AUDIT ENERGI DI MESIN KERTAS

Energy audit is the effective way to be conducted in carrying out of energy efficiency program. Drying unit as the biggest energy consumer in paper machine represents the process unit using steam to evaporate water from the paper sheet. Evaporation is done because water cannot released again by tw...

Full description

Saved in:
Bibliographic Details
Main Author: Farah Dina, Sari
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/3222
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:3222
spelling id-itb.:32222005-12-14T13:16:00ZAUDIT ENERGI DI MESIN KERTAS Farah Dina, Sari Indonesia Theses energy audit, paper mill, drying unit, SEC, mass and energy balance, moisture content of paper sheet, hood system, thermocompression system. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/3222 Energy audit is the effective way to be conducted in carrying out of energy efficiency program. Drying unit as the biggest energy consumer in paper machine represents the process unit using steam to evaporate water from the paper sheet. Evaporation is done because water cannot released again by two previous way namely in gravitation (forming unit) and mechanical (pressing unit). <br /> <br /> This research is applying an energy audit to process unit for paper machine drying unit performance evaluation. Data obtained from the audit is used to determine mass and energy balance. Besides getting distribution of the energy consume, these audit also intends to get the performance drying unit based on specific energy consumption (SEC). SEC obtained to be expressed as actual SEC and conducted benchmarking to abroad factory from literature. Study to be perceived covering the dewatering process optimization before and after drying unit, study to air system and last is steam distribution system by application of thermocompression. <br /> <br /> Result of audit at 5 (five) paper mills indicated that the SEC influenced by machine speed, moisture content of paper sheet enter the drying unit, final moisture content of product, system of air handling, the rate of air leakage on the closed-hood system. SEC in ton steam per ton evaporated of paper mills that produce paper with low basis weight (paper mill A and B) coming near standard value (1.3), but paper mills that produce heavy weight product (C, D and E) residing in far above standard. Except paper mill producing chipboard (paper mill E), all other paper mills have the SEC in ton steam per ton product is in the range of standard value (1.8 - 2.2). <br /> <br /> The decreasing of paper sheet moisture content enter drying unit up to 3% such as those which is done by paper mill B have been able to reduce the steam consumption of 12%. The increasing final moisture content of product from 4% becoming 5% can reduce the steam consumption 1%. On the closed-hood system, like paper mill B, the rate of air leakage is above of standard condition (48% vs up to 30%). The study for application of thermocompression system at one of paper mill C dryer group reduced steam consumption of 5%. <br /> <br /> text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Energy audit is the effective way to be conducted in carrying out of energy efficiency program. Drying unit as the biggest energy consumer in paper machine represents the process unit using steam to evaporate water from the paper sheet. Evaporation is done because water cannot released again by two previous way namely in gravitation (forming unit) and mechanical (pressing unit). <br /> <br /> This research is applying an energy audit to process unit for paper machine drying unit performance evaluation. Data obtained from the audit is used to determine mass and energy balance. Besides getting distribution of the energy consume, these audit also intends to get the performance drying unit based on specific energy consumption (SEC). SEC obtained to be expressed as actual SEC and conducted benchmarking to abroad factory from literature. Study to be perceived covering the dewatering process optimization before and after drying unit, study to air system and last is steam distribution system by application of thermocompression. <br /> <br /> Result of audit at 5 (five) paper mills indicated that the SEC influenced by machine speed, moisture content of paper sheet enter the drying unit, final moisture content of product, system of air handling, the rate of air leakage on the closed-hood system. SEC in ton steam per ton evaporated of paper mills that produce paper with low basis weight (paper mill A and B) coming near standard value (1.3), but paper mills that produce heavy weight product (C, D and E) residing in far above standard. Except paper mill producing chipboard (paper mill E), all other paper mills have the SEC in ton steam per ton product is in the range of standard value (1.8 - 2.2). <br /> <br /> The decreasing of paper sheet moisture content enter drying unit up to 3% such as those which is done by paper mill B have been able to reduce the steam consumption of 12%. The increasing final moisture content of product from 4% becoming 5% can reduce the steam consumption 1%. On the closed-hood system, like paper mill B, the rate of air leakage is above of standard condition (48% vs up to 30%). The study for application of thermocompression system at one of paper mill C dryer group reduced steam consumption of 5%. <br /> <br />
format Theses
author Farah Dina, Sari
spellingShingle Farah Dina, Sari
AUDIT ENERGI DI MESIN KERTAS
author_facet Farah Dina, Sari
author_sort Farah Dina, Sari
title AUDIT ENERGI DI MESIN KERTAS
title_short AUDIT ENERGI DI MESIN KERTAS
title_full AUDIT ENERGI DI MESIN KERTAS
title_fullStr AUDIT ENERGI DI MESIN KERTAS
title_full_unstemmed AUDIT ENERGI DI MESIN KERTAS
title_sort audit energi di mesin kertas
url https://digilib.itb.ac.id/gdl/view/3222
_version_ 1820663379931430912