4.7 Article

A new process combination with high water flux and superior treatment performance for stevia sugar liquor

期刊

CHEMICAL ENGINEERING JOURNAL
卷 421, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.129901

关键词

Stevia; Coagulation; Membrane fouling; PAFC; FeSO4

资金

  1. Key Research and Development Plan of the Ministry of Science and Technology, China [2019YFD1100104, 2019YFC1906501]
  2. Beijing Natural Science Foundation, China [8192042]

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The study found that PAFC as a coagulant outperformed FeSO and was unaffected by pH, while the NF membrane was more effective in removing contaminants, more tolerant to membrane fouling, and less sensitive to pH. This combination of PAFC as coagulant without pH adjustment and ultrafiltration was found to be a simpler and superior treatment for stevia liquor with a high degree of contaminant separation.
Stevia sugar is widely used in food owing to its advantages of low calorie content and high sweetness. In the production of stevia sugar, stevia leaves are immersed in water to obtain a crude liquor, which contains many impurities, such as proteins, polysaccharides, organic acids, etc. These impurities are removed typically by coagulation and filtration. At present, suppliers of stevia mainly use a lime + ferrous sulfate (FeSO4) process as the pretreatment, but residual SO2- can cause hydrogen sulfide corrosion and Ca can affect the safety of subsequent boilers in the process. In this study, polyaluminium ferric chloride (PAFC) was evaluated as a superior coagulant to FeSO, together with ultrafiltration (UF) and nanofiltration to remove flocs and other organic contaminants. It was found that coagulation by PAFC out-performed FeSO and was unaffected by pH, while the performance of FeSO was sensitive to pH. At pH 10, FeSO4 had an enhanced coagulation efficiency, but formed soluble Fe2+ complexes with organic substances in the original solution, which adversely affected the quality of the filtrate. Compared with a UF membrane, the NF membrane was more effective in removing contaminants, and more tolerant to membrane fouling. In addition to hydrodynamic flux, measurement of trans-membrane electrical current were used to reflect the severity of membrane fouling. The combination of PAFC as coagulant without pH adjustment, and ultrafiltration, was found to be a simpler and superior treatment for stevia liquor with a high degree of contaminant separation, and avoidance of problems caused by SO and Ca.

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