• 제목/요약/키워드: Calcined oyster shell

검색결과 27건 처리시간 0.024초

모사 Spray Type 배연탈황설비를 이용한 소성패각 슬러리의 SO2 흡수능 평가: 석회석과의 비교연구 (Evaluation of SO2 Absorption Efficiency for Calcined Oyster Shell Slurry Using a Simulated Spray Type-flue Gas Desulfurization (FGD) System: A Comparative Study with Limestone Slurry)

  • 김석휘;홍범의;이진원;차왕석;김강주;문보경
    • 자원환경지질
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    • 제52권2호
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    • pp.119-128
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    • 2019
  • 국내에서는 연간 약 30만 톤 내외의 굴패각이 발생되고 있어, 이를 대규모로 활용할 수 있는 적절한 방안이 요구되고 있다. $CaCO_3$가 주성분인 굴패각을 탈황재료로 사용하는 연구들이 많이 진행되어 왔으나, 지금까지는 주로 건식탈황을 대상으로 한 것이었다. 본 연구에서는 굴패각을 소성하여 습식탈황재료로 활용하는 가능성에 대하여 고찰하였다. 이를 위하여 습식배연탈황공정의 하나인 spray type 방식의 모사탈황장치를 제작하여 소성 굴패각의 탈황특성을 석회석과 비교하였다. 연구결과, 소성 굴패각은 석회석이나 소성하지 않은 굴패각에 비하여 우수한 $SO_2$ 흡수능을 보였다. 이는 굴패각이 소성 및 수화반응을 통해 상대적으로 반응성이 높은 형태($Ca(OH)_2$)로 전환되었기 때문이다. 이로 인하여 반응잔류물 중에 석고($CaSO_4{\cdot}2H_2O$)의 함량이 다른 경우에 비하여 높게 나타났다. 본 연구의 연속탈황실험에서는 소성 굴패각이 석회석에 비하여 큰 pH 변동폭을 보였으며, 석회석과 소성 굴패각을 혼합하여 수행된 탈황실험에서도 소성 굴패각의 혼합비율이 증가됨에 따라 pH변동폭이 커지는 결과를 보였다. 이러한 현상은 소성 굴패각의 $SO_2$ 흡수 반응성이 큰 것을 잘 보여주는 것이다. 본 연구결과는 소성 굴패각을 습식탈황에 이용할 경우 탈황효율을 크게 향상시킬 수 있음도 보여준다.

소성된 굴패각의 액상소석회로의 전환 특성 (Transformation Characteristics of Calcined Oyster Shell to Liquid Lime)

  • 하수현;김영규
    • 광물과 암석
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    • 제33권3호
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    • pp.185-193
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    • 2020
  • 자원의 재활용 관점에서 굴패각의 소성에 관한 연구가 많이 진행되고 있다. 굴패각을 소성시켜 만들어진 생석회는 건식으로 사용되기도 하고 물과 반응을 시켜 액상소석회로 변환시킨 뒤 사용되기도 한다. 그러나 굴패각은 석회석과는 약간 다른 소성 및 액상소석회 변화의 특성을 보여준다. 본 연구에서는 굴패각과 이를 비교하기 위한 석회석을 소성시켜 생석회를 만든 후 이를 다양한 온도의 물과 반응시켜 액상소석회로 변환 실험을 실시하였다. 액상소석회로 변환 후 150 ㎛의 체를 이용하여 거르고 액상소석회로의 전환률을 계산하였다. 소성된 석회석은 모든 온도에서 액상소석회로 전환되었다. 그러나 굴패각의 경우 본 연구의 실험조건 중 30℃와 50℃에서 액상소석회로 변환되지 않고 오히려 물과의 반응을 통하여 만들어진 Ca(OH)2의 존재로 질량이 증가하였으며 90℃에서도 석회석 보다는 낮은 액상소석회 전환률을 보여주었다. 굴패각에서 보여주는 이러한 차이는 굴패각의 각주층과 진주층에서 발견되는 단백질의 일종인 콘키올린이 높은 온도에서도 분해되지 않아 물과의 반응을 감소시켜 생기는 결과로 일부 설명할 수 있다. 그러나 콘키올린이 존재하지 않는 초크층에서도 석회석 보다 액상소석회의 변화률이 낮음을 보여준다. 이것은 석회석에는 거의 존재하지 않으나 굴패각에서 미량으로 존재하는 Na에 의하여 소성 시 패각의 방해석이 공융용융체 형성과 같은 추가적인 반응에 의한 것으로 생각된다.

