• 제목/요약/키워드: natural coagulant

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Platelet Anti-aggregating and Anti-oxidative Activities of 12-O-(4'-O-methyl-galloyl)-bergenin, a Novel Compound Isolated from Crassula cv. "Himaturi"

  • Lee, Yong-Yook;Jang, Dae-Song;Jin, Jing-Ling;YunChoi, Hye-Sook
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2-2
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    • pp.193.3-194
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    • 2003
  • Platelets play critical roles in both hemostasis and thrombosis. It was reported that platelet aggregation is associated with an increase in superoxide production and can be inhibited by hydroxyl radical scavengers. In the course of our search for the anti-platelet, anti-coagulant and/or anti-oxidative components from plants, the MeOH extract of Crassula cv. "Himaturi" (Crassulaceae) was observed to have both anti-aggregatory and anti-coagulant effects. A novel compound, 12-O-(4'-O-methyl-galloyl)-bergenin (1), was isolated as an active component from the EtOAC soluble fraction. (omitted)

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Preservation of Coagulation Efficiency of Moringa oleifera, a Natural Coagulant

  • Katayon, S.;Ng, S.C.;Johari, M.M.N.Megat;Ghani, L.A.Abdul
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제11권6호
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    • pp.489-495
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    • 2006
  • In recent years, there has been an interest to use Moringa oleifera as the natural coagulant due to cost, associated health and environmental concerns of synthetic organic polymers and inorganic chemicals. However, it is known that M. oleifera as the natural coagulant is highly biodegradable and has a very short shelf life. This research was carried out to investigate the effects of storage temperature, packaging methods, and freeze-drying on the preservation of M. oleifera seeds powders. Non freeze-dried M. oleifera was prepared into different packaging namely open container, closed container and vacuum packing, whilst, freeze-dried M. oleifera was stored in closed container and vacuum packing. Each of the packaging was stored at room temperature ($30\;to\;32^{\circ}C$) and refrigerator ($4^{\circ}C$). The turbidity removal efficiencies of stored M. oleifera were examined using jar test at monthly interval for 12 months. The results indicated that non freeze-dried M. oleifera kept in the refrigerator ($4^{\circ}C$) would preserve its coagulation efficiency. In addition, closed container and vacuum packing were found to be more appropriate for the preservation of non freeze-dried M. oleifera, compared to open container. Freeze-dried M. oleifera retained its high coagulation efficiency regardless the storage temperature and packaging method for up to 11 months. Besides, higher increment in zeta potential values for water coagulated with freeze-dried M. oleifera indicated the higher frequency of charge neutralization and better coagulation efficiency of freeze-dried M. oleifera, compared to non freeze-dried seeds. As a coagulant, M. oleifera did not affect the pH of the water after treatment.

해양심층수를 이용한 다시마 추출물의 두부응고제 특성 (Characteristics of Tofu Coagulants Extracted from Sea Tangle Using Treated Deep Ocean Water)

  • 이승원;김현주;문덕수;김아리;정인학
    • 한국수산과학회지
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    • 제40권3호
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    • pp.113-116
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    • 2007
  • We investigated the characteristics of various Tofu coagulants extracted from sea tangle using treated deep ocean water (DOW) as the solvents. The coagulants were typical solutions extracted from sea tangle using raw DOW and strongly electrolyzed acidic (SAC) or alkaline (SAK) water. The total dissolved solids (TDS), NaCl and electric conductivity were increased in the coagulant solution extracted by SAC than the others. In the coagulant solutions extracted by acidic electrolyzed solvent, aspartic acid content (13.5 mg/100 g) was higher than others (11.2 and 12.1 mg/100 g). The Tofu obtained using coagulants extracted with treated DOW had the water contents ranging from 79.55% to 80.04%. The contents of crude protein (12.1 g/100 g) and Na, Ca, K and Mg were relatively higher than general Tofu commercially available. Therefore, coagulant solutions extracted from sea tangle using treated DOW can be used to develop natural high-grade tofu for practical use.

반탄화목분 천연재료 혼합응집제의 안정성 및 슬러지 에너지화 가능성 평가에 관한 연구 (A Study on the Stability and Sludge Energy Efficiency Evaluation of Torrefied Wood Flour Natural Material Based Coagulant)

