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首页> 外文期刊>Biomass & bioenergy >Enhanced solid-liquid clarification of lignocellulosic slurries using polyelectrolyte flocculating agents
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Enhanced solid-liquid clarification of lignocellulosic slurries using polyelectrolyte flocculating agents

机译:使用聚电解质絮凝剂提高木质纤维素浆液的固液澄清度

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摘要

Following pretreatment and enzymatic hydrolysis of lignocellulosic biomass within a bio- refinery, the residual solids are often present in high concentration and have a wide particle size distribution. These solids, which can be difficult to remove from solution, can have a detrimental impact on downstream fermentations and separations. Here we show that polyelectrolyte flocculating agents can be used to enhance the solid-liquid clarification of a lignocellulosic biomass (Ponderosa Pine) hydrolyzate. Due to the negative zeta potential of Ponderosa Pine solids following pretreatment and enzymatic hydrolysis, flocculation with cationic polymers provided the largest floes, which quickly settled out of solution. Adding Kemira flocculant C1592 up to 1000 rng/L created larger floes; however, a higher dosage (5000 mg/L) resulted in solids re-dispersing into solution. It was estimated that a greater than 12-fold improvement in throughput with a scroll decanting centrifuge could be obtained when using flocculant, or that an approximately 40-fold higher flux could be obtained for a vacuum filtration operation. The addition of 100 mg/L of C1592 showed optimal suspended solids removal of the clarified solution (<0.1% w/w suspended solids) and the highest sugar recovery (up to 83% without washing). In all cases, the percentage of suspended solids remaining following either centrifugation or filtration was at least an order of magnitude lower with the aid of flocculant. The presence of residual polymer in solution did not affect the downstream ethanol productivity of a Saccharomyces cereuisiae fermentation.
机译:在生物精炼厂中对木质纤维素生物质进行预处理和酶解后,残留的固体通常以高浓度存在并且具有宽的粒度分布。这些难以从溶液中去除的固体会对下游的发酵和分离产生不利影响。在这里,我们表明,聚电解质絮凝剂可用于增强木质纤维素生物质(美国黄松)水解产物的固液澄清度。由于黄松松果在预处理和酶促水解后具有负的zeta电位,因此用阳离子聚合物进行絮凝可提供最大的絮凝物,这些絮凝物很快会从溶液中沉降出来。将Kemira絮凝剂C1592添加至1000 rng / L会产生更大的絮凝物;但是,更高的剂量(5000 mg / L)导致固体重新分散到溶液中。据估计,当使用絮凝剂时,使用涡旋倾析离心机可以将产量提高12倍以上,或者对于真空过滤操作,通量可以提高约40倍。添加100 mg / L的C1592显示出澄清溶液的最佳悬浮固体去除率(<0.1%w / w悬浮固体)和最高的糖回收率(高达83%,无需洗涤)。在所有情况下,借助絮凝剂,离心或过滤后残留的悬浮固体百分比至少降低了一个数量级。溶液中残留聚合物的存在不影响酿酒酵母发酵的下游乙醇生产率。

著录项

  • 来源
    《Biomass & bioenergy 》 |2011年第1期| p.391-401| 共11页
  • 作者单位

    South Dakota School of Mines and Technology, Department of Chemical and Biological Engineering, 501 East Saint Joseph St., Rapid City, SD 57701, United States;

    South Dakota School of Mines and Technology, Department of Chemical and Biological Engineering, 501 East Saint Joseph St., Rapid City, SD 57701, United States;

    South Dakota School of Mines and Technology, Department of Chemical and Biological Engineering, 501 East Saint Joseph St., Rapid City, SD 57701, United States;

    South Dakota School of Mines and Technology, Department of Chemical and Biological Engineering, 501 East Saint Joseph St., Rapid City, SD 57701, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    flocculation; polyelectrolyte; lignocellulosic biomass; clarification; centrifugation; filtration;

    机译:絮凝聚电解质木质纤维素生物质;澄清离心过滤;

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