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Evaluating a pulp mill fibre line's lignin content using a refractometer to measure the TDS content of different lignin fractions

机译:使用折射仪评估纸浆研磨纤维线的木质素含量测量不同木质素分数的TDS含量

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In chemical pulping, the purpose of brown stock washing derived from the cooking stage is to remove both organic and inorganic soluble matter from the pulp suspension using the lowest possible amount of wash liquor, and the purpose of bleaching is to achieve the target brightness using the lowest possible amount of bleaching chemicals without losing pulp quality. Improving the cleanliness of the pulp and removing lignin play a major role in brown stock washing, oxygen delignification and bleaching. Previously, we have studied the use of refractometer technology in the area of a pulp mill's brown stock washing as an indicator of wash loss. The process refractometer measures the total dissolved solids (TDS) as a sum parameter. Lignin has a fairly high refractive index, for example, compared to most acids and alcohols. In addition, cooking-based lignin and lignin treated with bleaching chemicals have different refractive indexes. The study was done at both the mill and laboratory scale. At the mill scale, we examined lignin concentrations and also how organic and inorganic material behaves in the hardwood fibre line. At the laboratory scale, we measured TDS concentration values from two different commercially available lignins in different concentrations using a portable process refractometer to better understand lignin behaviour in alkaline conditions. In the mill-scale tests, it could be seen how lignin content changed with the pulp and pulp suspension liquor streams during the various process steps. In addition, we showed a good relationship between lignin and total dissolved solids in the liquor streams in the fibre line. We also noticed a very good relationship between dissolved lignin and organics (COD) and a moderate correlation between dissolved lignin and inorganic (conductivity) material in the filtrates in the different process steps. In the laboratory experiments, it was found that differently processed lignins differ from one another and have different solubility behaviour, and this can be identified using refractometer technology. This may allow us to recognise changes in lignin quality in real time before and after various process steps in the fibre line of a Kraft pulp mill. This observation can help us to better control the processes and improve their efficiency. However, more research will be needed to prove all of the findings.
机译:在化学制浆中,衍生自烹饪阶段的棕色原料洗涤的目的是使用最低可能的洗涤液从纸浆悬浮液中除去有机和无机可溶物,并且漂白的目的是使用使用的目标亮度尽可能低的漂白化学品而不减少纸浆质量。改善纸浆的清洁和去除木质素在棕色库存洗涤,氧脱果和漂白中发挥着重要作用。此前,我们研究了在纸浆磨机的棕色库存面积中使用折射仪技术,作为洗涤损失的指标。工艺折射仪测量总溶解的固体(TDS)作为和参数。例如,与大多数酸和醇相比,木质素具有相当高的折射率。此外,用漂白化学品处理的烹饪木质素和木质素具有不同的折射率。该研究在轧机和实验室规模中完成。在轧机规模,我们检查了木质素浓度,以及如何在硬木纤维线上的有机和无机材料的行为。在实验室规模,我们使用便携式工艺折射仪以不同浓度的两种不同浓度的TDS浓度值测量了来自不同浓度的TDS浓度值,以更好地了解碱性条件下的木质素行为。在研磨尺度试验中,可以看出木质素含量在各种工艺步骤期间利用纸浆和纸浆悬浮液流变化。此外,我们在纤维线中的液体流中的木质素和总溶解固体之间表现出良好的关系。我们还注意到溶解的木质素和有机物(COD)之间存在非常好的关系,以及在不同工艺步骤中滤液中溶解的木质素和无机(电导率)材料之间的中等相关性。在实验室实验中,发现不同加工的木质素彼此不同并具有不同的溶解度行为,并且可以使用折射计技术来识别这一点。这可能使我们能够在牛皮纸磨机的纤维线中的各种工艺步骤之前和之后实时识别木质素质量的变化。这种观察可以帮助我们更好地控制流程并提高其效率。但是,将需要更多的研究来证明所有调查结果。

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