• 제목/요약/키워드: calcium carbonate content

검색결과 134건 처리시간 0.024초

탄산칼슘 적용에 의한 KOCC 지필의 고형분 증대 (Use of Calcium Carbonate for Improving Solid Content of KOCC Wet Web)

  • 황인영;지성길;서영범
    • 펄프종이기술
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    • 제45권6호
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    • pp.1-9
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    • 2013
  • For the manufacture of linerboard with 100% KOCC, we tried to increase the solid content of wet web by employing GCC (grounded calcium carbonate) in the fiber furnish to save drying energy. Three different diameters of GCC, namely, 5, 10, and $35{\mu}m$, were used. To complement the strength loss by the addition of GCC, cationic starch and refining treatment were tried. It was found that the addition of $10-35{\mu}m$ dia. GCC to KOCC for $180g/m^2$ basis weight sheets increased the solid content of the furnish about 1-1.5% with better bulk and drainage properties. The loss of strength properties were compensated by the application of cationic starch and/or refining process to the KOCC furnish. The dia. of GCC of $35{\mu}m$ was, however, too large to make smooth surface of the sample sheet. So, the optimization process was required before implementing the results to the mill by selecting proper diameter and shape of the calcium carbonate.

Biocementation via soybean-urease induced carbonate precipitation using carbide slag powder derived soluble calcium

  • Qi, Yongshuai;Gao, Yufeng;Meng, Hao;He, Jia;Liu, Yang
    • Geomechanics and Engineering
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    • 제29권1호
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    • pp.79-90
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    • 2022
  • Soybean-urease induced carbonate precipitation (EICP), as an alternative to microbially induced carbonate precipitation (MICP), was employed for soil improvement. Meanwhile, soluble calcium produced from industrial waste carbide slag powder (CSP) via the acid dissolution method was used for the EICP process. The ratio of CSP to the acetic acid solution was optimized to obtain a desirable calcium concentration with an appropriate pH. The calcium solution was then used for the sand columns test, and the engineering properties of the EICP-treated sand, including unconfined compressive strength, permeability, and calcium carbonate content, were evaluated. Results showed that the properties of the biocemented sand using the CSP derived calcium solution were comparable to those using the reagent grade CaCl2. Scanning electron microscopy (SEM) and X-ray diffraction (XRD) analyses revealed that spherical vaterite crystals were mainly formed when the CSP-derived calcium solution was used. In contrast, spherical calcite crystals were primarily formed as the reagent grade CaCl2 was used. This study highlighted that it was effective and sustainable to use soluble calcium produced from CSP for the EICP process.

폴리아크릴산 소다에 의한 중질 탄산칼슘의 분산효과 (Effects of Ground Calcium Carbonate Dispersion by Sodium Polyacrylate)

  • 노윤찬;정태영;조경행;노승호;남기대
    • 한국응용과학기술학회지
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    • 제10권1호
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    • pp.49-55
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    • 1993
  • Ground Calcium Carbonate, among paper coating pigments, will influence less dispersant demand, less binder demand, increase coating solids from 58% to 70%, which means high speed coating, less shrinkage during drying, less energy consumption, more uniform coverage of fibers. The quality point of view of Ground Calcium Carbonate, brightness, particle size, Particle size distribution, hardness, impurities content are important. More important factors of Ground Calcium Carbonate which influence the paper coating process are dispersion mechanisms and their effects. The study was made to investigate the effect of Ground Calcium Carbonate dispersion by sodium salt of polyacrylate dispersant composition and dispersion condition. Basic tests such as physical, optical and chemical were perfumed, and dispersion effects were investigated by different conditions. The results showed that the type of dispersant affected the dispersion effects, and the Ground Calcium Carbonate has critical dispersant demand.

칼슘공급원으로서 건멸치, 두부, 탈지분유의 체내이용성 연구 (Comparison of the Bioavailability of Calcium from Anchovy, Tofu and Nonfat Dry Milk(NFDM) in Growing Male Rats)

