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- W4225567722 endingPage "133251" @default.
- W4225567722 startingPage "133251" @default.
- W4225567722 abstract "Production of cost-efficient composite materials from low-cost modified biochar for the removal of Cd (II) from wastewater is much needed to meet the growing needs of industrial wastewater treatments. A novel chitosan-modified kiwi branch biochar (CHKB) was fabricated as low-cost modified biochar for the removal of Cd (II) from aqueous solution. Batch adsorption and characterization experiments indicated that the modification of kiwi biochar (KB) by chitosan remarkably improved its adsorption performance. The results revealed that the adsorption isotherms can be best described by a Langmuir model and that a pseudo-second-order model fits the Cd (II) adsorption kinetics well, which indicates that it is a monolayer process controlled by chemisorption. CHKB exhibited a Langmuir maximum adsorption capacity of Cd (II) (126.58 mg g-1), whereas that of KB was only 4.26 mg g-1. The adsorption ability of CHKB was improved by increasing the surface area and an abundance of surface functional groups (-OH, -NH, CO, etc.). The cation exchange, electrostatic interaction, surface complexation, and precipitation were the main mechanisms in the sorption of Cd (II) on CHKB. Excellent adsorption performance, low cost, and environmental-friendliness made CHKB a fantastic adsorbent for the removal of Cd (II) in wastewater." @default.
- W4225567722 created "2022-05-05" @default.
- W4225567722 creator A5021095828 @default.
- W4225567722 creator A5030875615 @default.
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- W4225567722 creator A5068127453 @default.
- W4225567722 creator A5080593378 @default.
- W4225567722 creator A5084911309 @default.
- W4225567722 date "2022-02-01" @default.
- W4225567722 modified "2023-10-17" @default.
- W4225567722 title "Efficient removal of Cd (II) from aqueous solution by chitosan modified kiwi branch biochar" @default.
- W4225567722 cites W1969032039 @default.
- W4225567722 cites W1971575657 @default.
- W4225567722 cites W1981141510 @default.
- W4225567722 cites W1988875621 @default.
- W4225567722 cites W2013648466 @default.
- W4225567722 cites W2015646495 @default.
- W4225567722 cites W2016086763 @default.
- W4225567722 cites W2019503761 @default.
- W4225567722 cites W2021536159 @default.
- W4225567722 cites W2044747901 @default.
- W4225567722 cites W2048305732 @default.
- W4225567722 cites W2053215791 @default.
- W4225567722 cites W2074572409 @default.
- W4225567722 cites W2078305262 @default.
- W4225567722 cites W2083752734 @default.
- W4225567722 cites W2089961068 @default.
- W4225567722 cites W2129288307 @default.
- W4225567722 cites W2134071725 @default.
- W4225567722 cites W2184175414 @default.
- W4225567722 cites W2240074481 @default.
- W4225567722 cites W2255786456 @default.
- W4225567722 cites W2315405796 @default.
- W4225567722 cites W2327682088 @default.
- W4225567722 cites W2397833088 @default.
- W4225567722 cites W2438753159 @default.
- W4225567722 cites W2513911424 @default.
- W4225567722 cites W2558107625 @default.
- W4225567722 cites W2589011706 @default.
- W4225567722 cites W2606551501 @default.
- W4225567722 cites W2609726800 @default.
- W4225567722 cites W2611816863 @default.
- W4225567722 cites W2738466316 @default.
- W4225567722 cites W2738849362 @default.
- W4225567722 cites W2768055466 @default.
- W4225567722 cites W2768692551 @default.
- W4225567722 cites W2772376986 @default.
- W4225567722 cites W2789832249 @default.
- W4225567722 cites W2791365488 @default.
- W4225567722 cites W2792481206 @default.
- W4225567722 cites W2794176251 @default.
- W4225567722 cites W2804891424 @default.
- W4225567722 cites W2806427847 @default.
- W4225567722 cites W2808485246 @default.
- W4225567722 cites W2883937344 @default.
- W4225567722 cites W2885790330 @default.
- W4225567722 cites W2944191345 @default.
- W4225567722 cites W2953335073 @default.
- W4225567722 cites W2971500085 @default.
- W4225567722 cites W2974428678 @default.
- W4225567722 cites W2993955947 @default.
- W4225567722 cites W2995595286 @default.
- W4225567722 cites W2999679939 @default.
- W4225567722 cites W3000520791 @default.
- W4225567722 cites W3004850069 @default.
- W4225567722 cites W3006318404 @default.
- W4225567722 cites W3042919529 @default.
- W4225567722 cites W3044217833 @default.
- W4225567722 cites W3048251500 @default.
- W4225567722 cites W3048650348 @default.
- W4225567722 cites W3082928504 @default.
- W4225567722 cites W3089274405 @default.
- W4225567722 cites W3096674746 @default.
- W4225567722 cites W3097854413 @default.
- W4225567722 cites W3116207426 @default.
- W4225567722 cites W3125937653 @default.
- W4225567722 cites W3127688742 @default.
- W4225567722 cites W3130711097 @default.
- W4225567722 cites W3131623250 @default.
- W4225567722 cites W3131990305 @default.
- W4225567722 cites W3132023282 @default.
- W4225567722 cites W3136003539 @default.
- W4225567722 cites W3156045138 @default.
- W4225567722 cites W3157262443 @default.
- W4225567722 cites W3163860797 @default.
- W4225567722 cites W3164200141 @default.
- W4225567722 cites W3168102032 @default.
- W4225567722 cites W3171884435 @default.
- W4225567722 cites W3176193409 @default.
- W4225567722 cites W3177766267 @default.
- W4225567722 cites W3183820869 @default.
- W4225567722 cites W3194852805 @default.
- W4225567722 cites W3196386795 @default.
- W4225567722 cites W3196665967 @default.
- W4225567722 cites W3208071513 @default.
- W4225567722 doi "https://doi.org/10.1016/j.chemosphere.2021.133251" @default.