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생활폐기물 소각재를 이용하여 합성한 클링커의 중금속 및 수화반응 거동에 관한 연구
안지환,한기천,한기석,Ahn Ji Whan,Han Gi Chun,Han Ki Suk 한국자원리싸이클링학회 2004 資源 리싸이클링 Vol.13 No.4
The intension of this study is to produce ordinary portland cement using ash, both bottom ash and fly ash, obtained from municipal solid waste incineration ash (MSWI). We used limestone, waste molding sand, shale, slag from converting furnaces and fly ash as main raw materials and mixed them, setting the lime saturation factor (LSF) within 91.0, the silica modulus (SM) within 2.40, and iron modulus (IM) within 1.80. We conducted tests adding bottom ash alone 1, 2 and 3% by weight, respectively, and a mixture of bottom ash 0.9% and fly ash 0.1 % by weight. The result of analysis on clinker shows that the more ash is added, the lower the burnability index (B.I.) falls, lowering the mineral evolution of calcium silicate accordingly. From the measurement of compressive strength we have learned that the more ash is used, the lower the strength becomes. 생활폐기물 소각재(바닥재+비산재)를 이용하여 보통 포틀랜드 시멘트를 제조하고자 하였다. 주원료로는 석회석, 폐주물사, shale, 전로슬래그 및 fly ash를 이용하였으며, modulus를 LSF 91.0, SM 2.40, IM 1.80의 수준으로 배합하였다. 바닥재의 경우는 배합물에 1, 2, 3wt.%까지 첨가하였으며, 바닥재와 비산재의 혼합시료는 각각의 함량을 0.9 및 0.1 wt.%로 하여 첨가하였다. 클링커 분석결과 소성성 지수(B.I)는 소각재가 많이 첨가 될수록 낮아지는 것으로 나타났으며, calcium silicate 광물의 발달이 저하되는 것을 확인 할 수 있었다 또한, 압축강도 측정결과, 소각재 사용량이 증가함에 따라 강도가 저하되는 것으로 확인되었다.
고로슬라그의 이용에 관한 연구 (II) (천연원료를 이용한 Slag-Ceramics)
지응업,이전,한기석,이재락,Chi, Ung-Up,Rhee, Jhun,Han, Ki-Suk,Lee, Jae-Rock 한국세라믹학회 1981 한국세라믹학회지 Vol.18 No.1
A glass-ceramics based on blast-furnace slag, with some additives to the theoretical composition in order to control properties of mother glass and the heat treatment conditions, has been investigated. The raw materials in this study were blast-furnace slag, serpentine, feldspar and quartz as mother glass ingredients. Titanium dioxide and chromite were used as the nucleating agents. Batch compositions of the prepared glasses and ceraming conditions were found by trial and error method. The optimum conditions were confirmed by analyzing several measured physical properties such as density change during heat treatment, microhardness of slag-ceramics prepared, viscosity change of glass at heat treatment temperatures, nucleation density change, dilatometric properties, differential thermal analysis, identification of the grown crystal and crystal sizes. The batch composition feasible to prepare slag-ceramics was 40% of blast-furnace slag, 25% of serpentine, 18% of feldspar and 17% of silica sand. Three percent titanium dioxide and 1% chromite of the mother glass were added as nucleating agents. The ceraming conditions under which the slag-ceramics having considerably good properties can be developed found as: "The glass was heated at 75$0^{\circ}C$ for 2 hours for nucleation, and the temperature was raised up to 1, 00$0^{\circ}C$ with a rate of 0.75$^{\circ}C$/min for crystal growth.owth.
안지환,조진상,김형석,한기석,김환,Ahn, Ji-Whan,Cho, Jin-Sang,Kim, Hyung-Seok,Han, Gi-Chun,Han, Ki-Suk,Kim, Hwan 한국세라믹학회 2003 한국세라믹학회지 Vol.40 No.10
알칼리 자극제의 종류에 따른 고로수쇄슬래그의 수화 및 물리적 특성을 조사하였다 활성화제는 $Na_2$SiO$_3$, $Na_2$CO$_3$, NaOH, $Na_2$SO$_4$를 사용하였고, $Na_2$SiO$_3$, $Na_2$CO$_3$, $Na_2$SO$_4$는 $Na_2$O, NaOH는 $\frac{1}{2}$$Na_2$O로 환산하여 1, 3, 5, 7 wt%를 첨가한 후 W/S=0.5로 실험을 실시하였다. 또한, 압축강도 실험은 OPC에 대해 각각 30 wt% 첨가하여 실험을 하였다. 활성화제의 종류에 따라 주요 수화생성물은 C-S-H, $C_4$AH$_{13}$, AFt, Al(OH)$_3$ 등이었으며, $Na_2$CO$_3$의 경우가 가장 큰 슬래그의 수화율을 보였다. $Na_2$SO$_4$를 사용하였을 때 압축강도가 가장 크게 나타났다. This paper examines the hydration and physical properties of alkali-blast furnace slag cement activated by Na$_2$SiO$_3$, Na$_2$CO$_3$, NaOH, Na$_2$SO$_4$. Four levels of Na$_2$O content in mixtures, 1, 3, 5, and 7 wt%, were investigated, and a W/S ratio 0.5 was used to prepare paste and mortar specimens. Compressive strength measurement of mortars was carried out adding alkali activated slag 30 wt% to OPC. The main hydration products with alkali activator kinds were C-S-H,C$_4$AH$\_$13/, AFt and Al(OH)$_3$ etc. For using Na$_2$CO$_3$ activated slag, hydration ratio of slag was higher than that of different activators, and Na$_2$SO$_4$ activated slag mortar appeared the highest compressive strength values at 28 days with activator content of 5 and 7 wt%.
