• Title/Summary/Keyword: high calcium silicate

Search Result 85, Processing Time 0.026 seconds

Corrosion behavior of aluminum alloy in simulated nuclear accident environments regarding the chemical effects in GSI-191

  • Da Wang ;Amanda Leong;Qiufeng Yang ;Jinsuo Zhang
    • Nuclear Engineering and Technology
    • /
    • v.54 no.11
    • /
    • pp.4062-4071
    • /
    • 2022
  • Long-term aluminum (Al) corrosion tests were designed to investigate the condition that would generate severe Al corrosion and precipitation. Buffer agents of sodium tetraborate (NaTB), trisodium phosphate (TSP) and sodium hydroxide (NaOH) were adopted. The insulation materials, fiberglass and calcium silicate (Ca-sil), were examined to explore their effects on Al corrosion. The results show that significant precipitates were formed in both NaTB/TSP-buffered solutions at high pH. The precipitates formed in NaTB solution raise more concerns on chemical effects in GSI-191. A passivation layer formed on the surfaces of coupon in solution with the presence of insulations could effectively mitigate Al corrosion. The Fe-enriched intermetallic particles (IPs) embedded in coupon appeared to serve as seeds to readily induce precipitation via providing extra area for heterogeneous Al hydroxide precipitation. X-ray spectroscopy (EDS) and X-ray diffraction (XRD) analyses indicate that the precipitates are mainly boehmite (γ-AlOOH) and no direct evidence confirms the presence of sodium aluminum silicate or calcium phosphate.

A Study on the Variation of Physical Properties on the Secondary Product of Cement by Using Crushed Stone Powder (폐석분을 사용한 시멘트 2차 제품의 물리적 특성에 관한 연구)

  • Park, Ji-Sun;Lee, Sea-Hyun;Song, Hun
    • Journal of the Korean Recycled Construction Resources Institute
    • /
    • v.6 no.4
    • /
    • pp.103-111
    • /
    • 2012
  • One of the basic physical properties of the hardened cement paste, the rigidity, is deteriorated during concrete matrix forming, depending on the replacement rate of the crushed stone powder, and due to drying shrinkage. Therefore, the concrete containing crushed stone powder has been limitedly used as non-structural construction material. To improve these disadvantages, a hydrothermal reaction employing method can be considered. High-temperature and high-pressure water is involved in the hydrothermal reaction in the mixing with specific materials. The rigidity improving mechanism is related to the synthesis of calcium silicate. The calcium silicate is produced through reaction between calcium compounds and the silicic acid. Various kinds of calcium silicate can be produced depending on the CaO/$SiO_2$ mole ratio, the temperature of the hydrothermal synthesis, the pressure, and the reaction time. The product of the synthesis mechanism, tobermorite crystal, plays a pivotal role for the rigidity reinforcement. The crushed stone powder, analyzed in this study, contains 50 to 60% of $SiO_2$ and 10 to 20% $Al_2O_3$. The composite rate is appropriate to create the tobermorite crystal through formation of hardened cement matrix under the hydrothermal synthetic conditions and with the CaO in the cement. Moreover, further reinforcement was promoted using the property of material under the identical density through promoting the formation of tobermorite crystal.

  • PDF

Studies on the Growth and Nutrient Uptaking of Flag Leaf and Chaff of Rice Plant in Cold Injury Location II, Influence of Different Nitrogen and Silicate Application on the Nutrient Uptaking of Chaff in Rice Plant (냉해지대의 수도생육과 임, 불임인각의 양분흡수에 관한 연구 제3보 질소와 규산시용량의 차이가 인각의 양분흡수에 미치는 영향)

