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Saccharification of newspaper waste after ammonia fiber expansion or extractive ammonia

机译:氨纤维膨胀或提取氨后报纸废料的糖化

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摘要

The lignocellulosic fractions of municipal solid waste (MSW) can be used as renewable resources due to the widespread availability, predictable and low pricing and suitability for most conversion technologies. In particular, after the typical paper recycling loop, the newspaper waste (NW) could be further valorized as feedstock in biorefinering industry since it still contains up to 70 % polysaccharides. In this study, two different physicochemical methods—ammonia fiber expansion (AFEX) and extractive ammonia (EA) were tested for the pretraetment of NW. Furthermore, based on the previously demonstrated ability of the recombinant enzymes endocellulase rCelStrep, α- -arabinofuranosidase rPoAbf and its evolved variant rPoAbf F435Y/Y446F to improve the saccharification of different lignocellulosic pretreated biomasses (such as corn stover and ), in this study these enzymes were tested for the hydrolysis of pretreated NW, with the aim of valorizing the lignocellulosic fractions of the MSW. In particular, a mixture of purified enzymes containing cellulases, xylanases and accessory hemicellulases, was chosen as reference mix and rCelStrep and rPoAbf or its variant were replaced to EGI and Larb. The results showed that these enzymatic mixes are not suitable for the hydrolysis of NW after AFEX or EA pretreatment. On the other hand, when the enzymes rCelStrep, rPoAbf and rPoAbf F435Y/Y446F were tested for their effect in hydrolysis of pretreated NW by addition to a commercial enzyme mixture, it was shown that the total polysaccharides conversion yield reached 37.32 % for AFEX pretreated NW by adding rPoAbf to the mix whilst the maximum sugars conversion yield for EA pretreated NW was achieved 40.80 % by adding rCelStrep. The maximum glucan conversion yield obtained (45.61 % for EA pretreated NW by adding rCelStrep to the commercial mix) is higher than or comparable to those reported in recent manuscripts adopting hydrolysis conditions similar to those used in this study.
机译:由于大多数转化技术的可用性,可预测性和低廉的价格以及其适用性,城市固体废物的木质纤维素级分可以用作可再生资源。特别是在典型的纸张循环利用之后,由于报纸废料(NW)仍含有多达70%的多糖,因此可以在生物精炼行业中进一步用作原料。在这项研究中,测试了两种不同的理化方法-氨纤维膨胀法(AFEX)和萃取氨法(EA)对西北地区的预处理。此外,基于先前证明的重组酶内切纤维素酶rCelStrep,α--阿拉伯呋喃糖苷酶rPoAbf及其进化变体rPoAbf F435Y / Y446F改善不同木质纤维素预处理生物质(如玉米秸秆和)的糖化能力,在本研究中,这些酶测试了预处理NW的水解,目的是使MSW的木质纤维素级分增值。特别地,选择包含纤维素酶,木聚糖酶和辅助半纤维素酶的纯化酶的混合物作为参考混合物,并将rCelStrep和rPoAbf或其变体替换为EGI和Larb。结果表明,这些酶混合物不适合AFEX或EA预处理后的NW水解。另一方面,当通过添加商业酶混合物测试rCelStrep,rPoAbf和rPoAbf F435Y / Y446F酶在预处理NW水解中的作用时,表明AFEX预处理NW的总多糖转化率达到37.32%通过添加rPoAbf到混合物中,同时通过添加rCelStrep实现EA预处理的西北部的最大糖转化率达到40.80%。获得的最大葡聚糖转化率(通过将rCelStrep添加到商业混合物中进行EA预处理的NW达到45.61%)高于或与采用与本研究相似的水解条件的最新手稿中报道的产率相当。

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