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Effects of Dilute Phosphoric Acid Treatment on Structure and Burning Characteristics of Lignocellulosic Biomass

机译:稀磷酸处理对木质纤维素生物质结构和燃烧特性的影响

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Pretreatment of biomass with phosphoric acid (H3PO4) has been a popular method since it facilitates the generation of biofuels and mitigates the problems arising from the use of corrosive sulfuric acid that is otherwise commonly employed for pretreatment. However, variations took place in the structure of biomass through this treatment have not so far been investigated in detail. This paper focuses on the effects of aqueous H3PO4 treatment on the lignocellulosic residue of corn (CR) considering the fuel properties, ash fusion temperatures, combustion characteristics and kinetics, mineral phases, surface functionalities, and the morphology of the treated biomass. It was determined that interaction of biomass with 5% H3PO4 solution led to important variations from cellulose crystallinity to thermal reactivity of this lignocellulosic material. Although elements such as Na, K, Ca, Mg, and Fe could be effectively removed by treatment, formation of phosphorus containing new phases caused to increase in ash yield. Also, the change in mineral matter composition led to an increase in ash fusion temperatures along with reduction in the burning rates. Thus, the combustibility and combustion performance indices dropped.
机译:用磷酸(H3PO4)预处理生物质已成为一种流行的方法,因为它促进了生物燃料的产生并减轻了因使用腐蚀性硫酸而引起的问题,而硫酸通常用于预处理。然而,到目前为止,尚未详细研究通过这种处理生物质结构发生的变化。本文重点研究了H3PO4水溶液处理对玉米(CR)木质纤维素残留物的影响,其中考虑了燃料性质,灰分熔融温度,燃烧特性和动力学,矿物相,表面功能以及处理过的生物质的形态。已确定生物量与5%H3PO4溶液的相互作用导致该木质纤维素材料从纤维素结晶度到热反应性发生重要变化。尽管可以通过处理有效地去除Na,K,Ca,Mg和Fe等元素,但形成含磷的新相会导致灰分产率增加。同样,矿物质组成的变化导致灰熔融温度的升高以及燃烧速率的降低。因此,可燃性和燃烧性能指数下降。

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