Bioconcentration Lead (Pb) Green Mussel (Perna viridis) in Semarang Bay

Sonny Lahati(1*), Agus Hartoko(2), Haeruddin Haeruddin(3),


(1) Magister Manajemen Sumberdaya Pantai, Universitas Diponegoro; Fakultas Perikanan Universitas Alkhairaat Palu
(2) Departemen Sumber Daya Akuatik, Fakultas Perikanan dan Ilmu Kelautan, Universitas Diponegoro
(3) Departemen Sumber Daya Akuatik, Fakultas Perikanan dan Ilmu Kelautan, Universitas Diponegoro
(*) Corresponding Author

Abstract


The coastal waters of Semarang Bay have been polluted by heavy metal lead (Pb). The research was conducted from September 2015 to March 2016 with 3 stations at the Tambaklorok green mussel cultivation location. Analysis of the concentration of heavy metal Pb using the AAS (Atomic Absorption Spectrophotometer) method. Data processing using SPSS and Excel. The results showed that the average concentration of heavy metal Pb in the air ranged from 0.51 to 0.76 mg/L. The average concentration of heavy metal Pb in three observations obtained an average concentration of Pb between 4.975-20.43 mg/kg. Green mussels taken in the waters were sorted and separated according to the length of the shell and weighed 1 kg each according to the length of the shell. Small (2-3 cm), medium (3-4 cm) and large shells with long shells (5-6 cm). The results of the measurement of the concentration of heavy metal Pb in P. viridis showed that the average green mussel shell size 4-5 cm at the location of station III had the lowest concentration of heavy metal Pb at 0.24 mg/kg. Meanwhile, the highest average concentration of Pb in P. viridis was found at station I at 0.89 mg/kg with a shell length of 2-3 cm. The correlation equation between shell length and Pb concentration is Y= - 0.131 + 1.13 X. Standard error of the Estimate (SEE) is 0.19. While the standard deviation of 0.20 means that the predictor variable (water) to predict the dependent variable (shellfish) is feasible because SEE is greater than the standard deviation. The average value of the Bioconcentration Factor (BCF) of green mussels is smaller than that of medium-sized green mussels and large green mussels. Green mussels can be consumed by someone if the body weight is 60 kg, then as much as 5.8 kg in a week because it contains Pb

Keywords


Bioconcentration; Perna viridis; Pb; Semarang Bay

Full Text:

PDF

References


Abdulgani, N. Aunorohim. A.W, Indarto. 2010. Konsentrasi Kadmium pada Kerang Hijau (Perna viridis) di Surabaya dan Madura. Jurnal Penelitian Hayati 4F:62-64.

Cappenberg, H.A.W. 2008. Beberapa Aspek Biologi Kerang Hijau. Jurnal Oseana, 23(1):33-40.

Connel, D.W. 1995. Bioakumulasi Senyawaan Xenobiotik. UI Press. Jakarta. 231 hlm (terjemahan : Koestoer, Y. R. H).

Connel, D.W., dan Miller, G.J. 1995. Kimia dan Ekotoksikologi Pencemaran Sumberdaya. UI- Press. 520 hlm. (terjemahan : Koestoer, Y.R.H).

Fachrul, M.F. 2006. Metode Sampling Bioekologi. Bumi Aksara. Jakarta. 198 hlm.

Hendrarto, B. 2006. Metode Kuantitatif Ekologi sumberdaya Perairan. Skripsi. Fakultas Perikanan dan Ilmu Kelautan. Universitas Diponegoro, Semarang, 47 hlm.

Keputusan Menteri Kependudukan dan Lingkungan Hidup :02/Men. KLH/I/1988. Pedoman Penetapan Baku Mutu Lingkungan. Kantor Menteri Negara KLH, 1988.

Mangkoedihardjo, S dan Samudro, G. 2009. Ekotoksikologi Teknosfer. Penerbit Guna Widya. Surabaya., 337 hlm.

Mason. C.F. 1981. Biology of Freshwater Pollutan. Longman Singapore Publisher Ltd. 121p.

Palar, H.1994. Pencemaran dan Toksikologi Logam Berat. PT Rineka Cipta. Jakarta. 152 hlm.

Prihartini, D. 2006. Estimasi Umur Optimum Kerang Hijau (Perna viridis, L.) yang Dibudidayakan di Muara Kamal Teluk Jakarta. Skripsi. Fakultas Perikanan. Institut Pertanian Bogor. 81 hlm.

Rudiyanti, S. 2009. Biokonsentrasi Kerang Darah (Anadara granosa Linn) Terhadap Logam Berat Cadmium (Cd) yang terkandung dalam media Pemeliharaan yang Berasal dari Perairan Kaliwungu,Kendal. Makalah Seminar Nasional Perikanan Expo 2009.

Sarwono, J., dan Budiono, H. 2012. Statistik Terapan Aplikasi untuk Riset Skripsi, Tesis dan Disertasi, menggunakan SPSS, Amos dan Excel. PT. Gramedia, Jakarta. 352 hlm.

Standart Nasional Indonesia. 2009. Batas Maksimum Logam Berat dalam Pangan. SNI 7387. 2009. Badan Standar Nasional (BSN).

Suprapto, D. 2011. Ekofisiologi Bivalvia, Ekologi dan Konsumsi Oksigen. Undip Press, Semarang, 84 hlm.

Wardani, A,D, Kusuma. N.K, Dewi, dan N.R Utami. 2014. Akumulasi Logam Berat Timbal (Pb) pada Daging Kerang Hijau (Perna viridis) di Muara Sungai Banjir Kanal Barat Semarang. Unnes Journal of Life Science, 3 (1): 1-6.

Zulmadara, L. 2009. Kajian Konsentrasi Logam Berat Timbal (Pb) dan Tembaga (Cu) dalam Air, sedimen, dan Kerang darah (Anadara granosa) di Perairan Pantai Semarang jawa Tengah. Tesis. Program Pascasarjana Manajemen Sumberdaya Pantai. Universitas Diponegoro. Semarang. 153 hlm


Article Metrics

Abstract view : 157 times
PDF - 156 times

DOI: http://dx.doi.org/10.31258/jpk.27.2.151-157

Copyright (c) 2022 Sonny Lahati, Agus Hartoko, Haeruddin

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.


Gedung Marine Center Lt 2. Fakultas Perikanan dan Kelautan Universitas Riau

 Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.