• Title/Summary/Keyword: Gelling

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A shell layer entrapping aerobic ammonia-oxidizing bacteria for autotrophic single-stage nitrogen removal

  • Bae, Hyokwan;Choi, Minkyu
    • Environmental Engineering Research
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    • v.24 no.3
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    • pp.376-381
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    • 2019
  • In this study, a poly(vinyl) alcohol/sodium alginate (PVA/SA) mixture was used to fabricate core-shell structured gel beads for autotrophic single-stage nitrogen removal (ASNR) using aerobic and anaerobic ammonia-oxidizing bacteria (AAOB and AnAOB, respectively). For stable ASNR process, the mechanical strength and oxygen penetration depth of the shell layer entrapping the AAOB are critical properties. The shell layer was constructed by an interfacial gelling reaction yielding thickness in the range of 2.01-3.63 mm, and a high PVA concentration of 12.5% resulted in the best mechanical strength of the shell layer. It was found that oxygen penetrated the shell layer at different depths depending on the PVA concentration, oxygen concentration in the bulk phase, and free ammonia concentration. The oxygen penetration depth was around $1,000{\mu}m$ when 8.0 mg/L dissolved oxygen was supplied from the bulk phase. This study reveals that the shell layer effectively protects the AnAOB from oxygen inhibition under the aerobic conditions because of the respiratory activity of the AAOB.

Enhanced Germination & Initial Seedling Development by Liquid Phase Ozonation of Plant Seeds (식물종자의 액상오존처리에 의한 종자 발아 및 초기 성장 증진)

  • Yang, Heekyung;Jeong, Yuna;Choi, Wonchul;Bae, Bumhan
    • Journal of Soil and Groundwater Environment
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    • v.24 no.5
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    • pp.1-10
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    • 2019
  • The effects of liquid phase ozonation on seed dormant alleviation and subsequent seedling growth were studied using two plant seeds of Indian jointvetch (Aeschynomene indica L.) and Indian mallow (Abutilon avicennae Gaertn.). At a constant ozone concentration ($80g/m^3$), contact time varied from 10 to 60 min with 10 min interval. Germination rate, root length, and specific root length were compared after 3-day incubation on gel-medium. The germination rate increased significantly (p<0.05) in the 50 min treatment of Indian mallow by 30% compared to the control. Enhanced root elongation was observed in the seeds of 30 min treatment of Indian jointvetch and 30~50 min treatment of Indian mallow. Specific root length, an indicator of environmental change, did not show significant changes, suggesting the level of ozone treatment has no adverse effect on seedling development. The results indicate that liquid phase seed ozonation can be an effective on-site germination alleviation method in the application of phytoremediation.

Structural and gelling properties of very low methoxyl pectin produced by an alkali-treatment

  • Lee, Byung-Hoo;Jung, Ho-Tak;Kim, Hyun-Seok;Yoo, Sang-Ho
    • Korean Journal of Food Science and Technology
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    • v.53 no.2
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    • pp.121-125
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    • 2021
  • Very low methoxyl pectin (VLMP) has different physical and rheological properties compared to high and low methoxyl pectins (HMP and LMP). In this study, we produced LMP and VLMP by alkaline de-esterification, and investigated the structural and textural properties. Apple peel pectin was kept at pH 12 using 5.0 M NaOH solution for 3 and 24 h to produce LMP and VLMP, respectively. The molecular weight was decreased due to the removal of an esterified group in the pectin backbones by the alkali treatment, and the VLMP showed a higher calcium ion sensitivity which leads to the production of the gel with increased hardness. The result clearly showed that VLMP has the potential to improve the texture and stability in food products depending on their degree of esterification, and this result can be applied as a functional ingredient in food industrial area application to enhance the current commercial pectins.

Effect of Media Components and Phytohormones on in vitro Frond Proliferation of Lemna gibba G3 and 24 Additional Lemna gibba Strains

