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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Harvesting Bacterial Cellulose from Kitchen Waste to Prepare Superhydrophobic Aerogel for Recovering Waste Cooking Oil toward a Closed-Loop Biorefinery
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Harvesting Bacterial Cellulose from Kitchen Waste to Prepare Superhydrophobic Aerogel for Recovering Waste Cooking Oil toward a Closed-Loop Biorefinery

机译:从厨房废物中收获细菌纤维素,制备超疏水的气凝胶,用于将废物烹饪油恢复朝向闭环生物料理

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摘要

Bacterial cellulose (BC), harvested from the hydrolysate of starch-rich solid in kitchen waste (KW), was employed to prepare a superhydrophobic stearic acid (SA)-modified BC aerogel (S-BCA) for cooking oil adsorption. S-BCA achieved some distinct differences in the porous structure, surface wettability, mechanical property, and oil-adsorption capacity as affected by the modifier of SA concentration. 3% SA for BC modification can be a suitable strategy because the SA-coated S-BCA surface can be formed properly without excessive blocking of internal pores. The "thermal switch" mechanism by thermal activation at 90 degrees C achieved an efficient oil desorption through breaking the hydrogen bonds between BC and SA. S-BCA displayed a rapid oil-adsorption equilibrium within similar to 30 s, a considerable saturated-oil-adsorption capacity of 48.2 g/g, and a superior recyclability for at least 10 cycles with the remaining 89% initial adsorption capacity. Herein, this work provides a new insight to construct a more sustainable biorefinery on KW through valorizing the starch-rich solid for the superhydrophobic BC preparation to efficiently recover the waste cooking oil.
机译:采用富含淀粉的固体水解产物收获的细菌纤维素(BC),用于制备用于烹饪油吸附的超疏水硬脂酸(SA)制定的BC气凝胶(S-BCA)。 S-BCA在受SA浓度改性剂的影响下实现了多孔结构,表面润湿性,机械性能和油吸附能力的不同差异。对于BC改性的3%SA可以是合适的策略,因为可以正确地形成SA涂覆的S-BCA表面而不会过度阻断内部孔隙。通过在90摄氏度下热激活的“热开关”机构通过破坏BC和SA之间的氢键来实现有效的油解吸。 S-BCA显示出类似于30秒,相当大的饱和油吸附容量的快速油吸附平衡,并且具有至少10个循环的优异再循环性,其余89%的吸附能力。在此,该工作提供了一种新的洞察力,通过储存富含淀粉的固体来构建更可持续的生物件,以用于超疏水的BC制剂,以有效地恢复废物烹饪油。

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