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Efficiency of phenol biodegradation by planktonic Pseudomonas pseudoalcaligenes (a constructed wetland isolate) vs. root and gravel biofilm

机译:浮游性假单胞菌拟嗜碱菌(人工湿地分离株)对苯酚生物降解的效率与根和砾石生物膜的关系

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摘要

In the last two decades, constructed wetland systems gained increasing interest in wastewater treatment and as such have been intensively studied around the world. While most of the studies showed excellent removal of various pollutants, the exact contribution, in kinetic terms, of its particular components (such as: root, gravel and water) combined with bacteria is almost nonexistent. In the present study, a phenol degrader bacterium identified as Pseudomonas pseudoalcaligenes was isolated from a constructed wetland, and used in an experimental set-up containing: plants and gravel. Phenol removal rate by planktonic and biofilm bacteria (on sterile Zea mays roots and gravel surfaces) was studied. Specific phenol removal rates revealed significant advantage of planktonic cells (1.04 × 10~(-9) mg phenol/CFU/h) compared to root and gravel biofilms: 4.59 × 10~(-11)-2.04 ×10~(10) and 8.04 × 10~(-11)-4.39 × 10~(-10) (mg phenol/CFU/h), respectively. In batch cultures, phenol biodegradation kinetic parameters were determined by biomass growth rates and phenol removal as a function of time. Based on Haldane equation, kinetic constants such as μ_(max) = 1.15/h, K_s = 35.4 mg/L and K_i = 198.6 mg/L fit well phenol removal by P. pseudoalcaligenes. Although P. pseudoalcaligenes planktonic cells showed the highest phenol removal rate, in constructed wetland systems and especially in those with sub-surface flow, it is expected that surface associated microorganisms (biofilms) will provide a much higher contribution in phenol and other organics removal, due to greater bacterial biomass. Factors affecting the performance of planktonic vs. biofilm bacteria in sub-surface flow constructed wetlands are further discussed.
机译:在过去的二十年中,人工湿地系统对废水处理的兴趣日益增加,因此在世界范围内进行了深入研究。尽管大多数研究表明,对各种污染物的去除效果极佳,但几乎不存在从动力学上讲其与细菌结合的特定成分(如根,砾石和水)的确切贡献。在本研究中,从人工湿地中分离出一种被鉴定为假拟假单胞菌假单胞菌的苯酚降解细菌,并将其用于实验设施,其中包括:植物和砾石。研究了浮游生物和生物膜细菌(在无菌的玉米根和砾石表面上)对苯酚的去除率。与根和砾石生物膜相比,特定的苯酚去除率显示出浮游细胞的显着优势(1.04×10〜(-9)mg酚/ CFU / h):4.59×10〜(-11)-2.04×10〜(10)和分别为8.04×10〜(-11)-4.39×10〜(-10)(mg苯酚/ CFU / h)。在分批培养中,苯酚的生物降解动力学参数由生物量的生长速率和苯酚的去除时间决定。根据Haldane方程,动力学常数(例如μ_(max)= 1.15 / h,K_s = 35.4 mg / L和K_i = 198.6 mg / L)很好地适合了拟拟假丝酵母的苯酚去除。尽管拟青假单胞菌的浮游细胞显示出最高的苯酚去除率,但在人工湿地系统中,尤其是在具有地下流动的湿地系统中,预计与表面相关的微生物(生物膜)将对苯酚和其他有机物的去除做出更大的贡献,由于更大的细菌生物量。进一步讨论了在地下流动人工湿地中影响浮游生物与生物膜细菌性能的因素。

著录项

  • 来源
    《Water Research》 |2010年第17期|p.5021-5031|共11页
  • 作者单位

    Faculty of Civil & Environmental Engineering, Division of Environmental, Water & Agricultural Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel;

    rnFaculty of Civil & Environmental Engineering, Division of Environmental, Water & Agricultural Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel;

    rnDepartment of Food Science, The Volcani Center, Agricultural Research Organization, Bet Dagan, Israel;

    rnFaculty of Civil & Environmental Engineering, Division of Environmental, Water & Agricultural Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel,We would like to dedicate this article to Prof. Zimmels who prematurely passed away;

    rnFaculty of Civil & Environmental Engineering, Division of Environmental, Water & Agricultural Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel,Member of Grand Water Research Institute, Technion, Haifa, Israel;

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

    pseudomonas pseudoalcaligenes; rhizosphere; phenol; biodegradation; biofilm;

    机译:假单胞菌根际苯酚;生物降解生物膜;

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