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Effects of reduced severity of ammonium sulfite pretreatment on bamboo for high cellulose recovery

机译:亚硫酸铵预处理严重程度对竹子高纤维素回收的影响

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In this study, the conditions for the pretreatment of bamboo by ammonium sulfite to achieve high cellulose recovery were investigated and optimized. To obtain higher cellulose recovery under low-severity pretreatment conditions such as ammonia sulfite concentration, pretreatment time and pretreatment temperature, three-factor and three-level experiments were designed by the Box-Behnken design based on response surface methodology. The results showed that the cellulose recovery yield after 48 h enzymatic hydrolysis could reach 58.36-59.87%; moreover, the recovered cellulose was pretreated with 20% ammonium sulfite at 150 degrees C for 6 h, and the obtained yield was in agreement with the predicted yield (58.87%). It was about 13-fold higher than that of the untreated bamboo (4.41%). Pretreatment temperature and ammonia sulfite concentration are significantly important factors than pretreatment time in the design space for achieving high cellulose recovery. Moreover, SEM analysis of the pretreated bamboo substrate under optimized conditions illustrated that the biomass surface had become more rough and porous after pretreatment.
机译:在这项研究中,研究了亚硫酸铵预处理竹子以获得高纤维素回收率的条件进行了研究和优化。为了在低严重程度预处理条件下获得更高的纤维素回收,例如氨亚硫酸盐浓度,预处理时间和预处理温度,通过基于响应面方法的Box-Behnken设计设计了三因素和三级实验。结果表明,48小时酶水解后的纤维素回收率可达到58.36-59.87%;此外,回收的纤维素在150℃下用20%亚硫酸铵预处理6小时,并与预测产率(58.87%)一致。比未处理的竹子高约13倍(4.41%)。预处理温度和氨亚硫酸盐浓度显着重要的因素,而不是实现高纤维素回收的预处理时间。此外,在优化条件下对预处理竹基板的SEM分析说明了在预处理后生物质表面变得更加粗糙和多孔。

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    《RSC Advances》 |2019年第52期|共7页
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  • 正文语种 eng
  • 中图分类 化学;
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