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Adsorptive removal of fermentation inhibitors from concentrated acid hydrolyzates of lignocellulosic biomass

机译:从木质纤维素生物质的浓酸水解物中吸附去除发酵抑制剂

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Adsorptive purification of concentrated acid hydrolyzate of lignocellulose was investigated. Cation exchange resin (CS16GC), neutral polymer adsorbent (XAD-16), and granulated activated carbon (GAC) were studied to remove furfural, HMF, and acetic acid from a synthetic hydrolyzate containing 20wt.% H_2SO_4. Adsorption isotherms were determined experimentally. Loading and regeneration were investigated in a laboratory scale column. GAC has the highest adsorption capacity, but regeneration with water was not feasible. XAD-16 and CS16GC had lower adsorption capacities but also shorter cycle times due to easier regeneration. Productivity increased when regenerating with 50. wt.% EtOH(aq) solution. To compare adsorbents, process performance was quantified by productivity and fraction of inhibitors removed. GAC yields highest performance when high purity is required and ethanol can be used in regeneration. For lower purities, XAD-16 and GAC yield approximately equal performance. When using ethanol must be avoided, CS16GC offers highest productivity.
机译:研究了木质纤维素浓酸水解产物的吸附纯化。研究了阳离子交换树脂(CS16GC),中性聚合物吸附剂(XAD-16)和粒状活性炭(GAC),以从含20wt。%H_2SO_4的合成水解物中除去糠醛,HMF和乙酸。吸附等温线是通过实验确定的。在实验室规模的柱子上研究了负载和再生。 GAC具有最高的吸附能力,但用水再生是不可行的。 XAD-16和CS16GC具有较低的吸附容量,但由于易于再生,因此具有较短的循环时间。用50. wt。%EtOH(aq)溶液再生时,生产率提高。为了比较吸附剂,通过生产率和去除的抑制剂的比例来量化工艺性能。当需要高纯度且乙醇可用于再生时,GAC可获得最高的性能。对于较低的纯度,XAD-16和GAC的性能大致相同。当必须避免使用乙醇时,CS16GC可提供最高的生产率。

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