  • Moon, H.K.
    • Plant Resources
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    • v.1 no.2
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    • pp.98-104
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    • 1998
  • The effects of basal media, sucrose and phytohormone concentrations, and gelling agent combinations on in vitro frond proliferation of Lemna gibba G3 and 24 additional Lemna gibba strains were examined. Frond proliferation was equivalent on Schenk and Hidebrand. Murashige and Skoog. Nitsch and Nitsch, and Gamborg's B5 media and poor on murashige and Skoog medium in the absence of benzyladenine. With the addition of benzyladenine, Schenk and Hildebrand and Gamborg's B5 Were superior and equivalent. The addition of benzuyladenine increased equally frond proliferation at either 1 or $10{\mu}M$, however at $10{\mu}M$ fronds were severely curled or fused. Benzyladenine and thidiazuron suppressed root growth but kinetin was found to greatly enhance root growth. Gibberellic acid inhibited frond proliferation. Frond proliferation was significantly different on the four sucrose concentrations of 0, 1, 3, and 5% Among them, 3% sucrose was found to be superior. The reduced frond size observed in cultures grown on 8% sucrose could be explained by showing medium osmotic potential in excess of frond water potential. Gell agents also varied significantly in their ability to promote frond proliferation with 0.25% Gelrite or a mixture of 0.15% Gelrite and 0.4% agar. Proliferation of 25 Lemna gibba strains on medium neat optimal for Lemna gibba G3 showed a six-fold variation across strains with Lemna gobba G3 placing in the top 5 fastest proliferating strains.

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Technical Optimization of Culture Conditions for the Production of Exopolysaccharide (EPS) by Lactobacillus rhamnosus ATCC 9595

  • Kim, Young-Hoon;Kim, Ji-Uk;Oh, Se-Jong;Kim, Young-Jun;Kim, Myung-Hee;Kim, Sae-Hun
    • Food Science and Biotechnology
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    • v.17 no.3
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    • pp.587-593
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    • 2008
  • Microbial exopolysaccharide (EPS) is a biothickener that can be added to a wide variety of food products, where it serves as a viscosifying, stabilizing, emulsifying, and gelling agent. The objective of this study was to investigate the optimum conditions of pH, incubation temperature, and whey protein concentration (WPC) for EPS production by Lactobacillus rhamnosus ATCC 9595. We found that maximal EPS production was achieved at a pH of 5.5 and temperature of $37^{\circ}C$. At the same fermentation conditions, EPS production was affected by the addition of L. rhamnosus GG (a weak-EPS producer). After growth for 24 hr, total EPS production was $583{\pm}15.4mg/L$ in the single culture system, and $865{\pm}22.6\;mg/L$ in the co-culture system with L. rhamnosus GG. Based on the presence of WPC, EPS production dramatically increased from $583{\pm}15.4$ (under no WPC supplementation) to $1,011{\pm}14.7\;mg/L$ (under supplementation with 1.0% WPC). These results suggest that WPC supplementation and the co-culture systems coupled with small portions of weak-EPS producing strain can play an important role in the enhancement of EPS production.

Study on the Change of Physical Properties in Polyurethane Foam by NCO index at the Aging Condition (NCO index에 따른 폴리우레탄 폼의 노화 물성변화 연구)

  • Kim, Kwangin;Kim, Sangbum
    • Journal of the Korean Institute of Gas
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    • v.16 no.6
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    • pp.115-122
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    • 2012
  • Polyurethane foams were synthesized with different contents and kinds of catalysts to know change of properties under various NCO index. UTM(universal testing machine), DSC(differential scanning calorimetry), SEM(scanning electron microscope) and FT-IR(Fourier transform spectroscopy) were used for studying the PUF's physical properties change. Compressive strength of PUF increased with increasing contents of catalyst. Glass transition temperature(Tg) and compressive strength of PUF using PC-8 and 33LV catalyst, increased with increasing NCO index at the aging. According to the results of Infrared spectral analysis, reduction of NCO peak was found in gelling catalyst, because unreacted NCO reacted with polyurethane. Although Tg and compressive strength of PUF using TMR-2, unchanged with increasing NCO index at the aging, because trimerization of isocyanate.

Magnetic fields-assisted movement of iron oxide-nanoparticles-incorporated large scale alginate capsules

  • Lee, Dohyeon;Park, Sunho;Kim, Daun;Nam, Hyeun;Kim, Jangho
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2017.04a
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    • pp.27-27
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    • 2017
  • Biocompatible capsules have recently been highlighted as novel delivery platforms of any "materials" (e.g., drug, food, agriculture pesticide) to address current problems of living systems such as humans, animals, and plats in academia and industry for agriculture, biological, biomedical, environmental, food applications. For example, biocompatible alginate capsules were proposed as a delivery platform of biocontrol agents (e.g., bacterial antagonists) for an alternative to antibiotics, which will be a potential strategy in future agriculture. Here, we proposed a new platform based on biocompatible alginate capsules that can control the movements as an active target delivery strategy for various applications including agriculture and biological engineering. We designed and fabricated large scale biocompatible capsules using alginates and custom-made nozzles as well as gelling solutions. To develop the active target delivery platforms, we incorporated the iron oxide nanoparticles in the large scale alginate capsules. It was found that the sizes of large scale alginate capsules could be controlled via various working conditions such as concentrations of alginate solutions and iron oxide nanoparticles. As a proof of concept work, we showed that the iron oxide particles-incorporated large scale alginate capsules could be moved actively by the magnetic fields, which would be a strategy as active target delivery platforms for agriculture and biological engineering (e.g., controlled delivery of agriculture pesticides and biocontrol agents).

