Unbound MEDLINE

Analysis and optimization of flocculation activity and turbidity reduction in kaolin suspension using pectin as a biopolymer flocculant. Water science and technology : a journal of the International Association on Water Pollution Research [Water Sci Technol] Journal article

 
TitleAnalysis and optimization of flocculation activity and turbidity reduction in kaolin suspension using pectin as a biopolymer flocculant.
Author(s)Ho YC, Norli I, Alkarkhi AF, Morad N 
InstitutionSchool of Industrial Technology, Universiti Sains Malaysia, 11800, Minden Pulau Pinang, Malaysia E-mail: yeekchia@yahoo.com; norlii@usm.my; abbas@usm.my; nhashima@usm.my.
SourceWater Sci Technol 2009; 60(3):771-81.
AbstractThe performance of pectin in turbidity reduction and the optimum condition were determined using Response Surface Methodology (RSM). The effect of pH, cation's concentration, and pectin's dosage on flocculating activity and turbidity reduction was investigated at three levels and optimized by using Box-Behnken Design (BBD). Coagulation and flocculation process were assessed with a standard jar test procedure with rapid and slow mixing of a kaolin suspension (aluminium silicate), at 150 rpm and 30 rpm, respectively, in which a cation e.g. Al(3 + ), acts as coagulant, and pectin acts as the flocculant. In this research, all factors exhibited significant effect on flocculating activity and turbidity reduction. The experimental data and model predictions well agreed. From the 3D response surface graph, maximum flocculating activity and turbidity reduction are in the region of pH greater than 3, cation concentration greater than 0.5 mM, and pectin dosage greater than 20 mg/L, using synthetic turbid wastewater within the range. The flocculating activity for pectin and turbidity reduction in wastewater is at 99%.
Languageeng
Pub Type(s)Journal Article
PubMed ID19657173
  
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