• Title/Summary/Keyword: 두부폐수

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Hydrogen Production from Tofu Manufacturing Wastewater by Heat-treated Anaerobic Microflora from the Concentrated Sewage Sludge (농축 하수오니 유래 열처리 혐기세균 복합체를 이용한 두부제조 폐수로부터 수소 생산)

  • Oh, You-Kwan;Kim, Mi-Sun
    • Journal of Hydrogen and New Energy
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    • v.19 no.5
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    • pp.410-416
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    • 2008
  • 합성 및 두부 제조 폐수로부터 혐기 세균 복합체를 이용하여 수소를 생산하였다. 수소생산 혐기 세균 복합체는 하수처리장 농축 소화조에서 발생하는 슬러지를 $90^{\circ}C$에서 20분간 열처리하여 얻었다. 혐기 세균 복합체는 $37^{\circ}C$ 회분식 운전조건에서 1% (w/v) 포도당 함유 PYG (peptone-yeast extract-glucose) 배지로부터 1.15 L-$H_2$/g-균체건조량의 수소를 생산할 수 있었고, 이때 주요 유기산으로 15 mM acetate와 32 mM butyrate가 생성되었다. 같은 발효조건에서 1.4% 전분과 0.07% 환원당을 포함하는 두부 제조 폐수로부터 1.76 L $H_2$/L-두부제조폐수의 수소를 발생하였다. 이와 같은 결과로 부터 포도당과 두부 제조 폐수로부터 혐기세균 복합체에 의한 수소생산 효율은 각각 1.9과 0.9 mol $H_2$/mol 포도당을 나타내었다. 반연속운전(HRT, 12 시간)시 합성폐수를 이용하여 60일 이상 안정적으로 수소를 생산할 수 있었고, 이 때 혐기 세균 복합체는 1.3-2.0 L $H_2$/L-배양액을 발생하였다. PCR-DGGE(polymer chain reaction-denaturing gradient gel electrophoresis) 분석결과, 반응기 내 세균 복합체의 주요 미생물은 Clostridium 종이었다. 본 연구는 적절한 열처리를 통해 혐기 소화조 슬러지로부터 고활성 수소생산 세균 복합체를 얻을 수 있으며, 이들 세균 복합체를 이용하여 합성 및 두부제조 폐수로부터 효율적인 수소생산이 가능하다는 것을 나타내고 있다.

Production of Microbial Pesticides by Soybean Curd Waste-water in Bacillus thuringiensis subsp. kurstaki HD-1 (Bacillus thuringiensis kurstaki HD-1 유래 미생물살충제 생산을 위한 두부공업폐수의 이용)

  • Ok, Min;Kim, Dae-Jin;Lee, Young-Chun;Choi, Yong-Lak;Cho, Young-Su
    • Journal of Life Science
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    • v.12 no.3
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    • pp.369-373
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    • 2002
  • The waste-water from the industry for production of a soybean curd (the soybean curd waste-water) was investigated to use for the substrate to produce the endotoxin of Bacillus thuringiensis subsp. kurstaki HD-1 used as one of well known microbial pesticides. The pH of the soybean curd waste-water was 9.8 and its chemical oxygen demand (COD), total nitrogen (TN) and phosphate (TP) were 276.0, 71.1 and 5.5mg/$\ell$, respectively. The higher was the concentration of the soybean curd waste-water in the medium, the more endotoxin was produced. Maximal sporulation occurred at which concentration of $K_2$HPO$_4$in the medium supplied with the soybean curd waste-water was 1% (w/v). Production of the endotoxin with the optimized medium supplied with the soybean curd waste-water was 1.5 times higher than that without the soybean curd waste-water. The soybean curd waste-water was found to be suitable substrate for production of the endotoxin of Bacillus thuringiensis subsp. kurstaki HD-1.

Production of ${\delta}-Aminolevulinic$ Acid in Soybean Curd Wastewater by Rhodobacter capsulatus KK-10 (두부공업폐수에서 Rhodobacter capsulatus KK-10을 이용한 ${\delta}-Aminolevulinic$ Acid의 생산)

  • Cheong, Dae-Yeol;Choi, Yang-Mun;Yang, Han-Chul;Cho, Hong-Yon
    • Applied Biological Chemistry
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    • v.40 no.6
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    • pp.556-560
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    • 1997
  • The removal efficiency of COD and the production of ${\delta}-aminolevulinic$ acid (ALA) were concurrently investigated for both purifying the soybean curd wastewater of high BOD and utilizing the wastewater as a renewable substrate of ALA production using Rhodobacter capsulatus KK-10. Its wastewater was a favorable media for the growth of photosynthetic bacteria in terms of its environmental characteristics having COD/BOD rate of 0.98, ratio of BOD : N : P=100 : 6 : 4, BOD/N ratio of 17.2, lactic acid of 1,080 ppm. Its COD value wastewater was decreased to 94% and dry cell weight was approached to about 1.2 g/l after cultivation of the photosynthetic bacteria for 4 days. By the addition of 15 mM levulinic acid (LA) into the wastewater at the middle log phase of cell growth, the amount of ALA secreted was 55 mg/l. The ALA production was considerably increased to 114 mg/l under the cultural condition of 15 mM supplementations of glycine and succinate with LA at the same period. Furthermore the maximum ALA production of 120 mg/l and COD removal efficiency of 92% were accomplished in the soybean curd wastewater enriched with one addition of 15 mM LA and three serial additions 15 mM ALA precursors.

