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Kemajuan Perencanaan dan Dampak Potensial Pembangunan Pembangkit Listrik Tenaga Surya Terapung Skala Utilitas di Waduk Cirata, Jawa Barat

*Asirin Asirin orcid scopus  -  Departemen Ilmu Perencanaan Pembangunan Wilayah dan Perdesaan, IPB University, Sekretariat PS PWD, Indonesia
Hermanto Siregar  -  Departemen Ilmu Ekonomi, Fakultas Ekonomi dan Manajemen, IPB University, Indonesia
Bambang Juanda  -  Departemen Ilmu Ekonomi, Fakultas Ekonomi dan Manajemen, IPB University, Indonesia
Galuh Syahbana Indraprahasta  -  Pusat Riset Kependudukan, Badan Riset dan Inovasi Nasional (BRIN), Indonesia
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Abstract
Pemanasan global akibat emisi gas rumah kaca yang besar dari sektor energi telah menjadi salah satu isu utama dalam pembangunan wilayah. Pemerintah Indonesia telah berkomitmen untuk melaksanakan tujuan pembangunan wilayah berkelanjutan, khususnya di bidang energi. Sebagai bukti nyata komitmen tersebut, pemerintah Indonesia bekerjasama dengan pihak swasta akan membangun Pembangkit Listrik Tenaga Surya (PLTS) terapung skala utilitas di Waduk Cirata, Jawa Barat, Indonesia. Pembangunan infrastruktur ini diyakini akan memberikan manfaat, namun ditengarai juga dapat menimbulkan dampak negatif. Sejauh mana kemajuan perencanaan PLTS terapung skala utilitas di Waduk Cirata dan apa dampak potensial pembangunan infrastruktur tersebut untuk pengembangan wilayah berkelanjutan belum dieksplorasi lebih lanjut. Artikel ini mengisi celah tersebut. Artikel ini bertujuan untuk menguraikan kemajuan perencanaan PLTS terapung skala utilitas di Waduk Cirata dan mengidentifikasi dampak potensial pembangunan infrastruktur tersebut untuk pembangunan wilayah yang berkelanjutan. Artikel ini menggunakan metode analisis data kualitatif dengan teknik open coding. Artikel ini menemukenali bahwa dampak positif potensial PLTS terapung skala utilitas di Waduk Cirata meliputi produksi energi, peningkatan ekonomi wilayah, penghindaran emisi gas rumah kaca, pengurangan evaporasi air, dan transfer teknologi. Dampak negatif potensial meliputi eksternalitas negatif dan potensi konflik sosial dengan masyarakat sekitar. Pada bagian akhir, artikel ini menyarankan beberapa kebijakan yang antisipatif dan saran studi lanjutan.

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Keywords: energi terbarukan; eksternalitas; pembangkit listrik tenaga surya terapung; pengembangan wilayah berkelanjutan
Funding: BPPDN Kementerian Pendidikan, Kebudayaan, Riset, dan Teknologi

Article Metrics:

