Lonappan Linson, Rouissi Tarek, Brar Satinder Kaur, Verma Mausam, Surampalli Rao Y
INRS-ETE, Université du Québec, 490, Rue de la Couronne, Québec, Canada G1K 9A9.
CO2 Solutions Inc., 2300, Rue Jean-Perrin, Québec, Canada G2C 1T9.
Data Brief. 2017 Oct 21;16:460-465. doi: 10.1016/j.dib.2017.10.041. eCollection 2018 Feb.
Due to its wide occurrence in water resources and toxicity, pharmaceuticals and personal care products are becoming an emerging concern throughout the world. Application of residual/waste materials for water remediation can be a good strategy in waste management as well as in waste valorization. Herein, this dataset provides information on biochar application for the removal of emerging contaminant, diclofenac from water matrices. The data presented here is an extension of the research article explaining the mechanisms of adsorption diclofenac on biochars (Lonappan et al., 2017 [1]). This data article provides general information on the surface features of pine wood and pig manure biochar with the help of SEM and FTIR data. This dataset also provides information on XRD profiles of pine wood and pig manure biochars. In addition, different amounts of biochars were used to study the removal of a fixed concentration of diclofenac and the data is provided with this data set.
由于药品和个人护理产品在水资源中广泛存在且具有毒性,它们正成为全球日益关注的问题。将残余/废料用于水修复在废物管理和废物增值方面可能是一个不错的策略。在此,该数据集提供了关于生物炭用于从水基质中去除新兴污染物双氯芬酸的信息。此处呈现的数据是研究文章的扩展,该文章解释了双氯芬酸在生物炭上的吸附机制(Lonappan等人,2017 [1])。本数据文章借助扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)数据提供了松木和猪粪生物炭表面特征的一般信息。该数据集还提供了松木和猪粪生物炭的X射线衍射(XRD)图谱信息。此外,使用了不同量的生物炭来研究固定浓度双氯芬酸的去除情况,该数据随本数据集提供。