  • PARK, Hae Keum;KANG, Seog Goo
    • Journal of the Korean Wood Science and Technology
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    • 제48권3호
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    • pp.271-282
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    • 2020
  • 하수처리장은 도시를 구성하는 사회기반시설물로 2017년 하수도 통계 기준 국내 하수도 보급률은 94%에 달하고 있다. 국내 하수처리장에서 PAC(Poly Aluminum Chloride)의 사용량이 58%를 차지하고 있으나 PAC의 경우 품질기준상 불순물(중금속) 함량이 높음에도 불구하고, 기준 강화나 기술적 품질개선이 제대로 이루어지지 않아 응집제 과다 주입 시 2차 오염문제가 대두되고 있다. 또한, 약품사용량이 증가함에 따라 2017년 기준 연간 하수슬러지 발생량과 슬러지 재이용의 필요성 또한 증대되고 있다. 이에 본 연구에서는 반탄화목분 천연재료 혼합응집제를 이용한 수처리 시 혼합응집제 주입에 따른 중금속류에 대한 안정성을 평가하고, 하수슬러지의 침강성 및 하수슬러지 발열량 평가를 통해 슬러지 재이용의 가능성을 검증하고자 한다. 반탄화목분 천연재료 혼합응집제와 PAC(10%)의 중금속류(Cr, Fe, Zn, Cu, Cd, As, Pb, Ni) 분석 결과 Cr, Cd, Pb, Ni, Hg의 경우 검출되지 않았으며, Zn의 경우 반탄화목분 천연재료 혼합응집제에서 먹는물 수질기준에서 고시한 Zn의 농도가 3mg/L인 것에 비해 0.007 mg/L로 극소량만 검출되었다. Fe, Cu, As의 경우 PAC(10%)를 주입한 경우가 반탄화목분 천연재료 혼합응집제 보다 최대 2배 이상 검출되는 것으로 나타났다. 또한, 슬러지 침강성 분석 결과 반탄화목분 천연재료 혼합응집제가 기존 응집제인 PAC(10%)에 비해 최대 2배 빠르게 침강하는 것으로 반탄화목분 혼합응집제의 침강성이 PAC(10%)보다 우수한 것으로 나타났다. 반탄화목분 천연재료 혼합응집제를 주입하여 발생된 하수슬러지의 건조기준 저위발열량은 3,378 kcal/kg이며, PAC(10%) 응집제를 주입하여 발생된 하수슬러지의 건조기준 저위발열량은 3,171 kcal/kg으로 두 응집제 모두 화력발전소의 보조연료 구비조건을 만족하였으나, 본 연구에서 개발한 반탄화목분 천연재료 혼합응집제를 사용할 경우 기존의 응집제보다 200 kal/kg 정도 높은 슬러지 발열량을 확보할 수 있음을 확인하였다. 따라서, 반탄화목분 혼합응집제를 이용하여 수처리를 수행할 경우 기존의 응집제인 PAC(10%)보다 중금속류에 대해 안정적이며, 우수한 슬러지 침강성과 높은 발열량을 갖는 슬러지를 생성하여 환경적으로 안정적이며, 효율적인 활용이 가능할 것으로 판단된다.

천연조류제거제를 활용한 응집·부상 전처리공정의 기존 응집공정 대체 가능성 (Substitutability of coagulation process by pre-treatment of coagulation·flotation using natural algae coagulant)

  • 장여주;정진홍;임현만;장향연;김원재
    • 상하수도학회지
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    • 제31권1호
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    • pp.39-50
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    • 2017
  • In the coagulation/sedimentation (C/S) process of the water treatment process, the inflow of massive algal bloom causes many problems including fouling of filter media. This study was conducted to find out the way to remove the algae's harmful effects by addition of pre-treatment prior to C/S process. Many Jar-tests were conducted such as (1) ACF (Algae Coagulation Flotation) process using natural algae coagulant (Water $Health^{(R)}$), (2) ACF + C/S process and (3) C/S process with a variety of conditions using cultured algae. The average values of turbidity were (1) 0.42 NTU for ACF process, (2) 0.13 NTU for ACF + C/S process and (3) 0.25 NTU for C/S process. It was shown that the treatment efficiency of ACF process could get low turbidity results, and ACF + C/S process could achieve more efficient results than those of C/S process. Any negative effects of ACF process to the efficiency of C/S process were not observed in ACF + C/S process. In order to reduce the unfavorable effects of algae, it was found out that the introduction of ACF process in the forms of (1) ACF or (2) ACF + C/S could be one of the effective and alternative solutions.

정수처리시 천연유기물질의 제거에 대한 급속혼화유형의 영향 (Influence of Different Mixing Types on the Removal of Natural Organic Matter in Water Treatment)

  • 김현철;유명진;이석헌
    • 상하수도학회지
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    • 제19권3호
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    • pp.370-377
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    • 2005
  • Dispersion of coagulant should be completed in a fraction of a second before the metal hydroxide precipitate has form. For the reason so-called pump diffusion flash mixing (PDFM) have been proposed, and PDFM is one of reasonable methods to quickly disperse the hydrolyzing metal salts. In this study, therefore, we attempt to understand the difference of removal characteristics of natural organic matter (NOM) between pump diffusion flash mixing (PDFM) and conventional rapid mixing (CRM) for coagulation in a water treatment system, and to enhance the removal of NOM through the improved mixing process. DOC and turbidity removal by PDFM higher than those by CRM, while SUVA value of water treated by PDFM was high as compared with that by CRM. Hydrophilic NOM was more effectively removed by PDFM than CRM, since charge neutralization effect increased by quick dispersion of coagulant. The DBP formation potentials due to NOM was effectively reduced by the improved mixing (i.e., PDFM) for coagulation and could be controlled through decrease in concentration of precursor rather than reduction of activity with disinfectant.