  1. Aman, M.M., Solangi, K.H., Hossain, M.S., Badarudin, A., Jasmon, G.B., Mokhlis, H., Bakar, A.H.A., & Kazi, S. (2015). A review of safety, health and environmental (SHE) issues of solar energy system. Renewable and Sustainable Energy Review. 41, 1190–1204. doi: 10.1016/j.rser.2014.08.086
  2. Bishop, L., & Kuula-Luumi, A. (2017). Revisiting qualitative data reuse: A decade on. Sage Open, 7(1), 2158244016685136
  3. Cansino, J.M., Cardenete, M.A., González-Limón, J.M., & Román, R. (2014). The economic influence of photovoltaic technology on electricity generation: A CGE (computable general equilibrium) approach for the Andalusian case. Energy, 73, 70–79. doi: 10.1016/j.energy.2014.05.076
  4. Carlisle, J.E., Kane, S.L., Solan, D., Bowman, M., & Joe, J.C. (2015). Public attitudes regarding largescale solar energy development in the US. Renewable and Sustainable Energy Reviews, 48, 835–47
  5. Cousse, J. (2021). Still in love with solar energy? Installation size, affect, and the social acceptance of renewable energy technologies. Renewable and Sustainable Energy Reviews 145, 111107
  6. de la Tour, A., Glachant, M., & Ménière, Y. (2011). Innovation and international technology transfer: The case of the Chinese photovoltaic industry. Energy Policy, 39(2), 761–770. doi: 10.1016/j.enpol.2010.10.050
  7. Deputy Minister of State-Owned Enterprises (2021). “Materi Sambutan dari Wakil Menteri Badan Usaha Milik Negara”. Deklarasi Financial Close Proyek PLTS Terapung Cirata 145 MWac 3 Agustus 2021. Deklarasi Financial Close Proyek PLTS Terapung Cirata 145 MWac. 3 Agustus 2021. Jakarta.Online: https://www.youtube.com/watch?v=Ij9WjMraSQg). Diakses 2 Juni 2022
  8. Devine-Wright, P., Smith, J., & Batel, S. (2019) “Positive parochialism”, local belonging and ecological concerns: revisiting Common Ground’s Parish Maps project. Transactions of the Institute of British Geographers, 44(2):407–21. doi: 10.1111/tran.12282
  9. Dinas ESDM Jawa Barat (2018). Buku Profil dan Data Statistik ESDM Tahun 2018. Dinas ESDM Jawa Barat (Jabar)
  10. DLH Jawa Barat (2018) Kebijakan Pengendalian Perubahan Iklim Jawa Barat. Dinas Lingkungan Hidup Jawa Barat
  11. DPR (2020). Laporan Kunjungan Spesifik Komisi VII DPR RI KE PLTA-PLTS Terapung Cirata PT PLN (PERSERO) Di Purwakarta Provinsi Jawa Barat. DPR
  12. EBTKE ESDM. (2021). Capai Financial Close, PLTS Terapung Cirata Mulai Tahap Konstruksi. Online: https://ebtke.esdm.go.id/post/2021/08/04/2927/capai.financial.close.plts.terapung.cirata.mulai.tahap.konstruksi. Diakses: 4 Agustus 2021
  13. Fu, X & Zhang, J. (2011). Technology transfer, indigenous innovation and leapfrogging in green technology: the solar-PV industry in China and India. Journal of Chinese Economic and Business Studies, 9(4), 329–347. doi: 10.1080/14765284.2011.618590
  14. Gorjian, S., Sharon, H., Ebadi, H., Kant, K., Scavo F.B., & Tina G.M. (2020) Recent technical advancements, economics and environmental impacts of floating photovoltaic solar energy conversion systems, Journal of Cleaner Production, 278, 124285. doi: 10.1016/j.jclepro.2020.124285
  15. Gregersen, C. (2020). Local learning and capability building through technology transfer: Experiences from the Lake Turkana Wind Power project in Kenya. Innovation and Development. doi: 10.1080/2157930x.2020.1858612
  16. Haas, J., Khalighi, J., de la Fuente, A., Gerbersdorf, S.U., Nowak, W., & Chen, P.J. (2020). Floating photovoltaic plants: Ecological impacts versus hydropower operation flexibility. Energy Conversion Management, 206, 112414
  17. Hansen, U. E., Nygaard, I. & Dal Maso, M. (2021) The dark side of the sun: solar e-waste and environmental upgrading in the off-grid solar PV value chain, Industry and Innovation, 28: 58–78. doi: 10.1080/13662716.2020.1753019
  18. Iqbal dan Fajar (2020) Begini Nasib Keramba Jaring Apung Waduk Cirata Ditengah Dilema Pencemaran. Online: https://www.mongabay.co.id/2020/01/06/begini-nasib-keramba-jaring-apung-waduk-cirata-ditengah-dilema-pencemaran/. Diakses: 6 Januari 2021
  19. Jenniches, S., & Worrell, E. (2019). Regional economic and environmental impacts of renewable energy developments: Solar PV in the Aachen Region. Energy for Sustainable Development, 48(), 11–24. doi: 10.1016/j.esd.2018.10.004
  20. Jones, P., Comfort, D., & Hillier, D., (2015). Spotlight on solar farms. Journal of Public Affairs, 15 (1), 14–21
  21. Kasim, N. K., Legino, S & Hidayat, S (2018) Analisis Keekonomian Floating PV Waduk Cirata Dengan Pembanding Ground Mounted Pv Kapasitas 1 MW. Tesis di, Sekolah Tinggi Teknik PLN
  22. Kementerian ESDM, (2018) RUPTL. Kementerian ESDM
