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木质素氧化降解制备单酚类化合物 总被引:4,自引:0,他引:4
采用H2O2、CuO/Fe2(SO4)3复合氧化体系,在碱性条件、微波辅助作用下,对麦草碱木质素氧化降解制备单酚类化合物的工艺条件进行了研究。结果表明,在180℃相对温和的条件下,单酚类化合物的总收率可达11.86%,降解率为90.88%。单独H2O2作为氧化剂降解木质素导致了苯环的开裂,使得木质素的降解率虽高但单酚类收率偏低;Cu2+的参与促进了木质素侧链和醚键的断裂,有利于提高单酚类化合物的收率,而Fe3+的存在则提升了H2O2的氧化性能。适当提高氧化温度和延长降解反应时间有利于提高单酚类化合物收率。由于木质素的降解和聚合同时存在,防止降解产物的聚合成为提高单酚类化合物收率的关键。 相似文献
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木质素模型化合物的裂解工艺及机理的研究进展 总被引:1,自引:0,他引:1
化石资源的有限性、不可再生性及其利用所造成的环境污染,使木质生物质资源生产高附加值化学品和燃料受到广泛关注。因木质素是结构复杂的高分子聚合物,其综合有效利用受到极大限制,通常被作为燃料直接燃烧,同时给木质素解聚研究带来了巨大的困难。因此,围绕木质素模型化合物裂解工艺及机理的研究发展迅速。为梳理木质素模型化合物的裂解研究的现状和预测未来发展方向,本文综述了其裂解工艺和机理的研究进展。着重介绍木质素单体、二聚体和多聚体不同裂解工艺的特点、优势、应用前景以及相关的机理,最后预测了木质素模型化合物裂解研究未来的发展方向。 相似文献
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为节能减排和能源结构调整以快速实现"碳中和",发展可再生、清洁与绿色的能源以替代传统化石能源已成为当今世界高质量发展的重要共识.生物质能作为一种典型的可再生能源,具有储量丰富、分布广泛、可有效转化成各种化工原料和燃料等特点逐步受到广泛关注并成为科研热点.木质素是生物质的重要组成部分,其含氧量低、热值高,可转化成高热值燃料;同时,木质素富含芳香结构单元,可以转化成各类高附加值化工原料及医药中间体.木质素解聚及其对应单体升级转化是木质素高效转化利用的关键技术.当前,传统热催化是其主要应用技术手段.然而,该类方法常在高温高压下进行,需消耗大量能源及众多繁琐操作步骤,不易规模化生产.相对而言,电催化技术能实现常温常压的木质素解聚及对应单体的升级转化,采用由可再生能源(例如风能、太阳能等)获得的清洁电力,则能实现完全绿色可持续生产,对未来经济社会的发展及"碳中和"的目标具有重大意义.本文综述了近年来电催化技术在木质素升级转化成高附加值燃料和化学品方面的应用,尤其是在木质素解聚及其对应单体于水溶液相关电解质中升级转化方面的应用.(1)针对总体研究背景进行了概述,总结了木质素研究的重要意义并概括了当前木质素研究的主要思路,并简单介绍了木质素结构单元及连接键等基本性质;(2)针对电催化技术在木质素应用方面进行了总结,包括反应类型和反应路径等;(3)总结了木质素常用的几种典型表征技术手段,如GC-MS、NMR、IR等;(4)总结了电催化木质素解聚及其单体升级转化研究现状,对电催化木质素解聚应用中木质素前体类型、电解质种类和电还原/氧化催化剂进行了详细介绍及客观评价,并对几种代表性单体的电催化加氢反应及氧化反应做了详细评述.在此基础上展望了电催化技术在木质素升级转化中的应用前景,指出了当前电催化技术在木质素升级转化应用中存在的实际问题,提出了电催化技术在木质素升级转化中的发展方向. 相似文献
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木质素是生物质中碳资源密度最高的组分.木质素到高品质液体燃料的转化主要通过其解聚的单环酚类化合物经加氢脱氧工艺来实现.来源于木质素的酚类化合物的加氢脱氧产物一般为C6~C10之间的碳氢化合物,与现有的商品汽油组分碳数分布一致,是理想的交通替代燃料.酚类化合物的加氢脱氧研究近年来发展迅速,文献报道数量激增.本文对硫化态Mo基催化剂、贵金属催化剂及非硫化非贵金属催化剂作用下单环酚类化合物的加氢脱氧反应特性分别进行了回顾,对典型酚类模型化合物在催化反应机理进行了简述,并对载体材料在加氢脱氧过程中的作用进行了介绍.随后,在此基础上总结了当前酚类化合物加氢脱氧过程中的难点,并对下一步的技术发展方向进行展望. 相似文献
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天然大分子木质素在超临界乙醇-甲酸介质中可以有效地降解为酚类化合物.超临界乙醇为木质素提供了理想的反应介质,甲酸热分解原位产生的氢作为木质素裂解自由基封端剂有效促进了降解向小分子转化;过渡金属盐可以催化降解反应.木质素超临界降解机理为自由基反应,在还原状态下氢可以对木质素自由基封端从而得到小分子化合物.木质素理想的超临... 相似文献
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The spectral-polarization characteristics of absorption and phosphorescence of molecules of the initial form of nitro-substituted
indolinospirobenzothiopyran were studied in oriented polyethylene films and in solutions with different polarity. An oscillator
model of the electron transitions responsible for the formation of absorption and luminescence spectra was suggested. It was
established that the principal differences in the spectral and photophysical properties of the compound studied and its oxygen-containing
analog are associated with the fact that the electronegativity of the S atom is lower than that of the O atom.
Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 6, pp. 1143–1146, June, 1997. 相似文献
