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Structural characterization of alkaline hydrogen peroxide (AHP) pretreated biomass.

机译:碱性过氧化氢(AHP)预处理生物质的结构表征。

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摘要

Alkaline hydrogen peroxide (AHP) pretreatment is exceptionally well-suited to grasses, yielding high digestibilities at low enzyme loadings, while generating relatively few fermentation inhibitors. For AHP pretreatment, the question of how structural and chemical compositional changes within the plant cell wall correlate to pretreatment effectiveness has not been effectively resolved, while knowledge of how selective modification of lignin during pretreatment may improve digestibility may yield insights into both improving pretreatments and tailoring plant cell walls for deconstruction. This study presents a comprehensive chemical and structural characterization of the changes in plant cell walls associated with switchgrass (Panicum virgatum cv. Cave-In-Rock), corn stovers (a commercial hybrid and inbred brown midrib lines bm1 and bm3) and sugar maple (Acer saccharum) and that were AHP pretreated at varied severities. Both the remaining solids and solubilized biomass hydrolysates were subjected to a number of characterizations including total polysaccharide composition, lignin content as both Klason and acetyl bromide lignin, and the ratio of H/G/S monolignols as determined by thioacidolysis GC/MS. Solid-state 13C CP/MAS NMR and HSQC 2D NMR were applied to determine changes associated with intra-lignin, carbohydrate-carbohydrate, carbohydrate-lignin linkages and functional groups. Apparent molecular weight distributions of soluble polymeric lignins and hemicellulose aggregates were determined by HP-SEC. Pyrolysis-GC/MS was utilized to characterize changes in the volatilized compounds before and after pretreatment implying pretreatment-induced alterations in pyrolysis-labile monolignol linkages.
机译:碱性过氧化氢(AHP)预处理特别适合于草,在低酶负荷下产生高消化率,同时产生相对较少的发酵抑制剂。对于AHP预处理,尚未有效解决植物细胞壁内结构和化学组成变化如何与预处理效果相关的问题,而有关木质素在预处理过程中的选择性修饰如何改善消化率的知识可能会为改进预处理和定制提供见解用于解构的植物细胞壁。这项研究提供了与柳枝((Panicum virgatum cv。Cave-In-Rock),玉米秸秆(商业杂交和近交棕色中脉系bm1和bm3)和糖枫( Acer saccharum)和经AHP预处理的各种严重度。其余的固体和可溶解的生物质水解产物均经过许多表征,包括总多糖组成,木质素含量(Klason和乙酰溴木质素),以及通过硫代酸解GC / MS测定的H / G / S单木酚比。应用固态13C CP / MAS NMR和HSQC 2D NMR确定与木质素内,碳水化合物-碳水化合物,碳水化合物-木质素键​​和官能团相关的变化。通过HP-SEC测定可溶性聚合物木质素和半纤维素聚集体的表观分子量分布。热解-GC / MS用于表征预处理前后挥发的化合物的变化,这意味着预处理诱导的热解不稳定的单木质醇键的变化。

著录项

  • 作者

    Li, Muyang.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Engineering Chemical.
  • 学位 M.S.
  • 年度 2011
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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