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A novel method of combination of Kraft lignin with synthetic mineral support

机译:硫酸盐木质素与合成矿物质载体结合的新方法

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The main goal of this research was to produce and to give a full physicochemical description of a new group of products obtained by combining a commercially available Kraft lignin with the synthetic inorganic support MgOSiO2. Hybrid systems of this type may have a wide range of applications, particularly considering the variety of functional groups present in the structure of lignin, as well as the large surface area presented by the inorganic oxide system. These features allow the products to be classed as effective adsorption materials, with a broad range of users connected with protection of the environment. The lignin was combined with the surface of the synthetic mineral support by way of initial activation of the lignin, followed by its reaction with the precipitated oxide system MgOSiO2.The materials (biosor-bents) thus obtained were subjected to thorough physicochemical analysis, including evaluation of their dispersive-morphological character, thermal and electro-kinetic stability, and porous structure parameters. Additionally, to confirm the effectiveness of the combining operation, the FT-IR spectra were analyzed and the elemental composition of this new group of hybrid biosorbents was determined.
机译:这项研究的主要目的是生产和提供一组新的产品的完整理化描述,这些产品是通过将可购买的牛皮纸木质素与合成的无机载体MgOSiO2结合而获得的。这种类型的混合体系可具有广泛的应用,特别是考虑到木质素结构中存在的各种官能团以及无机氧化物体系所呈现的大表面积。这些功能使产品被归类为有效的吸附材料,广泛的用户与环境保护相关。通过木质素的初始活化将木质素与合成矿物载体的表面结合,然后使其与沉淀的氧化物体系MgOSiO2反应,对由此获得的材料(生物吸附剂)进行彻底的理化分析,包括评估的分散形态特征,热和电动稳定性以及多孔结构参数。另外,为了确认合并操作的有效性,分析了FT-IR光谱并确定了这组新的混合生物吸附剂的元素组成。

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