Environmental Effect of the Coffee Waste and Anti-Microbial Property of Oyster Shell Waste Treatment

  • Thenepalli, Thriveni;Ramakrishna, Chilakala;Ahn, Ji Whan
    • 에너지공학
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    • 제26권2호
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    • pp.39-49
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    • 2017
  • Coffee is one of the most popular and consumed beverages in the world, which leads to a high contents of solid residue known as spent coffee grounds (SCG). As is known, coffee beans contain several classes of health related chemicals, including phenolic compounds, melanoidins, diterpenes, xanthines and carotenoids. The waste water coming out of coffee industries has high concentration of organic pollutants and is very harmful for surrounding water bodies, human health and aquatic life if discharged directly into the surface waters. Hence it is essential to treat and manage the coffee waste. Oyster shells are a waste product from mariculture that creates a major disposal problem in coastal regions of southeast Korea. In the study, the oyster shell waste was used to treat the coffee waste and its effluents. Oyster shells are calcined at $1000^{\circ}C$ for 2 h, and allowed to test the calcined CaO powder ability to inhibit the growth of bacteria in different aging coffee wastes. Calcined oyster shell powder showed anti-bacterial effect that inhibited cell growth of Escherichia coli and other bacterial forms. The antimicrobial activity of calcium oxide from oyster shell waste for biological treatment and utilization as a fertilizers with economic ecofriendly in nature.

폐굴껍질에 의한 합성폐수 중의 인 제거 (Phosphorus Removal from Synthetic Wastewater by Waste Oyster Shells)

  • 정경훈;정오진;최형일
    • 한국환경보건학회지
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    • 제26권3호
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    • pp.43-49
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    • 2000
  • A laboratory experiments were performed to investigate the effects of several factors on the phosphorus removal by waste oyster shells. The waste oyster shells used in this experiments were crushed particle, calcined particle and extracted solution. A higher efficiencies of phosphorus removal were observed, when a particle size of crushed and calcined particle were smaller. The effluent concentration of phosphorus was around 1.6mg/ι in continuous column experiment which packed with crushed particle of waste oyster shell at the influent concentration of PO4-P of 10 mg/ι. But the clogging of column occurred with increasing of throughput volume of influent. The efficiency of phosphorus removal increased with increasing of dosage amount of crushed, calcined particle and extracted solution. When the calcined particle which contained only about 1/10~1/100 of crushed particle was used, the efficiency of phosphorus removal was correspondingly equivalent to the removal efficiency obtained from crushed particle. The efficiency of phosphorus removal by calcined particle after 9 runs repeated use was decreased about 21.5% as that of the first run. The removal efficiency of 100% could have been achieved at the HRT of 18 hours during the continuous treatment of phosphorus by the solution extracted from calcined particle.

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폐굴껍질과 황토로 제조한 응집제를 利用한 폐수처리에 관한 연구 (Study on the Wastewater treatment as a Coagulant Using the Waste Oyster Shells and Loess)

  • 고현웅;장성호;성낙창
    • 자원리싸이클링
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    • 제11권2호
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    • pp.45-51
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    • 2002
  • 본 연구는 수산폐기물인 폐굴껍질과 우리나라에 넓게 분포되어 있는 황토를 이용하여 응집제를 제조하기 위한 것으로서 응집제원료의 성분조사 결과, 폐굴껍질은 CaO성분이 55.43(wt%)로 가장 많이 함유되어 있었고, 황토는$ SiO_2$가 45.30(wt%)로 주성분임을 알 수 있었다. 폐굴껍질 내의 CaO순도를 높이기 위해 $900^{\circ}C$에서 2시간동안 소성 하였으며. ball mill을 사용하여 0.074 mm(200mesh)로 분쇄 하였다. 소성된 폐굴껍질 분말과 황토 분말을 각각 6:4, 7:3, 8:2, 9: 1의 비율로 혼합하여 응집제를 제조하였다 또한 제조된 응집제와 화학 소석회와의 비교실험을 통해 화학 소석회의 대체 가능성을 확인하였다.

Use of Calcined Oyster Shell Powders as CO2 Adsorbents in Algae-Containing Water

  • Huh, Jae-Hoon;Choi, Young-Hoon;Ramakrishna, Chilakala;Cheong, Sun Hee;Ahn, Ji Whan
    • 한국세라믹학회지
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    • 제53권4호
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    • pp.429-434
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    • 2016
  • Here, we introduce a means of utilizing waste oyster shells which were obtained from temporary storage near coastal workplaces as $CO_2$ adsorbents. The calcined CaO can be easily dissociated to $Ca^{2+}$ cation and $CO_3{^{2-}}$ anion by hydrolysis and gas-liquid carbonation reaction and converted to precipitated calcium carbonate (PCC) in algae-containing water. The calcium hydroxide and carbonation combination in algae-containing water significantly contributed to improving water quality which is very dependent on the addition amount of calcined powders.

