• Title/Summary/Keyword: lignosulfonate

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A Comparison Study Between Evaluation Methods on the Rheological Properties of Cement Paste (시멘트 페이스트의 유동 특성에 관한 평가방법 비교연구)

  • Han Cheon-Goo;Lee Gun-Cheol;Heo Young-Sun
    • Journal of the Korea Institute of Building Construction
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    • v.6 no.3 s.21
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    • pp.75-82
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    • 2006
  • This study investigates the influence of various blending factors on cement paste fluidity and find out the most effective evaluation method of cement paste flow, comparing flow test apparatuses such as ring flow(R-F), flow cone(F-C) and mini slump(M-S). A viscometer also measures the rheology coefficients to secure faithful numerical data. Firstly, series I examines cement paste, affected by several cement products and mineral admixture types in the range of W/B 40%, ordinary fluidity, and W/B 30%, high fluidity. In this series, the three types of cement product depended on companies, are randomly used and the mineral admixture, such as fly ash, blast furnace slag and silica fume, are incorporated in the cement paste, in response to the ratio of 10, 20, to 30%, respectively. In addition, series II studies various chemical admixture types, affecting the cement paste. This series is carried out with manufacturing companies and component types in the range of W/C 30%, high fluidity. For the manufacturing companies, randomly four products are used and for the component types, polycaboxylate, melamine, naphthalene and lignosulfonate type are chosen. Test results showed that in the fluidity test of cement paste considering various types of blending factors, R-F exhibited similar tendency with F-C and M-S. In the analysis of consistency curves measured by viscometer, the fluidity evaluation method using flow test apparatuses was significantly effective, except for the some of the low fluidity specimens. In conclusion of this study, R-F was the most convenient, faithful and effective fluidity evaluation method of cement paste.

Utilization of Pine Bark(Part 6) -Alkaline Sulfite-Anthraquinone Cooking of Underground Bark and Characterization of the Spent Liquor- (소나무 수피의 총합적 이용(제6보) -미분쇄 수피의 알칼리성 아황산염-안트라퀴논 증해와 증해폐액의 특성-)

  • 문성필;박성천
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.32 no.4
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    • pp.66-73
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    • 2000
  • Alkaline sulfite-anthraquinone(AS-AQ) cooking process has been applied to unground pine bark. The properties of the spent liquor such as molecular weight distributions, sulfonic equivalent weights, degree of sulfonation, phenolic hydroxyl groups and kaolin dispersing ability have been investigated to evaluate the possibility of using this liquor as concrete additives or binders. In the case of ground bark meal, more than 90% delignification was achieved at the optimal cooking conditions. However, applying these conditions on unground bark the delignification was slightly retarded. The decrease in the degree of delignification may be attributed to less penetration and diffusion of chemicals during the cooking of the bark. Increasing the cooking temperature only by $5^{\circ}C$ improved the delignification of the bark and about 90% delignification can be achieved. These results indicate that bark can be used successfully during AS-AQ cooking without any mechanical or physical pretreatment. The properties of lignin or polyphenol sulfonates in the spent liquor after AS-AQ cooking of the bark were compared with Sunflo-R, which is commercial lignosulfonate(CLS) prepared from wood. The weight average molecular weights(Mws) estimated by gel-filteration chromatography was found to be ranging from 1,200~1,800. These are considerably lower than those in CLS. Lignin or polyphenol sulfonates in the spent liquor of bark and CLS have similar degree of sulfonation, but the phenolic hydroxyl group was 1.8 times higher than CLS. Moreover, the dispersing abilities of the spent liquors were better than that of CLS, especially after 0.1% addition to kaolin suspension.

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The Study on Urea-Lignin Copolymer Adhesive from Kraft Black Liquor for Plywood Manufacturing (Kraft Pulp 폐액(廢液)을 이용(利用)한 합판용(合板用) 요소(尿素) Ligning 접착제(接着劑) 연구(硏究))

