Literature DB >> 25176300

Impact of diatomite on the slightly polluted algae-containing raw water treatment process using ozone oxidation coupled with polyaluminum chloride coagulation.

Wenchao Hu1, Chunde Wu, Aiyin Jia, Zhilin Zhang, Fang Chen.   

Abstract

The impact of adding diatomite on the treatment performance of slightly polluted algae-containing raw water using ozone pre-oxidation and polyaluminum chloride (PAC) coagulation was investigated. Results demonstrated that the addition of diatomite is advantageous due to reduction of the PAC dose (58.33%) and improvement of the removal efficiency of algae, turbidity, and dissolved organic matter (DOM) in raw water. When the ozone concentration was 1.0 mg L⁻¹ and the PAC dosage was 2.5 mg L⁻¹, the removal rates of algae, turbidity, UV254, and TOC were improved by 6.39%, 7.06%, 6.76%, and 4.03%, respectively, with the addition of 0.4 g L⁻¹ diatomite. It has been found that the DOM presented in the Pearl River raw water mainly consisted of small molecules (<1 kDa) and large ones (> 50 kDa). After adding diatomite (0.4 g L⁻¹), the additional removal of 5.77% TOC and 14.82% UV254 for small molecules (<1 kDa) of DOM, and 8.62% TOC and 7.33% UV254 for large ones (>50 kDa) could be achieved, respectively, at an ozone concentration of 1.0 mg L⁻¹ and a PAC dose of 2.5 mg L⁻¹. The growth of anabaena flos-aquae (A.F.) was observed by an atomic force microscope (AFM) before and after adding diatomite. AFM images demonstrate that diatomite may have a certain adsorption on A.F.

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Keywords:  algae; diatomite; dissolved organic matter; enhanced coagulation; removal

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Year:  2014        PMID: 25176300     DOI: 10.1080/09593330.2014.917710

Source DB:  PubMed          Journal:  Environ Technol        ISSN: 0959-3330            Impact factor:   3.247


  1 in total

1.  Eutrophic water purification efficiency using a combination of hydrodynamic cavitation and ozonation on a pilot scale.

Authors:  Wei-Xin Li; Chuan-Dong Tang; Zhi-Lin Wu; Wei-Min Wang; Yu-Feng Zhang; Yi Zhao; Giancarlo Cravotto
Journal:  Environ Sci Pollut Res Int       Date:  2014-11-29       Impact factor: 4.223

  1 in total

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