Oyster Shell Disposal: Potential as a Novel Ecofriendly Antimicrobial Agent for Packaging: a Mini Review

  • Sadeghi, Kambiz;Park, Kitae;Seo, Jongchul
    • 한국포장학회지
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    • 제25권2호
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    • pp.57-62
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    • 2019
  • The management of oyster shell disposal is an ongoing challenge in the southern coast of Korea because of continuously dumping the oyster shell in environment. Oyster shell wastes could be a biocidal alternative after calcination using a heat treatment. Calcined oyster shell is normally obtained through thermally conversion of $CaCO_3$ (main component in oyster shell (96%)) into CaO. This study provides a brief overview of oyster shell disposal and its potential as an antimicrobial agent with a focus on calcination process, antimicrobial mechanisms, and packaging applications.

Changes in Phosphorus and Sediment Oxygen Demand in Coastal Sediments Promoted by Functionalized Oyster Shell Powder as an Oxygen Release Compound

  • Kim, Beom-geun;Khirul, Md Akhte;Cho, Dae-chul;Kwon, Sung-Hyun
    • 한국환경과학회지
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    • 제28권10호
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    • pp.851-861
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    • 2019
  • In this study, we performed a sediment elution experiment to evaluate water quality in terms of phosphorus, as influenced by the dissolved oxygen consumed by sediments. Three separate model column treatments, namely, raw, calcined, and sonicated oyster shell powders, were used in this experiment. Essential phosphorus fractions were examined to verify their roles in nutrient release from sediment based on correlation analyses. When treated with calcined or sonicated oyster shell powder, the sediment-water interface became "less anaerobic," thereby producing conditions conducive to partial oxidation and activities of aerobic bacteria. Sediment Oxygen Demand (SOD) was found to be closely correlated with the growth of algae, which confirmed an intermittent input of organic biomass at the sediment surface. SOD was positively correlated with exchangeable and loosely adsorbed phosphorus and organic phosphorus, owing to the accumulation of unbound algal biomass-derived phosphates in sediment, whereas it was negatively correlated with ferric iron-bound phosphorus or calcium fluorapatite-bound phosphorus, which were present in the form of "insoluble" complexes, thereby facilitating the free migration of sulfate-reducing bacteria or limiting the release from complexes, depending on applied local conditions. PCR-denaturing gradient gel electrophoresis revealed that iron-reducing bacteria were the dominant species in control and non-calcined oyster shell columns, whereas certain sulfur-oxidizing bacteria were identified in the column treated with calcined oyster powder.

소성 굴패각에 의한 인산염의 흡착특성 및 메커니즘 (Characteristics and Mechanisms of Phosphate Sorption by Calcined Oyster Shell)

  • 박종환;허재영;이수림;이재훈;황세욱;조현지;권진혁;장영호;서동철
    • 한국환경농학회지
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    • 제40권1호
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    • pp.40-48
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    • 2021
  • BACKGROUND: Although the calcined oyster shell can be used as a calcium-rich adsorbent for phosphate removal, information about it is limited. The purpose of this study was to evaluate the phosphate adsorption characteristics and its mechanism using calcined oyster shells. METHODS AND RESULTS: In this study, calcined oyster shell (C-OS600) was prepared by calcining oyster shells (P-OS) at 600℃ for 20 min. Phosphate adsorption by C-OS600 was performed under various environmental conditions. Phosphate adsorption by C-OS600 occurred rapidly at the beginning of the reaction, and the time to reach equilibrium was less than 1 h. The optimal isotherm and kinetic models for predicting the adsorption of phosphate by C-OS600 were the Langmuir isotherm and pseudo-second order kinetic model, respectively, and the maximum adsorption capacity derived from the Langmuir isotherm was 68.0 mg/g. The adsorption properties of phosphate by C-OS600 were dominantly influenced by the initial pH and C-OS600 dose. In addition, SEM-EDS and FTIR analysis clearly showed a difference in C-OS600 before and after phosphate adsorption, which proved that phosphate was adsorbed on the surface of C-OS600. CONCLUSION: Overall, the calcined oyster shell can be considered as an useful and effective adsorbent to treat wastewater containing phosphate.