Our study was focused on the synthesis of photocatalytic materials for the degradation of organic dyes based on the valorization of biomass resources. The biochar resulted from pyrolysis process of cherry pits wastes was activated by CO2 flow. Activated and inactivated carbon was used to obtain carbon-based photocatalysts impregnated with different zinc salt precursors. The activation of carbon had no significant influence on the photodegradation process. The doping procedure used Li2CO3 and Zn(CH3COO)2 of different concentrations to impregnate the biochar. The carbon-ZnO-Li2O based nanomaterials were analysed by TEM and SEM, while the presence of hexagonal wurtzite ZnO was investigated by XRD. The solid samples were analysed by PL at 360 nm excitation fixed wavelength to correlate their morphology with the optical and photocatalytic properties. The presence of Li atoms led to photocatalytic activities of the doped ZnO similar to the undoped ZnO obtained at higher concentrations of zinc acetate precursor.

译文

我们的研究重点是基于生物质资源的valorization合成用于降解有机染料的光催化材料。樱桃坑废物热解过程产生的生物炭被CO2流激活。使用活化和失活的碳来获得浸渍有不同锌盐前体的碳基光催化剂。碳的活化对光降解过程没有显着影响。掺杂程序使用不同浓度的Li2CO3和Zn(CH3COO)2浸渍生物炭。通过TEM和SEM分析了carbon-ZnO-Li2O基纳米材料,而通过XRD研究了六方纤锌矿ZnO的存在。通过在360  nm激发固定波长下的PL分析固体样品,以将其形态与光学和光催化性能相关联。Li原子的存在导致掺杂的ZnO的光催化活性类似于在较高浓度的乙酸锌前体下获得的未掺杂的ZnO。

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