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首页> 外文期刊>Water, air and soil pollution >Remediation of Metal Contaminated Soil by Organic Metabolites from Fungi I-Production of Organic Acids
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Remediation of Metal Contaminated Soil by Organic Metabolites from Fungi I-Production of Organic Acids

机译:真菌I-有机酸生产中的有机代谢物修复金属污染的土壤

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摘要

Investigations were made on living strains of fungi in a bioremediation process of three metal (lead) contaminated soils. Three saprotrophic fungi (Aspergillus niger, Penicillium bilaiae, and a Penicillium sp.) were exposed to poor and rich nutrient conditions (no carbon availability or 0.11 M D-glucose, respectively) and metal stress (25 μM lead or contaminated soils) for 5 days. Exudation of low molecular weight organic acids was investigated as a response to the metal and nutrient conditions. Main organic acids identified were oxalic acid (A. niger) and citric acid (P. bilaiae). Exudation rates of oxalate decreased in response to lead exposure, while exudation rates of citrate were less affected. Total production under poor nutrient conditions was low, except for A. niger, for which no significant difference was found between the poor and rich control. Maximum exudation rates were 20 umol oxalic acid g~(-1) biomass h~(-1) (A. niger) and 20 umolrncitric acid g~(-1) biomass h~(-1) (P. bilaiae), in the presence of the contaminated soil, but only 5 μmol organic acids g~(-1) biomass h~(-1) in total, for the Penicillium sp. There was a significant mobilization of metals from the soils in the carbon rich treatments and maximum release of Pb was 12% from the soils after 5 days. This was not sufficient to bring down the remaining concentration to the target level 300 mg kg~(-1) from initial levels of 3,800, 1,600, and 370 mg kg~(-1) in the three soils. Target levels for Ni, Zn, and Cu, were 120, 500, and 200 mg kg~(-1), respectively, and were prior to the bioremediation already below these concentrations (except for Cu Soil 1). However, maximum release of Ni, Zn, and Cu was 28%, 35%, and 90%, respectively. The release of metals was related to the production of chelating acids, but also to the pH-decrease. This illustrates the potential to use fungi exudates in bioremediation of contaminated soil. Nonetheless, the extent of the generation of organic acids is depending on several processes and mechanisms that need to be further investigated.
机译:在三种被金属(铅)污染的土壤的生物修复过程中,对真菌的活菌株进行了研究。将三种腐生真菌(黑曲霉,青霉和青霉菌)暴露于营养条件差和丰富的条件下(分别无碳供应或0.11 M D-葡萄糖)和金属胁迫(25μM铅或受污染的土壤)处理5次天。研究了低分子量有机酸的渗出作为对金属和营养条件的响应。鉴定出的主要有机酸是草酸(黑曲霉)和柠檬酸(P. bilaiae)。草酸盐的渗出率随铅的暴露而降低,而柠檬酸盐的渗出率受到的影响较小。在营养条件差的情况下,总产量较低,但黑曲霉除外。最大渗出速率为20 umol草酸g〜(-1)生物量h〜(-1)(黑曲霉)和20 umolrncitric酸g〜(-1)生物量h〜(-1)(白僵菌)。污染土壤的存在,但对于青霉菌,总共只有5μmol有机酸g〜(-1)生物量h〜(-1)。在富碳处理中,土壤中的金属大量迁移,5天后土壤中Pb的最大释放量为12%。这不足以将三种土壤中的残留浓度从初始水平3,800、1,600和370 mg kg〜(-1)降至目标水平300 mg kg〜(-1)。 Ni,Zn和Cu的目标水平分别为120、500和200 mg kg·(-1),并且在生物修复之前已经低于这些浓度(Cu土壤1除外)。但是,Ni,Zn和Cu的最大释放量分别为28%,35%和90%。金属的释放与螯合酸的产生有关,也与pH的降低有关。这说明在真菌修复受污染土壤中使用真菌渗出物的潜力。但是,有机酸的生成程度取决于需要进一步研究的几种方法和机理。

著录项

  • 来源
    《Water, air and soil pollution》 |2010年第4期|215-226|共12页
  • 作者单位

    Man-Technology-Environment Research Centre, School of Science and Technology, OErebro University, 701 82 OErebro, Sweden SAKAB AB, 692 85 Kumla, Sweden;

    Man-Technology-Environment Research Centre, School of Science and Technology, OErebro University, 701 82 OErebro, Sweden;

    SAKAB AB, 692 85 Kumla, Sweden;

    Man-Technology-Environment Research Centre, School of Science and Technology, OErebro University, 701 82 OErebro, Sweden;

    Man-Technology-Environment Research Centre, School of Science and Technology, OErebro University, 701 82 OErebro, Sweden Eurofins Environment Sweden AB, Box 737, 531 17 Lidkoeping, Sweden;

  • 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

    bioremediation; citric acid; fungi; lead; organic acids; oxalic acid;

    机译:生物修复;柠檬酸;菌类;铅;有机酸草酸;

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