STUDY OF CLEAN WATER SUPPLY IN SULAMU VILLAGE USING PHOTOVOLTAIC - SEAWATER REVERSE OSMOSIS TECHNOLOGY

  • Arbye S Universitas Tidar
  • Achmad Aziizudin Universitas Tidar
  • Agung Purnomo Universitas Tidar
  • Cahyo Wibi Yogiswara Universitas Tidar
  • Dimas Ardiansyah Halim Universitas Tidar
  • Setya Drana Harry Putra Universitas Tidar
Keywords: water demand, PV-SWRO, desalination, energy consumption, population growth

Abstract

The scarcity of clean water is predicted to become a serious threat for Indonesia in the future, particularly in regions with low rainfall, and coastal regions with limited freshwater resources. This study examined clean water provision using seawater desalination technology in Sulamu Village, Kupang, East Nusa Tenggara, projected until 2032. The technology used was seawater desalination powered by Photovoltaic (PV) systems, which drive the Sea Water Reverse Osmosis (SWRO) process. This technology was proposed as a sustainable solution to meet the clean water needs of the region. The research included an analysis of water demand, adjusted for projected population growth, and an estimation of energy consumption from the PV-SWRO system. A geometric method was applied to project the population up to 2032, estimating approximately 8.210 residents. Based on this projection, the clean water demand was expected to reach 215.769 m³ per year, with energy consumption estimated between 496 and 1.554 MWh per year. Given the abundant solar energy potential in Sulamu Village, this technology is anticipated to provide a stable and environmentally friendly supply of clean water. The estimated data on water and energy needs is intended to serve as a reference for stakeholders in developing strategies that support the sustainability of renewable energy-based desalination programs in the future.

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References

G. Fransiska et al., “Krisis Air Menangani Penyediaan Air Bersih Di Dunia Yang Semakin Kekurangan Sumber Daya,” J. Ilm. Res. Student, vol. 1, no. 5, pp. 334–341, 2024, doi: https://doi.org/10.61722/jirs.v1i5.1373.

E. Hendriarianti, A. Triwahyuni, and A. Tyagita Ayudyaningtyas, “Analisa Driving Force, Pressure, State Dan Response Kualitas Air,” Pros. SEMSINA, vol. 3, no. 2, pp. 278–285, Jul. 2022, doi: 10.36040/semsina.v3i2.5190.

A. R. Alfian, Krisis Air di Indonesia: Fenomena, Dampak & Solusi. Agam, Sumatra barat, Indonesia: CV. Suluah Kato Khatulistiwa, 2023.

A. Boretti and L. Rosa, “Reassessing the projections of the World Water Development Report,” npj Clean Water, vol. 2, no. 1, p. 15, Jul. 2019, doi: 10.1038/s41545-019-0039-9.

R. Arif Mu, “Peran Konservasi Sumberdaya Alam Terhadap Sustainable Development Goals (SDGs) Air Bersih Dan Sanitasi Layak,” J. Penelit. Pendidik. Indones., vol. 1, no. 3, pp. 378–384, 2024, doi: https://doi.org/10.62017/jppi.v1i3.1216.

D. Mardianto, N. R. Ismail, A. Farid, and P. Suwandono, “Pengaruh perbandingan kinerja solar still menggunakan cover piramida dan penambahan ruang kondensasi,” vol. 9, no. 1, pp. 33–45, 2024, doi: 10.20527/sjmekinematika.v9i1.276.

G. R. Ersa, “Kajian Alternatif Teknologi Desalinasi Dalam Produksi Air Tawar Untuk Desa Labuan Bajo, NTT,” J. Purifikasi, vol. 20, no. 1, pp. 1–14, Jun. 2021, doi: 10.12962/j25983806.v20.i1.400.

S. Ali and K. Waliden, “Alat Destilasi Air Laut Berbasis Energi Surya Dan Energi Elektrik Sebagai Alternatif Penyediaan Air Bersih Dan Garam,” Ris. Sains dan Teknol. Kelaut., vol. 2, no. 1, pp. 40–44, 2019, doi: 10.62012/sensistek.v2i1.13196.

J. Bundschuh, M. Kaczmarczyk, N. Ghaffour, and B. Tomaszewska, “State-of-the-art of renewable energy sources used in water desalination: Present and future prospects,” Desalination, vol. 508, no. February, 2021, doi: 10.1016/j.desal.2021.115035.