  • 이성현
    • Journal of Nutrition and Health
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    • 제27권5호
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    • pp.473-482
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    • 1994
  • This study was to compare the bioavailability of calcium from anchovy and tofu to those of calcium from calcium carbonate(CaCO3)as the control diet and non-fat dry milk(NFDM). Rats weighing 50-60g were placed on experimental diets and deionized water at free access for 4 weeks. Diets contained 0.2% calcium from calcium-carbonate, NFDM, anchovy, tofu or 0.5% calcium as obtained were as follows : 1) No significant differences in the apparent absorption of calcium(62.5%-71.0%) were observed in the rats fed four different calcium sources at the level of 0.2% while 0.5% calcium diet group apparently absorbed calcium less efficiently(52.2%). 2) Bone length of tibia and femur was not significantly different among the groups, though 0.5% calcium of control group showed slightly longer length. 3) Tibia fat-free dry weights of 0.2% calcium of NFDM and anchovy diet groups were not significantly different from that of 0.5% calcium of control group. For femurs NFDM, anchovy and tofu groups were similar in their fat-free dry weight to that of 0.5% calcium group. 4) For calcium contents tibia contents tibia from anchovy treated group showed higher value than calcium-carbonate and tofu groups and the value was not significantly different from that of 0.5% calcium group. In femur NFDM, tofu and calcium-carbonate groups were not significantly different in their calcium content but 0.5% calcium group had higher level of calcium than 0.2% calcium groups. 5) The normalized values(NV) show that there was no significant differences in NV among 0.2% CaCO3 anchovy and tofu groups, while NV of NFDM group was significantly lower than that of calcium-carbonate group. NV of 0.5% calcium group was a little more than 50% of those in 0.2% calcium groups. Though the values obtained for the calcium bioavailability were somewhat variable among experimental products, it was demonstrated that anchovy and tofu are as good as NFDM for the dietary calcium provider when calcium intake is at marginal level.

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칼슘 급원의 종류가 흰쥐의 체내 칼슘 및 골격대사에 미치는 영향 (The Effect of Various Types of Calcium Sources on Calcium and Bone Metabolism in Rats)

  • 정혜경
    • Journal of Nutrition and Health
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    • 제29권5호
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    • pp.480-488
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    • 1996
  • This study was performed to investigate the effect of various types of calcium sources on calcium and bone metabolism. Sprague-Dawley male rats weighing approximately 89.3g were divided into 4 groups and fed experimental diets containing 0.5% calcium for 5 weeks. Four different calcium salts were used for the study : calcium phosphate, calcium lactate, calcium gluconate, and calcium carbonate. Food intake showed no significant difference n accordance with the type of calcium salt, but bo요 weight gain and food efficiency were lower in calcium gluconate and calcium carbonate groups. There was significant differences in liver, thymus and epididymal fat pad weight with the of calcium salt ; the calcium gluconate group showed lower values compared to the other groups. Femur and scapular length were higher in calcium lactate and calcium carbonate groups. Wet weight, dry weight, and density of the femur tended to be lower in the calcium gluconate group than the other groups, but this difference was not statistically significant. The calcium content of the other groups. The calcium gluconate group showed higher urinary calcium and lower calcium absorption and balance. In conclusion, calcium and bone metabolism were different according to the type of calcium sources consumed.

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고충전 인쇄용지 제조를 위한 중질 탄산칼슘 전처리 기술의 안정성에 관한 연구 (Stability of Pre-treated Fillers for High Loaded Printing Paper)

  • 서영범;최진성;지성길
    • Korean Chemical Engineering Research
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    • 제55권1호
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    • pp.1-6
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    • 2017
  • 인쇄용지에 탄산칼슘을 많이 넣을수록, 즉 고충전 인쇄용지를 만들수록 펄프섬유의 사용량이 줄어들고, 건조비용이 감소함으로 생산비는 절감되며, 온실가스의 배출량도 적어지게 된다. 현재까지 고충전 인쇄용지는 주로 중질탄산칼슘(GCC. ground calcium carbonate)에 기능성고분자를 첨가하여 적절한 크기로 선응집(pre-flocculation)시켜 사용함으로서 기존의 인쇄용지 제조방법에 비해 고충전시에도 인쇄용지의 중요한 특성들인 인장강도의 저하를 줄이고, 평활도를 유지시켜왔다. 하지만 GCC의 선응집체는 만들어진 후 사용하기까지 시간이 지체되면 그 크기와 성질이 변하는 불안정성을 보였다. 본 연구에서는 GCC의 선응집기술을 개량하여 선응집된 GCC사이에 탄산칼슘을 화학적으로 새로 생성시켜 GCC간에 연결을 시도하였으며, 그 결과 안정성이 높은 선응집체가 형성되었고, 이를 HCC (hybrid calcium carbonate)로 명명하였다. HCC는 GCC 선응집체와 같이 종이의 강도를 높이고, 평활도를 유지시켰으며, GCC 선응집체의 단점인 벌크의 저하를 역전시켜 높은 벌크를 형성시키는 장점을 보였다.

