Antibiotic residue derived solid acids for ethanolysis of furfuryl alcohol into ethyl levulinate
文献信息
A series of antibiotic residue derived solid acids were developed for the selective transformation of bio-based furfuryl alcohol into ethyl levulinate. KOH modification and chlorosulfonic acid decoration of gentamicin residue derived carbon materials played a crucial role in ethyl levulinate production. Various characterization methods were employed for unveiling the structural information regarding porous characteristics and functional groups, such as FT-IR, N2 adsorption–desorption, SEM, etc. The yields of 2-(ethoxymethyl)furan and ethyl levulinate were particularly associated with the acid density of gentamicin residue derived solid acids. Gratifyingly, a maximum ethyl levulinate yield of 84.5% was achieved at 160 °C after 1.5 h. The recovery and reutilization of the catalyst in successive reactions demonstrated that gentamicin residue derived solid acids maintained good activity and stability even after four cycles. The present research thus highlights a novel direction for high-value utilization of antibiotic residues as well as the synthesis of platform chemicals over organic waste derived catalytic materials.
相关文献
Phase transition and conductive acceleration of phosphonium-cation-based room-temperature ionic liquid
Shiro Seki, Yasuhiro Umebayashi, Seiji Tsuzuki, Kikuko Hayamizu, Yo Kobayashi, Yasutaka Ohno, Takeshi Kobayashi, Yuichi Mita, Hajime Miyashiro, Nobuyuki Terada, Shin-ichi Ishiguro
DOI: 10.1039/B809309A
Chemoenzymatic synthesis of chiral 4,4′-bipyridyls and their metal–organic frameworks
Lenuta Sbircea, Narain D. Sharma, William Clegg, Ross W. Harrington, Peter N. Horton, Michael B. Hursthouse, David C. Apperley, Derek R. Boyd, Stuart L. James
DOI: 10.1039/B812366G
Thermoresponsive dendronized polymers with tunable lower critical solution temperatures
Wen Li, A. Dieter Schlüter
DOI: 10.1039/B811464A
Noncovalent insertion of ferrocenes into the protein shell of apo-ferritin
Jochen Niemeyer, Satoshi Abe, Tatsuo Hikage, Gerhard Erker, Yoshihito Watanabe
DOI: 10.1039/B813181C
Relaxation rates for spirocyclohexyl nitroxyl radicals are suitable for interspin distance measurements at temperatures up to about 125 K
Velavan Kathirvelu, Christopher Smith, Christopher Parks, Md. Abdul Mannan, Yozo Miura, Keizo Takeshita, Sandra S. Eaton, Gareth R. Eaton
DOI: 10.1039/B817758A
Multiradiate calcium phosphate patterns derived from a gradating polysaccharide-acidic protein system‡
Yi Shi, Yahong Zhang, Wuli Yang, Yi Tang
DOI: 10.1039/B814095B
One single catalyst, Pd(OAc)2, for two sequential very different steps: allylic alcohol oxidation–Heck reaction. Access to functionalised α,β-unsaturated ketones
Frédéric Batt, Christel Gozzi, Fabienne Fache
DOI: 10.1039/B810538C
Modular synthesis of multivalent glycoarchitectures and their unique selectin binding behavior
Ilona Papp, Jens Dernedde, Sven Enders, Rainer Haag
DOI: 10.1039/B813414F
Rapid analysis of isotopically unmodified amino acids by high-resolution 14N-edited 1H–13C correlation NMR spectroscopy
Jean-Paul Amoureux, Bingwen Hu, Olivier Lafon, Julien Trébosc, Feng Deng
DOI: 10.1039/B816362F
您可能还喜欢
4-[4-三氟甲基苯基]恶唑(CAS号:1126636-40-5)通常如何合成?
4-[4-三氟甲基苯基]恶唑通常通过将4-三氟甲基苯酚与异硫氰酸苯酯在有机溶剂中进行酯化反应合成。该反应可在无水条件下,使用适当的催化剂,如四丁基氢氧化铵,以提...
RockPhos Pd G3(CAS号:2009020-38-4)通常如何合成?
RockPhos Pd G3 通常通过钯催化偶联反应合成,使用配体 (2'-Amino-2-biphenylyl)(methanesulfonato-kappa...
1-哌啶甲酰胺(CAS号:2158-03-4)的市场或研究趋势如何?
1-哌啶甲酰胺作为有机合成中的重要中间体,其市场需求主要受医药、农药、染料等行业推动。近年来,随着新药开发和绿色化学的发展,该化合物的研究趋势集中在开发更高效、...
2-(二苯基膦基)乙胺(CAS号:4848-43-5)适用哪些法规指南?
2-(二苯基膦基)乙胺适用于多种法规指南,包括但不限于《全球化学品统一分类和标签制度》(GHS),欧盟《化学品注册、评估、授权和限制》法规(REACH),以及美...
如何储存间苯二甲酸二烯丙酯(CAS号:1087-21-4)?
间苯二甲酸二烯丙酯应储存在阴凉、干燥、通风良好的地方,远离火源和热源。储存容器应密封,避免光照和高温。储存温度应控制在25℃以下,相对湿度应低于80%。避免与其...
什么是间甲苯异硫代异氰酸酯(CAS号:621-30-7)?
间甲苯异硫代异氰酸酯是一种有机化合物,分子式为C7H7NO2S,具有刺激性气味。它是一种重要的有机合成中间体,在合成其他化合物时广泛应用。
在合成中是否有N-Boc-D-苯丙氨醇(CAS号:106454-69-7)的替代品?
在合成中,可以考虑使用N-Cbz-D-苯丙氨醇或N-Fmoc-D-苯丙氨醇作为替代品。这些化合物同样具有保护氨基的功能,且在合成过程中表现出良好的反应性能。
3-羟甲基-2-氧异丙基吡啶(CAS号:954240-50-7)的主要用途是什么?
3-羟甲基-2-氧异丙基吡啶主要用于有机合成领域,可以作为合成其他药物、农药或精细化学品的中间体。此外,它还可能在实验室研究中作为特定反应的前体或溶剂。
6-氨基-9-甲基嘌呤(CAS号:700-00-5)应用于哪些行业?
6-氨基-9-甲基嘌呤目前主要应用于医药行业,作为某些药物的中间体。此外,它还可能用于聚合物、传感器和半导体的某些领域,作为功能性单体或掺杂剂。
来源期刊
Reaction Chemistry & Engineering

Reaction Chemistry & Engineering is an interdisciplinary journal reporting cutting-edge research focused on enhancing the understanding and efficiency of reactions. Reaction engineering leverages the interface where fundamental molecular chemistry meets chemical engineering and technology. Challenges in chemistry can be overcome by the application of new technologies, while engineers may find improved solutions for process development from the latest developments in reaction chemistry. Reaction Chemistry & Engineering is a unique forum for researchers whose interests span the broad areas of chemical engineering and chemical sciences to come together in solving problems of importance to wider society. All papers should be written to be approachable by readers across the engineering and chemical sciences. Papers that consider multiple scales, from the laboratory up to and including plant scale, are particularly encouraged.














