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          • [Wiley數據庫][2012]Preliminary extration of tannins by 1-butyl-3-methylimidazole bromide and its subsequent removal from Galla chinensis extract using macroporous resins
          • 更新時間:2016-03-21;信息類型:期刊文章
          • In recent years, Ionic Liquids have become increasingly attractive as “green solvents” used in the extraction of bioactive compounds from natural plant. However, the separation of ionic liquid from the target compounds was difficult, due to their low vapour pressure and high stabilities. In our study, ionic liquid-based ultrasonic and microwave-assisted extraction was used to obtain the crude tannins, then the macroporous resin adsorption technology was further employed to purify the tannins and remove the ionic liquid from crude extract. The results showed that XDA-6 had higher separation efficiency than other tested resins, and the equilibrium experimental data were well-fitted to Langmuir isotherms. Dynamic adsorption and desorption were performed on XDA-6 packed in glass columns to optimize the separation process. The optimum conditions as follows: the ratio of column height to diameter bed was 1:8, flow rate 1BV/h, 85% ethanol was used as eluant while the elution volume was 2BV. Under the optimized conditions, the adsorption and desoption rate of tannins in XDA-6 were 94.81% and 91.63% respectively. The content of tannins was increased from 70.24% in Galla chinensis extract to 85.12% with a recovery of 99.06%. The result of UPLC-MS/MS analysis showed that [bmim]Br could be removed from extract.
          • 鏈接地址:http://www.abmbags.com/download/c-articles/2016-03-21/343.html
          • Seeking Better Biofuels
          • 更新時間:2015-10-26;信息類型:國外研究進展
          • In this season of cheap oil, the promise of running our energy-intensive economy on plants rather than fossil fuels can seem further out than ever. Yes, there’s a dollop of corn ethanol in our gasoline, but that is not exactly the energy transformation we were promised. Maybe the whole idea behind our bioenergy future needs to be completely rethought.
          • 鏈接地址:http://www.abmbags.com/research/2015-11-03/381.html
          • Ionic liquids to extract molecules from wood
          • 更新時間:2015-10-26;信息類型:國外研究進展
          • Thanks to their unique properties, ionic liquids are all in the rage as solvents as, for instance, "green" sustainable chemical processes. Recently, two research teams at Ume? University discovered how enzymes can perform their catalytical processes in a switchable ionic liquid. The discovery paves way for enzymatic refinement of cellulose to precious molecules and industrial products. The results have been published in the journal ChemSusChem.
          • 鏈接地址:http://www.abmbags.com/research/2015-11-03/378.html
          • Making the Most From Carbon in Plants
          • 更新時間:2015-09-09;信息類型:國外研究進展
          • Carbon is money. Nowhere is this more evident than in our dependence on hydrocarbons in the form of fossil fuels. Scientists and engineers have been grappling with the question of what alternate carbon sources are available when our demand for fossil fuels eventually outstrips our supply. This challenge has provided motivation to use expertise and equipment available at EMSL, the Environmental Molecular Sciences Laboratory, to create technologies that use sustainable carbon sources from biomass.
          • 鏈接地址:http://www.abmbags.com/research/2015-11-04/398.html
          • Sustainability: Don't waste seafood waste
          • 更新時間:2015-08-16;信息類型:國內研究進展
          • Every year, some 6 million to 8 million tonnes of waste crab, shrimp and lobster shells are produced globally — about 1.5 million tonnes in southeast Asia alone1. Whereas 75% of the weight of a tuna fish can be extracted as fillets, meat accounts for only around 40% of a crab's mass.
          • 鏈接地址:http://www.abmbags.com/research/2015-11-03/397.html
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