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Energy consumption, energy saving and emission reduction of a garment industrial building in Bangladesh

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  • Habib, Mohammad Ahsan
  • Hasanuzzaman, M.
  • Hosenuzzaman, M.
  • Salman, Asif
  • Mehadi, Md Riyad

Abstract

The industrial sector is the biggest energy consumer in Bangladesh. Electric motors account for more than 45% of the electricity consumption in the industrial sector in the country. A walk through energy audit has been conducted at Garments in Bangladesh to identify the energy using equipment and energy consumption breakdown. Different energy saving strategies and emissions reduction has been estimated for the garment. It is also found that about 137,003 kWh, 319,673 kWh and 502,343 kWh of energy and BDT 1,312,484, BDT 3,062,463 and BDT 4,812,442 of bill savings for 20%, 40% and 60% speed reduction by using variable speed drive (VSD) respectively. By using high efficiency motors (HEM), about 28,311 kWh, 41,713 kWh and 57,080 kWh of energy and BDT 271,242, BDT 399,574 and BDT 546,852 of bill can be saved for motor loadings of 50%, 75% and 100% respectively. The payback periods of different energy saving strategies indicated that HEMs seems cost-effective. Both HEMS and VSD more cost effective for large motors. It is also found that huge amount of emissions can be reduced for different energy saving strategies applied in garment.

Suggested Citation

  • Habib, Mohammad Ahsan & Hasanuzzaman, M. & Hosenuzzaman, M. & Salman, Asif & Mehadi, Md Riyad, 2016. "Energy consumption, energy saving and emission reduction of a garment industrial building in Bangladesh," Energy, Elsevier, vol. 112(C), pages 91-100.
  • Handle: RePEc:eee:energy:v:112:y:2016:i:c:p:91-100
    DOI: 10.1016/j.energy.2016.06.062
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    References listed on IDEAS

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    5. Julio R. Gómez & Enrique C. Quispe & Rosaura del Pilar Castrillón & Percy R. Viego, 2020. "Identification of Technoeconomic Opportunities with the Use of Premium Efficiency Motors as Alternative for Developing Countries," Energies, MDPI, vol. 13(20), pages 1-16, October.
    6. Chuang, Ho-Chiao & Li, Guan-De & Lee, Chen-Ta, 2019. "The efficiency improvement of AC induction motor with constant frequency technology," Energy, Elsevier, vol. 174(C), pages 805-813.
    7. Fang, Guochang & Tian, Lixin & Fu, Min & Sun, Mei & He, Yu & Lu, Longxi, 2018. "How to promote the development of energy-saving and emission-reduction with changing economic growth rate—A case study of China," Energy, Elsevier, vol. 143(C), pages 732-745.
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    9. Fang, Guochang & Tian, Lixin & Fu, Min & Sun, Mei & Du, Ruijin & Lu, Longxi & He, Yu, 2017. "The effect of energy construction adjustment on the dynamical evolution of energy-saving and emission-reduction system in China," Applied Energy, Elsevier, vol. 196(C), pages 180-189.
    10. Gómez, Julio R. & Sousa, Vladimir & Cabello Eras, Juan J. & Sagastume Gutiérrez, Alexis & Viego, Percy R. & Quispe, Enrique C. & de León, Gabriel, 2022. "Assessment criteria of the feasibility of replacement standard efficiency electric motors with high-efficiency motors," Energy, Elsevier, vol. 239(PA).
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    13. Monirul Islam Miskat & Protap Sarker & Hemal Chowdhury & Tamal Chowdhury & Md Salman Rahman & Nazia Hossain & Piyal Chowdhury & Sadiq M. Sait, 2023. "Current Scenario of Solar Energy Applications in Bangladesh: Techno-Economic Perspective, Policy Implementation, and Possibility of the Integration of Artificial Intelligence," Energies, MDPI, vol. 16(3), pages 1-27, February.
    14. Trianni, Andrea & Cagno, Enrico & Accordini, Davide, 2019. "Energy efficiency measures in electric motors systems: A novel classification highlighting specific implications in their adoption," Applied Energy, Elsevier, vol. 252(C), pages 1-1.

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