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Removal Efficiency of Pharmaceuticals Using Coffee Residues Biochar Activated with Zinc Chloride and Powdered Activated Carbon
Jaegwan Shin, Keum Ryul Ha, Kangmin Chon
J Korean Soc Environ Eng. 2019;41(10):515-523.   Published online 2019 October 31    DOI:

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Adsorption of Hg(II) ions from aqueous chloride solutions using powdered activated carbons
Carbon. 2003;41(5):1087-1092   Crossref logo
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Batch sorption dynamics and equilibrium for the removal of lead ions from aqueous phase using activated carbon developed from coffee residue activated with zinc chloride
Journal of Environmental Management. 2009;90(10):3031-3039   Crossref logo
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Comparison of adsorption performances of powdered activated sludge and powdered activated carbon for removal of turquoise blue dyestuff
Process Biochemistry. 2005;40(7):2539-2544   Crossref logo
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Removal of Selenium by Adsorption onto Granular Activated Carbon (GAC) and Powdered Activated Carbon (PAC)
CLEAN - Soil, Air, Water. 2009;37(11):872-883   Crossref logo

Analysis of Polycyclic Aromatic Hydrocarbon (PAH) Mixtures Using Diffusion-Ordered NMR Spectroscopy and Adsorption by Powdered Activated Carbon and Biochar
Materials. 2018;11(4):460   Crossref logo

Separating powdered activated carbon (PAC) from wastewater – Technical process options and assessment of removal efficiency
Journal of Environmental Chemical Engineering. 2018;6(5):5744-5762   Crossref logo
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Activated carbons by zinc chloride activation for dye removal – a commentary
Acta Chimica Slovaca. 2018;11(2):99-106   Crossref logo
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Isotherm and kinetics study for acrylic acid removal using powdered activated carbon
Journal of Hazardous Materials. 2010;176(1-3):774-783   Crossref logo
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Removal of trace organics from water using a pumped bed-membrane bioreactor with powdered activated carbon
Journal of Membrane Science. 2004;239(1):81-90   Crossref logo
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Chromium removal from flocculation effluent of liquid-phase oil-based drill-cuttings using powdered activated carbon
Applied Energy. 2007;84(10):1002-1011   Crossref logo
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