Contributors:
ContributionContributorsNIDN/NIDKEmail
Thesis advisorTriana, Nurul WidjiNIDN0001036106nurulwidjitriana@gmail.com
Subjects: T Technology > TP Chemical technology
T Technology > TP Chemical technology > TP155 Chemical engineering
Divisions: Faculty of Engineering > Departement of Chemical Engineering
Depositing User: Devy Shinta Ningrum
Date Deposited: 08 Dec 2025 02:37
Last Modified: 08 Dec 2025 03:02
URI: https://repository.upnjatim.ac.id/id/eprint/47954

Actions (login required)

View Item View Item