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Adsorption characteristics of Cd(ii) in aqueous solutions using spent mushroom substrate biochars produced at different pyrolysis temperatures

机译:使用在不同热解温度下产生的用过的蘑菇底物生物炭在水溶液中对Cd(ii)的吸附特性

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To effectively remove Cd from water, biochars were produced by pyrolyzing surplus agricultural wastes of spent mushroom substrate (SMS) at 300, 500, and 700?°C. The biochars were characterized, and their Cd( II ) removal ratios and adsorption capacities in aqueous solutions were evaluated. The physical and chemical properties of the biochars were significantly affected by increasing the pyrolysis temperature; the data indicated that the ash content, pH and specific surface area of the biochars increased, whereas the yield and contents of carbon, hydrogen, nitrogen and oxygen decreased. In addition, the molar ratios of H/C, O/C and (O + N)/C decreased, which implied that the biochars became more aromatic and carbonaceous with a lower polarity and fewer oxygen-based functional groups. The pseudo-second-order kinetics model and Langmuir and Temkin isotherm models described the Cd( II ) adsorption better than the other tested models. The biochars derived at higher pyrolysis temperatures had higher adsorption capacities, and the maximum adsorption capacities for PC700 and SC700 were 71.49 and 46.87 mg g ~(?1) , respectively. The Q _(m) values in our study were equivalent to or even higher than those for other modified biochars. This result shows that the biochars in this study are effective adsorbents for Cd( II ) removal from wastewater.
机译:为了有效地从水中去除镉,生物炭是通过在300、500和700°C下热解多余的食用蘑菇底物(SMS)的农业废料而产生的。对生物炭进行了表征,并评估了其对Cd(II)的去除率和在水溶液中的吸附能力。增加高温分解温度会严重影响生物炭的理化性质。数据表明,生物炭的灰分含量,pH和比表面积增加,而碳,氢,氮和氧的产率和含量降低。此外,H / C,O / C和(O + N)/ C的摩尔比降低,这意味着生物炭变得更芳香和含碳,极性更低,氧基官能团更少。拟二级动力学模型以及Langmuir和Temkin等温模型比其他测试模型更好地描述了Cd(II)吸附。在较高的热解温度下衍生的生物炭具有较高的吸附容量,PC700和SC700的最大吸附容量分别为71.49和46.87 mg g〜(?1)。我们研究中的Q_(m)值等于或什至高于其他改性生物炭的Q_(m)值。该结果表明,该研究中的生物炭是去除废水中Cd(II)的有效吸附剂。

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