Coagulation characteristics of humic acid by using biopolymer and coagulant mixtures

碩士 === 中華科技大學 === 健康科技研究所 === 103 === Abstract Chitosan is a potential substitute for traditional aluminum salts in water treatment systems. This study compared the characteristics of humic acid (HA) removal by using acid-soluble chitosan, water-soluble chitosan, and coagulant mixtures of chitos...

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Bibliographic Details
Main Authors: Chong-Yu Wu, 吳重禹
Other Authors: Ying-Chien Chung
Format: Others
Language:zh-TW
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/46091794701116069228
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Summary:碩士 === 中華科技大學 === 健康科技研究所 === 103 === Abstract Chitosan is a potential substitute for traditional aluminum salts in water treatment systems. This study compared the characteristics of humic acid (HA) removal by using acid-soluble chitosan, water-soluble chitosan, and coagulant mixtures of chitosan with aluminum sulfate (alum) or polyaluminum chloride (PAC). In addition, we evaluated their respective coagulation efficiencies at various coagulant concentrations, pH values, turbidities, and hardness levels. Furthermore, we determined the size and settling velocity of flocs formed by these coagulants to identify the major factors affecting HA coagulation. The coagulation efficiency of acid- and water-soluble chitosan for 15 mg/l of HA was 74.4% and 87.5%, respectively. The optimal coagulation range of water-soluble chitosan (9–20 mg/l) was broader than that of acid-soluble chitosan (4–8 mg/l). Notably, acid-soluble chitosan/PACl and water-soluble chitosan/alum coagulant mixtures exhibited a higher coagulation efficiency for HA than for PACl or alum alone. Furthermore, these coagulant mixtures yielded an acceptable floc settling velocity and savings in both installation and operational expenses. Based on these results, we confidently assert that coagulant mixtures with a 1:1 mass ratio of acid-soluble chitosan/PACl and water-soluble chitosan/alum provide a substantially more cost-effective alternative to using chitosan alone for removing HA from water.