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首页> 外文期刊>Separation and Purification Technology >Separation of dispersed substances and galactoglucomannan in thermomechanical pulp process water by microflltration
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Separation of dispersed substances and galactoglucomannan in thermomechanical pulp process water by microflltration

机译:通过微滤分离热机械制浆工艺水中的分散物质和半乳甘露聚糖

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摘要

Several valuable substances are released from wood during the production of thermomechanical pulp. These substances can be isolated and purified for use as value-added chemicals. The hemicellulose galactoglucomannan (GGM) has attracted a great deal of interest because of its possible applications as an oxygen barrier film in packaging materials, as a hydrogel in biomedical products and as an emulsion stabilizer in food and feed. In order to exploit GGM in pulp mill process water, it must be recovered at a high concentration and high purity. The first step in the purification process is the separation of GGM and dispersed substances. In this work, the influence of membrane pore size, cross-flow velocity and backpulsing on membrane performance during the microflltration of thermomechanical pulp process water was investigated. The flux of 0.4 and 0.8 μm membranes was lower than the flux of a 0.2 μm membrane, and it was not possible to recover the pure water flux of the 0.4 and 0.8 μm membranes. Increased cross-flow velocity and backpulsing had a positive effect on the flux, but only a minor influence on the retention. The mean molecular mass of GGM in the process water was 9 kg/mol. The retention was therefore expected to be < 10%. However, the retention of GGM was >50%, irrespective of the operating conditions.
机译:在热机械纸浆的生产过程中,木材释放出几种有价值的物质。这些物质可以分离和纯化,用作增值化学品。半纤维素半乳葡甘露聚糖(GGM)引起了极大的兴趣,因为它有可能在包装材料中用作阻氧膜,在生物医学产品中用作水凝胶以及在食品和饲料中用作乳化稳定剂。为了在制浆厂的工艺水中利用GGM,必须以高浓度和高纯度对其进行回收。纯化过程的第一步是分离GGM和分散的物质。在这项工作中,研究了膜孔径,错流速度和反冲对热机械制浆工艺水微滤过程中膜性能的影响。 0.4和0.8μm膜的通量低于0.2μm膜的通量,并且无法恢复0.4和0.8μm膜的纯水通量。错流速度的增加和反脉冲对通量有积极影响,但对保留率的影响很小。工艺用水中GGM的平均分子量为9 kg / mol。因此,保留率预计<10%。但是,无论操作条件如何,GGM的保留率均> 50%。

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