Literature DB >> 19534148

Dairy-manure derived biochar effectively sorbs lead and atrazine.

Xinde Cao1, Lena Ma, Bin Gao, Willie Harris.   

Abstract

Biochar (BC) produced from agricultural crop residues has proven effective in sorbing organic contaminants. This study evaluated the ability of dairy-manure derived biochar to sorb heavy metal Pb and organic contaminant atrazine. Two biochar samples were prepared by heating dairy manure at low temperature of 200 degrees C (BC200) and 350 degrees C (BC350). The untreated manure (BC25) and a commercial activated C (AC) were included as controls. Sorption of Pb by biochar followed a dual Langmuir-Langmuir model, attributing to Pb precipitation (84-87%) and surface sorption (13-16%). Chemical speciation, X-ray diffraction, and infrared spectroscopy indicated that Pb was precipitated as beta-Pb9(PO4)6 in BC25 and BC200 treatment, and as Pb3(CO3)2(OH)2 in BC350. Lead sorption by AC obeyed a single Langmuir model, attributing mainly to surface sorption probably via coordination of Pb d-electron to C==C (pi-electron) and --0--Pb bonds. The biochar was 6 times more effective in Pb sorption than AC, with BC200 being the most effective (up to 680 mmol Pb kg(-1)). The biochar also effectively sorbed atrazine where atrazine was partitioned into its organic phase, whereas atrazine uptake by AC occurred via surface sorption. When Pb and atrazine coexisted, little competition occurred between the two for sorption on biochar, while strong competition was observed on AC. Results from this study indicated that dairy manure can be converted into value-added biochar as effective sorbent for metal and/or organic contaminants.

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Year:  2009        PMID: 19534148     DOI: 10.1021/es803092k

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  82 in total

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2.  Ex situ evaluation of the effects of biochars on environmental and toxicological availabilities of metals and polycyclic aromatic hydrocarbons.

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3.  Enhanced adsorptive removal of naphthalene intermediates from aqueous solution by introducing reed straw into sewage sludge-based activated carbon.

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4.  Reduced bioavailability and plant uptake of polycyclic aromatic hydrocarbons from soil slurry amended with biochars pyrolyzed under various temperatures.

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5.  The capacity of biochar made from common reeds to neutralise pH and remove dissolved metals in acid drainage.

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6.  Sorption of halogenated phenols and pharmaceuticals to biochar: affecting factors and mechanisms.

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Review 7.  Role of biochar on composting of organic wastes and remediation of contaminated soils-a review.

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8.  Evaluating the effects of phytoremediation with biochar additions on soil nitrogen mineralization enzymes and fungi.

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Review 9.  Using biochar for remediation of soils contaminated with heavy metals and organic pollutants.

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10.  Effect of culturing temperatures on cadmium phytotoxicity alleviation by biochar.

Authors:  Linbo Qian; Baoliang Chen; Lu Han; Jingchun Yan; Wenying Zhang; Anqi Su; Mengfang Chen
Journal:  Environ Sci Pollut Res Int       Date:  2017-09-03       Impact factor: 4.223

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