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Response surface methodology-optimized removal of chloramphenicol pharmaceutical from wastewater using Cu3(BTC)2-derived porous carbon as an efficient adsorbent - 10/12/19

Doi : 10.1016/j.crci.2019.09.004 
Thuan Van Tran a, b, Duyen Thi Cam Nguyen a, b, c, Hanh Thi Ngoc Le d, Huu Loc Ho b, e, Trung Thanh Nguyen f, Van-Dat Doan g, Trinh Duy Nguyen a, b, ⁎ , Long Giang Bach a, b, ⁎
a Center of Excellence for Green Energy and Environmental Nanomaterials (CE@GrEEN), Nguyen Tat Thanh University, 300A Nguyen Tat Thanh, District 4, Ho Chi Minh City, 755414, Viet Nam 
b NTT Hi-Tech Institute, Nguyen Tat Thanh University, 300A Nguyen Tat Thanh, District 4, Ho Chi Minh City, 755414, Viet Nam 
c Department of Pharmacy, Nguyen Tat Thanh University, 298–300A Nguyen Tat Thanh, Ward 13, District 4, Ho Chi Minh City, 700000, Viet Nam 
d Institute of Hygiene and Public Health, 159 Hung Phu, Ward 8, District 8, Ho Chi Minh City, 700000, Viet Nam 
e Nanyang Environment and Water Research Institute, Nanyang Technological University, Singapore, 639798, Singapore 
f Faculty of Engineering, Technology, Environment, An Giang University, Viet Nam 
g Faculty of Chemical Engineering, Industrial University of Ho Chi Minh City, 12 Nguyen Van Bao, Ward 4, Go Vap District, Ho Chi Minh City, Viet Nam 

∗Corresponding author. Center of Excellence for Green Energy and Environmental Nanomaterials (CE@GrEEN), Nguyen Tat Thanh University, 300A Nguyen Tat Thanh, District 4, Ho Chi Minh City, 755414, Viet Nam.Center of Excellence for Green Energy and Environmental Nanomaterials (CE@GrEEN)Nguyen Tat Thanh University300A Nguyen Tat ThanhDistrict 4Ho Chi Minh City755414Viet Nam∗∗Corresponding author. NTT Hi-Tech Institute, Nguyen Tat Thanh University, 300A Nguyen Tat Thanh, District 4, Ho Chi Minh City, 755414, Viet Nam.NTT Hi-Tech InstituteNguyen Tat Thanh University300A Nguyen Tat ThanhDistrict 4Ho Chi Minh City755414Viet Nam

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Abstract

The prevalent presence of antibiotic compounds (e.g., chloramphenicol [CAP]) in wastewater and effluents without pretreatment can bring adverse impacts on human and animals; therefore, the remediation of these substrates is emergently essential. To synthesize the novel mesoporous carbon for chloramphenicol remediation, we pyrolyzed a species of copper-based metal-organic framework, namely Cu3(BTC)2 (BTC = 1,3,5-benzenetricarboxylic acid), at 700 °C, characterized by several physical analytical techniques, such as X-ray powder diffraction, scanning/transmission electron microscopy, and N2 adsorption/desorption isotherm measurement. The procedure to optimize the optimum conditions for the removal of CAP was conducted based on investigating three factors including concentration (1.6–18.4 mg/L), adsorbent dosage (0.08–0.92 g/L), and pH (2.6–9.4). As a consequence, up to 87.6% of chloramphenicol could be removed from water under these conditions. Moreover, the effects of contact time (0–120 min) and concentration (10–40 mg/L), as well as other adsorption kinetic and isotherm models, were vigorously studied. With a relatively high surface area (78.8 m2/g), many functional groups on the surface (2.44 mmoL/g for acidic and base groups), and high maximum adsorption capacity (37.2 mg/g), the mesoporous carbon from Cu3(BTC)2 can be used as an efficient adsorbent for CAP removal from wastewater.

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Highlights

•
The novel CMC700 was produced from the pyrolysis of Cu3(BTC)2 metal-organic framework.
•
Response surface methodology was used to optimize chloramphenicol adsorption.
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Kinetic and isotherm models for chloramphenicol adsorption over CMC700 were studied.
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The maximum adsorption capacity was 37.2 mg/g.

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Keywords : Response surface methodology, Metal-organic framework, Mesoporous carbon, Cu3(BTC)2, Chloramphenicol antibiotic


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Vol 22 - N° 11-12

P. 794-803 - novembre 2019 Regresar al número
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  • Preparation and characterization of antifungal colloidal copper nanoparticles and their antifungal activity against Fusarium oxysporum and Phytophthora capsici
  • Ngoc-Diep Pham, Minh-Man Duong, Minh-Vien Le, Hoang Anh Hoang, Le-Kieu-Oanh Pham
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  • Thuan Van Tran, Duyen Thi Cam Nguyen, Hanh Thi Ngoc Le, Dai-Viet N. Vo, Van-Dat Doan, Van-Phuc Dinh, Hong-Tham Thi Nguyen, Trinh Duy Nguyen, Long Giang Bach

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