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Methane Production in Oil Sands Tailings under Nitrogen-Depleted Conditions.

机译:贫氮条件下油砂尾矿中的甲烷生产。

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摘要

Surface mining for bitumen extraction results in production of tailings that are deposited into large ponds. Tailings in the ponds support diverse microbial communities capable of metabolizing organic compounds and producing biogenic gases (methane, CH4 and carbon dioxide, CO2). Because of low endogenous concentrations of bioavailable nitrogen (N), tailings ponds might be deficient in available N (NO3 -/NH 4 +). This study examined the potential of N2-fixation mediated methanogenic degradation of citrate and petroleum hydrocarbons in oil sands tailings under N-depleted conditions. Anaerobic primary cultures were set up with available N or N-deficient medium under N2 headspace using mature fine tailings (MFT) and amended with citrate as a carbon source. Citrate was metabolized to CH4 under both N available and deficient conditions suggesting N2-fixation mediated degradation of citrate. Acetylene reduction assay and incorporation of 15N2 stable isotope into microbial biomass supported N 2-fixation during citrate metabolism.
机译:用于沥青提取的露天采矿导致产生的尾矿产生,这些尾矿沉积在大池塘中。池塘中的尾矿支持各种能够代谢有机化合物并产生生物气体(甲烷,CH4和二氧化碳,CO2)的微生物群落。由于生物利用氮(N)的内源浓度较低,尾矿池可能缺乏可用氮(NO3--/ NH 4 +)。这项研究研究了在贫氮条件下,N2固定介导的油砂尾矿中柠檬酸和石油烃甲烷化降解的潜力。使用成熟的细尾矿(MFT),在N2顶空下,利用可用的N或N缺乏培养基,建立厌氧原代培养物,并以柠檬酸盐作为碳源进行修正。在可用氮和不足条件下,柠檬酸盐均代谢为CH4,表明N2固定介导的柠檬酸盐降解。乙炔还原测定以及将15N2稳定同位素掺入微生物生物量中可支持柠檬酸盐代谢期间的N 2-固定。

著录项

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Land Use Planning.
  • 学位 M.S.
  • 年度 2013
  • 页码 0 p.
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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