개선된 폴리염화알루미늄의 합성 및 응집 특성

The synthetic technology of improved polyaluminiumchloride (IPAC) similar to characteristics of PACS was established with minimum expense for modifying existing production line. The conditions for activating silicate was studied before the synthesis of IPAC, and the IPAC was synthesised with raw mat...

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Veröffentlicht in:Journal of the Korean Chemical Society 2004, 48(3), , pp.273-282
1. Verfasser: 최용욱(Choi, Yong-Wook)
Format: Artikel
Sprache:kor
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Zusammenfassung:The synthetic technology of improved polyaluminiumchloride (IPAC) similar to characteristics of PACS was established with minimum expense for modifying existing production line. The conditions for activating silicate was studied before the synthesis of IPAC, and the IPAC was synthesised with raw materials such as aluminumhydroxide and concentrated hydrochloric acid, followed by adding activated silicate and alginate. The specification of product, chemical structure, and coagulating properties were tested by using specification testing method, instrumental analytical method, and Jar tester, respectively. As a result, the product, IPAC, contained aluminium oxide content more than 17%, and no precipitation was shown at all while the IPAC solution was preserved, and the larger floc and faster coagulation were represented compared to existing PAC under the same conditions. It was suggested that these synthetic technology could be applied to the existing production line for producing PAC without approximately cost raising factor because of adding sulfuric acid-activated silicate instead of sodium sulfate. 기존 설비를 이용하여 최소한의 공정 비용으로 PACS의 특성에 버금가는 개선된 폴리염화알루미늄(IPAC)을 합성하는 기술을 확립하였다. IPAC을 합성하기 전 규산염을 활성화하는 조건을 연구하였고, 수산화알루미늄과 진한 염산을 원료로 하여 활성화된 규산염과 알긴산염을 첨가하여 IPAC을 제조하였다. 제품의 규격, 구조 및 응집특성을 규격시험법, 기기분석법 및 Jar test 장치로 각각 시험연구 하였다. 본 연구에서 합성한 IPAC은 산화 알루미늄 함량이 17%이상 되었으나 원액 보관 시 전혀 침전 생성이 없었으며, 동일 조건에서 PAC 보다 더 큰 floc을 생성하였고 침강속도도 빨랐다. 현재 이 제조기술을 현장에 적용시킨다면 제조설비의 재투자 없이 기존 설비를 이용하되, 추가 반응시약 비용은 기존 공정 상 첨가하는 망초를 넣지 않아도 되기 때문에 거의 원가상승 요인 없이 고효율 무기 고분자응집제를 합성할 수 있었다.
ISSN:1017-2548
2234-8530