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有害杂草变潜在吸附剂:低温碳化蕹菜茎碳负载纳米氧化铝水合物用于除氟。

Harmful weed to prospective adsorbent: low-temperature-carbonized Ipomoea carnea stem carbon coated with aluminum oxyhydroxide nanoparticles for defluoridation.

机构信息

Advanced Materials Group, Materials Science & Technology Division, CSIR-North East Institute of Science & Technology, Jorhat, 785006, India.

Academy of Scientific and Innovative Research, Jorhat Campus, Jorhat, India.

出版信息

Environ Sci Pollut Res Int. 2019 Jan;26(1):721-737. doi: 10.1007/s11356-018-3572-z. Epub 2018 Nov 9.

DOI:10.1007/s11356-018-3572-z
PMID:30414028
Abstract

Gainful utilization of stems of the pernicious weed, Ipomoea carnea, to prepare good quality carbon and its modification with aluminum oxyhydroxide (AlOOH) nanoparticles for efficient defluoridation from contaminated drinking water is discussed in this paper. Surface functional groups are enhanced by functionalization of the carbons under acid treatment which acted as anchor to the AlOOH nanoparticles. Formation of AlOOH particles over the carbon surface is confirmed from X-ray diffractometry analysis. The AlOOH-carbon nanocomposite showed higher fluoride removal capacity than the neat AlOOH nanoparticles with a maximum removal capacity in the range of 46.55-53.71 mg g. Reaction kinetics and isotherm studies showed that fluoride adsorption is quite feasible on the adsorbent surface. The column study showed the possibility of the adsorbent for large-scale applications. The adsorbent can be regenerated by a mild treatment with 0.1 N NaOH solutions. The adsorbent is highly capable for defluoridation from synthetic as well as fluoride-contaminated natural water and, thus, can be used as an alternative for commercial defluoridation adsorbents. The use of Ipomoea carnea for defluoridation can be a way of producing low-cost adsorbent material, and the use for such purposes may also be helpful to control the weed up to a good extent.

摘要

本文探讨了利用有害杂草Ipomoea carnea 的茎制备高质量碳,并对其进行改性,用纳米级氧化铝水合物(AlOOH)颗粒进行高效除氟,以去除受污染饮用水中的氟。通过酸处理对碳进行功能化,增强了表面官能团,酸处理起到了锚的作用,使 AlOOH 纳米颗粒固定在碳表面。X 射线衍射分析证实了碳表面上 AlOOH 颗粒的形成。AlOOH-碳纳米复合材料的氟去除容量高于纯 AlOOH 纳米颗粒,最大去除容量在 46.55-53.71mg/g 范围内。反应动力学和等温线研究表明,氟在吸附剂表面的吸附是可行的。柱研究表明,该吸附剂有可能用于大规模应用。用 0.1N NaOH 溶液进行温和处理即可对吸附剂进行再生。该吸附剂对合成水和受氟污染的天然水的除氟能力都很强,因此可以作为商业除氟吸附剂的替代品。利用Ipomoea carnea 进行除氟可以是一种生产低成本吸附材料的方法,而且这种用途也可能有助于在很大程度上控制杂草。

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本文引用的文献

1
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Environ Sci Pollut Res Int. 2018 Jun;25(18):17473-17489. doi: 10.1007/s11356-018-1931-4. Epub 2018 Apr 14.
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Performance and mechanism of fluoride adsorption from groundwater by lanthanum-modified pomelo peel biochar.镧改性柚子皮生物炭从地下水中吸附氟的性能及机理。
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