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Maximum bleaching of vegetable oils by acid-activated bentonite: Influence of nanopore radius

机译:酸活化膨润土对植物油的最大漂白作用:纳米孔半径的影响

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The optimum conditions necessary for preparing a bleaching earth (BE) with maximum bleaching power (BP) towards soybean oil (SO) and cottonseed oil (CSO) were investigated. BEs were obtained by H_(2)SO_4 activation of a white calcium bentonite (CaB) sample from the Kütahya region of Turkey. After drying for 4 h at 105 °C, the CaB samples were activated by heating their acidic aqueous suspensions for 6 h at 97 °C, the acid content of the dry bentonite/acid mixture being varied in the 0-70% mass range. The respective specific surface area (S) and specific nanopore volume (V) of the BEs were determined from nitrogen adsorption/desorption data obtained at-196 °C. For natural CaB, the values of S and V were 44 m~2/g and 0.11 cm~3/g, respectively. These values attained a maximum of 135 m~2/g and 0.30 cm~3/g for the BE sample prepared employing 40% H_2SO_(4) for acid activation. Interestingly, the maximum BP was not associated with the maximum S and V values. The optimum values for the percentage H_2SO_4, S and V for attaining the maximum BP were 20%, 100 m~2/g and 0.17 cm_3/g, respectively.The mean nanopore radius (r) of each BE was calculated using the corresponding S and V values. Nanopores with a mean radius in the range 3.5-5.5 nm, which was close to the diameter of the coloured pigment, were found to be mostly responsible for the BP towards SO and CSO. The results obtained in the present study indicate that the value of r was more effective than the S and V values of BEs in the bleaching of vegetable oils. Adsorption of a pigment onto a BE was found to depend not only on the physicochemical interaction between the pigment molecule and the BE surface, but also on the mean nanopore size.
机译:研究了制备对大豆油(SO)和棉籽油(CSO)具有最大漂白力(BP)的漂白土(BE)所需的最佳条件。通过H_(2 )SO_4活化来自土耳其库塔赫亚地区的白色钙膨润土(CaB)样品获得了BE。在105°C下干燥4小时后,通过将其酸性含水悬浮液在97°C下加热6小时来活化CaB样品,干燥膨润土/酸混合物的酸含量在0-70%的质量范围内变化。由在-196℃获得的氮吸附/解吸数据确定BE的各自的比表面积(S)和比纳米孔体积(V)。对于天然CaB,S和V的值分别为44 m〜2 / g和0.11 cm〜3 / g。对于使用40%H_2SO_(4 )进行酸活化制备的BE样品,这些值分别达到了135 m〜2 / g和0.30 cm〜3 / g的最大值。有趣的是,最大BP与最大S和V值无关。达到最大BP的H_2SO_4,S和V的最佳百分比分别为20%,100 m〜2 / g和0.17 cm_3 / g。使用相应的S计算每个BE的平均纳米孔半径(r)和V值。发现平均半径在3.5-5.5 nm范围内的纳米孔(接近有色颜料的直径)是造成BP向SO和CSO的主要原因。在本研究中获得的结果表明,在植物油漂白中,r的值比BEs的S和V值更有效。发现颜料在BE上的吸附不仅取决于颜料分子与BE表面之间的物理化学相互作用,还取决于平均纳米孔尺寸。

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