  • Kim, Y.J.;Choi, S.I.;Ra, J.S.;Lee, J.H.
    • KOREAN JOURNAL OF CROP SCIENCE
    • /
    • v.28 no.1
    • /
    • pp.81-88
    • /
    • 1983
  • This experiment was conducted to study about influenced inorganic element contents of flag leaf and chaff with different nitrogen and silicate application in Jinan (sea level 303m). The recommended rate of fertilizer application above N 15kg/10a was poor for dry production increment in cold in July elevation and was demanded increment of silicate. In the elevation of cold in July high rates of nitrogen application produced more incomplete grain and a reduced cold tolerance. These effects were due to over-content of soluble nitrogen within flag leaf and disturbance of uptaking potassium and silicate. On the other hand, the application of silicate could increase yield by promoting resistance to cold- damage. The application of increasing level of nitrogen resulted in increasing the contents of total nitrogen and phosphate in both sterile and fertile glumes. The contents of potassium and calcium were the highest at the level of nitrogen 10 - 15kg/10a, but magnessium was rather high at low nitrogen levels. It is interesting that at any level of nitrogen, over 6% higher silicate contents were noted in the fertile chaff than in the sterile chaff. Application of increasing level of silicate fertilizer decreased total nitrogen contents, but increased the contents of phosphate, potassium. and silicate in the chaff. Increasing rate of silicate content by increasing silicate addition was remarkably higher in the fertile chaff than in the sterile chaff.

  • PDF

Formation of Hydroxyapatite in Portland Cement Paste

  • Chung, Chul-Woo;Lee, Jae-Yong;Kim, Ji-Hyun
    • Journal of the Korea Institute of Building Construction
    • /
    • v.14 no.1
    • /
    • pp.68-75
    • /
    • 2014
  • In order to increase the integrity of the wellbore which is used to prevent the leakage of supercritical $CO_2$, it is necessary to develop a concrete that is strongly resistant to carbonation. In an environment where the concentration of $CO_2$ is exceptionally high, $Ca^{2+}$ ion concentration in pore solution of Portland cement concrete will drop significantly due to the rapid consumption of calcium hydroxide, which decreases the stability of the calcium silicate hydrate. In this research, calcium phosphates were used to modify Portland cement system in order to produce hydroxyapatite, a hydration product that is strongly resistant to carbonation under such an environment. According to the experimental results, calcium phosphates reacted with Portland cement to form hydroxyapatite. The formation of hydroxyapatite was verified using X-ray diffraction analyses with selective extraction techniques. When using dicalcium phosphate dihydrate and tricalcium phosphate, the 28-day compressive strength was lower than that of plain cement paste. However, the specimen with monocalcium phosphate monohydrate showed equivalent strength to that of plain cement paste.

Estimation of Strength and Pore Structure of Alkali-Activated Fire Protection Materials at High Temperature (고온에서의 알칼리 활성화 내화성 결합재의 강도 및 공극구조 평가)

  • Song, Hun;Kim, Young-Ho;Kim, Wan-Ki;So, Hyung-Suk
    • Journal of The Korean Digital Architecture Interior Association
    • /
    • v.12 no.4
    • /
    • pp.59-66
    • /
    • 2012
  • This study is interested in identifying the effectiveness of alkali-activated fire protection material compounds including the alkali-activator such as potassium hydroxide, sodium silicate and fly ash as the fire resistant finishing materials. Also, this paper is concerned with change in compressive strength and pore structure of the alkali-activated fire protection material at high temperatures. The testing methods of fire protection materials in high temperature properties are make use of TG-DSC and mercury intrusion porosimetry measurements. This study results show that compressive strength is rapidly degraded depending on a rise of heating temperature. Porosity showed a tendency to increase irrespective of specimen types. This is due to both the outbreak of collapse of gel comprising the cement and a micro crack by heating. However, alkali-activated fire protection material composed of potassium hydroxide, sodium silicate and fly ash has the thermal stability of the slight decrease of compressive strength and porosity at high temperature. These thermal stability is caused by the ceramic binding capacity induced by alkali activation reaction by the reason of the thermal analysis result not showing the decomposition of calcium hydrate.

