2004•Ha'erbin gongye daxue xuebaoRequires access

Inactivation effects on cyclops of zooplankton and influencing factors of alternative oxidants

Dong Un An

Open publisher page 4 citations

Abstract

The inactivation effects of such alternative oxidants as chlorine, chlorine dioxide, ozone, and potassium permanganate on Cyclops of zooplankton and the influencing factors under various conditions such as the dose of oxidant, organic substance content, pH value, etc. are discussed, and the synergic removal effect on Cyclops with chlorine dioxide pre-oxidation followed by clarification process is investigated. The results show that chlorine dioxide possess more favorable inactivation effect on Cyclops than other oxidants. The 100% of inactivation effect may be attained by 1. 0 mg/L of chlorine dioxide, on which external factors such as organic matter content and pH value had little influence. The removal effect on Cyclops was further strengthened by clarification process after chlorine dioxide pre-oxidation.

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What this paper is about

The inactivation effects of such alternative oxidants as chlorine, chlorine dioxide, ozone, and potassium permanganate on Cyclops of zooplankton and the influencing factors under various conditions such as the dose of oxidant, organic substance content, pH value, etc. are discussed, and the synergic removal effect on Cyclops with chlorine dioxide pre-oxidation followed by clarification process is investigated. The results show that chlorine dioxide possess more favorable inactivation effect on Cyclops than other oxidants. The 100% of inactivation effect may be attained by 1. 0 mg/L of chlorine dioxide, on which external factors such as organic matter content and pH value had little influence. The removal effect on Cyclops was further strengthened by clarification process after chlorine dioxide pre-oxidation.

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Available abstract

The inactivation effects of such alternative oxidants as chlorine, chlorine dioxide, ozone, and potassium permanganate on Cyclops of zooplankton and the influencing factors under various conditions such as the dose of oxidant, organic substance content, pH value, etc. are discussed, and the synergic removal effect on Cyclops with chlorine dioxide pre-oxidation followed by clarification process is investigated. The results show that chlorine dioxide possess more favorable inactivation effect on Cyclops than other oxidants. The 100% of inactivation effect may be attained by 1. 0 mg/L of chlorine dioxide, on which external factors such as organic matter content and pH value had little influence. The removal effect on Cyclops was further strengthened by clarification process after chlorine dioxide pre-oxidation.

Key concepts: Cyclops, Chlorine dioxide, Chlorine, Potassium permanganate, Ozone, Chemistry, Environmental chemistry, Zooplankton

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