  • Ryu, Jae-Yun;Lee, Hwa-Hyong
    • Journal of the Korean Wood Science and Technology
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    • v.16 no.2
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    • pp.50-61
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    • 1988
  • 접착제(接着劑) 제조(製造)를 위하여 펄프폐액(廢液)중의 리그닌을 이용(利用)하는 연구(硏究)가 1930년경(年傾)부터 진행(進行)되여 아황산펄프폐액(廢液)중의 Lignosulfonate의 경우는 페놀수지(樹脂)나 요소수지(要素樹脂)에 증량(增量)시키거난 반응(反應)시키는 연구(硏究)인데 비하여 kraft 리그닌을 이용(利用)하는 경우는 페놀수지(樹脂)의 보문(報文)이 주류(主流)를 이루고 있으나 요소계(要素系) 공축합수지(共縮合樹脂)는 아직 발표(發表)된 바 없으며 또한 아직까지 리그닌을 이용(利用)한 상업적(商業的)인 접착제(接着劑)가 제조(製造)되어 활용(活用)되지 못하고 있는 실정(實情)이다. 따라서 본(本) 연구(硏究)는 합판제조(合板製造)의 원가절감(原價節減), 폐액이용(廢液利用)의 환경보존관점(環境保存觀點)에서 Krfat Pulp 폐액(廢液)중의 리그닌접착제(接着劑)의 제조(製造)하고져 실시(實施)하였으며, Urea-Lignin 접착제(接着劑)의 도포량(塗布量)은 일반적(一般的)으로 합판(合板)에 도포(塗布)되는 요소수지(要素樹脂)의 량(量)(320g/$m^2$)과 동일(同一)하고 압축응력(壓縮應力)은 균일(均一)하게 12kg/$cm^2$으로 하여 열압조건(熱壓條件)(온도(溫度), 시간(時間))의 영향(影響))을 아울러 규명(糾明)하였다. Urea-Formaldehyde와 Kraft lignin의 혼합비(混合比)는 중량비(重量比)(N.V.C)로 7:3으로 합성수지(合成樹脂)를 만들어 합판제조(合板製造)를 통(通)하여 구명(究明)를 결과(結果) 다음과 같은 결론(結論)을 얻었다. 1. 본(本) 실험(實驗)의 결과(結果) 요소수지(要素樹脂)의 약(約) 30%가 krfat lignin으로 대체(代替)할 수 있음을 보여준 바, Pulping 공정(工程)의 부산물(副産物)로 얻어진 폐액(廢液)은 합판제조시(合板製造時) 접착제(接着劑)의 대체원(代替源)으로 유효(有效)하다. 2. 경제적관점(經濟的觀點)에서 합판제조(合板製造)를 위한 최적열압조건(最適熱壓條件)은 $160^{\circ}C$에서 3분(分)으로 압착(壓搾)하는 것이 적절(適切)하였다.(상태(常態)): 16.49kg/$cm^2$, 내수(耐水) : 18.56kg/$cm^2$, 내온수(內溫水) : 12.53kg/$cm^2$). 3. 요소-리그닌 접착제(接着劑)로 제조(製造)된 합판(合板)의 전단인장강도(剪斷引長强度)는 양호(良好)한 접착력(接着力)을 나타냈으며, 내수접착력(耐水接着力)($30^{\circ}C$에서 3시간(時間) 심적후(沈積後) 시험(試驗)은 상태접착력(狀態接着力)과 별차이가 없거나 더 높은 인장강도력(引長强度力)을 보여준 바, 내수합판용(耐水合板用) 접착제(接着劑)로 상당한 전망(展望)을 나타냈다.

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Study on Radionuclide Migration Modelling for a Single Fracture in Geologic Medium : Characteristics of Hydrodynamic Dispersion Diffusion Model and Channeling Dispersion Diffusion Model (단일균열 핵종이동모델에 관한 연구 -수리분산확산모델과 국부통로확산모델의 특성-)

  • Keum, D.K.;Cho, W.J.;Hahn, P.S.;Park, H.H.
    • Nuclear Engineering and Technology
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    • v.26 no.3
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    • pp.401-410
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    • 1994
  • Validation study of two radionuclide migration models for single fracture developed in geologic medium the hydrodynamic dispersion diffusion model(HDDM) and the channeling dispersion diffusion model(CDDM), was studied by migration experiment of tracers through an artificial granite fracture on the labolatory scale. The tracers used were Uranine and Sodium lignosulfonate know as nonsorbing material. The flow rate ranged 0.4 to 1.5 cc/min. Related parameters for the models were estimated by optimization technique. Theoretical breakthrough curves with experimental data were compared. In the experiment, it was deduced that the surface sorption for both tracers did not play an important role while the diffusion of Uranine into the rock matrix turned out to be an important mass transfer mechanism. The parameter characterizing the rock matrix diffusion of each model agreed well The simulated result showed that the amount of flow rate could not tell the CDDM from the HDDM quantitatively. On the other hand, the variation of fracture length gave influence on the two models in a different degree. The dispersivity of breakthrough curve of the CDDM was more amplified than that of the CDDM when the fracture length was increased. A good agreement between the models and experimental data gave a confirmation that both models were very useful in predicting the migration system through a single fracture.

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