• 제목/요약/키워드: $CaCO_3$ precipitation

검색결과 138건 처리시간 0.024초

탄산칼슘 in-situ precipitation 처리된 신문고지의 형태와 물성변화 (Morphological and Physical Properties of ONP Treated by CaCO3 In-situ Precipitation Method)

  • 이영호;정재권;이기승;서영범
    • 펄프종이기술
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    • 제45권6호
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    • pp.44-54
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    • 2013
  • Replacing OMG (old magazine) to ONP (old newspaper) by raising optical property through $CaCO_3$ in-situ precipitation method in white duplex board presents cost reduction and possible drying energy saving. The strength property impairment by the presence of $CaCO_3$ could be supplemented by the fiber furnish treatment or strength polymer addition. In $CaCO_3$ in-situ precipitation of ONP, it was found from morphological study using FlowCAM, an image analyzer, that most of calcium carbonate were formed on the fines, and made the size of the fines larger. For the case of forming calcium carbonate only on the fractionated fines, the size of the fines were the biggest, and there were more clean surface areas available for bonding for the fractionated long fibers when fractionated fibers and fines were regrouped to make paper.

Microbiologically - Enhanced Crack Remediation (MECR)

  • Bang Sookie S.;Ramakrishnan V.
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2001년도 추계학술대회
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    • pp.26-36
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    • 2001
  • A novel approach of microbiologically-enhanced crack remediation (MECR) has been initiated and evaluated in this report. Under the laboratory conditions, Bacillus pasteurii was used to induce $CaCO_3$ precipitation as the microbial urease hydrolyzes urea to produce ammonia and carbon dioxide. The ammonia released in surroundings subsequently increases pH, leading to accumulation of insoluble $CaCO_3$. Scanning electron micrography (SEM) and x-ray diffraction (XRD) analyses evidenced the direct involvement of microorganisms in $CaCO_3$ precipitation. In biochemical studies, the primary roles of microorganisms and microbial urease were defined. Furthermore, the role of urease in $CaCO_3$ precipitation was characterized utilizing recombinant Escherichia coli that encoded B. pasteurii urease genes in a plasmid. Microorganisms immobilized in polyurethane (PU) polymer were applied to remediate concrete cracks. Although microbiologically- induced calcite precipitation enhanced neither the tensile strength nor the modulus of elasticity of the PU polymer, cement mortar whose crack was remediated with the cemaden polymer showed a significant increase in compressive strength. Through detailed investigation, MECR showed an excellent potential in cementing cracks in granite, concrete, and beyond.

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Characteristics of soybean urease induced CaCO3 precipitation

  • Zhu, Liping;Lang, Chaopeng;Li, Bingyan;Wen, Kejun;Li, Mingdong
    • Geomechanics and Engineering
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    • 제31권3호
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    • pp.281-289
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    • 2022
  • Bio-CaCO3 is a blowout environment-friendly materials for soil improvement and sealing of rock fissures. To evaluate the chemical characteristics, shape, size and productivity of soybean urease induced CaCO3 precipitates (SUICP), experimental studies were conducted via EDS, XRD, FT-IR, TGA, BET, and SEM. Also, the conversion rate of SUICP reaction at different time were determined and analyzed. The Bio-CaCO3 product obtained by SUICP is comprehensively judged as calcite based on the results of EDS, XRD and FT-IR. The SUICP calcite precipitates are detected as spherical or ellipsoidal particles 3-6 ㎛ in diameter with nanoscale pores on their surface, and this morphology is novel. The median secondary particle size d50 is 39-88 ㎛, indicating the agglomeration of the primary calcite particles. The Bio-calcite decomposes at 650-780℃, representing a medium thermal stability. The conversion rate of SUICP reaction can reach 80% in 24h, which is much more efficient than microbially induced CaCO3 precipitation. These results reveal the knowledges of SUICP, and further direct its engineering applications. Moreover, we show an economic channel to obtain porous spherical calcite.

