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Overview of bioremediation with technology assessment and emphasis on fungal bioremediation of oil contaminated soils

机译:具有技术评估的生物修复概述,并强调油污污染土壤真菌生物修复

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摘要

Environmental contamination is a problem that requires sustainable solutions. Bioremediation technologies have been developed in the last decades and are increasingly used to mitigate environmental accidents and systematic contaminations. A review of bioremediation technologies, based on published article and patent documents, is presented for different types of contaminated matrices, bioremediation agents and contaminants. The worldwide database of the European Patent Office was searched using radicals of keyword as well as the International Patent Classification (IPC) to identify patents in our areas of concern. Technological domains, annual filing volume, legal status, assignee countries and development collaborations are presented and examples are discussed. The total number of patents is compared with the total number of articles. A SWOT analysis for bioremediation technologies is presented. The technologies for water (53%), soils (36%), and sludges (11%) are growing yearly at nearly constant rates. The bioremediation agents are predominantly bacteria (57%), enzymes (19%), fungi (13%), algae (6%), plants (4%) and protozoa. The major contaminants are oils (38%), followed by metals (21%), organic waste (21%), polymers (10%), food (5%), cellulose (5%) and biodiesel. Most of the patents are generally originated from China and United States of America. The soils bioremediation technology of oil is centered on bacteria usage (about two thirds of the articles and patents), being fungi a technology with critical mass and high growth potential. A recent trend in oil bioremediation of soils is the combination of bioremediation agents (fungi and bacteria) in the same process, thus making the process more robust to environment changes.
机译:环境污染是一个需要可持续解决方案的问题。生物修复技术在过去的几十年中已经发展起来,越来越多地用于减轻环境事故和系统污染。基于已发表的文章和专利文献的生物修复技术对不同类型的污染基质,生物化剂和污染物进行了审查。使用关键字的激进分子以及国际专利分类(IPC)来搜查了欧洲专利局的全球数据库,以确定我们关注领域的专利。提供技术领域,提出了年度申报量,法律地位,受让国家和发展合作,并讨论了示例。将专利总数与文章总数进行比较。提出了对生物修复技术的SWOT分析。水(53%),土壤(36%)和污泥(11%)的技术每年均以几乎恒定的速度生长。生物化剂主要是细菌(57%),酶(19%),真菌(13%),藻类(6%),植物(4%)和原生动物。主要污染物是油(38%),其次是金属(21%),有机废物(21%),聚合物(10%),食品(5%),纤维素(5%)和生物柴油。大多数专利通常来自中国和美利坚合众国。石油的土壤生物化技术以细菌使用量为中心(约三分之二的文章和专利),是具有临界质量和高增长潜力的真菌。最近土壤的石油生物修复的趋势是生物化剂(真菌和细菌)在相同过程中的组合,从而使过程更加强大地对环境变化。

著录项

  • 来源
    《Journal of Environmental Management》 |2019年第jul1期|156-166|共11页
  • 作者单位

    Univ Fed Bahia IQ UFBA Chem Inst Campus Ondina R Barao de Jeremoabo 147 BR-40170115 Salvador BA Brazil|Inst Politecn Setubal CINEA ESTS IPS Ctr Invest Energia & Ambiente Rua Vale de Chaves Campus IPS P-2910761 Estefanilha Setubal Portugal|Univ Fed Bahia PROFNIT Profess Postgrad Program Intellectual Pro Campus Ondina R Barao de Jeremoabo 147 BR-40170115 Salvador BA Brazil;

    Univ Fed Bahia PROFNIT Profess Postgrad Program Intellectual Pro Campus Ondina R Barao de Jeremoabo 147 BR-40170115 Salvador BA Brazil|Univ Lisbon IBB Dept Bioengn Inst Super Tecn Ave Rovisco Pais P-1049001 Lisbon Portugal;

    Univ Fed Bahia PROFNIT Profess Postgrad Program Intellectual Pro Campus Ondina R Barao de Jeremoabo 147 BR-40170115 Salvador BA Brazil|Jose de Anchieta Coll Ave Joao Durval Carneiro 3039 BR-44051605 Feira De Santana BA Brazil;

  • 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

    Bioremediation; Technology assessment; Microorganisms; Soils; Waters; Sludges;

    机译:生物修复;技术评估;微生物;土壤;水;污泥;

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