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首页> 外文期刊>Journal of Environmental Management >Decolonization of synthetic brilliant green carpet industry dye through fungal co-culture technology
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Decolonization of synthetic brilliant green carpet industry dye through fungal co-culture technology

机译:通过真菌共培养技术脱合成合成亮绿色地毯工业染料

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摘要

Aim of the present study was to evaluate the efficiency of fungal co-culture for the decolorization of synthetic brilliant green carpet industry dye. For this purpose two lignocellulolytic fungi Pleurotus florida (PF) and Rhizoctonia solani (RS) were employed. The study includes determination of enzyme profiles (laccase and peroxidase), dye decolorization efficiency of co-culture and crude enzyme extracts. Both fungi produced laccase and Mn peroxidase and successfully decolorized solutions of different concentrations (2.0, 4.0, 6.0, & 8.0(w/v) of dye. The co-culture resulted highest 98.54% dye decolorization at 2% (w/v) of dye as compared to monocultures (82.12% with PF and 68.89% with RS) during 12 days of submerged fermentation. The lower levels of dyes were rapidly decolorized, while higher levels in slow order as 87.67% decolorization of 8% dye. The promising achievement of the study was remarkable decolorizing efficiency of co-culture over monocultures. The direct treatment of the mono and co-culture enzyme extracts to dye also influenced remarkable. The highest enzymatic decolorization was through combined (PF and RS) extracts, while lesser by monoculture extracts. Based on the observations and potentiality of co-culture technology; further it can be exploited for the bioremediation of areas contaminated with hazardous environmental pollutants including textile and other industry effluents.
机译:本研究的目的是评估真菌共培养对合成艳丽绿色地毯工业染料脱色的效率。为此目的,使用了两种木质纤维素分解真菌佛罗里达侧耳(PF)和茄根枯菌(RS)。该研究包括确定酶谱(漆酶和过氧化物酶),共培养和粗酶提取物的染料脱色效率。真菌均产生漆酶和Mn过氧化物酶,并成功地对不同浓度(2.0、4.0、6.0和8.0(w / v)的染料进行脱色,共培养在2%(w / v)的条件下染料脱色率最高为98.54%。在深层发酵的12天中,与单一培养物相比(PF为82.12%,RS为68.89%),较低含量的染料快速脱色,而较慢含量的较高水平,为8%染料脱色率为87.67%。这项研究的结果是共培养物比单培养物具有显着的脱色效果,单酶和共培养酶提取物对染料的直接处理也有显着影响,最高的酶法脱色是通过混合(PF和RS)提取物,而较少的是单培养基于共培养技术的观察和潜力;此外,还可将其用于生物危害性环境的生物修复,包括纺织和其他工业领域。流出物。

著录项

  • 来源
    《Journal of Environmental Management》 |2016年第15期|172-179|共8页
  • 作者

    Simpal Kumari; Ram Naraian;

  • 作者单位

    Department of Biotechnology, Mushroom Training & Research Centre (MTRC), Faculty of Science, Veer Bahadur Singh Purvanchal University, Jaunpur, 222003 UP, India;

    Department of Biotechnology, Mushroom Training & Research Centre (MTRC), Faculty of Science, Veer Bahadur Singh Purvanchal University, Jaunpur, 222003 UP, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pleurotus; Textile dyes; Mycelium; Submerged culture; Co-culture technology;

    机译:平菇;纺织染料;菌丝体淹没的文化;共培养技术;

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