Efficient removal of the toxic lead ions from contaminated sandy soils using newly engineered carbon black nano-adsorbent

Other Title(s)

إزالة عالية الكفاءة لأيونات الرصاص السامة من الأراضي الرملية الملوثة باستخدام ممتص من حبيبات أسود الكربون متناهية الصغر المهندسة حديثا

Author

Hafiz, Inas H.

Source

Alexandria Journal of Agricultural Sciences

Issue

Vol. 64, Issue 4 (31 Aug. 2019), pp.257-267, 11 p.

Publisher

Alexandria University Faculty of Agriculture

Publication Date

2019-08-31

Country of Publication

Egypt

No. of Pages

11

Main Subjects

Agriculture

Topics

Abstract EN

Soils contaminated with heavy metals can embarrass a fatal risk to the environment and human life via the direct uptake of the heavy metal-contaminated agricultural crops.

Hence, the treatment of metal-contaminated soils is attracting a lot of research activities to reduce the negative impact on the environment.

In the current study, I have activated the surface of the carbon black (CB) adsorbent by introducing functional groups capable to efficiently capture the lead (Pb) metal ions from a Pb-contaminated sandy soil.

The soil properties (e.

g.

electrical conductivity, acidity, carbon and nitrogen content, and organic matter) were studied before and after the treatment with the CB adsorbent.

I also showed a comprehensive adsorption study in soil-batch extraction experiments, evaluating a series of factors such as the effects of soil pH (pH 3.0 to pH 7.0), Pb concentration into the soil (5-100 mg/L), and the soil temperature (15-50 °C).

Furthermore, the recyclability of the adsorbent was highlighted to evaluate adsorption efficiency upon use.

The results of the study were remarkable where a 100 % removal efficiency of Pb ions was obtained using only a 40 ppm of the oxidized CB compared to a 60% removal efficiency when using a pristine CB at the same concentration.

The adsorption capacity of Pb ions was as high as 100 mg/g at 30 mg/L of oxidized CB adsorbent.

The life cycle of oxidized CB adsorbent was also remarkable compared to that of pristine adsorbent.

The recyclability data of the functionalized CB has showed an easy regeneration process with an efficient reusefor 5 cycles with 30 % a performance decline of 30 % only from the initial adsorption efficiency

American Psychological Association (APA)

Hafiz, Inas H.. 2019. Efficient removal of the toxic lead ions from contaminated sandy soils using newly engineered carbon black nano-adsorbent. Alexandria Journal of Agricultural Sciences،Vol. 64, no. 4, pp.257-267.
https://search.emarefa.net/detail/BIM-1072657

Modern Language Association (MLA)

Hafiz, Inas H.. Efficient removal of the toxic lead ions from contaminated sandy soils using newly engineered carbon black nano-adsorbent. Alexandria Journal of Agricultural Sciences Vol. 64, no. 4 (2019), pp.257-267.
https://search.emarefa.net/detail/BIM-1072657

American Medical Association (AMA)

Hafiz, Inas H.. Efficient removal of the toxic lead ions from contaminated sandy soils using newly engineered carbon black nano-adsorbent. Alexandria Journal of Agricultural Sciences. 2019. Vol. 64, no. 4, pp.257-267.
https://search.emarefa.net/detail/BIM-1072657

Data Type

Journal Articles

Language

English

Notes

-

Record ID

BIM-1072657