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Liquefaction of ammonia and cellulose: effect of nitrogen/carbon ratio in the feedstock

机译:氨和纤维素的液化:原料中氮/碳比的影响

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The effect of N/C (Nitrogen/Carbon (weight/weight)) ratio on the behavior of nitrogen in biomass liquefaction was examined. Cellulose and ammonia were selected as the simplest carbon and nitrogen sources, respectively. After reaction at 300 deg C for 1 h, the reaction mixture was separated into oil-A(water soluble), oil-B (water insoluble),aqueous phase and residue. Both the yield and nitrogen content of the total oil (oil-A + oil-B) increased with increasing N/C ratio. On the other hand, the yield of residue decreased with increasing N/C ratio. Theses results show that ammonia acts both as a reactant and as a basic catalyst during the liquefaction of ammonia and cellulose. Distribution of nitrogen in the total oil showed the highest value (25.0) at 0.18 N/C ratio and was small in the range of low N/C ratio. In the aqueous phase, soluble forms of organic nitrogen are recognized, while ammonia nitrogen increased with increasing N/C ratio. Distribution of nitrogen into the residue decreased with increasing N/C ratio. In the obtained oil, more than 60 compounds were detected by GC-MS. We identified 14 nitrogen-containing compounds, which were partly aromatic compounds. The liquefaction of cellulose and ammonia consisted of a very complicated combination of various reactions.
机译:研究了氮/碳(氮/碳(重量/重量))比对生物质液化中氮行为的影响。分别选择纤维素和氨作为最简单的碳和氮源。在300℃下反应1小时后,将反应混合物分离成油-A(水溶性),油-B(水不溶性),水相和残余物。总油(油A +油B)的产量和氮含量均随N / C比的增加而增加。另一方面,残留物的产率随着N / C比的增加而降低。这些结果表明,在氨和纤维素的液化过程中,氨既充当反应物又充当碱性催化剂。氮在总油中的分布在0.18 N / C比下显示最高值(25.0),在低N / C比范围内小。在水相中,可以识别出可溶形式的有机氮,而氨氮随N / C比的增加而增加。氮在残渣中的分布随N / C比的增加而降低。在所得油中,通过GC-MS检测出60多种化合物。我们确定了14种含氮化合物,部分为芳香族化合物。纤维素和氨的液化由各种反应的非常复杂的组合组成。

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