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更接近工业木质素的绝对摩尔质量

Getting Closer to Absolute Molar Masses of Technical Lignins.

作者信息

Zinovyev Grigory, Sulaeva Irina, Podzimek Stepan, Rössner Dierk, Kilpeläinen Ilkka, Sumerskii Ivan, Rosenau Thomas, Potthast Antje

机构信息

Department of Chemistry, Division of Chemistry of Renewable Resources, University of Natural Resources and Life Sciences, Vienna, Konrad-Lorenz-Strasse 24, A-3430, Tulln, Austria.

Wyatt Technology Europe GmbH, Hochstrasse 12a, 56307, Dernbach, Germany.

出版信息

ChemSusChem. 2018 Sep 21;11(18):3259-3268. doi: 10.1002/cssc.201801177. Epub 2018 Aug 21.

Abstract

Determination of molecular weight parameters of native and, in particular, technical lignins are based on size exclusion chromatography (SEC) approaches. However, no matter which approach is used, either conventional SEC with a refractive index detector and calibration with standards or multi-angle light scattering (MALS) detection at 488 nm, 633 nm, 658 nm, or 690 nm, all variants can be severely erroneous. The lack of calibration standards with high structural similarity to lignin impairs the quality of the molar masses determined by conventional SEC, and the typical fluorescence of (technical) lignins renders the corresponding MALS data rather questionable. Application of MALS detection at 785 nm by using an infrared laser largely overcomes those problems and allows for a reliable and reproducible determination of the molar mass distributions of all types of lignins, which has been demonstrated in this study for various and structurally different analytes, such as kraft lignins, milled-wood lignin, lignosulfonates, and biorefinery lignins. The topics of calibration, lignin fluorescence, and lignin UV absorption in connection with MALS detection are critically discussed in detail, and a reliable protocol is presented. Correction factors based on MALS measurements have been determined for commercially available calibration standards, such as pullulan and polystyrene sulfonate, so that now more reliable mass data can be obtained also if no MALS system is available and these conventional calibration standards have to be resorted to.

摘要

天然木质素尤其是工业木质素分子量参数的测定基于尺寸排阻色谱(SEC)方法。然而,无论使用哪种方法,无论是配备折射率检测器并采用标准品校准的传统SEC,还是在488 nm、633 nm、658 nm或690 nm波长下进行多角度光散射(MALS)检测,所有这些方法都可能存在严重误差。缺乏与木质素结构高度相似的校准标准品会影响传统SEC测定的摩尔质量的准确性,而(工业)木质素的典型荧光使得相应的MALS数据相当不可靠。使用红外激光在785 nm波长下进行MALS检测在很大程度上克服了这些问题,并能够可靠且可重复地测定各类木质素的摩尔质量分布,本研究已针对各种结构不同的分析物,如硫酸盐木质素、磨木木素、木质素磺酸盐和生物炼制木质素,证明了这一点。文中详细且批判性地讨论了与MALS检测相关的校准、木质素荧光和木质素紫外吸收等主题,并给出了可靠的实验方案。已针对市售校准标准品(如支链淀粉和聚苯乙烯磺酸盐)确定了基于MALS测量的校正因子,这样即使没有MALS系统而必须使用这些传统校准标准品时,现在也能获得更可靠的质量数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a02/6175078/2493d6d45a75/CSSC-11-3259-g001.jpg

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