...
首页> 外文期刊>Environmental Science and Pollution Research >As(V) removal using biochar produced from an agricultural waste and prediction of removal efficiency using multiple regression analysis
【24h】

As(V) removal using biochar produced from an agricultural waste and prediction of removal efficiency using multiple regression analysis

机译:AS(v)使用农业废物生产的生物炭和使用多元回归分析预测去除效率

获取原文
获取原文并翻译 | 示例
           

摘要

Arsenic contamination in drinking water is a matter of concern for many countries. An efficient and low-cost solution for this hazard is essentially needed on urgent basis. Therefore, in this study, banana pith (an agricultural waste) was used for biochar production and later it was modified with iron and applied for arsenic adsorption from aqueous solution. Produced biochar was characterized for proximate, ultimate, and surface analyses. Interestingly, after iron impregnation, the surface area of biochar increased (31.59 m(2)/g) by nearly 8 times. Morphological analysis showed that iron particles firmly held within the pores after impregnation. Arsenate (As(V)) adsorption behavior of iron-impregnated banana pith biochar was evaluated through a batch study by considering various parameters like dose, concentration, pH, temperature, and competing anions. Compared to impregnated biochar, raw biomass and its biochar showed a lesser affinity for arsenate in aqueous solution. The adsorption isotherm of As(V) on banana pith biochar was covered in the temperature range of 298 to 318 K, and kinetic data of adsorption was experimentally generated at 298 K. Langmuir model for the sorption isotherms and pseudo-second-order kinetic model for the sorption kinetics represented the experimental data. The thermodynamic study showed negative Gibb's free energy (- 46.88 kJ/mol at 298 K, - 48.58 kJ/mol at 308 K, - 50.73 kJ/mol at 318 K) that suggested spontaneity of the adsorption process. Negative enthalpy (Delta H degrees = - 10.55 kJ/mol) showed exothermic nature of adsorption of arsenic, while negative entropy (Delta S degrees = 0.123 kJ/mol.K) suggested enthalpy-driven adsorption process. Mechanism of arsenic adsorption onto iron-impregnated banana pith biochar has also been discussed in detail. Based on the experimental observation, a predictive model for arsenate removal has been developed in this study. The findings of the present study elucidated that iron-impregnated banana pith biochar can be used as a low-cost adsorbing material for As(V) from aqueous solutions.
机译:饮用水中的砷污染是许多国家关注的一个问题。这个危险的高效率和低成本的解决方案基本上是迫切需要的基础上。因此,在本研究中,使用香蕉髓(农业废物),用于生物炭的生产和后,它用铁修改和应用用于吸附从水溶液砷。生产生物炭的特点为靠近,最终,和表面分析。有趣的是,铁浸渍之后,生物炭的表面面积近8倍增加(31.59米(2)/克)。形态学分析表明浸渍后毛孔内坚定地认为,铁粒子。铁浸渍香蕉髓生物炭的砷酸(的As(V))的吸附行为进行了考虑各种参数,如剂量,浓度,pH,温度,和相互竞争的阴离子通过批处理研究评估。相比浸渍生物炭,生物质及其生物炭表现出对在水溶液中砷酸较小亲和性。的As(V)上的香蕉髓生物炭的吸附等温线覆盖的温度范围内的298至318 K,和吸附的动力学数据在298K Langmuir模型的吸附等温线和伪二级动力学模型进行了实验产生用于吸附动力学表示的实验数据。热力学研究表明负吉布斯自由能( - 46.88千焦/摩尔,在298 K, - 48.58千焦/摩尔,在308 K, - 50.73千焦/摩尔,在318 K)所建议的吸附过程的自发性。负焓(德尔塔ħ度= - 10.55千焦/摩尔)显示砷的吸附的放热性质,而负熵(德尔塔硕士= 0.123千焦/ mol.K)建议焓驱动的吸附过程。砷吸附的机理到铁浸渍香蕉髓生物炭也已经在详细的讨论。基于实验观察,对于砷去除的预测模型开发了这项研究。本研究的结果阐明了铁浸渍香蕉髓生物炭可以用作用于从水溶液中的As(V)一种低成本的吸附材料。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号