SÀNG LỌC CHỦNG VI KHUẨN TÍA QUANG HỢP CÓ KHẢ NĂNG LOẠI BỎ KIM LOẠI NẶNG TRONG AO NUÔI TÔM THẺ CHÂN TRẮNG
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Ngày nhận bài: 02/07/25                Ngày hoàn thiện: 15/12/25                Ngày đăng: 16/12/25Tóm tắt
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[1] S. Sultana et al., “Ecological and human health risk assessment of heavy metals in cultured shrimp and aquaculture sludge,” Toxics, vol. 10, no. 4, pp. 1–17, 2022.
[2] N. T. Giao, “Heavy metal concentration in the sediments in aquacultural areas in An Giang province, Vietnam,” J. Energy Technol. Environ., vol. 5, no. 2, pp. 105–114, 2023.
[3] U. Arisekar et al., “Accumulation potential of heavy metals at different growth stages of Pacific white leg shrimp, Penaeus vannamei farmed along the Southeast coast of Peninsular India: A report on ecotoxicology and human health risk assessment,” Environ. Res., vol. 212, 2022, Art. no. 113105.
[4] S. Panwichian, D. Kantachote, B. Wittayaweerasak, and M. Mallavarapu, “Isolation of purple nonsulfur bacteria for the removal of heavy metals and sodium from contaminated shrimp ponds,” Electron. J. Biotechnol., vol. 13, no. 4, pp. 3–4, 2010.
[5] K. Mukkata, D. Kantachote, B. Wittayaweerasak, M. Megharaj, and R. Naidu, “The potential of mercury resistant purple nonsulfur bacteria as effective biosorbents to remove mercury from contaminated areas,” Biocatal. Agric. Biotechnol., vol. 17, pp. 93-103, 2019.
[6] B. N. H. Armadi, S. H. Hasmoni, S. Shahir, W. A. H. Al Towayti, and Z. Ibrahim, “Isolation, Characterization and Identification of Purple Non Sulfur Bacteria for Cadmium Removal from Aqueous Solution,” J. Mater. Life Sci. JOMALISC, vol. 3, pp. 45–56, 2024.
[7] U. T. T. Do and N. V. Tran, "Study on photosynthetic bacteria for application in treating heavily organic polluted wastewater," in Proceedings of the national biotechnology conference 2003, 2003, pp. 416-420.
[8] T. L. Do, "Study on application of purple photosynthetic bacteria for removal of sulfide from wastewater," (In Vietnamese), PhD Thesis, Vietnam National University, 2016.
[9] T. Y. Hoang, D. T. Vu, M. P. Thai, T. H. Tran, T. M. T. Le, T. T. H. Nguyen, T. T. H. Dinh, and T. T. Do, “Use of purple non-sulfur bacteria combined with microalgae to increase survival rate of Pacific oyster (Crassostrea gigas) larvae,” Journal of Vietnam Agricultural Science and Technology, vol. 5, no. 147, pp. 78-94, 2023.
[10] T. H. Tran, T. T. Pham, T. H. T. Dinh, T. H. T. Nguyen, and T. Y. Hoang, "Purple nonsulfur bacterium Rhodovulum sulfidophilum ST20 has the potential of using as probiotic in fafcific white shrimp (Litopenaeus vannamei)," in Proceedings of the national biotechnology conference 2024, 2004, pp. 1005-1010.
[11] T. T. H. Nguyen, T. T. Pham, T. T. H. Dinh, T. H. Tran, and T. Y. Hoang, “Purple nonsulfur bacterium strain Rhodobacter sphaeroides isolated from nam dinh shrimp pond capacity producing enzymes and antagonism to Vibrio parahaemolyticus,” TNU J. Sci. Technol., vol. 229, no. 09, pp. 291–297, 2024.
[12] M. Suwansaard, “Production of hydrogen and 5-aminolevulinic acid by photosynthetic bacteria from palm oil mill effluent,” Ph.D. Thesis, Prince of Songkla University, 2010.
[13] K. Mukkata, D. Kantachote, B. Wittayaweerasak, S. Techkarnjanaruk, M. Mallavarapu, and R. Naidu, “Distribution of mercury in shrimp ponds and volatilization of Hg by isolated resistant purple nonsulfur bacteria,” Water. Air. Soil Pollut., vol. 226, pp. 1–14, 2015.
[14] R. Devereux and S. S. Wilkinson, "Amplification of ribosomal RNA sequences," Molecular Microbial Ecology Manual, Second Edition, vol. 3.01, pp. 509–522, 2004.
DOI: https://doi.org/10.34238/tnu-jst.13167
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