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Cotton cellulose was swollen in a sodium hydroxide solution and carboxymethylated by a two-bath method for different periods of time for each process. The kinetics of acid hydrolysis and the crystallinity of the swollen and carboxymethylated samples were measured. The proportion of broken bonds, rate constants for hydrolysis, and permeability of cellulose to hydrolyzing agents were calculated. The susceptibility of glycosidic linkages to acid hydrolysis was improved by carboxymethylation more than by swelling in alkali. The increased accessibility of carboxymethylcellulose to acid was regarded as a consequence of increased intra-and intercrystalline swelling and of the glycosidic bonds' weakness caused by the electron-attracting carboxymethyl group on the C-6 position. 相似文献
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The aim of the presented work was the investigation of thermal oxidation of ilmenite in static air atmosphere. The investigations
were carried out by use of a derivatograph (MOM, Hungary). The changes of crystallographic structure of investigated samples
were identified by X-ray diffractometry on Philips PW-1710 diffractometer. In temperature above 500°C appears structure of
hematite Fe2O3. On the basis of the thermogravimetric measurements, the contracting area and contracting volume models were found as the
best fitting experimental data.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献
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Cyclopropyl derivative of 2,6-di-tert-butylphenol is synthesized as a probe to investigate the mechanism of base-catalyzed autooxidation of phenol derivatives. Our study indicates that one electron reduction of molecular oxygen from phenolate gives phenoxyl radical 3, a key intermediate of autooxidation. The coupling of phenoxyl radical and superoxide radical gives peroxylate anion 4 and produces the final epoxy alcohol adduct 6. 相似文献
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微量钙的测定方法研究进展 总被引:5,自引:0,他引:5
介绍了1995-2006年期间测定微量和痕量钙的方法,如电感耦合等离子体-原子发射光谱法、原子吸收光谱法以及离子色谱法等的工作原理和特点,并说明了其测定微量钙的应用领域。并对微量钙的测定技术进行了展望(引用文献55篇)。 相似文献
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Thermal behaviour of sodium oxo-salts of sulphur: Na2SO4, Na2S2O7, Na2S2O6, Na2SO3, Na2S2O5, Na2S2O4, Na2S2O3, Na2S3O6 and of sulphides Na2S and Na2S2 was studied on heating up to 1000°C. The experiments were performed with anhydrous compounds obtained from commercial products
by recrystallisation and dehydration. The stage mechanisms of decomposition of anionic sub-lattices of the salts have been
proposed basing on the Górski’s morphological classification of simple species. The thermal stability and the stage decomposition
mechanisms were correlated with the structure and the potential chemical properties of the salt anions. The thermal decomposition
processes were studied by means of thermal analysis, and the decomposition products were identified by means of X-ray phase
analysis. 相似文献