  23. KLHK (2021) Indonesia Long-Term Strategy for Low Carbon and Climate Resilience 2050. Kementerian Lingkungan Hidup (KLHK)
  24. Lema, R., Bhamidipati, P.L., Gregersen, C., Hansen, U.E., & Kirchherr, J. (2021). China’s investments in renewable energy in Africa: Creating co-benefits or just cashing-in? World Development. doi: 10.1016/j.worlddev.2020.105365
  25. Llera, E., Scarpellini, S., Aranda, A., & Zabalza, I. (2013). Forecasting job creation from renewable energy deployment through a value-chain approach. Renewable and Sustainable Energy Reviews, 21, 262–271. doi: 10.1016/j.rser.2012.12.053
  26. Lovich, J.E., & Ennen, J.R., (2011). Wildlife conservation and solar energy development in the Desert Southwest, United States. Bioscience, 61, 982–992
  27. Makhija, S.P., Dubey, S.P., Bansal, R.C., & Jena, P.K. (2021). Techno-Environ-Economical analysis of floating PV/On-Ground PV/Grid extension systems for electrification of a remote area in India. Technology and Economics of Smart Grids and Sustainable Energy, 6 (6), 1-10. doi: 10.1007/s40866-021-00104-z
  28. Marupa, I., Moe, I. R., Mardjono, A., & Malindo, D. (2022). PLTS Terapung: Review pembangunan dan simulasi numerik untuk rekomendasi penempatan panel surya di Waduk Cirata. Jurnal Teknik Pengairan:, 13(1), 48–62
  29. Peanpitak, W. & Singh, J.G (2021) Potential and financial analysis of the floating PV in Hydropower Dams of Thailand. In Sri Niwas Singh; Prabhakar Tiwari; Sumit Tiwari (Editors), Fundamentals and Innovations in Solar Energy. Energy Systems in Electrical Engineering
  30. Pemerintah Provinsi Jawa Barat (2021) Jumlah Usaha Jaring Apung di Waduk Cirata. Pemerintah Provinsi Jawa Barat
  31. Pikiran Rakyat (2021) Proyek PLTS Terapung Senilai Rp1,8 Triliun Dibangun di Waduk Cirata, Ironis Warga Cipeundeuy Tidak Tahu. Online: https://galajabar.pikiranrakyat.com/jabar/pr-1082019023/proyek-plts-terapung-senilai-rp18-triliun-dibangun-diwaduk-cirata-ironis-warga-cipeundeuy-tidak-tahu. [Diakses 1 September 2021]
  32. Pimentel Da Silva, G.D., & Branco, D.A.C. (2018). Is floating photovoltaic better than conventional photovoltaic? Assessing environmental impacts. Impact Assessment and Project Appraisal. 36, 390–400
  33. PJB, 2020. Profil PLTS Cirata. PJB
  34. PLN (2021) “Profile dan Progress PLTS Terapung Cirata” Deklarasi Financial Close Proyek PLTS Terapung Cirata 145 MWac 3 Agsutus 2021. PLN. (Online: https://www.youtube.com/watch?v=Ij9WjMraSQg) Diakses 2 Juni 2022
  35. Pueyo, A., García, R., Mendiluce, M., & Darío Morales (2011). The role of technology transfer for the development of a local wind component industry in Chile. Energy Policy, 39(7), 4274–4283. doi: 10.1016/j.enpol.2011.04.045
  36. Roddis,P., Roelich, K., Tran, K., Carver, S., Dallimer, M., Ziv, G. (2020). What shapes community acceptance of large-scale solar farms? A case study of the UK’s first ‘nationally signifcant’ solar farm. Solar Energy, 209, 235–244. doi: 10.1016/j.solener.2020.08.065
  37. Rosa-Clot, M., & Tina, G.M. (2020). Floating PV Plant. Academic Press
  38. Sahu, A., Yadav, N., & Sudhakar, K., (2016). Floating photovoltaic power plant: A review. Renewable and Sustainable Energy Reviews. 66, 815–824. doi: 10.1016/j.rser.2016.08.051
  39. Semeskandeh, S., Hojjat, M., & Abardeh, M.H. (2022). Techno–economic–environmental comparison of floating photovoltaic plant with conventional solar photovoltaic plant in northern Iran. Clean Energy, 6 (3), 446, https://doi.org/10.1093/ce/zkac030
  40. Sibuea., R.T., Pratna, R., Hapsari, A., & Kristi, Y.W. (2022). Satellite remote sensing using earth observing system in environmental monitoring for hydropower & floating photovoltaic reservoir (Case Study: Algae Blooming on Cirata Reservoir, West Java-Indonesia)
  41. Song, J., & Choi, Y. (2016). Analysis of the potential for use of floating photovoltaic systems on Mine Pit Lakes: Case Study at the Ssangyong Open-Pit Limestone Mine in Korea. Energies, 9 (2), 102. doi: 10.3390/en9020102
  42. Sukmawan, T., Nursyahbani, H., Wahyudi, H.D., Gunawan, T., & Wijaya, A.A. (2021). Technical study of developing floating photovoltaic 145 MWac power plant project In Cirata Reservoir. IOP Conf. Ser.: Mater. Sci. Eng. 1096 012120
  43. Vuichard P; Stauch, A; Wustenhagen R (2021) Keep it local and low-key: Social acceptance of alpine solar power projects. Renewable and Sustainable Energy Reviews 138 (2021) 110516
  44. Wildan, BIEI. (2021). Analisa teknik-ekonomi floating photovoltaic 145 mw cirata untuk mendukung program pemerintahan dalam meningkatkan energi baru dan terbarukan. Tesis di Universitas Andalas

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