Sistem Monitoring Kualitas Air Secara Real Time pada Tambak Udang Vaname (Litopenaeus vannamei)

  • Muhammad Rizaldy Universitas Muhammadiyah Parepare
  • Alauddin Y Universitas Muhammadiyah Parepare
  • Muhammad Basri Universitas Muhammadiyah Parepare
Keywords: pond, vannamei shrimp, monitoring, pH, salinity

Abstract

The continuous activity of Vanname shrimp farming can lead to environmental degradation, marked by a decline in water quality. The location of the pond must be close to a water source that has good quality and is free from pollution. This research aims to create a design tool for the water quality of shrimp ponds. The design for the water quality of Vannamei shrimp ponds forms the basis of the qualitative research method, which draws from relevant literature. Using the Visual Studio programming language. The implementation of the research was conducted at a shrimp farm location in the city of Parepare. The results of the prototype design and construction can monitor pH values ranging from the lowest to the highest, which are 7.06–8.13, and salinity values from 15710–4905 ppm. Through the application, the water quality in the pond is monitored as normal, with a pH of 7.5–8.5 and salinity of 15–25 ppt. The device that has been created is functioning well.

References

Ala, A., Mariah, Y., Zakiah, D., & Fitrial, D. (2018). Analisa pengaruh salinitas dan derajat keasaman (ph) air laut di pelabuhan jakarta terhadap laju korosi plat baja material kapal. Meteor STIP Marunda, 11(2), 33-40.

Anggraini, N. L. (2023). Peran Usaha Budidaya Udang Terhadap Kesejahteraan Masyarakat Menurut Perspektif Ekonomi Islam (Studi kasus petani tambak udang di Desa Margasari Kecamatan Labuhan Maringgai Lampung Timur). Skripsi. IAIN Metro).

Moehammad, K. S., Kurniawan, A., & Faqih, A. R. (2025). Aplikasi Bakteri Probiotik Bacillus Spp. terhadap Pembentukan Biofilm dan Kualitas Air: Studi Eksperimental pada Media Kultur Budidaya Udang Vaname: Application of Probiotic Bacteria Bacillus Spp. on Biofilm Formation and Water Quality: an Experimental Study on Vaname Shrimp Cultury Media. JFMR (Journal of Fisheries and Marine Research), 9(1), 10-19.

Primanandra, A., Yusfi, M., & Rasyid, R. (2024). Sistem Pemantauan Serta Pengendalian Suhu Dan PH Air Berbasis Arduino Uno Pada Pendederan Udang Vaname. Jurnal Fisika Unand, 13(3), 322-328.

Purnamasari, I., Purnama, D., & Utami, M. A. F. (2017). Pertumbuhan udang vaname (Litopenaeus vannamei) di tambak intensif. Jurnal enggano, 2(1), 58-67.

Salfia, E., Azhar, A., & Kamal, M. (2018). Rancang bangun alat pengendalian dan monitoring kualitas air tambak udang berbasis salinitas dan kadar oksigen terlarut. Jurnal Tektro, 2(2).

Suparjo, M. N. (2008). Daya dukung lingkungan perairan tambak desa Mororejo Kabupaten Kendal. Saintek Perikanan: Indonesian Journal of Fisheries Science and Technology, 4(1), 50-55.

Tansa, S., Latekeng, N. A., & Yunginger, R. (2024). Monitoring Kualitas Air Sungai (Kekeruhan, Suhu, TDS, pH) Menggunakan Mikrokontroler Atmega328. Jambura Journal of Electrical and Electronics Engineering, 6(1), 70-75.

Umidayati, U., Khaerudin, K., Dewi, I. J. P., Kusriyati, K., Indrayati, A., Lestari, S. W., ... & Kurman, K. (2021). Pelatihan Budidaya Udang Vannamei Sistem Semi Intensif di Desa Karang Anyar Provinsi Lampung. Jurnal Abdi Insani, 8(3), 365-376.

Yustiati, A., & Andriani, Y. (2022). Budidaya udang vanname Pembesaran Udang vannamei Pada Berbagai Sistem Akuakultur: telaah Pustaka. Journal of Fish Nutrition, 2(1), 26-36

Published
2026-02-18
Section
Articles