급속교반조건에서 Alum 응집제의 가수분해종 분포특성과 유기물특성변화 (Characterization of Natural Organic matter by Rapid Mixing Condition)

  • 송유경;정철우;손희종;손인식
    • 상하수도학회지
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    • 제20권4호
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    • pp.559-571
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    • 2006
  • The overall objective of this research was to find out the interrelation of coagulant and organic matter during rapid mixing process and to identify the change of organic matter by mixing condition and to evaluate the effect of coagulation pH. During the coagulation, substantial changes in dissolved organics must be occurred by coagulation due to the simultaneous formation of microflocs and NOM precipitates. Increase in the organic removal efficiency should be mainly caused by the removal of microflocs formed during coagulant injection. That is, during the mixing period, substantial amount of dissolved organics were transformed into microflocs due to the simultaneous formation of microflocs and NOM precipitates. The results also showed that 40 to 80% of dissolved organic matter was converted into particulate material after rapid mixing process of coagulation. During the rapid mixing period, for purewater, formation of dissolved Al(III) (monomer and polymer) constant by rapid mixing condition, but for raw water, the species of Al hydrolysis showed different result. During the rapid mixing period, for high coagulant dose, Al-ferron reaction increases rapidly. At A/D(Adsorption and Destabilization) and sweep condition, both $Al(OH)_3(s)$ and dissolved Al(III) (monomer and polymer) exist, concurrent reactions by both mechanism appear to cause simultaneous precipitation.

Effect of Coagulant Type on the Silica Dispersion and Properties of Functionalized RAFT ESBR Silica Wet Masterbatch

  • Kim, Woong;Ryu, Gyeongchan;Hwang, Kiwon;Song, Sanghoon;Kim, Wonho
    • Elastomers and Composites
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    • 제55권3호
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    • pp.167-175
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    • 2020
  • Various studies have been conducted to improve silica dispersion of silica filled tire tread compounds; among them, silica wet masterbatch (WMB) technology is known to be suitable for manufacturing silica filled compounds that have high silica content and high dispersibility. Till now, the WMB study is focused on the natural rubber (NR) or emulsion styrene-butadiene rubber (ESBR) that does not have a silica-affinity functional group, and a study of NR or ESBR having a silica-affinity functional group is still not well known. Unlike the dry masterbatch technology, the WMB technology can solve the problems associated with the high Mooney viscosity when applied to silica-friendly rubber. However, a coagulant suitable for each functional group has not yet been determined. Therefore, in this study, different coagulant applied silica WMB was prepared by applying calcium chloride, sulfuric acid, acetic acid, and propionic acid by using a carboxyl group functionalized reversible addition fragmentation chain transfer ESBR. The evaluation of the WMB compounds revealed that the calcium chloride added WMB compound showed excellent silica dispersion, abrasion resistance, and rolling resistance.

혼합응집제에 의한 자연유기물질 제거에 미치는 영향 인자 (Influencing Factors on NOM Removal using Blended Coagulants)

  • 명복태;우달식;최종헌;문철훈;이윤진;조영태;조관형;남상호
    • 환경위생공학
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    • 제16권3호
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    • pp.96-103
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    • 2001
  • This study was carried out to investigate the major factors for the removal of NOMs (Natural Organic Matters) by alum ferric chloride and blended coagulants that consisted of alum and ferric chloride. Investigated factors were pH, the dosage of coagulant, alkalinity, hardness and bloc strength. The particle size contained in the test water came from the Han River was also measured. DOC(Dissolved Organic Carbon) removal at pH 6 was two to three times higher than at pH 8.5. The blended coagulant showed 9 to 10 percent higher DOC removal efficiency and 2 to 4 percent higher turbidity under the same condition. Alkalinity consumption of alum, ferric chloride and blended coagulant was 81%, 90% and 86% of theoretical value, respectively. The limit concentration of alkalinity to avoid pin floe was 10 mg $CaCO_3/L$ when alum was used. Hardness had no apparent effect on coagulation. The residual turbidity and $UV_{254}$ showed a tendency of increasing with floc strength($sec^{-1}$) increase. The order of floe strength was the following; alum >blended coagulant > ferric chloride. The particle counter test showed 89 percent of the small particle size(SPS, $1~5{\;}{\mu}textrm{m}$) and 11 percent of the medium to large particle size(M.LPS, $5~125{\;}{\mu}textrm{m}$). At PH7.85, the particle removal efficiencies of SPS($1~5{\;}{\mu}textrm{m}$) and M.LPS($5~125{\;}{\mu}textrm{m}$) in the coagulation process were 81% and 95%, respectively.

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