Vol. 19 No. 5 (2024): September 2024
Open Access
Peer Reviewed

The Effects of Pond Type and Water Quality Dynamics on Vannamei Shrimp Growth: A Dummy Regression Analysis

Authors

Febriyani Eka Supriatin , Aulia Rahmawati , Muhammad Dailami

DOI:

10.29303/jpm.v19i5.7497

Published:

2024-09-30

Downloads

Abstract

Vannamei shrimp is one of Indonesia's leading aquaculture sector commodities due to its high survival rate, short cultivation time, and disease resistance. Vannamei shrimp cultivation in Indonesia adopts an intensive system favoured for high productivity. In intensive cultivation systems, shrimp ponds typically utilize concrete or high-density polyethylene (HDPE) ponds. Each type has its own positive and negative side that affects the growth and production of Vannamei shrimp. Apart from the type of pond, water quality also played an important role in the growth of Vannamei shrimp. Water quality is one of the important factors in intensive shrimp cultivation. Pond type is categorical data and has a nominal measurement scale, while water quality is numerical data with a ratio measurement scale; ordinary regression analysis is unsuitable for analyzing the effect of pond type and water quality on the growth of Vannamei shrimp. Therefore, a dummy regression model accommodates these measurement scale differences. This research aims to determine the effect of different types of ponds and water quality dynamics on the growth of Vannamei shrimp and to select the best type of pond for intensive cultivation of Vannamei shrimp. Additionally, it aims to identify the water quality parameters that most influence the growth of Vannamei shrimp so that it can serve as a reference for Vannamei shrimp farmers to achieve high productivity efficiently. The study was conducted from November 2022 to January 2023 in Banyuwangi Regency, East Java Province, Indonesia. There are three concrete ponds and 10 HDPE ponds. The research method employed in this study is a survey method utilizing simple random sampling. The parameters in this research are the quality of cultivation water, including pH, temperature and dissolved oxygen (DO). The water samples taken are then measured for water quality in the laboratory. The results of this study indicate that the average values for water quality are still within the optimal range. The average ABW in HDPE and concrete ponds ranges from 2.30 to 9.39 grams per shrimp and 2.22-9.73 grams per shrimp.  Based on the study's results, it can be concluded that different pond types and water quality dynamics, specifically pH and temperature, affect shrimp growth based on ABW. However, when considering SGR values, the type of pond does not have a significant impact. The water quality parameters that affect SGR are pH and temperature.

Keywords:

Dummy Regression; Pond Type; Vannamei shrimp; Water Quality

References

Hidayat, K. W., Nabilah, I. A., Nurazizah, S., & Gunawan, B. I. (2019). Pembesaran udang vaname (Litopenaeus Vannamei) di PT. Dewi Laut Aquaculture Garut Jawa Barat. Journal of Aquaculture and Fish Health, 8(3), 123-128

Ritonga, L., Arifin, M., Harijono, T., Aonullah, A., & Bawazir, A. (2024). Performa pertumbuhan dan kelulushidupan pada budidaya udang vannamei (Litopenaeus Vannamei) di tambak intensif PT. Andulang Shrimp Farm Sumenep, Jawa Timur. Aurelia Journal, 6(1), 103-112.

Hendrajat, E. A., Ratnawati, E., & Mustafa, A. (2018). Penentuan pengaruh kualitas tanah dan air terhadap produksi total tambak polikultur udang vaname dan ikan bandeng di Kabupaten Lamongan, Provinsi Jawa Timur melalui aplikasi analisis jalur. Jurnal Ilmu dan Teknologi Kelautan Tropis, 10(1), 179-195.

Samsu, N. (2020). Penyediaan Protein Hewani Melalui Pemanfaatan Pekarangan Rumah Untuk Budidaya Ikan Lele. Deepublish.

Alune.(2023). https://thefishsite.com/articles/seven-tips-for-managing-pond-bottom-quality-hrimp-farming. Diakses pada tanggal 23 Maret 2023.

Ariadi, H., Wafi, A., Fadjar, M., & Mahmudi, M. (2020). Tingkat transfer oksigen kincir air selama periode blind feeding budidaya intensif udang putih (Litopenaeus vannamei). JFMR (Journal of Fisheries and Marine Research), 4(1), 7-15.

Yunarty, Y., Kurniaji, A., Budiyati, B., Renitasari, D. P., & Resa, M. (2022).karakteristik kualitas air dan performa pertumbuhan budidaya udang vaname (Litopenaeus vannamei) pola intensif. Pena Akuatika: Jurnal Ilmiah Perikanan dan Kelautan, 21(1), 75-88.

Purnamasari, I., Purnama, D., & Utami, M. A. F. (2017). Pertumbuhan udang vaname (Litopenaeus vannamei) di tambak intensif. Jurnal Enggano, 2(1), 58-7.

Scabra, A. R., Hermawan, D. dan Haryadi. (2022). Pemberian jenis pakan yang berbeda pada pemeliharaan udang vaname (Litopenaeus vannamei) dengan media bersalinitas rendah. Jurnal Media Akuakultur Indonesia, 2(1), 31-45.

Bingham, N., & Fry, J. (2010). Regression Model Linear Models in Statistics. Springer.

Fuady, M. F., dan Nitisupardjo, M. (2013). Pengaruh pengelolaan kualitas air terhadap tingkat kelulushidupan dan laju pertumbuhan udang vaname (Litopenaeus vannamei) di PT. Indokor Bangun Desa, Yogyakarta. Management of Aquatic Resources Journal (MAQUARES), 2(4), 155–162.

