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Pyrolysis oils from CO2 precipitated Kraft lignin

机译:二氧化碳沉淀的牛皮纸木质素的热解油

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摘要

A common goal in present and future forestry, biofuels and biomaterials practices, is the need to valorize lignocellulose processes to maximize value and optimize autonomic economy. Consequently, a key focus of modern biorefining is the on-site utilization of all residual materials generating products of the highest possible value. The LignoBoost process, recently demonstrated on the pilot-scale at Kraft pulp mills, injects CO2 into pulping liquors which results in a lower solution pH and thereby precipitates lignin. The present paper compares and evaluates the pyrolysis of pulping liquor lignins precipitated by sulfuric acid (pH 3) and the aforementioned CO2 method (pH 10.5 and 9.5). The CO2 based process yielded lignin that showed superior pyrolysis properties including low gas formation and increased bio-oil yields, close to 40%, consisting primarily of low (~150 g mol~(-1)) molecular weight compounds. Subsequent NMR analysis showed that the oils exhibit favorable changes in functionalities, e.g. loss of aromatic and gain in aliphatic carbon percentages as well as decrease in carboxyl and methoxyl (oxygen containing) groups. Moreover, NMR results further confirmed previously hypothesized lignin pyrolysis reactions, while at the same time showed the potential of CO2 precipitated lignin for pyrolysis and subsequent liquid biofuel production.
机译:当前和未来林业,生物燃料和生物材料实践的一个共同目标是需要对木质纤维素工艺进行增值,以实现最大价值并优化自主经济。因此,现代生物精炼的一个重点是现场利用所有残留物质,以产生具有最高价值的产品。最近在卡夫制浆厂进行的中试规模试验证明,LignoBoost工艺可将CO2注入制浆液,从而降低溶液的pH值,从而沉淀木质素。本文比较和评估了制浆液木质素的硫酸(pH 3)和上述CO2法(pH 10.5和9.5)的热解。基于CO2的过程产生的木质素具有优异的热解性能,包括低气体生成和增加的生物油产率,接近40%,主要由低分子量(〜150 g mol〜(-1))化合物组成。随后的NMR分析表明,这些油显示出有利的官能度变化,例如,H 2 O 3。芳香族化合物的损失和脂肪族碳百分比的增加,以及羧基和甲氧基(含氧)基团的减少。此外,NMR结果进一步证实了先前假设的木质素热解反应,而同时显示了CO2沉淀的木质素在热解和随后的液体生物燃料生产中的潜力。

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