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Simultaneous Immobilization of Soil Cd(II) and As(V) by Fe-Modified Biochar

Bibliographic Data

ID15475814
AuthorsYi-min Wang (0000-0002-0360-6468, Hohai University), Shaowei Wang (0000-0003-3499-3541, Hohai University), Shao-wei Wang (Hohai University), Cheng-Qian Wang (Hohai University), Zhiyuan Zhang (0000-0001-5686-3903, Hohai University), Zhi-Yuan Zhang (Hohai University), Jiaqi Zhang (0000-0002-7999-8330, Hohai University), Jia-Qi Zhang (Hohai University), Meng Meng (0000-0002-3162-1833, Hohai University), Ming Li (0000-0001-7109-5084, MCC Huatian Engineering and Technology Corporation, corresponding author), Minori Uchimiya (0000-0001-9117-7431, Southern Regional Research Center), Xuyin Yuan (0000-0001-5303-7120, Hohai University, corresponding author)
Year2020
Volume17
Issue3
Pages827-827
Publication date2020-01-28
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph17030827
PMID32013027
OpenAlexW3003928690
LanguageEN
References cited55

Remediation of soil heavy metal by biochar has been extensively studied. However, few studies focused on the role of biochar on the co-immobilization of cadmium (Cd(II)) and arsenate (As(V)) and related soil nutrient availability. Remediation tests were conducted with three types of pristine and ferric trichloride (FeCl 3 ) modified biochar (rice, wheat, and corn straw biochar) in Cd-As co-contaminated soil, with application rates of 1, 5, and 10% (w/w) and the incubation of 1, 7, 10, and 15 days. Using TCLP (Toxicity Characteristic Leaching Procedure) method, 10% of FeCl 3 modified corn-straw derived biochar (FCB) had the highest immobilization efficiency of Cd(II) (63.21%) and As(V) (95.10%) after 10 days of the incubation. Iron-modified biochar immobilized higher fractions of water-soluble (F1) and surface-absorbed (F2) metal fractions than pristine biochar. For FCB amendment, Cd was mostly presented in the organic matter (OM) and sulfides associated (F4) and residual (F5) fractions (88.52%), as was found in the Fe-Al (oxides and hydroxides) (F3), F4, and F5 fractions (75.87%). FCB amendment increased soil pH values and available iron contents (p 0.05). This study showed that FCB application reduces the environmental mobility of metals in Cd-As contaminated soil, while it also increases soil pH and available nutrient mobility, improving soil environmental quality and reducing remediation costs

Amendment · Biochar · Cadmium · Contamination · Environmental remediation · Heavy metals · Incubation · Leaching (pedology · Nutrient · Organic matter · Pyrolysis · Soil contamination · Soil pH · Soil water · Straw · Toxicity characteristic leaching procedure · Adsorption and biosorption for pollutant removal · Chemistry · Clay minerals and soil interactions · Environmental Science · Heavy metals in environment · Environmental Chemistry · Inorganic Chemistry · Soil Science

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