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Peng Zhang,Wei Zhang.Preparation of polymeric phosphate aluminum-ferric chlo-ride (PPAFC) and response surface methodology approach to optimize coagulation-flocculation process[J].Journal of Chemical and Pharmaceutical Research,2014,6(6):906-911.
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Record 5 from Compendex for: (((((Journal of Chemical and Pharmaceutical Research) WN ALL)) AND (({china} WN CO) AND ((2014) WN YR) AND ({journal of chemical and pharmaceutical research} WN ST))) AND ({zhang peng} WN AU)) , 1884-2016

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20151100648165
        Title:        Preparation of polymeric phosphate aluminum-ferric chloride (PPAFC) and response surface methodology approach to optimize coagulation-flocculation process
        Authors:         Zhang, Peng1; Zhang, Wei1
        Author affiliation:        1 School of Civil Engineering, Hunan University of Science and Technology, Xiangtan, Hunan, China
        Corresponding author:         Zhang, Peng
        Source title:        Journal of Chemical and Pharmaceutical Research
        Abbreviated source title:        J. Chem. Pharm. Res.
        Volume:        6
        Issue:        6
        Issue date:        2014
        Publication year:        2014
        Pages:        906-911
        Language:        English
        E-ISSN:         09757384
        Document type:        Journal article (JA)
        Publisher:        Journal of Chemical and Pharmaceutical Research, 3/668 Malviya Nagar, Jaipur, Rajasthan, India
        Abstract:        A composite flocculant, polymeric phosphate-aluminum ferric chloride (PPAFC), in this study was synthesized through hydrolytic polymerization of PAC, FeCl3.6H2O and Na2HPO4, which was used to coagulate humic acid. Scanning Electron Microscope (SEM) was employed to characterize the PPAFC. Humic acid being an important component of the aquatic environment has posed a potential threat to human health thus receiving wide attention. Therefore, the purpose of this study was also focused on removing humic acid from water by the coagulation-flocculation process, especially with the PPAFC. Since the flocculation performance was often determined both by the added flocculants and the operational parameters such as rapidly mixing time, rapidly mixing speed and pH, the response surface methodology (RSM) with humic acid removal efficiency as response value, was herein used to analyze the mutual effects of these parameters so that a better flocculation efficiency could be obtained under an optimum conditions. As a result, the RSM model was significant and for flocculation at a rapidly mixing time, pH and rapidly mixing speed of 2 min, 7.07 and 350 rpm, respectively, the humic acid removal efficiency was 94.28%. © 2014, Journal of Chemical and Pharmaceutical Research. All rights reserved.
        Number of references:        15
        Main heading:         Aluminum chloride
        Controlled terms:         Aluminum - Biological materials - Chlorination - Chlorine compounds - Coagulation - Efficiency - Flocculation - Health risks - Mixing - Organic acids - Polymers - Scanning electron microscopy - Surface properties
        Uncontrolled terms:         Coagulation-flocculation process - Ferric chloride - Flocculant - Flocculation efficiency - Flocculation performance - Humic acid - Hydrolytic polymerization - Response surface methodology
        Classification code:         461.2 Biological Materials and Tissue Engineering - 461.7 Health Care - 541.1 Aluminum - 741.1 Light/Optics - 802.2 Chemical Reactions - 802.3 Chemical Operations - 804 Chemical Products Generally - 804.1 Organic Compounds - 815.1 Polymeric Materials - 913.1 Production Engineering - 951 Materials Science
        Database:        Compendex
                Compilation and indexing terms, © 2015 Elsevier Inc.
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