A Novel Bio-carrier Fabricated Using 3D Printing Technique for Wastewater Treatment

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作者
Yang Dong
Shu-Qian Fan
Yu Shen
Ji-Xiang Yang
Peng Yan
You-Peng Chen
Jing Li
Jin-Song Guo
Xuan-Ming Duan
Fang Fang
Shao-Yang Liu
机构
[1] Key Laboratory of Reservoir Aquatic Environment of CAS,Department of Chemistry and Physics
[2] Chongqing Institute of Green and Intelligent Technology,undefined
[3] Chinese Academy of Sciences,undefined
[4] Key Laboratory of the Three Gorges Reservoir Region’s Eco-Environments of MOE,undefined
[5] Chongqing University,undefined
[6] Troy University,undefined
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摘要
The structure of bio-carriers is one of the key operational characteristics of a biofilm reactor. The goal of this study is to develop a series of novel fullerene-type bio-carriers using the three-dimensional printing (3DP) technique. 3DP can fabricate bio-carriers with more specialized structures compared with traditional fabrication processes. In this research, three types of fullerene-type bio-carriers were fabricated using the 3DP technique and then compared with bio-carrier K3 (from AnoxKaldnes) in the areas of physicochemical properties and biofilm growth. Images acquired by 3D profiling and SEM indicated that the surface roughness of the 3DP bio-carrier was greater than that of K3. Furthermore, contact angle data indicated that the 3DP bio-carriers were more hydrophilic than K3. The biofilm on the 3DP bio-carriers exhibited higher microbial activity and stronger adhesion ability. These findings were attributed to excellent mass transfer of the substrate (and oxygen) between the vapour-liquid-solid tri-phase system and to the surface characteristics. It is concluded that the novel 3DP fullerene-type bio-carriers are ideal carriers for biofilm adherence and growth.
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