I. G. Y. Dewantara, B. M. Suyitno, and I. G. E. Lesmana, “Desalinasi Air Laut Berbasis Energi Surya Sebagai Alternatif Penyediaan Air Bersih,” J. Tek. Mesin, vol. 7, no. 1, p. 1, 2018, doi: 10.22441/jtm.v7i1.2124.

S. Iqbal, S. Sukmawaty, G. M. Dwi Putra, and D. A. Setiawati, “Analisis Kinerja Alat Desalinasi Air Laut Penghasil Air Tawar Dan Garam Dengan Menggunakan Tenaga Surya,” J. Agrotek Ummat, vol. 6, no. 1, p. 29, 2019, doi: 10.31764/agrotek.v6i1.988.

A. W. Krisdiarto, A. Ferhat, A. W. Krisdiarto, and M. P. Bimantio, “Penyediaan Air Bagi Masyarakat Pesisir Terdampak Kekeringan dengan Teknologi Desalinasi Air Laut Sederhana,” DIKEMAS (Jurnal Pengabdi. Kpd. Masyarakat), vol. 4, no. 2, pp. 25–31, 2020, doi: 10.32486/jd.v4i2.532.

A. Sefentry and R. Masriatini, “Pemanfaatan Teknologi Membran Reverse Osmosis (RO) Pada Proses Pengolahan Air Laut menjadi Air Bersih,” J. Redoks, vol. 5, no. 1, p. 58, 2020, doi: 10.31851/redoks.v5i1.4128.

M. A. Siregar, W. S. Damanik, and S. Lubis, “Analisa Energi pada Alat Desalinasi Air Laut Tenaga Surya Model Lereng Tunggal,” J. Rekayasa Mesin, vol. 12, no. 1, p. 193, May 2021, doi: 10.21776/ub.jrm.2021.012.01.21.

M. A. Munir, R. A. Rahman, and D. D. Rahmalina, “Pengembangan Alat Desalinasi Air Laut dengan Teknologi Thermal Energy Storage Development of Seawater Desalination Equipment with Technology Thermal Energy Storage,” vol. 5, pp. 170–178, 2023.

E. Y. Tae, B. V. Tarigan, and M. Jafri, “Efisiensi Desalinasi Air Laut dengan Menggunakan Konsentrasi Reflektor Parabolik,” vol. 14, no. 2, pp. 200–209, 2024, doi: https://doi.org/10.29303/dtm.v14i2.866.

BPS, Kecamatan Sulamu Dalam Angka Tahun 2013-2023. Kupang, NTT, Indonesia: Badan Pusat Statistik, 2013-2023.

A. Priyanto, A. R. Jaya, and H. Suyanto, “Prediksi Kebutuhan Air Bersih Pdam Pusat Pulang Pisau Dan Unit Desa Mantaren I Tahun 2029,” Spektrum Sipil, vol. 8, no. 2, pp. 128–137, 2021, doi: 10.29303/spektrum.v8i2.220.

Siswanto, Andy Hendri, and Winda Indriani, “Analisis Sistem Jaringan Pipa Distribusi SPAM di Kecamatan Inuman Kabupaten Kuantan Singingi,” J. Teknol. dan Rekayasa Sipil, vol. 1, no. 1, pp. 10–17, 2022, doi: 10.56208/jtrs.v1.i1-hal10-17.

R. Afriyanda, G. Z. Mulki, and M. I. Fitriani, “Analisis Kebutuhan Air Bersih Domestik di Desa Penjajap Kecamatan Pemangkat Kabupaten Sambas,” PWK, Laut, Sipil, Tambang, vol. 6, no. 2, pp. 1–11, 2018.

Verrdy Chrisna Primandani, Novi Andhi Setyo Purwono, and Atiyah Barkah, “Analisis Kebutuhan Dan Ketersediaan Air Bersih Di Wilayah Pelayanan Instalasi Pengolahan Air Gunung Tugel PDAM Tirta Satria Banyumas,” Padur. J. Tek. Sipil Univ. Warmadewa, vol. 11, no. 1, pp. 112–121, 2022, doi: 10.22225/pd.11.1.4469.112-121.

