首页> 美国卫生研究院文献>Iranian Journal of Environmental Health Science Engineering >Pretreatment of garden biomass using Fenton’s reagent: influence of Fe2+ and H2O2 concentrations on lignocellulose degradation
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Pretreatment of garden biomass using Fenton’s reagent: influence of Fe2+ and H2O2 concentrations on lignocellulose degradation

机译:使用Fenton试剂预处理花园生物质:Fe2 +和H2O2浓度对木质纤维素降解的影响

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摘要

Garden biomass (GB) is defined as low density and heterogeneous waste fraction of garden rubbish like grass clippings, pruning, flowers, branches, weeds; roots. GB is generally different from other types of biomass. GB is mostly generated through maintenance of green areas. GB can be processed for bio energy production as it contains considerably good amount of cellulose and hemicellulose. However, pretreatment is necessary to delignify and facilitate disruption of cellulosic moiety. The aim of the present investigation was to pretreat GB using Fenton’s reagent and to study the influence of Fe2+ and H2O2 concentrations on degradation of lignin and cellulose. The data were statistically analyzed using ANOVA and numerical point prediction tool of MINITAB RELEASE 14 to optimize different process variables such as temperature, concentration of Fe2+ and H2O2. The results of the present investigation showed that Fenton’s reagent was effective on GB, however, concentration of Fe2+ and H2O2 play crucial role in determining the efficiency of pretreatment. An increase in H2O2 concentration in Fenton’s reagent significantly increased the rate of cellulose and lignin degradation in contrast to increasing concentration of Fe2+ ion which led to a decrease in lignocellulosic degradation.
机译:园林生物量(GB)定义为园林垃圾的低密度和异质废物部分,如草屑,修剪,花卉,树枝,杂草;根。 GB通常不同于其他类型的生物质。 GB主要是通过维护绿色区域而产生的。 GB可以包含大量纤维素和半纤维素,因此可以用于生物能源生产。但是,预处理对于脱木素和促进纤维素部分的破坏是必需的。本研究的目的是使用Fenton试剂预处理GB,并研究Fe 2 + 和H2O2浓度对木质素和纤维素降解的影响。使用ANOVA和MINITAB RELEASE 14的数值点预测工具对数据进行统计分析,以优化不同的过程变量,例如温度,Fe 2 + 和H2O2的浓度。目前的研究结果表明,Fenton试剂对GB有效,但是,Fe 2 + 和H2O2的浓度在确定预处理效率方面起着至关重要的作用。 Fenton试剂中H2O2浓度的增加明显增加了纤维素和木质素的降解速度,而Fe 2 + 离子的浓度却增加了,从而导致木质纤维素降解的减少。

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