Implementation of Automatic Dust Detector on Dust Suppression System on Transfer Tower 0 In Paiton 9 Power Plants

Adam Febrian Maulana, Trismawati Trismawati, Mustakim Mustakim

Abstract

The operation of dust suppressor and dust collector was operating semi-manually by pressing the power button on the local panel during the initial unloading of coal material from the barge or stockpile, where local operators manage several large areas. This research is carried out on the implementation of Automatic Dust Detector for Dust Suppression operational at Paiton Unit 9 power plants with the aim of increasing the efficiency of operator and equipment performance. We use House of Quality (HOQ) as a determinant of the priority scale for technical response to be implemented, namely the addition of an Automatic Dust Detector. The results obtained showed a decrease in the calculation of the dust suppression operating time, i.e. from 5 hour 54 minutes to 5 hour 6 minutes, from 1005,36L/barge to 869,04L/barge  for water consumption, and 1L/barge to 0,86L/barge for chemical use. Furthermore, the implementation of the Automatic Dust Detector can significantly increase efficiency at least 15% from operating time difference.  

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References

M. M. Sony, Trismawati, and Y. Suhandini, “Implementasi Hi-Pressure Fog Spray Dust Suppression System Di PLTU Paiton 9,” Energy, vol. 8, no. 1, pp. 39–43, 2018.

R. Teguh, E. D. Oktaviyani, and K. A. Mempun, “Rancang Bangun Desain Internet of Things Untuk Pemantauan Kualitas Udara Pada Studi Kasus Polusi Udara,” J. Teknol. Inf. J. Keilmuan dan Apl. Bid. Tek. Inform., vol. 12, no. 2, pp. 47–58, 2018.

Z. Arifin, D. D. D. P. Tjahjana, R. A. Rachmanto, S. Suyitno, S. D. Prasetyo, and T. Trismawati, “Redesign Mata Bor Tanah Untuk Pembuatan Lubang Biopori Di Desa Puron, Kecamatan Bulu, Kabupaten Sukoharjo,” Mek. Maj. Ilm. Mek., vol. 19, no. 2, p. 60, 2020.

R. Y. Diputra, A. Marwanto, and S. Alifah, “Coal Dust Controller on Indramayu Power Plants Conveyor Lane Based Iot,” J. Telemat. Informatics, vol. 6, no. 1, pp. 21–26, 2018.

R. Rumantri, M. Y. N. Khakim, and I. Iskandar, “Design and characterization of low-cost sensors for air quality monitoring system,” J. Pendidik. IPA Indones., vol. 7, no. 3, pp. 347–354, 2018.

D. P. Andriani, M. Choiri, and F. B. Desrianto, “Redesain Produk Berfokus Pada Customer Requirements Dengan Integrasi Axiomatic Design dan House of Quality,” J. Ilm. Tek. Ind., vol. 17, no. 1, p. 71, 2018.

I. N. Azizah, R. N. Lestari, and H. H. Purba, “Penerapan Metode Quality Function Deployment dalam Memenuhi Kepuasan Konsumen pada Industri Komponen Otomotif,” J. Tek. Ind., vol. 19, no. 2, p. 127, 2018.

A. F. Indriya, “House of Quality Sebagai Pengendalian Kualitas Layanan Di Lembaga Pendidikan Muhammadiyah,” Didakt. J. Pemikir. Pendidik., vol. 24, no. 2, p. 100, 2018.

A. A. Bolar, S. Tesfamariam, and R. Sadiq, “Framework for prioritizing infrastructure user expectations using Quality Function Deployment (QFD),” Int. J. Sustain. Built Environ., vol. 6, no. 1, pp. 16–29, 2017.

M. Eldermann, A. Siirde, and J. Gusca, “QFD framework for selection of industry development scenarios,” Energy Procedia, vol. 128, pp. 230–233, 2017.

B. Y. Bae, S. Kim, J. W. Lee, N. Van Nguyen, and B. C. Chung, “Process of establishing design requirements and selecting alternative configurations for conceptual design of a VLA,” Chinese J. Aeronaut., vol. 30, no. 2, pp. 738–751, 2017.

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