Application of Environmental Engineering in Improving Energy Transfer Efficiency

Authors

  • M. Ainur Ridlo Universitas Ibrahimy Situbondo, Indonesia
  • Nuralfin Anripa Universitas Dumoga Kotamobagu, Indonesia
  • Shintawati Dyah Purwaningrum Universitas Pandanaran, Indonesia
  • Niyar Candra Agustin Universitas Pandanaran, Indonesia
  • Susatyo Adhi Pramono Universitas Wijayakusuma Purwokerto, Indonesia

DOI:

https://doi.org/10.35335/computational.v13i1.168

Keywords:

Education and Income, Energy Infrastructure, Energy Transfer Efficiency, Renewable Energy Technology, Socio-Economic Gaps

Abstract

This research has the main objective of discovering and analysing environmental techniques that are effective in improving energy transfer efficiency. This includes technologies and practices in various sectors such as renewable energy, energy infrastructure, waste management, and building efficiency. The research used a mixed methods approach, combining qualitative as well as quantitative data collection and analysis techniques. The methods used include literature review, surveys, interviews, and statistical modelling to comprehensively explore the research questions from multiple perspectives. The results show a significant positive correlation between education level and income. In addition, there were also significant differences in access to health services between different socioeconomic groups. The findings highlight the importance of interventions to promote equity in education and health. The study concludes that improving access to and quality of education and public health services can contribute significantly to poverty alleviation and reduction of socio-economic disparities. It recommends policies and programmes that focus on investments in these areas to promote more inclusive and sustainable development.

References

Adedoyin, F. F., Nathaniel, S., & Adeleye, N. (2021). An investigation into the anthropogenic nexus among consumption of energy, tourism, and economic growth: do economic policy uncertainties matter? Environmental Science and Pollution Research, 28(3), 2835–2847.

Aiman, S. (2016). Pengaruh ukuran partikel biomasa lignoselulosa pada pembuatan bioetanol dan biobutanol: Tinjauan. Jurnal Kimia Terapan Indonesia, 18(01), 11–25.

Al Husaeni, D. F., Al Husaeni, D. N., Nandiyanto, A. B. D., Rokhman, M., Chalim, S., Chano, J., Al Obaidi, A. S. M., & Roestamy, M. (2024). How technology can change educational research? definition, factors for improving quality of education and computational bibliometric analysis. ASEAN Journal of Science and Engineering, 4(2), 127–166.

Arba, Y., & Thamrin, S. (2022). Journal Review: Perbandingan Pemodelan Perangkat Lunak Life Cycle Assessment (LCA) untuk Teknologi Energi. Jurnal Energi Baru Dan Terbarukan, 3(2), 142–153.

Arnaut, M., & Dada, J. T. (2023). Exploring the nexus between economic complexity, energy consumption and ecological footprint: new insights from the United Arab Emirates. International Journal of Energy Sector Management, 17(6), 1137–1160.

Asongu, S. A., Iheonu, C. O., & Odo, K. O. (2019). The conditional relationship between renewable energy and environmental quality in sub-Saharan Africa. Environmental Science and Pollution Research, 26(36), 36993–37000.

Asri, R. (2017). Proyeksi Jangka Panjang Kebutuhan Energi Sulawesi Selatan Menggunakan Skenario Sistem Energi Bersih.

Bashir, M. F., Ma, B., Bashir, M. A., Radulescu, M., & Shahzad, U. (2022). Investigating the role of environmental taxes and regulations for renewable energy consumption: evidence from developed economies. Economic Research-Ekonomska Istraživanja, 35(1), 1262–1284.

Chen, H., He, L., Chen, J., Yuan, B., Huang, T., & Cui, Q. (2019). Impacts of clean energy substitution for polluting fossil-fuels in terminal energy consumption on the economy and environment in China. Sustainability, 11(22), 6419.

Hercegová, K., Baranovskaya, T., & Efanova, N. (2021). Smart technologies for energy consumption management. SHS Web of Conferences, 128, 2005.

Iqbal, F. M., & Ruhaeni, N. (2022). Pengaturan Emisi Gas Rumah Kaca Berdasarkan Protokol Kyoto Dan Implementasinya Di Indonesia. Dinamika Global: Jurnal Ilmu Hubungan Internasional, 7(02), 225–246.