$CO_3$$^{2-}$치환을 이용한 화학양론조성 수산화 아파타이트 분말의 합성 (Syntjesos of Stoichiometric Hydroxyapatite Powder by $CO_3$$^{2-}$ Substitution During Precipitation)

  • 전성재;김석영;한주환
    • 한국세라믹학회지
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    • 제35권3호
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    • pp.209-218
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    • 1998
  • 세라믹스계 생체재료중에서 그 화학조성과 결정구조가 사람의 뼈와 매우 유사하여, 다른 재료보다 생체진화성이 월등히 우수한 수산화 아파타이트 분말을 용액침전법으로 제조하였다. 이때 용액침전법의 가장 큰 단점인 칼슘결손의 발생을 억제하고, 아울러 질소대신 공기중에서도 화학양론조성의 수산화 아파타이트 원료분말을 쉽게 합성할 수 있는 방법을 개발하였다. 즉, 공기중에 존재하는 CO2 기체로부터 형성된 반응용액중에 {{{{ {CO }`_{3 } ^{2- } }} 이온의 농도를 pH를 이용 조절함으로써 침전반응 및 여과공정을 공기중에서 수행하면서도 Ca의 결손이 없고 소결성이 매우 우수한 수산화 아파타이트 분말을 제조할 수 있었다.

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Stiffness loss in enzyme-induced carbonate precipitated sand with stress scenarios

  • Song, Jun Young;Sim, Youngjong;Yeom, Sun;Jang, Jaewon;Yun, Tae Sup
    • Geomechanics and Engineering
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    • 제20권2호
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    • pp.165-174
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    • 2020
  • The enzyme-induced carbonate precipitation (EICP) method has been investigated to improve the hydro-mechanical properties of natural soil deposits. This study was conducted to explore the stiffness evolution during various stress scenarios. First, the optimal concentration of urea, CaCl2, and urease for the maximum efficiency of calcite precipitation was identified. The results show that the optimal recipe is 0.5 g/L and 0.9 g/L of urease for 0.5 M CaCl2 and 1 M CaCl2 solutions with a urea-CaCl2 molar ratio of 1.5. The shear stiffness of EICP-treated sands remains constant up to debonding stresses, and further loading induces the reduction of S-wave velocity. It was also found that the debonding stress at which stiffness loss occurs depends on the void ratio, not on cementation solution. Repeated loading-unloading deteriorates the bonding quality, thereby reducing the debonding stress. Scanning electron microscopy and X-ray images reveal that higher concentrations of CaCl2 solution facilitate heterogeneous nucleation to form larger CaCO3 nodules and 11-12 % of CaCO3 forms at the interparticle contact as the main contributor to the evolution of shear stiffness.

$CaCO_3$침전능 조절에 의한 금속시편에서의 부식방지 (The Corrosion Control Using CCPP(Calcium Carbonate Precipitation Potential )Index in Metallic Coupons)

  • 이재인;임진경;서상훈;김동윤;신춘환
    • 한국환경과학회지
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    • 제9권6호
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    • pp.505-509
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    • 2000
  • The purpose of this study was to evaluate the effects of $Ca(OH)_2$ and $CO_2$ additions on the corrosion of metal coupons(ductile iron, galvanized steel, copper and stainless steel). Corrosion rate and released metal ion concentration of ductile iron and galvanized steel decreased by adjusting alkalinity, calcium hardness and pH with $Ca(OH)_2$ & $CO_2$ additions on copper and stainless steel were less than those on ductile iron and galvanized steel. When ductile iron coupon was exposed to water treated with Ca(OH)$_2$&$CO_2$, additions, the main components of corrosion product formed on its surface were $CaCO_3$ and $Fe_2 O_3 or Fe_2 O_4$ which often reduce the corrosion rate by prohibiting oxygen transport to the metal surface.

