A Study on the Application of Coffee Waste Biochar with Hydrothermal Carbonization and Adsorption Performance of Heavy Metal

2020 ◽  
Vol 37 (08) ◽  
pp. 557-563
Author(s):  
Jang Yeong Kim ◽  
Woori Cho ◽  
Jin Ju Lee ◽  
Jeong Woo Choi ◽  
Jae Seop Lee ◽  
...  
RSC Advances ◽  
2019 ◽  
Vol 9 (17) ◽  
pp. 9533-9545 ◽  
Author(s):  
Chaoyang Jia ◽  
Junhong Zhao ◽  
Liling Lei ◽  
Xiyang Kang ◽  
Ran Lu ◽  
...  

A magnetically separable adsorbent, anhydride-functionalized Fe3O4@SiO2@PEI-NTDA, was successfully constructed for removal of heavy metal ions from aqueous solution.


2016 ◽  
Vol 33 (2) ◽  
pp. 137-144
Author(s):  
Wonduck Chung ◽  
◽  
Minah Oh ◽  
Woori Cho ◽  
Seong-Kyu Park ◽  
...  

2016 ◽  
Vol 45 (23) ◽  
pp. 9704-9711 ◽  
Author(s):  
Yue Teng ◽  
Le Xin Song ◽  
Wei Liu ◽  
Li Zhao ◽  
Juan Xia ◽  
...  

Monodispersed Ni microspheres with surfaces uniformly covered by Ni dots were constructed through a facile solvothermal synthesis, showing an improved ability to remove Cd2+ ions even at high concentrations in water.


2014 ◽  
Vol 955-959 ◽  
pp. 135-139
Author(s):  
Zhong Lei Fan ◽  
Li Wen Wang ◽  
Da Zhuang Liu

Poly (allylamine)-silica composites (PAA/SiO2) was prepared via CPTCS as coupling agent and PAA as modifier. The structure and adsorption properties of silica gel, CPTCS-SiO2 and PAA/SiO2 were determinated by FTIR, structural analysis, TG analysis and adsorption test. The results show that PAA/SiO2 had excellent adsorption capacities for Cu (II), Pb (II) and Ni (II) in aqueous solutions. Its adsorption capacities can reach 0.972mmol/g for copper ion at experimental conditions. Besides, PAA/SiO2 also possessed excellent stability in the flow tests.


2015 ◽  
Vol 354 (1) ◽  
pp. 84-90 ◽  
Author(s):  
Waraporn Wichaita ◽  
Chanatip Samart ◽  
Boonyawan Yoosuk ◽  
Suwadee Kongparakul

2022 ◽  
Author(s):  
Qiushi Li ◽  
Ganmao Su ◽  
Ronggang Luo ◽  
Guanben Du ◽  
Linkun Xie ◽  
...  

Abstract The rapid global industrialization worsens the contamination of heavy metals in aquatic ecosystems on the earth. In this study, the green, ultrafine cellulose-based porous nanofibrous membranes for efficient heavy metal removal through incorporation of chitosan by the conventional and core-shell electrospinning ways were firstly obtained. The relations among parameters of electrospun solution, micro-morphology and porosity for nanofibers, the variation of chemical active sites and adsorption performance of biocomposite nanofibrous membranes for conventional and core-shell electrospinning as well as the adsorption effect factors of copper ions including initial concentration, pH of solution and interaction time were comprehensively investigated. The results show that the average diameter for conventional and core-shell ultrafine nanofibers at 50% chitosan and 30% chitosan loading can achieve 56.22 nm and 37.28 nm, respectively. The core-shell cellulose acetate/chitosan (CA/CS) biocomposite nanofibrous membranes induced the surface aggregation of copper ions to impede the further adsorption. The more uniform distribution for chemical adsorption sites can be obtained by the conventional single-nozzle electrospinning than by the core-shell one, which promotes the adsorption performance of copper ions and decreases the surface shrinkage of nanofibrous membranes during adsorption. The 30% CS conventional nanofibrous membranes at the pH=5 aqueous solution showed the optimum adsorption capacity of copper ions (86.4 mg/g). The smart combination of renewable biomass with effective chemical adsorptive sites, the electrospinning technology with interwoven porous structure and the adsorption method with low cost and facile operation shows a promising prospect for water treatment.


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