Effect of Combined Application of Lime and Organic Matter , and of Calcium Silicate on the Growth and Cadmium Content of Chinese Cabbage (석회(石灰), 유기물(有機物)의 병용(竝用) 및 규산(硅酸)칼슘의 시용(施用)이 배추의 생육(生育) 및 카드뮴함량(含量)에 준 영향(影響))

  • Ohh, W.K.
    • Korean Journal of Environmental Agriculture
    • /
    • v.5 no.1
    • /
    • pp.61-66
    • /
    • 1986
  • A small pot experiment, filled with one hundred fifty gram of Cd amended soil, was conducted in order to learn the effect of combined application of lime and organic matter and of calcium silicate on Chinese cabbage(Brassica pekinensis, Var. Seoul, Heungnong, Miho 70 days). Results obtained are as follows: 1. The application of lime without organic matter depressed the growth of cabbage at the first and second harvests, but, at the later part of third harvest the growth was facilitated so as to harvest very good yield. 2. The combined application of lime and organic matter gave not only a good growth of cabbage from the first crop, but also lowered the cadmium content of dry cabbage bellow that of cabbage harvested from the plot applied with slaked lime alone. Those effect of combined application of both materials were lasted untill the third harvest. 3. Although gave little effect on soil pH, calcium silicate raised a normal good cabbage, and depressed the cadmium content of dry cabbage, by 0.21 me per 100g, which is higher than that of slaked lime plot cabbage, but within the range of no harm to cabbage growth. 4. The control and organic matter plots resulted in a remarkable soil pH drop and high cadmium content in dry cabbage, which lead the crop to a death from the second crop. 5. A negative correlation was observed between the contents of cadmium and calcium in dry cabbage crop, but positive correlations between those of cadmium and magnesium or cadmium and potassium. These relations were grown up as the harvesting were proceeding.

  • PDF

Purity of γ-Dicalcium Silicate with Synthetic and Raw Materials Conditions (합성 및 원료 조건에 따른 γ-C2S의 순도)

  • Lee, Seok-Hee;Cho, Hyeong-Kyu
    • Journal of the Korea Institute of Building Construction
    • /
    • v.20 no.2
    • /
    • pp.123-128
    • /
    • 2020
  • γ-dicalcium silicate(γ-C2S) is known as a polymorphism of belite. Due to its high CO2 fixing capacity and the production process with low CO2 emission, γ-C2S has attracted more attention of researchers. For the further development of γ-C2S applications in construction industry, this study aims to investigate the method for synthesizing high purity of γ-C2S. The influence of raw materials and calcination temperatures on the purity of γ-C2S was evaluated. Several Ca bearing materials were selected as the calcium source, the materials which's main component is SiO2 were used as the silicon source. Raw materials were mixed and calcined under different temperatures. The results revealed that the highest purity could be obtained using Ca(OH)2 and SiO2 powder as raw materials. In addition, a relatively economic synthesis method using natural mineral materials-limestone and silica sand as raw materials were developed for the practical application. The purity of synthetic γ-C2S was recorded up to 77.6%.

Characterization of geopolymer made of municipal solid waste incineration ash slag (도시쓰레기 소각재 슬래그로 제조된 지오폴리머의 특성)

  • Kim, Yongsung;Kang, Seunggu
    • Journal of the Korean Crystal Growth and Crystal Technology
    • /
    • v.24 no.1
    • /
    • pp.15-20
    • /
    • 2014
  • In this research, the geopolymer was fabricated using municipal solid waste incineration ash (denoted as MSWIA) slag and alkali activator, NaOH and its properties were analyzed. Particularly, the effects of NaOH molarity, particle size of MSWIA, and liquid/solids ratio on the compressive strength of geopolymers were investigated. The compressive strength of geopolymers fabricated increased with finer grain size of MSWIA, and optimum value of the liquid/solids ratio was identified as 0.13. As the molarity of the NaOH increased, the compressive strength of geopolymers was increased. Even more the 20 M of NaOH, but the strength was not increased. The calcium aluminum silicate and calcium aluminum silicate hydrate zeolites were generated in the geopolymer fabricated with more than 20 M of NaOH, with some unreacted silica and unknown crystals remained. The highest compressive strength, 163 MPa, of geopolymer was appeared at conditions of curing temperature $70^{\circ}C$, and 20 M of NaOH, indicating that the high concentration of NaOH accelerates the geopolymer reaction and dense microstructure. The high-strength geopolymer fabricated in the present study is expected to contribute significantly to develop the field of cement alternative substances and to improve the recycling rate of MSWIA slag.

