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Biosorption of heavy metal arsenic from Industrial Sewage of Davangere District, Karnataka, India, using indigenous fungal isolates

机译:来自印度的Davangere区工业污水的重金属砷的生物吸附,采用土着真菌分离株

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摘要

Contamination of soil and water bodies with heavy metals like arsenic (As) is of major concern, since arsenic is non-biodegradable, toxic and causes ill effects to gastrointestinal system, skin, liver, kidney or neurological functions. In addition, animals affected by arsenic pollution through fodder intern enter to food chain. Hence, there is an urgent need to address heavy metal arsenic pollution especially through bioremediation. In this context, biosorption with indigenous microbiota has gained more interest in recent years as it is cost-effective, eco-friendly approach and with no adverse effects. In the present study, arsenic (As III)-resistant strains of fungi were isolated from soil samples collected from various locations of industrial sewage disposal sites of Davangere District, India, and screened. Among five fungal isolates, Aspergillus spp APR-1 and APR-2 showed greater resistance to arsenic in the laboratory conditions. In order to increase the surface area for biosorption, APR-1 and APR-2 isolates were immobilized on Luffa aegyptiaca (sponge gourd) (an agro-waste as biosorbent). With 250 mM arsenic solution, Aspergillus spp APR-1 and APR-2 showed biosorption of 53.94 and 52.54%, respectively, on inductively coupled plasma-optical emission spectrometry analysis and the adsorption of the fungal isolates on sponge gourd was confirmed using scanning electron microscopy. APR-1 isolate was further characterized by 18 s rDNA typing and identified as Aspergillus niger. Industrial scale application perhaps is taken up using selected fungal strains and mitigates the arsenic pollution in urban sewage.
机译:砷(AS)等重金属污染土壤和水体是主要的关注,因为砷是非生物降解的,有毒的,对胃肠系统,皮肤,肝脏,肾脏或神经功能产生不良影响。此外,通过饲料实习生进入食物链,受砷污染影响的动物。因此,迫切需要解决重金属砷污染,特别是通过生物修复。在这种情况下,近年来,与土着微生物群的生物吸附越来越感兴趣,因为它具有成本效益,环保的方法,并且没有不利影响。在本研究中,砷(ASII)的真菌菌株从达瓦雷区,印度的工业污水处理场所的各个地点收集和筛选的土壤样本中分离出来。在五种真菌分离物中,Aspergillus SPP APR-1和APR-2在实验室条件下表现出更大的砷性抗性。为了增加生物吸附的表面积,将4月1日和4月2分离株固定在Luffa Aegyptaca(海绵葫芦)上(作为生物吸附剂的农业废物)。含有250毫米的砷溶液,Aspergillus SPP APR-1和APR-2显示出生物吸附53.94和52.54%,在电感耦合等离子体 - 光学发射光谱分析中,使用扫描电子显微镜确认了海绵谷粉上的真菌分离物的吸附。 4月1日分离物进一步表征18秒的rDNA打字并鉴定为曲霉尼日尔。使用所选的真菌菌株占据工业规模申请,并减轻城市污水中的砷污染。

著录项

  • 来源
    《SN Applied Sciences》 |2020年第11期|1860.1-1860.7|共7页
  • 作者单位

    Rashtrotthan Vidya Kendra Nittuvalli Davangere 577004 India;

    Rashtrotthan Vidya Kendra Nittuvalli Davangere 577004 India;

    Rashtrotthan Vidya Kendra Nittuvalli Davangere 577004 India;

    Rashtrotthan Vidya Kendra Nittuvalli Davangere 577004 India;

    ICAR-Taralabalu Krishi Vigyan Kendra Kadalivana Davangere 577004 India;

    Department of Studies in Microbiology Davangere University Shivagangothri Davangere 577007 India;

    Department of Studies in Microbiology Davangere University Shivagangothri Davangere 577007 India;

    Department of Studies in Microbiology Davangere University Shivagangothri Davangere 577007 India;

    Department of Studies in Microbiology Davangere University Shivagangothri Davangere 577007 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosorption; Luffa aegyptiaca; Aspergillus niger; Arsenic;

    机译:生物吸附;Luffa Aegyptiaca;曲霉;砷;

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