high purity poly aluminum ferric silicate chloride producers
high purity poly aluminum ferric silicate chloride producers
high purity poly aluminum ferric silicate chloride producers
high purity poly aluminum ferric silicate chloride producers
high purity poly aluminum ferric silicate chloride producers
preparation and coagulation efficiency of polyaluminium ferric silicate

Preparation and coagulation efficiency of polyaluminium ferric silicate

Abstract References (27) Cited by (40) Journal of Environmental Sciences Volume 23, Issue 7, July 2011, Pages 1122-1128 Preparation and coagulation efficiency of polyaluminium ferric silicate chloride composite coagulant from wastewater of high-purity graphite production Xiaoxia Niu , Xili Li , Jihong Zhao , Yigang Ren , Yanqin Yang Add to Mendeley

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preparation and coagulation efficiency of polyaluminium ferric silicate

Preparation and coagulation efficiency of polyaluminium ferric silicate

The aim of the present work was to produce a polyaluminium ferric silicate chloride (PAFSiC) coagulant from acidic and alkaline wastewater of purifying graphite by roasting, and subsequently to evaluate coagulation efficiency of the reagent by treating surface water from the Yellow River as well as municipal wastewater in comparison with the con...

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preparation of poly aluminum-ferric chloride (pafc) coagulant by

Preparation of Poly Aluminum-Ferric Chloride (PAFC) Coagulant by

Poly aluminum-ferric Chloride (PAFC) is a new type of high efficiency coagulant. In this study, high iron type gangue is used as a main raw material. It is calcined at 675 ¡ãC for 1 h and 3% CaF 2 is added to the calcined powder and reacted with 20% hydrochloric acid at 93 ¡ãC for 4 h.

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study on the preparation of polysilicate ferric flocculant and its

Study on the preparation of polysilicate ferric flocculant and its

Niu et al. prepared poly-aluminum ferric silicate chloride (PAFSiC) coagulant with acidic and alkaline wastewater of purifying graphite as raw materials. Results showed that PAFSiC performed more efficiently than PAC in removing turbidity, chemical oxygen demand (COD), and total phosphate (TP) in the Yellow River as well as municipal wastewater treatment [21] .

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study on the preparation technology of poly-silicate-aluminum-ferric

Study on The Preparation Technology of Poly-Silicate-Aluminum-Ferric

[10] Niu X X, Li X L, Zhao J H, Ren Y G and Yang Y Q 2011 Preparation and coagulation eciency of polyaluminium ferric silicate chloride composite coagulant from wastewater of high-purity graphite production J. Environ. Sci. 23 1122-28. Crossref; Google Scholar

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high-poly-aluminum chloride sulfate coagulants and their coagulation

High-poly-aluminum chloride sulfate coagulants and their coagulation

Abstract High-poly-aluminum chloride sulfate (HPACS) coagulants with different [SO 42? ]/ [Al 3+] molar ratio ( S) were prepared and proved to have high coagulation efficiency for the removal of humic acid and strong stability for storage and application.

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synthesis and coagulation performance of composite poly-aluminum-ferric

Synthesis and coagulation performance of composite poly-aluminum-ferric

Composite poly-ferric-silicate chloride (PFSiC) coagulants were produced at room temperature (22 o C), according to a modified procedure of Zouboulis and Moussas (2008) [25] and Tolkou et al

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preparation and coagulation efficiency of polyaluminium ferric silicate

Preparation and coagulation efficiency of polyaluminium ferric silicate

Preparation and coagulation efficiency of polyaluminium ferric silicate chloride composite coagulant from wastewater of high-purity graphite production.

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preparation of poly aluminum-ferric chloride (pafc) coagulant by

Preparation of Poly Aluminum-Ferric Chloride (PAFC) Coagulant by

Poly aluminum-ferric Chloride (PAFC) is a new type of high efficiency coagulant. In this study, high iron type gangue is used as a main raw material.

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application of composite pre-polymerized coagulants for the treatment

Application of Composite Pre-Polymerized Coagulants for the Treatment

Composite poly-aluminum¨Cferric¨Csilicate¨Cchloride (PSiFAC) coagulants were produced at room temperature (22 C), according to the procedure proposed by Tolkou et al. (2015) [30] under various experimental conditions and by applying di erent mixing orders of the used chemicals. All chemical reagents were of analytical pure chemical grade.

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