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Insights into the mechanism of methylene blue removed by novel and classic biochars

机译:通过新颖和经典的生物触发器去除亚甲基蓝色机制的洞察

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The adsorption behavior and the underlying mechanism of methylene blue (MB) sorption on biochars prepared from different feedstocks at 500 degrees C were evaluated. The biochar feedstocks included Magnolia grandiflora Linn. leaves biochar (MBC), pomelo (Citrus grandis) peel biochar (PBC) and badam shell biochar (BBC). The results of characterizing and analyzing the samples showed that different biochars had different effects on the adsorption of MB. It could be found that MBC had the best adsorption effect on MB due to its largest average pore diameter of 5.55 nm determined by BrunauerEmmett-Teller analysis. Under the optimal conditions, the maximum adsorption capacities of BBC, PBC and MBC were 29.7, 85.15 and 99.3 mg/g, respectively. The results showed that the amount of adsorption was affected by the pH value. The maximum adsorption capacity of MBC was 46.99 mg/g when it was at pH of 3, whereas for the same experimental conditions the maximum adsorption capacity of BBC and PBC was 25.29 mg/g at pH of 11 and 36.08 mg/g at pH of 7, respectively. Therefore, MBC was found to be a most efficient low-cost adsorbentl for dye wastewater treatment compared with BBC and PBC, and it had the best removal effect under acidic conditions.
机译:评价了在500℃下由不同原料制备的Biochars对不同原料中​​制备的生物脉冲的吸附行为和亚甲基蓝色(MB)吸附的潜在机制。生物炭原料包括玉兰大兰省Linn。离开生物炭(MBC),柚子(柑橘类)剥皮生物炭(PBC)和Badam Shell BioChar(BBC)。表征和分析样品的结果表明,不同的生物肢对Mb的吸附有不同的影响。可以发现,由于其最大的平均孔径为5.55nm,MBC对MB的最佳吸附效果为5.55nm,由Brunaueremet-exchanter分析确定。在最佳条件下,BBC,PBC和MBC的最大吸附能力分别为29.7,85.15和99.3mg / g。结果表明,吸附量受到pH值的影响。 MBC的最大吸附容量为46.99mg / g,而在pH为3的情况下,对于相同的实验条件,BBC和PBC的最大吸附容量为25.29mg / g在pH的pH下为11和36.08mg / g 7分别。因此,与BBC和PBC相比,发现MBC是一种用于染料废水处理的最有效的低成本吸附剂,并且在酸性条件下具有最佳的去除效果。

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