Potential Utilization of Bacterial Consortium of Symbionts Marine Sponges in Removing Polyaromatic Hydrocarbons and Heavy Metals, Review

Marzuki, Ismail and Rosmiati, Rosmiati and Mustafa, Akhmad and Sahabuddin, Sahabuddin and Tarunamulia, Tarunamulia and Susianingsih, Endang and Hendrajat, Erfan Andi and Sahrijanna, Andi and M Muslimin, uslimin and Ratnawati, Erna and Kamariah, Kamariah and Nisaa, Khairun and Herlambang, Susila and Gunawan, Sri and Santi, Idum Satia and Heri Isnawan, Bambang and Kaseng, Ernawati Syahruddin and Septiningsih, Early and Athirah, Admi (2023) Potential Utilization of Bacterial Consortium of Symbionts Marine Sponges in Removing Polyaromatic Hydrocarbons and Heavy Metals, Review. MDPI.

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Abstract

oxic materials in waste generally contain several components of the global trending pollu�tant category, especially PAHs and heavy metals. Bioremediation technology for waste management that utilizes microorganisms (bacteria) has not been fully capable of breaking down these toxic materials into simple and environmentally friendly chemical products. This review paper examines the potential application of a consortium of marine sponge symbionts with high performance and efficiency in removing PAHs and heavy metal contaminants. The method was carried out through a review of several related research articles by the author and published by other researchers. The results of the study conclude that the development of global trending pollutant (GTP) bioremedi�ation technology could be carried out to increase the efficiency of remediation. Several types of marine sponge symbiont bacteria, hydrocarbonoclastic (R-1), metalloclastic (R-2), and metallo-hydro�carbonoclastic (R-3), have the potential to be applied to improve waste removal pe consortium of crystalline bacterial preparations is required to mobilize into GTP-exposed sites rapidly. Bacterial symbionts of marine sponges can be traced mainly to sea sponges, whose body surface is covered with mucus.

Item Type: Artikel
Uncontrolled Keywords: removal; PAHs; heavy metals; marine sponges; bacterial consortium
Subjects: 500 – Ilmu Pengetahuan > 570 Biologi > 570 Biologi
Divisions: Jurnal
Depositing User: Admin Repository UNIFA
Date Deposited: 10 Jan 2023 05:49
Last Modified: 24 Jan 2023 02:58
URI: https://repository.unifa.ac.id/id/eprint/231

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