Effect of chemical concentrations on strength and crystal size of biocemented sand

  • Choi, Sun-Gyu;Chu, Jian;Kwon, Tae-Hyuk
    • Geomechanics and Engineering
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    • 제17권5호
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    • pp.465-473
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    • 2019
  • Biocementation due to the microbially induced calcium carbonate precipitation (MICP) process is a potential technique that can be used for soil improvement. However, the effect of biocementation may be affected by many factors, including nutrient concentration, bacterial strains, injection strategy, temperature, pH, and soil type. This study investigates mainly the effect of chemical concentration on the formation of calcium carbonate (e.g., quantity, size, and crystalline structure) and unconfined compressive strength (UCS) using different treatment time and chemical concentration in the biotreatment. Two chemical concentrations (0.5 and 1.0 M) and three different treatment times (2, 4, and 8 cycles) were studied. The effect of chemical concentrations on the treatment was also examined by making the total amount of chemicals injected to be the same, but using different times of treatment and chemical concentrations (8 cycles for 0.50 M and 4 cycles for 1.00 M). The UCS and CCC were measured and scanning electron microscopy (SEM) analysis was carried out. The SEM images revealed that the sizes of calcium carbonate crystals increased with an increase in chemical concentrations. The UCS values resulting from the treatments using low concentration were slightly greater than those from the treatments using high concentration, given the CCC to be more or less the same. This trend can be attributed to the size of the precipitated crystals, in which the cementation efficiency increases as the crystal size decreases, for a given CCC. Furthermore, in the high concentration treatment, two mineral types of calcium carbonate were precipitated, namely, calcite and amorphous calcium carbonate (ACC). As the crystal shape and morphology of ACC differ from those of calcite, the bonding provided by ACC can be weaker than that provided by calcite. As a result, the conditions of calcium carbonate were affected by test key factors and eventually, contributed to the UCS values.

칼슘 용해도에 미치는 식포의 영향 (Effect of Vinegar on the Solubility of Calcium)

  • 장세영;백창호;정규호;박난영;정용진
    • 한국식품저장유통학회지
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    • 제12권2호
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    • pp.112-116
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    • 2005
  • 본 연구에서는 시판되는 3종의 칼슘 용해에 미치는 식초의 영향을 조사하였다. 식초의 초기총산에 따른 영향을 조사한 결과 초기총산과 칼슘첨가량이 높을수록 용해 후 pH와 잔사량은 낮게, 총산과 칼슘함량은 높게 나타났다. 식초 함량에 따른 영향을 조사한 결과 식초함량이 높을수록 pH는 낮게 총산은 높게 나타났으며, 칼슘함량은 해조칼슘과 탄산칼슘에서 높게 나타났다. 식초를 이용하여 해조칼슘과 탄산칼슘의 포화농도를 조사한 결과 해조칼슘은 $7.0\%$ (w/v), 탄산칼슘은 $6.0\%$(w/v) 농도이며 이때 칼슘함량은 $2,234\;mg\%$$2,490\;mg\%$로 나타났다.

중질 탄산칼슘의 입자 크기와 첨가량 변화에 따라 제조된 수지 조성물의 강도 및 열변형온도 (Strength and Heat Deflection Temperature of Resin Compounds Prepared Using Different Size and Content of Ground Calcium Carbonate)

  • 이윤주;허석;김영희;김수룡;권우택
    • 한국재료학회지
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    • 제26권7호
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    • pp.359-362
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    • 2016
  • Mineral filler is used for resin compounds, because it increases the stiffness and thermal stability of a resin compound, and it also cuts down the cost. Calcium carbonate, silica, magnesium oxide, and others are used as filler materials in general, and the type of filler material, the size, and content can affect the physical properties of compounds. Those factors also influence the viscosity of resin mixtures and the workability, and should be adjusted by changing the contents of the filler, which depends on the size. In this study, five kinds of ground calcium carbonate, which were different in size, were used to produce polyester compounds ; the physical properties were compared with the filler size and contents. The mechanical properties were measured by bending strength and tensile strength, and the heat deflection temperature was obtained for thermal stability.

라이신 첨가에 의한 폐 굴껍질 이용 vaterite형 탄산칼슘 제조 (Production of Vaterite Type Calcium Carbonate by using Oyster Shell Waste with Lysine)

  • 박영철
    • Korean Chemical Engineering Research
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    • 제59권1호
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    • pp.118-126
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    • 2021
  • 폐기물로 대량 발생되는 굴껍질을 활용한 vaterite 형 탄산칼슘 제조 실험을 하였다. 굴껍질을 800 ℃의 온도에서 항량이 되도록 가열하여 산화칼슘이 주성분인 소성 굴껍질을 제조하였다. 이 굴껍질을 질산 용액에 녹여 0.1 M 질산칼슘 수용액을 만들고, 0.1 몰 라이신/1 몰 생석회가 첨가된 0.1 M 탄산나트륨 수용액과 20 ℃, 600 rpm 교반 조건에서 1시간동안 반응시켜 탄산칼슘을 제조하였다. XRD, SEM, Size 분석을 하고 vaterite 84.5%, calcite 15.5% 함유한 구형 탄산칼슘을 확인하였다. 평균 입경 범위는 6.87 ㎛ 이었고, 아미노산 분석에서 탄산칼슘 내의 라이신 함유량은 0.1%이었다.