Tidal Variations of the Chemical Constituent Contents in the Laver Bed Sea Waters in Wan Do Gun From October 1968 to February 1969 (완도읍 및 평일만 김밭에 있어서의 동계 오개월간 수질의 조수에 따른 변동)

  • Won, Chong Hun;Park Kil Sun
    • 한국해양학회지
    • /
    • v.5 no.1
    • /
    • pp.14-29
    • /
    • 1970
  • Tidal variations of various chemical constituents in the laver bed sea waters in Wan Do Gun were determined over one spring tidal cycle from Oct. 1968 to Feb. 1969. Total ranges and means of the contents at Pyung-il Do and Wan Do are as follows. Although the average monthly variations of each content at Pyung-il Do were similar to those at Wan Do, most of the contents at Pyung-il Do were at a slightly higher level than at Wan Do. The values of silicate-silicon, phosphate- phosphorus and soluble iron, however, showed high levels at Wan Do. Chlorinity, magnesium, calcium, dissolved oxygen, silicate-silicon and phosphate-phosphorus contents increased from Oct. 1968 to Feb. 1969, though the content of soluble iron decreased before December and slightly increased in January and February. The average monthly variations of ammonia-nitrogen and nitrate-nitrogen contents were irregular. The nitrite-nitrogen content appeared in trace amounts in the months with a comparatively high water temperature, i.e., October and November, but in midwinter it was undetected. The ranges of the tidal variations of the contents of each chemical constituent were not significantly wide, though the contents varied excessively by the hour, and this may show the irregularity of the water quality in Wan Do Gun coastal area. As a rule, no regular tidal variation of the chlorinity was observed except slightly decreased value at ebb tide at Wan Do. In general, although the pattern of the variations of calcium and magnesium contents were similar to that of the chlorinity, no definite relationships between these constituents and chlorinity were observed. Tidal variations of the dissolved oxygen content, nutrient salts and soluble iron were irregular.

  • PDF

Evaluation of reparative dentin formation of ProRoot MTA, Biodentine and BioAggregate using micro-CT and immunohistochemistry

  • Kim, Jia;Song, Young-Sang;Min, Kyung-San;Kim, Sun-Hun;Koh, Jeong-Tae;Lee, Bin-Na;Chang, Hoon-Sang;Hwang, In-Nam;Oh, Won-Mann;Hwang, Yun-Chan
    • Restorative Dentistry and Endodontics
    • /
    • v.41 no.1
    • /
    • pp.29-36
    • /
    • 2016
  • Objectives: The purpose of this study was to assess the ability of two new calcium silicate-based pulp-capping materials (Biodentine and BioAggregate) to induce healing in a rat pulp injury model and to compare them with mineral trioxide aggregate (MTA). Materials and Methods: Eighteen rats were anesthetized, cavities were prepared and the pulp was capped with either of ProRoot MTA, Biodentine, or BioAggregate. The specimens were scanned using a high-resolution micro-computed tomography (micro-CT) system and were prepared and evaluated histologically and immunohistochemically using dentin sialoprotein (DSP). Results: On micro-CT analysis, the ProRoot MTA and Biodentine groups showed significantly thicker hard tissue formation (p < 0.05). On H&E staining, ProRoot MTA showed complete dentin bridge formation with normal pulpal histology. In the Biodentine and BioAggregate groups, a thick, homogeneous hard tissue barrier was observed. The ProRoot MTA specimens showed strong immunopositive reaction for DSP. Conclusions: Our results suggest that calcium silicate-based pulp-capping materials induce favorable effects on reparative processes during vital pulp therapy and that both Biodentine and BioAggregate could be considered as alternatives to ProRoot MTA.