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고전압 펄스 전계의 인가전압과 온도가 수중 칼슘 농도 저감에 미치는 영향 (Effect of the applied voltage of pulsed electric fields and temperature on the reduction of calcium ion concentration)

  • 김재현;장인성
    • 상하수도학회지
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    • 제33권2호
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    • pp.95-101
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    • 2019
  • High voltage impulse(HVI) has been gained attention as an alternate technique controlling $CaCO_3$ scale formation. Investigation of key operational parameters for HVI is important, however, those had not been reported yet. In this study, the effect of temperature and applied voltage of HVI on $Ca^{2+}$ concentration was studied. As the applied voltage from 0 to 15kV and the temperature increased from 20 to $60^{\circ}C$, the $Ca^{2+}$ concentration decreased, indicating that the aqueous $Ca^{2+}$ precipitated to $CaCO_3$. The $Ca^{2+}$ concentration decreased up to 81% under the condition of 15kV and $60^{\circ}C$. Rate constant for the precipitation reaction, k was determined under different temper1ature and voltage. The reaction rate constant under the 15kV and $60^{\circ}C$ condition was evaluated to $66{\times}10^{-3}L/(mmol{\cdot}hr)$, which was 5 times greater than the k of the reaction without HVI at same temperature. The increases in k by HVI at higher temperature region(40 to $60^{\circ}C$) was much greater than at lower temperature region(20 to $40^{\circ}C$), which implies temperature is more important parameter than voltage for reducing $Ca^{2+}$ concentration at high temperature region. These results show that the HVI induction accelerates the precipitation to $CaCO_3$, particularly much faster at higher temperature.

자화수가 염류의 침전반응 및 석고의 가수 경화속도에 미치는 영향에 관한 연구 (Study on the Effect of Magnetized Water in the Precipitation Reaction of Salts and in the Hydration Hardening Speed of Gympsum Plaster)

  • 전상일;김동률;이성현;김동석;이석근
    • 대한화학회지
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    • 제46권1호
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    • pp.7-13
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    • 2002
  • 자화수가 특이한 물리화학적 성질을 갖고 있음은 여러 학자들에 의하여 꾸준히 연구되어 왔는데, 아직도 자화수의 특성이 명확하게 설명되지 못하고 있는 실정이다. 본 연구에서는 자화수가 염류들의 침전반응 및 석고의 가수 경화반응에 미치는 영향을 다음과 같이 관찰하였다. $25^{\circ}C$ 항온조 내부에서 실시한 salt filter assay 방법으로 침전반응을 조사하였으며, $20^{\circ}C$ 실온에서 석고의 가수 경화반응 시간을 Gillmore needle의 방법으로 측정함으로써 석고의 가수 경화 속도를 조사하였다. 0.1M 염 이온들을 반응시킨 염류의 침전 반응 결과, $BaSO_4,\;BaCO_3,\;CaCO_3$의 침전 생성물의 양은 대조군의 증류수에 비하여 자화수에서 각각 약 3.6%, 3.8%, 4.4% 씩 증가되었으며, 석고의 최종 경화시간은 대조군의 증류수에 비하여 자화수에서 현저하게 감소되었으므로 자화수가 석고의 가수 경화속도를 촉진시키는 것으로 나타났다. 이는 대조군의 증류수에 비하여 자화수는 물분자가 치밀하게 구조화되어서 수많은 cluster들을 형성함으로서 물분자 사이의 결합 및 반응력이 증가되며, $Ba^{2+}$ 또는 $Ca^{2+}$ 같은 염류들에 대하여 특징적으로 반응해 침전반응 속도와 가수 경화 반응 속도가 증가된 것으로 추측된다.

흑심가단주철의 제 1 단 흑연화에 미치는 Se, $CaCO_3$ 및 CaO첨가의 영향 (The effects of Se, $CaCO_3$ and CaO addition on the 1st stage graphitization of malleable cast iron)

  • 이호종;나형용
    • 한국주조공학회지
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    • 제6권4호
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    • pp.269-276
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    • 1986
  • The effects of Se, $CaCO_3$ and CaO addition on the first stage graphization of malleable iron were evaluated. The results obtained in this work were as follows. 1. Many gas bubbles were found in the white cast iron under Se, $CaCO_3$ addition. 2. Nodular graphite were formed by annealing of the white cast iron with remained gas bubbles. 3. When specimens were annealed, bubbles provided the nucleation sites that were needed in graphite precipitation, so the nucleation rate of graphite was increased. 4. The remained gas bubbles and defects were more effective for the graphitization than metallic compounds.

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