Li, X., Li, J., Lu, J., Xu, N., Chen, C., Min, X., Zhu, B., Li, H., Zhou, L., & Zhu, S. (2018). Enhancement of interfacial solar vapor generation by environmental energy. Joule, 2(7), 1331–1338.

Lolo, E. U., Gunawan, R. I., Krismani, A. Y., & Pambudi, Y. S. (2021). Penilaian Dampak Lingkungan Industri Tahu Menggunakan Life Cycle Assessment (Studi Kasus: Pabrik Tahu Sari Murni Kampung Krajan, Surakarta). Jurnal Serambi Engineering, 6(4).

Lu, Y., Khan, Z. A., Alvarez-Alvarado, M. S., Zhang, Y., Huang, Z., & Imran, M. (2020). A critical review of sustainable energy policies for the promotion of renewable energy sources. Sustainability, 12(12), 5078.

Luo, X., Lu, L., Wang, Z., & Yang, L. (2019). Gray correlation analysis of energy consumption, environmental pollution, and economic growth in subtropical regions of China: Guangxi and Zhejiang as examples. Tropical Conservation Science, 12, 1940082919848101.

Nazer, M., & Handra, H. (2016). Analisis konsumsi energi rumah tangga perkotaan di Indonesia: Periode Tahun 2008 dan 2011. Jurnal Ekonomi Dan Pembangunan Indonesia, 16(2), 4.

Nurdin, K., & Fuady, M. S. (2021). Analisis hubungan kausalitas konsumsi energi (terbarukan dan tidak terbarukan) Dengan Pertumbuhan Ekonomi Indonesia. Jurnalku, 1(4), 379–389.

Qazi, A., Hussain, F., Rahim, N. A. B. D., Hardaker, G., Alghazzawi, D., Shaban, K., & Haruna, K. (2019). Towards sustainable energy: a systematic review of renewable energy sources, technologies, and public opinions. IEEE Access, 7, 63837–63851.

Sugiawan, Y., & Managi, S. (2016). The environmental Kuznets curve in Indonesia: Exploring the potential of renewable energy. Energy Policy, 98, 187–198.

Taufiqurrohman, M., & Yusuf, M. (2022). Pemanfaatan energi terbarukan dalam pengolahan daur ulang limbah. Jurnal MENTARI: Manajemen, Pendidikan Dan Teknologi Informasi, 1(1), 46–57.

Uchiyama, C., Munro, W. J., & Nemoto, K. (2018). Environmental engineering for quantum energy transport. Npj Quantum Information, 4(1), 33.

Ulinata, U., & Fisabilillah, J. (2021). Perancangan Rumah Tinggal Dua Lantai Dengan Konsep Hemat Energi Melalui Pendekatan Arsitektur Tropis. Jurnal Arsitektur ALUR, 4(2), 98–104.

Wati, S. R., Yandi, W., & Sunanda, W. (2023). Perencanaan Pemanfaatan Potensi Limbah Kepala Sawit Sebagai Sumber Energi Listrik di Kepulauan Bangka Belitung. Jetri: Jurnal Ilmiah Teknik Elektro, 103–116.

Wu, Z., Liu, L., Zhao, Z., Yang, C., Mu, S., Zhou, H., Luo, X., Ma, T., Li, S., & Zhao, C. (2023). Modulating electronic environment of Ru nanoclusters via local charge transfer for accelerating alkaline water electrolysis. Small, 19(2), 2204738.

Yandri, E., Ariati, R., & Ibrahim, R. F. (2018). Meningkatkan keamanan energi melalui perincian indikator energi terbarukan dan efisiensi guna membangun ketahanan nasional dari daerah. Jurnal Ketahanan Nasional, 24(2), 239–260.

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Published

2024-05-30

How to Cite

Ridlo, M. A., Anripa, N., Purwaningrum, S. D., Agustin, N. C., & Pramono, S. A. (2024). Application of Environmental Engineering in Improving Energy Transfer Efficiency. International Journal of Mechanical Computational and Manufacturing Research, 13(1), 16–24. https://doi.org/10.35335/computational.v13i1.168