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Cut-off Effect and Durability in Aquifer by Chemical Grouting (지반주입에 의한 대수층에서의 차수효과 및 내구성)

  • Song, Chi-Yong;Nam, Soon-Sung;Chun, Byung-Sik
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.11 no.4
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    • pp.189-200
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    • 1991
  • The purpose of this study is to examine the cut-off effect in aquifer by chemical grouting. Moreover, injection tests using specially prepared injection equipment of 1.5 shot system which hydrauric condition can be controlled are attempted to investigate the cut-off effect by confirming the gelling condition of samples according to the variation of flow velosity. And the permeability is measured according to changing of time by falling head test in order to consider the durability of grouts. Therefore to increase the cut-off effect in groundwater flow, shortening the gel-time according to the increasement of flow velocity, increasing the concentration and quantity of grouts(grouting ratio) according to the increasement of that, and as another direct method, contracting the distance between grouting holes or enlarging the grouting line should be done. These coefficients should be designed by data based on injection test in laboratory and field.

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Separation Performance and Application of Sericin Protein in Silk Degumming Solution(2) (실크 정련 세리신 단백질의 분리특성과 응용(2))

  • Cha, Chin-U;Park, In-Woo;Bae, Kie-Seo;Hong, Young-Ki;Lee, Seo-Hee;Kim, Yong-Duck
    • Textile Coloration and Finishing
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    • v.22 no.2
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    • pp.132-139
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    • 2010
  • Sericin pulverization process was applied by freezing-thawing of sericin protein concentration solution and physicochemical properties of sericin/chitosan blended films were investigated. In sericin pulverization process by freezing-thawing method, the refrigeration storage at $4^{\circ}C$ maximized gelling between sericin molecules, which increased 10% of recovery ratio from sericin concentration solution that using ultrafiltration procedure. In physicochemical properties of sericin/chitosan blended films, the maximum load of chitosan (6.7kgf) had higher than that of sericin (1.2kgf), and the elongation of sericin and chitosan had 96% and 34%, respectively. Also FT-IR analysis of sericin/chitosan blended films showed that both sericin and chitosan films had amide I peak (N-H bond) in $1,521cm^{-1}$ and amide II peak (C=O bond) in $1,630cm^{-1}$. In addition, it could confirm compatibility between both materials as indicated by the decrease in the amide I peak's absorption value as chitosan content increases.

Agar Hydrolysates Obtained from Jeju Island Attenuates the LPS-induced Inflammation in In Vitro and In Vivo Zebrafish Embryos (제주산 우뭇가사리 유래 한천 가수분해물의 항염 활성 효과)

  • Kim, Seo-Young;Sun, Hyeon-Jin;Eun, Chang-Ho;Kim, Kil-Nam;Jeon, You-Jin
    • Journal of Marine Bioscience and Biotechnology
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    • v.11 no.2
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    • pp.71-80
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    • 2019
  • Previously, agar obtained from Gelidum sp. has a small molecular weight and has the disadvantage of inherent viscosity properties and poor functionality as a dietary fiber. In order to improve aforementioned disadvantages, agar having a fluidity that can be added to food at a higher concentration that a powder agar having a gelling property at low concertation was manufactured. In addition, the anti-inflammatory activity of agar hydrolysates was evaluated to confirm their potential as a functional material. As a result, agar hydrolysates significantly reduced NO levels secreted by LPS-activated macrophages and inhibited the expression of iNOS and COX-2, which are inflammatory mediators that regulates NO secretion in macrophages. Furthermore, in in vivo zebrafish embryos model results demonstrated significant reduction of LPS induced NO production after the treatment of agar hydrolysate hydrolyzed for 360 min. In addition, ROS production and cell death by stresses were also reduced in LPS-exposed embryos after the treatment of agar hydrolysis product hydrolyzed for 360 min. Taken together, agar hydrolysate hydrolyzed for 360 min can be easily added into food due to their fluidity and used as a food ingredient that inhibits inflammation due to their anti-inflammatory property.