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Determination of surface-accessible acidic hydroxyls and surface area of lignin by cationic dye adsorption

机译:阳离子染料吸附法测定木质素表面可及的酸性羟基和表面积

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摘要

A new colorimetric method for determining the surface-accessible acidic lignin hydroxyl groups in lignocellulose solid fractions was developed. The method is based on selective adsorption of Azure B, a basic dye, onto acidic hydroxyl groups of lignin. Selectivity of adsorption of Azure B on lignin was demonstrated using lignin and cellulose materials as adsorbents. Adsorption isotherms of Azure B on wheat straw (WS), sugarcane bagasse (SGB), oat husk, and isolated lignin materials were determined. The maximum adsorption capacities predicted by the Langmuir isotherms were used to calculate the amounts of surface-accessible acidic hydroxyl groups. WS contained 1.7-times more acidic hydroxyls (0.21 mmol/g) and higher surface area of lignin (84 m2/g) than SGB or oat husk materials. Equations for determining the amount of surface-accessible acidic hydroxyls in solid fractions of the three plant materials by a single point measurement were developed. A method for high-throughput characterization of lignocellulosic materials is now available.
机译:建立了一种新的比色法,用于测定木质纤维素固体组分中表面可及的酸性木质素羟基。该方法基于碱性染料天青B选择性吸附到木质素的酸性羟基上。使用木质素和纤维素材料作为吸附剂证明了天青B在木质素上的吸附选择性。测定了天青B在小麦秸秆(WS),甘蔗渣(SGB),燕麦壳和分离的木质素材料上的吸附等温线。朗缪尔等温线预测的最大吸附容量用于计算表面可及的酸性羟基的数量。与SGB或燕麦壳材料相比,WS含有1.7倍的酸性羟基(0.21 mmol / g)和更高的木质素表面积(84 m2 / g)。建立了通过单点测量确定三种植物材料的固体部分中表面可及的酸性羟基含量的方程。现在可以使用一种高通量表征木质纤维素材料的方法。

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