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A crucial review on polycyclic aromatic Hydrocarbons - Environmental occurrence and strategies for microbial degradation

机译:多环芳烃 - 环境发生和微生物降解策略的关键综述

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摘要

Over the last century, contamination of polycyclic aromatic hydrocarbons (PAHs) has risen tremendously due to the intensified industrial activities like petrochemical, pharmaceutical, insecticides and fertilizers applications. PAHs are a group of organic pollutants with adverse effects on both humans and the environment. These PAHs are widely distributed in various ecosystems including air, soil, marine water and sediments. Degradation of PAHs generally occurs through processes like photolysis, adsorption, volatilization, chemical degradation and microbial degradation. Microbial degradation of PAHs is done by the utilization of diverse microorganisms like algae, bacteria, fungi which are readily compatible with biodegrading/bio transforming PAHs into H2O, CO2 under aerobic, or CH4 under anaerobic environment. The rate of PAHs degradation using microbes is mainly governed by various cultivation conditions like temperature, pH, nutrients availability, microbial population, chemical nature of PAHs, oxygen and degree of acclimation. Several microbial species including Selenastrum capricornutum, Ralstonia basilensis, Acinetobacter haemolyticus, Pseudomonas migulae, Sphingomonas yanoikuyae and Chlorella sorokiniana are known to degrade PAHs via biosorption and enzyme-mediated degradation. Numerous bacterial mediated PAHs degradation methods are studied globally. Among them, PAHs degradation by bacterial species like Pseudomonas fluorescence, Pseudomonas aeruginosa, Rhodococcus spp., Paenibacillus spp., Mycobacterium spp., and Haemophihis spp., by various degradation modes like biosurfactant, bioaugmentation, biostimulation and biofilms mediated are also investigated. In contrarily, PAHs degradation by fungal species such as Pleurotus ostreatus, Polyporus sulphureus, Fusarium oxysporum occurs using the activity of its ligninolytic enzymes such as lignin peroxidase, laccase, and manganese peroxidase. The present review highlighted on the PAHs degradation activity by the algal, fungal, bacterial species and also focused on their mode of degradation.
机译:在上个世纪,由于石化,药物,杀虫剂和肥料应用等强化的工业活性,对多环芳烃烃(PAH)的污染增强了大幅度。 PAHS是一群有机污染物,对人类和环境的不利影响。这些PAHS广泛分布在各种生态系统中,包括空气,土壤,海水和沉积物。 PAHS的降解通常通过光解,吸附,挥发,化学降解和微生物降解等方法进行。 PAHS的微生物降解是通过利用不同的微生物,如藻类,细菌,真菌,与生物降解/生物降解PAH进入H2O,CO2在有氧环境下的H2O,CO2中,或在厌氧环境下。使用微生物的PAHS降解的速率主要由温度,pH值,营养物质可用性,微生物种群,PAH的化学性质,氧气和适应程度的各种培养条件治理。已知几种微生物物种,包括Selenastrum Capricornutum,Ralstonia Basilensis,AcineToconas Miagulae,Spseudomonas yanoikuyae和小球菌索洛尼亚纳,通过生物吸附和酶介导的降解降解PAHS。许多细菌介导的PAHS降解方法在全球研究。其中,PSeudomonas荧光,假体SPP,Paenibacillus SPP,帕氏菌,SPP,SPP,和Haemophihis SPP等细菌种类的降解。,通过各种降解模式,还研究了生物活性剂,生物沉积,生物刺激和生物膜介导的各种降解模式。相反,Pleurotus Ostreatus,Polyporus Sulphureus等真菌物种,镰刀菌,镰刀菌,镰刀酸钠,镰刀酸钠,镰刀酸钠等抑菌物种如木质素过氧化物酶,漆酶和锰过氧化物酶的活性发生降解。通过藻类,真菌,细菌物种的PAHS降解活性突出显示本综述,并集中在其降解模式上。

著录项

  • 来源
    《Chemosphere》 |2021年第2期|130608.1-130608.14|共14页
  • 作者单位

    Alagappa Univ Dept Energy Sci Karaikkudi Tamil Nadu India|Alagappa Univ Dept Microbiol Karaikkudi Tamil Nadu India;

    Alagappa Univ Dept Microbiol Karaikkudi Tamil Nadu India;

    Alagappa Univ Dept Bioinformat Karaikkudi Tamil Nadu India;

    Alagappa Univ Dept Microbiol Karaikkudi Tamil Nadu India;

    Alagappa Univ Dept Microbiol Karaikkudi Tamil Nadu India;

    Alagappa Univ Dept Microbiol Karaikkudi Tamil Nadu India|PRIST Univ Dept Microbiol Madurai Tamil Nadu India;

    Alagappa Univ Dept Anim Hlth & Management Karaikkudi 630003 Tamil Nadu India;

    Kyungpook Natl Univ Dept Environm Engn Daegu 41566 South Korea;

    Alagappa Univ Dept Microbiol Karaikkudi Tamil Nadu India;

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

    PAHs; Microbial; Biodegradation; Bioremediation; Biofilm;

    机译:PAHS;微生物;生物降解;生物修复;生物膜;

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