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    Effects of Cocontamination by Toluene on Cr(VI) Adsorption by P-nZVI in a Soil–Water System: A Fixed-Bed Column Study

    Source: Journal of Hazardous, Toxic, and Radioactive Waste:;2024:;Volume ( 028 ):;issue: 003::page 04024011-1
    Author:
    Anuradha Garg
    ,
    Brijesh Kumar Yadav
    ,
    Shashi Ranjan
    ,
    Himanshu Singh
    DOI: 10.1061/JHTRBP.HZENG-1320
    Publisher: ASCE
    Abstract: Soil–water cocontamination with heavy metals and nonaqueous phase liquids (NAPLs) raises widespread concerns. Coexisting NAPL pollutants like toluene can antagonize the chemical processes employed for removing target heavy metals. This study investigates the impact of toluene on Cr(VI) adsorption by pumice-supported nano zerovalent iron (P-nZVI). The experiment was performed by passing a 10 mg/L Cr(VI) aqueous solution through a fixed-bed column in two batches, one without and the other with toluene. Results showed that toluene's copresence caused a 71.3% drop (3.14 to 0.9 mg/g) in P-nZVI adsorption capacity for Cr(VI). In toluene's absence, a Cr(VI) concentration in the effluent appeared after 60 h, while in its copresence, a Cr(VI) concentration appeared within 10 h. The average Cr(VI) concentration of the effluent increased from 5.05 mg/L in the first batch to 8.64 mg/L in the second batch. Breakthrough curve modeling demonstrated that the Thomas model best described the adsorption kinetics for the first case (R2 = 0.999), followed by the Yoon and Nelson and the Clark models with R2 = 0.996 and 0.994, respectively. Under toluene cocontamination, both the Thomas and the Yoon and Nelson models showed the best fit (R2 = 0.996). The inverse numerical analysis determined adsorption isotherm parameters (Ks , β, η) and confirmed that the reaction followed Langmuir behavior (β ≃ 1) with slight linearity under individual Cr(VI) presence. The results from this adsorption study, supported by adsorbent characterization before and after the reaction, demonstrated the unfavorable effects of coexisting contaminants on the removal of contaminants of concern.
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      Effects of Cocontamination by Toluene on Cr(VI) Adsorption by P-nZVI in a Soil–Water System: A Fixed-Bed Column Study

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    contributor authorAnuradha Garg
    contributor authorBrijesh Kumar Yadav
    contributor authorShashi Ranjan
    contributor authorHimanshu Singh
    date accessioned2024-04-27T22:51:28Z
    date available2024-04-27T22:51:28Z
    date issued2024/07/01
    identifier other10.1061-JHTRBP.HZENG-1320.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4297680
    description abstractSoil–water cocontamination with heavy metals and nonaqueous phase liquids (NAPLs) raises widespread concerns. Coexisting NAPL pollutants like toluene can antagonize the chemical processes employed for removing target heavy metals. This study investigates the impact of toluene on Cr(VI) adsorption by pumice-supported nano zerovalent iron (P-nZVI). The experiment was performed by passing a 10 mg/L Cr(VI) aqueous solution through a fixed-bed column in two batches, one without and the other with toluene. Results showed that toluene's copresence caused a 71.3% drop (3.14 to 0.9 mg/g) in P-nZVI adsorption capacity for Cr(VI). In toluene's absence, a Cr(VI) concentration in the effluent appeared after 60 h, while in its copresence, a Cr(VI) concentration appeared within 10 h. The average Cr(VI) concentration of the effluent increased from 5.05 mg/L in the first batch to 8.64 mg/L in the second batch. Breakthrough curve modeling demonstrated that the Thomas model best described the adsorption kinetics for the first case (R2 = 0.999), followed by the Yoon and Nelson and the Clark models with R2 = 0.996 and 0.994, respectively. Under toluene cocontamination, both the Thomas and the Yoon and Nelson models showed the best fit (R2 = 0.996). The inverse numerical analysis determined adsorption isotherm parameters (Ks , β, η) and confirmed that the reaction followed Langmuir behavior (β ≃ 1) with slight linearity under individual Cr(VI) presence. The results from this adsorption study, supported by adsorbent characterization before and after the reaction, demonstrated the unfavorable effects of coexisting contaminants on the removal of contaminants of concern.
    publisherASCE
    titleEffects of Cocontamination by Toluene on Cr(VI) Adsorption by P-nZVI in a Soil–Water System: A Fixed-Bed Column Study
    typeJournal Article
    journal volume28
    journal issue3
    journal titleJournal of Hazardous, Toxic, and Radioactive Waste
    identifier doi10.1061/JHTRBP.HZENG-1320
    journal fristpage04024011-1
    journal lastpage04024011-15
    page15
    treeJournal of Hazardous, Toxic, and Radioactive Waste:;2024:;Volume ( 028 ):;issue: 003
    contenttypeFulltext
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