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Effect of nickel, cobalt, and iron on methanogenesis from methanol and cometabolic conversion of 1,2-dichloroethene by Methanosarcina barkeri

机译:甲烷胂甲醇和Cometabolic转化对1,2-二氯乙烯的甲基甲基甲烷的影响镍,钴和铁的影响

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摘要

Methanogens are responsible for the last step in anaerobic digestion (AD), in which methane (a biofuel) is produced. Some methanogens can cometabolize chlorinated pollutants, contributing for their removal during AD. Methanogenic cofactors involved in cometabolic reductive dechlorination, such as F-430 and cobalamin, contain metal ions (nickel, cobalt, iron) in their structure. We hypothesized that the supplementation of trace metals could improve methane production and the cometabolic dechlorination of 1,2-dichloroethene (DCE) by pure cultures of Methanosarcina barkeri. Nickel, cobalt, and iron were added to cultures of M. barkeri growing on methanol and methanol plus DCE. Metal amendment improved DCE dechlorination to vinyl chloride (VC): assays with 20 mu M of Fe3+ showed the highest final concentration of VC (5x higher than in controls without Fe3+), but also in assays with 5.5 mu M of Co2+ and 5 mu M of Ni2+ VC formation was improved (3.5-4x higher than in controls without the respective metals). Dosing of metals could be useful to improve anaerobic removal of chlorinated compounds, and more importantly decrease the detrimental effect of DCE on methane production in anaerobic digesters.
机译:甲烷酮负责厌氧消化(AD)的最后一步,其中产生甲烷(生物燃料)。一些甲烷酮可以将氯化污染物复合,有助于它们在广告期间去除。参与Cometabolic Reductive Dredoholination的甲烷型辅助因子,例如F-430和Cobalamin,其结构中的金属离子(镍,钴,铁)。我们假设痕量金属的补充可以通过纯培养的甲蛋白酶Barkeri改善甲烷的产生和1,2-二氯乙烯(DCE)的Cometabolic脱氯。将镍,钴和铁加入到甲醇和甲醇加入DCE的M. Barkeri的培养物中。金属修正改善了DCE脱氯,对氯乙烯(VC):20μmF3+的测定+显示出最高的VC最终浓度(比没有Fe3 +的对照5倍,但也有CO 2 +和5μm的测定。改善了Ni2 + VC形成(比没有相应金属的对照3.5-4倍)。金属给料可用于改善氯化化合物的厌氧去除,更重要地降低DCE在厌氧消化器中甲烷产量的不利影响。

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