Ritonga, L. B. R., Sudrajat, M. A. dan Arifin, M. Z. (2021). Manajemen pakan pada pembesaran udang vaname (Litopenaeus vannamei) di tambak intensif CV. Bilangan Sejahtera Bersama. Chanos chanos, 19(2), 187-197.

Hoiriyah, Y. U. (2019). Peningkatan kualitas produksi garam menggunakan teknologi geomembran. Jurnal Studi Manajemen dan Bisnis, 6(2), 71-76.

Said D. S. & Sadi, N. H. (2019). Ikan patin pasupati: sang super yang eksklusif. Warta Iktiologi, 3(1), 25-31.

Supono. (2018). Manajemen Kualitas Air Untuk Budidaya Udang. AURA (CV. Anugrah Utama Raharja)

Halim, A. M., Krisnawati, M. dan Fauziah, A. (2021). Dinamika kualitas air pada pembesaran udang vaname (Litopenaeus vannamei) secara intensif di PT. Andulang Shrimp Farm Desa Andulang Kecamatan Gapura Kabupaten Sumenep Jawa Timur. Chanos chanos, 19(2), 143-153.

Wilda, N. (2020). Studi kelimpahan zooplankton dengan ketinggian air tambak yang berbeda di Desa Jangka Alue Bie. Arwana: Jurnal Ilmiah Program Studi Perairan, 2(2), 97–102.

Kurniati, E., Huy V. T., Anugroho, F., Sulianto, A. A., Amalia, N. dan Nadhifa, A. R. (2020). Analisis pengaruh pH dan suhu pada desinfeksi air menggunakan microbubble dan karbondioksida bertekanan. Journal of Natural Resources and Evironmental Management, 10(2), 247-256.

Indriatmoko, R. H., Herlambang, A. dan Nugroho, R. (2018). Percobaan aplikasi pembangkit gelembung mikro untuk menurunkan kandungan zat besi dalam air tanah. Jurnal Air Indonesia, 10(1), 10-17.

Poedjiraharjoe, E., Marsono, D. dan Wardhani, F. K. (2017). Penggunaan principal component analysis dalam distribusi spasial vegetasi mangrove di Pantai Utara Pemalang. Jurnal Ilmu Kehutanan, 11(1), 29-42.

Ilham, M. F., Andayani, S. dan Suprastyani, H. (2021). Perbedaan model budidaya terhadap fluktuasi kualitas air untuk pertumbuhan udang vaname (Litopenaeus vannamei) pola intensif. Journal of Fisheries and Marine Research, 5(3), 514-521.

Saepudin, Wijaya, R., Sofiatunisa, Agustin, N. D., Wahyuni, S., Yusuf, M. dan Pratiwi, N. E. (2022). Pendampingan kepada petani tambak udang untuk meningkatkan hasil panen petani tambak di Desa Wanayasa, Kecamatan Pontang, Kabupaten Serang. Jurnal Abdimas Bina Bangsa, 3(1), 27-33.

Arsad, S., Afandy, A., Purwadhi, A. P., Maya, B. V., Saputra, D. K. dan Buwono, N. R. (2017). Studi kegiatan budidaya pembesaran udang vaname (Litopenaeus vannamei) dengan penerapan sistem pemeliharaan berbeda. Jurnal Ilmiah Perikanan dan Kelautan, 9(1), 1-14.

Ariadi, H., Wafi, A., Supriatna dan Musa, M. (2021). Tingkat difusi oksigen selama periode blind feeding budidaya intensif udang vaname (Litopenaeus vannamei). Journal of Science and Technology, 14(2), 152-158.

Samura, A., Kurniawan, W., & Setyawan, G. E. (2018). Sistem kontrol dan monitoring kualitas air tambak udang windu dengan metode fuzzy logic control menggunakan mikrokontroler NI myRIO. Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer,2 (9), 2644-2653.

Hoiriyah, Y. U. (2019). Peningkatan kualitas produksi garam menggunakan teknologi geomembran. Jurnal Studi Manajemen dan Bisnis, 6(2), 71-76.

Hidayah, V. N., Musa, M., & Kilawati, Y. (2021). Expression virus-like particles (VLPs) at geomembrane and concret in Asian Pacific shrimp culture (Litopenaeus vannamei). The Journal of Experimental Life Science, 11(3), 106-114.

Supriatna, M., Mahmudi, M., & Musa, M. (2020). Model pH dan hubungannya dengan parameter kualitas air pada tambak intensif udang vaname (Litopenaeus vannamei) di Banyuwangi Jawa Timur. JFMR (Journal of Fisheries and Marine Research), 4(3), 368-374.

Nirmala, K., Pertiwi, S., & Ambarwulan, W. Analisis kualitas lingkungan dan produktivitas tambak budidaya udang windu sistem teknologi tradisional di Kabupaten Bulungan. Indonesian Journal of Fisheries Science and Technology, 18(2), 93-104.

Author Biographies

Febriyani Eka Supriatin, Department of Fisheries and Marine Resources Management, Faculty of Fisheries and Marine Science Universitas Brawijaya

Author Origin : Indonesia

Aulia Rahmawati, Department of Fisheries and Marine Resources Management, Faculty of Fisheries and Marine Science Universitas Brawijaya

Author Origin : Indonesia

Muhammad Dailami, Department of Fisheries and Marine Resources Management, Faculty of Fisheries and Marine Science Universitas Brawijaya

Author Origin : Indonesia

Downloads

Download data is not yet available.

How to Cite

Supriatin, F. E., Rahmawati, A., & Dailami, M. (2024). The Effects of Pond Type and Water Quality Dynamics on Vannamei Shrimp Growth: A Dummy Regression Analysis. Jurnal Pijar MIPA, 19(5), 898–905. https://doi.org/10.29303/jpm.v19i5.7497