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The important role of mass transfer limitations caused by long chain fatty acids accumulation onto the anaerobic sludge

机译:长链脂肪酸积累到厌氧污泥上引起的传质限制的重要作用

摘要

In this work, the role of transport limitations caused by LCFA accumulation onto anaerobic sludgewas evaluated. Two sludges were compared in terms of the specific methanogenic activity in the presence ofacetate, propionate, butyrate and H2/CO2, before and after the mineralization of LCFA accumulated onto thebiomass. In both cases the main LCFA accumulated was palmitic acid, but in one of the sludges (referred asencapsulated sludge) it was mainly adsorbed, surrounding the cells, and in the other (non-encapsulatedsludge) it was mainly precipitated in white spots in between the sludge. The LCFA loaded, but nonencapsulatedsludge exhibited a considerable initial methanogenic activity on all the tested substrates, withthe single exception of butyrate. However, for the encapsulated sludge only methane production fromethanol and H2/CO2 was detected, after a lag phase of about 50 hours. The obtained results evidenced that,besides the potential toxic effect, LCFA accumulation onto the sludge can create a physical barrier andhinder the transfer of substrates and products, inducing a delay on the initial methane production.
机译:在这项工作中,评估了由LCFA积累到厌氧污泥上引起的运输限制的作用。在LCFA矿化到生物质之前和之后,在乙酸盐,丙酸盐,丁酸盐和H2 / CO2存在下,比较了两种污泥的甲烷生成比活性。在这两种情况下,主要的LCFA积累都是棕榈酸,但其中一种污泥(称为包封污泥)主要吸附在细胞周围,而另一种(非包封污泥)则主要沉淀在棕榈酸之间。污泥。负载有LCFA但未包封的污泥在所有被测底物上均具有相当大的初始产甲烷活性,但丁酸盐除外。但是,对于包封的污泥,在约50小时的滞后阶段后,仅检测到由乙醇和H2 / CO2产生的甲烷。获得的结果证明,除了潜在的毒性作用之外,LCFA积累到污泥上还可以形成物理屏障并阻碍底物和产物的转移,从而导致甲烷初始生产的延迟。

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