생활폐기물 소각재중 바닥재를 이용한 11CaOㆍ$7Al_2O_3$ㆍ$CaCl_2$클링커의 제조
안지환,김형석,한기천,조진상,한기석,Ahn Ji-Whan,Kim Hyung-Seok,Han Gi-Ckun,Cho Jin-Sang,Han Ki-Suk 한국자원리싸이클링학회 2002 資源 리싸이클링 Vol.11 No.4
The clinker of which main component was calcium-chloroaluminate ($l1CaOㆍ7Al_2$$O_3$ㆍ$CaCl_2$), was synthesized with the bottom ash of municipal solid waste incinerator ash. The hydration mechanism and synthesis temperature of calcium-chloro-aluminate were investigated. The synthesized clinker was blended with a cement. It was substituted with 3~13 wt.% for clinker and $CaSO_4$ of ordinary portland cement. The compressive strength and the content of leached heavy metals of its mortar were measured. Calcium-chloroaluminate was synthesized above $800^{\circ}C$ and its main hydrate was ettringite ($3CaOㆍAl_2$$O_3$ㆍ$3CaSO_4$ㆍ$32H_2$O). The calcium-chloroaluminate was also synthesized above $800^{\circ}C$ with the bottom ash of which size fraction was below 30 mesh mainly. The compressive strength of the blended cement mortar was increased as the additive content of the clinker synthesized from the bottom ash was increased by 11 wt.%. The concentration of heavy metals leached from each mortar was satisfied with the value of the environmental standards and regulations. 생활폐기물의 소각으로 발생되는 바닥재(bottom ash)로 calcium-chloroaluminate($l1CaOㆍ7Al_2$$O_3$ㆍ$CaCl_2$)가 함유된 클링커를 제조한 후 이들 클링커의 수화반응성 및 보통 포틀랜드 시멘트와 혼합 사용할 때의 압축강도 및 중금속 용출특성을 연구하였다. 시약으로 calcium-chloroaluminate를 제조한 결과. calcium-chloroaluminate는 80$0^{\circ}C$부터 생성되며, $CaSO_4$ 및 $Ca(OH)_2$ 와의 수화반응에 의해 ettringite($3CaOㆍAl_2$$O_3$ㆍ$3CaSO_4$ㆍ$32H_2$O)가 생성된다. 4 mesh 이하의 바닥재를 분쇄하지 않고 온도별로 1시간 소성한 결과, 80$0^{\circ}C$부터 calcium-chloroaluminate가 30 mesh 이하의 입도에서 합성되었다. $1,000^{\circ}C$에서 소성한 30 mesh 이하의 바닥재에 무수석고($CaSO_4$)를 10 : 6의 중량비로 혼합한 후 이들 혼합물을 보통 포틀랜드 시멘트에 3~13 wt.% 첨가하여 제조한 모르타르의 압축강도를 측정한 결과, 이들 혼합물의 치환량이 11 wt.%까지 증가됨에 따라 보통 포틀랜드 시멘트의 압축강도보다 높았다. 각 모르타르 공시체를 1 mm 이하로 분쇄하여 중금속 용출시험 결과, 용출된 중금속의 농도는 환경규제치보다 낮았다.
폐콘크리트로부터 회수된 시멘트 페이스트 미분말의 시멘트 원료화 연구
안지환,김형석,조진상,한기천,한기석,김환,Ahn, Ji-Whan,Kim, Hyung-Seok,Cho, Jin-,Sang,Han, Gi-Chun,Han, Ki-Suk,Kim, Hwan 한국세라믹학회 2003 한국세라믹학회지 Vol.40 No.8
건설폐기물 중 폐콘크리트를 40$0^{\circ}C$로 가열한 후 ball mill로 분쇄하여 재생골재를 생산할 때 발생된 미분말을 보통 포틀랜드 시멘트의 SiO$_2$, CaO, A1$_2$O$_3$원에 대한 대체원료물질로서 활용하고자 하였다. 클링커를 제조하기 위한 주원료는 석회석, shale, 전로슬래그, fly ash를 이용하였고, modulus는 LSF:91.0, SM:2.60, IM:1.60로 고정한 후 shale에 대해 미분말을 25, 50, 15, 100%까지 치환하여 클링커를 제조하였다. 클링커의 주요생성광물은 1,45$0^{\circ}C$에서 OPC와 같은 광물상인 $C_3$S, $\beta$-C$_2$S, $C_3$A, $C_4$AF 상으로 나타났다. 조합원료의 반응성을 비교하기 위해 시차열분석을 실시하고, 소성성지수를 구한 결과, 클링커의 광물상 생성온도는 plain과 유사했으며, 소성성지수는 48.6-51.4 정도로 나타났다. The fine powder produced by heating and grinding of the waste concrete in the waste construction was investigated whether utilize as substitution raw material of SiO$_2$, CaO, and Al$_2$O$_3$ source for OPC clinker manufacture is possible or not. In order to synthesize OPC clinker, limestone, shale, converter slag and fly ash were used as main raw materials, and modulus was fixed LSF 91.0, SM 2.60, IM 1.60. The synthesized clinkers were characterized. The Main products of synthesized clinker were C$_3$S, ${\beta}$-C$_2$S, C$_3$A, C$_4$AF as OPC clinker at 1,43$^{\circ}C$. As a result of TG-DTA and burnability index(B.U) analysis of each raw mixtures, the formation temperature of clinker phases was similar and B.I was showed easy burning as 48.6∼51.4.