Coagulation of Chitin Production Wastewater from Shrimp Scraps with By-Product Chitosan and Chemical Coagulants

被引:21
作者
Nguyen Van Nhi Tran [1 ]
Yu, Qiming Jimmy [1 ]
Tan Phong Nguyen [2 ]
Wang, San-Lang [3 ]
机构
[1] Griffith Univ, Sch Engn & Built Environm, Civil & Environm Engn, Nathan Campus, Brisbane, Qld 4111, Australia
[2] Ho Chi Minh City Univ Technol, Fac Environm & Nat Resources, VNU HCM, Ho Chi Minh City 70000, Vietnam
[3] Tamkang Univ, Dept Chem, New Taipei 25137, Taiwan
关键词
high strength wastewater treatment; turbidity removal; chitin and chitosan; chemical coagulation; crude protein recovery; ALPHA-GLUCOSIDASE INHIBITORS; NATURAL COAGULANTS; PLANT; SALT; EXOPOLYSACCHARIDES; FLOCCULATION; RECLAMATION; ADSORPTION; CONVERSION; RECOVERY;
D O I
10.3390/polym12030607
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Chitin production wastewater contains nutrient-rich organic and mineral contents. Coagulation of the wastewater with a natural coagulant such as by-product chitosan would be an economical and environmentally friendly method of treatment. This study investigated the treatment efficiencies of a preliminary sedimentation process followed by coagulation. The removal efficiencies for wastewater parameters were evaluated and compared for coagulants including by-product chitosan, polyaluminum chloride, and polyacryamide. The evaluation was based on the removal of wastewater turbidity and other criteria, including tCOD, sCOD, TKN, NH4+-N, TP, TSS, calcium, and crude protein. The results showed that the preliminary sedimentation (before coagulation) can remove over 80% of turbidity and more than 93% of TSS at pH 4 in 30 min. At optimal conditions, when the ratio of crude protein and calcium was 4.95, by-product chitosan dose of 77.5 mg.L-1 and pH = 8.3, the wastewater characteristics changes were tCOD 23%, sCOD 32%, TKN and ammonium 25%, TP 90%, TSS 84%, Ca2+ 29%, and crude protein 25%. The residue recovered through coagulation consists of up to 55 mg.g(-1) crude protein, which is used for animal feed or crop fertilizer.
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页数:17
相关论文
共 56 条
[21]   Progress in the development and use of ferrate(VI) salt as an oxidant and coagulant for water and wastewater treatment [J].
Jiang, JQ ;
Lloyd, B .
WATER RESEARCH, 2002, 36 (06) :1397-1408
[22]   Production and Characterization of Antioxidant Properties of Exopolysaccharide(s) from Peanibacillus mucilaginosus TKU032 [J].
Liang, Tzu-Wen ;
Tseng, Shih-Chun ;
Wang, San-Lang .
MARINE DRUGS, 2016, 14 (02)
[23]   Recent Advances in Exopolysaccharides from Paenibacillus spp.: Production, Isolation, Structure, and Bioactivities [J].
Liang, Tzu-Wen ;
Wang, San-Lang .
MARINE DRUGS, 2015, 13 (04) :1847-1863
[24]   Exopolysaccharides and Antimicrobial Biosurfactants Produced by Paenibacillus macerans TKU029 [J].
Liang, Tzu-Wen ;
Wu, Chia-Chen ;
Cheng, Wei-Ting ;
Chen, Yu-Chi ;
Wang, Chuan-Lu ;
Wang, I-Li ;
Wang, San-Lang .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2014, 172 (02) :933-950
[25]  
Mao XZ, 2019, OLIGOSACCHARIDES OF CHITIN AND CHITOSAN: BIO-MANUFACTURE AND APPLICATIONS, P107, DOI 10.1007/978-981-13-9402-7_6
[26]  
Muzzarelli R. A., 2013, CHITIN
[27]  
Nageswara R.L., 2015, International Journal of Engineering and Applied Sciences, P50
[28]   Adsorption of dyes and heavy metal ions by chitosan composites: A review [J].
Ngah, W. S. Wan ;
Teong, L. C. ;
Hanafiah, M. A. K. M. .
CARBOHYDRATE POLYMERS, 2011, 83 (04) :1446-1456
[29]   Chitosan for coagulation/flocculation processes - An eco-friendly approach [J].
Renault, F. ;
Sancey, B. ;
Badot, P. -M. ;
Crini, G. .
EUROPEAN POLYMER JOURNAL, 2009, 45 (05) :1337-1348
[30]   Research on 'high-pH precipitation treatment' for RO concentrate minimization and salt recovery in a municipal groundwater desalination facility [J].
Rioyo, Javier ;
Aravinthan, Vasantha ;
Bundschuh, Jochen ;
Lynch, Mark .
DESALINATION, 2018, 439 :168-178