环境生物技术在真菌-微藻修复重金属中的作用

Q4 Agricultural and Biological Sciences Basrah Journal of Agricultural Sciences Pub Date : 2023-06-24 DOI:10.37077/25200860.2023.36.1.02
M. Qader, Yahya A. Shekha
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引用次数: 0

摘要

生物修复是生物技术的一个分支,它利用生物有机体,如微藻和真菌,从土壤、水和其他环境中去除污染物、污染物和毒素。本试验旨在评价微生物在研究期间(20 d)利用两种真菌(黑曲霉和白色念珠菌)和两种微藻(四角角藻和尼伽尔角藻)对液体培养基中重金属的去除效果。在本研究中,镉和铅是根据这类重金属的不同浓度(5、15、35和50ppm)选择的。结果表明,真菌和微藻对重金属的去除效果显著。对于Pb和Cd,在5 ~ 50ppm各浓度下,铅的最大去除率分别为(94、90、86.28%和81.6%);在试验第20天,联合培养的四角田鼠(Scenedesmus quadricauda)和龙尾龙鼠(Tetradesmus nygaardi)镉的最大去除率分别为(88、86.66、84.57和79%)。对照组与各处理重金属含量差异均有统计学意义(p≤0.05)。
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Role of Environmental Biotechnology in Remediation of Heavy Metals by Using Fungal-Microalgal Strains
Bioremediation is a branch of biotechnology that employs the use of living organisms, like microalgae and fungi, in the removal of contaminants, pollutants, and toxins from soil, water, and other environments. The experiment was designed to evaluate the efficiency of microorganisms to remove heavy metals by using, two fungi (Aspegillus niger and Candida albicans) with two microalgae (Scenedesmus quadricauda and Tetradesmus nygaardi), in removing heavy metals from liquid media during study period (20 days). For this study, cadmium and lead were selected by different concentrations (5, 15, 35, and 50ppm) of such heavy metals. The results indicate that fungi and microalgae effectively removed a significant amount of heavy metals. With respect to Pb and Cd, the maximum removal of lead for all concentrations (5-50ppm) were, (94, 90, 86.28 and 81.6%) respectively, and maximum cadmium removal were (88, 86.66, 84.57 and 79%) recorded by consortium culture of Scenedesmus quadricauda and Tetradesmus nygaardi on day 20th of the experiment. Statistically there were significant difference (p≤0.05) between control and all treatments for both tested heavy metals.
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来源期刊
Basrah Journal of Agricultural Sciences
Basrah Journal of Agricultural Sciences Environmental Science-Pollution
CiteScore
1.20
自引率
0.00%
发文量
35
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