N. A. Sasongko, A. Octavian, R. Laksmono, A. Hilmawan, and I. Royana, “Pemanfaatan Teknologi Energi Surya Dalam Memenuhi Kebutuhan Air Bersih Di Markas TNI Perbatasan Maritim: Studi Di Pos TNI AL, Labuan Bajo, Nusa Tenggara Timur,” J. Pertahanan dan Bela Negara, vol. 9, no. 1, 2019.

M. S. Lopung, “Persepsi Masyarakat Terhadap Pelayanan Perusahaan Listrik Negara (PLN) di Kelurahan Sulamu Kecamatan Sulamu Kabupaten Kupang,” Universitas Nusa Cendana, 2022.

KESDM, “Siaran PERS KESDM ‘Pemerintah Permudah Pembuatan Es Dengan Sinar Matahari di Pulau Sulamu,” 2022.

Y. Seran, N. Nursalim, and S. Kurniati, “Analisis Penurunan Kinerja Daya Keluaran Pada Pembangkit Listrik Tenaga Surya (PLTS) 5 Mwp Oelpuah Kupang Dengan Menggunakan Software Pvsyst,” J. Media Elektro, vol. XI, no. 2, pp. 87–96, 2022, doi: 10.35508/jme.v0i0.8131.

A. S. K. Darwish, “Wind energy utilisation for water desalination, street and buildings lighting − a case study for The Emirate of Ajman − UAE,” Renew. Energy Environ. Sustain., vol. 6, p. 10, Apr. 2021, doi: 10.1051/rees/2021012.

S. Arbye, F. Wijaya, and A. Budiman, “An overview of green hydrogen production system through low temperature water electrolysis using solar energy,” Therm. Sci., no. 00, pp. 84–84, 2024, doi: 10.2298/TSCI231120084A.

R. S. Rahmany, Jefri Aldo, and Halim, “Simulasi Penggunaan Panel Surya Atap Di Lingkungan Kampus Politeknik Batulicin,” Sci. J. Mech. Eng. Kinemat., vol. 8, no. 1, pp. 74–84, 2023, doi: 10.20527/sjmekinematika.v8i1.254.

L. A. Yoshi and I. N. Widiasa, “Studi Tekno Ekonomi Desalinasi Air Laut Skala Kecil Dengan Sistem Reverse Osmosis,” Reaktor, vol. 16, no. 4, p. 218, 2017, doi: 10.14710/reaktor.16.4.218-225.

D. S. Ayou, H. M. Ega, and A. Coronas, “A feasibility study of a small-scale photovoltaic-powered reverse osmosis desalination plant for potable water and salt production in Madura Island: A techno-economic evaluation,” Therm. Sci. Eng. Prog., vol. 35, no. March, 2022, doi: 10.1016/j.tsep.2022.101450.

S. P. Fitri et al., “Design of Reverse Osmosis Desalination Plant at Remote Coastal Area,” IOP Conf. Ser. Earth Environ. Sci., vol. 698, no. 1, 2021, doi: 10.1088/1755-1315/698/1/012045.

A. Fairuz, M. Faeshol Umam, M. Hasanuzzaman, N. A. Rahim, and I. M. Mujtaba, “Modeling and analysis of hybrid solar water desalination system for different scenarios in Indonesia,” Energy Convers. Manag., vol. 276, no. August 2022, p. 116475, 2023, doi: 10.1016/j.enconman.2022.116475.

Z. Tigrine et al., “Feasibility Study of a Reverse Osmosis Desalination Unit Powered by Photovoltaic Panels for a Sustainable Water Supply in Algeria,” Sustainability, vol. 15, no. 19, p. 14189, Sep. 2023, doi: 10.3390/su151914189.

F. Suryani, M. Madagaskar, and R. A. N. Moulita, “Analisis Pengaruh Waktu Dan Tekanan Terhadap Demineralisasi Air Buangan Ac Dengan Metode Reverse Osmosis,” J. Redoks, vol. 7, no. 1, pp. 1–9, 2022, doi: 10.31851/redoks.v7i1.7924.

Published
2024-12-28
How to Cite
[1]
A. S, A. Aziizudin, A. Purnomo, C. W. Yogiswara, D. A. Halim, and S. D. H. Putra, “STUDY OF CLEAN WATER SUPPLY IN SULAMU VILLAGE USING PHOTOVOLTAIC - SEAWATER REVERSE OSMOSIS TECHNOLOGY”, SJMEkinematika, vol. 9, no. 2, pp. 214-228, Dec. 2024.