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Change of Microbial Community and Fermentative Production of Hydrogen from Tofu Wastewater (두부 폐수를 이용한 수소생산 및 미생물의 군집 변화)

  • Jun, Yoon-Sun;Joe, Yoon-A;Lee, Tae-Jin
    • Journal of Korean Society of Environmental Engineers
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    • v.31 no.2
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    • pp.139-146
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    • 2009
  • In this study, characteristics of biological hydrogen production and microbial distribution were investigated with the wastewater of Tofu manufacturing process. Comparison of hydrogen production was conducted with acid or base pre-treatment of the wastewater. Maximum hydrogen production was acquired with combination of heat and acid treatment. Hydrogen production ($P_h$) and maximum hydrogen production rate ($R_h$) was calculated 661.01 mL and 12.21 mL/g dry wt biomass/hr from the modified Gompartz equation. Most of microbial community was analyzed as Streptococcus sp. from PCR-DGGE experiment of 16S rDNA. It was concluded that most significant microorganism for hydrogen production was Streptococcus gallolyticus sub sp. in this experiment.

Yeast Production from Soybean Curd Waste Water (두부 폐수를 이용(利用)한 효모(酵母) 배양(培養))

  • Chung, Ki-Taek;Song, Hyoung-Ik
    • Korean Journal of Food Science and Technology
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    • v.13 no.2
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    • pp.91-100
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    • 1981
  • As a primary study for SCP production from soybean curd waste water, selection of yeast and optimum cultivation condition of selected yeast on soybean curd waste water were investigated. Eighteen strains of the genus Candida and Saccharamyces were tested to compare their abilities to grow on soybean curd waste water. Candida utilis YUFE 1508 and Candida guilliermondii KFCC 35120 grew most successfully. Optimum pH and optimum temperature of the basal medium for growth of the two strains were $6.0{\sim}6.5$ and $25^{\circ}C$, respectively. The optimum culture medium of the two yeasts was soybean curd waste water supplemented with molasses 2.5% (as total sugar), ammonium acetate 0.1-0.3% (as nitrogen), $KH_2PO_4$ 0.1-0.2% (as phosphorus), and $K_2HPO_4$ 0.05% (as phosphorus). But yeast growth was not affected by metal salts. Under the optimum cultivation condition, the maximum cell weights of Candida utilis YUFE 1508 and Candida guillfermondii KFCC 35120 were 1.313g and 1.322g/100ml of culture broth respectively after 48 hr of cultivation. The cell yields of Candida utilis YUFE 1508 and Candida guilliermondii KFCC 35120 were 68.4% and 74.2%, respectively, based on utilized sugar. On the other hand, crude protein of dry yeast produced by Candida utilis YUFE 1508 and Candida guilliermondii KFCC 35120 under optimum condition was 54.0% and 56.8%, respectively.

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Soybean Whey Composition and Alcohol Fermentation by Using Saccharomyces Cerevisiae (두부폐액(廢液)의 조성(組成) 및 Saccharomyces Cerevisiae를 이용(利用)한 Alcohol 발효(醱酵))

  • Choi, Mi-Ae;Choi, Kyoung-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.11 no.2
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    • pp.31-35
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    • 1982
  • Alcohol fermentation was carried out by using the yeast (S. cerevisiae) and soybean whey as the sole carbon source. The whey was gained form waste after manufacturing of soybean curd. The whey contained approximately one gram sugar per hundred mililter and the sugar was consisted of a 65 per cent of reducing sugar. However, it showed a low protein content of 43mg per the same volume. Ammonium sulfate showed the best effect on the generation of carbon dioxide among three kinds of tested nitrogen sourogen sources, potassium nitrate, urea and ammonium sulfate. Thus, fermentation was carried out with supplement of 2.0g ammonium sulfate to one liter of soybean whey. During fermentation continued for 48 hours, the maximum amount of ethanol 1.86g was produced from one liter of soybean whey. The ethanol fermentation utilized 81 and 94% of its initial sugar and protein contents, respectively.

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Isolation of Photosynthetic Bacteria and the Cell Growth on Soybean-Curd Whey Wastes (광합성 세균의 분리 동정 및 두부 유청 폐수에서의 배양조건 검토)

  • Ji, Geun-Eog;Lee, Ke-Ho
    • Korean Journal of Food Science and Technology
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    • v.25 no.2
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    • pp.142-147
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    • 1993
  • For the purpose of fixing solar energy and utilizing water wastes from food industries for SCP(single cell protein), 170 strains of photosynthetic bacteria were isolated from 56 samples. Among 170 strains, B-Ps-106 strain was selected as the most suitable strain and identified as a variant or a relation of Rhodopseudomonas sphaeroides and its growth was better under anaerobic light condition than aerobic condition. The optimum conditions of the cell growth of B-Ps-106 were investigated on soybean-curd whey media. The optimum pH for cell growth was $8.5{\sim}9.0$. The optimum temperature was $30^{\circ}C$ and the optimum light density was above $0.72\;cal/cm^2/min$. The most favorable concentration of $K_2HPO_4\;and\;(NH_4)_2SO_4$ was both 0.9 g/l when added to soybean-curd whey media.

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Optimization of Bioflocculant Production Conditions for Organic Wastewater Treatment with Aeromonas hydrophila KH-54 (Aeromonas hydrophila KH-54가 분비하는 유기폐수처리용 생물응집제 생산조건의 최적화)

  • Seo, Ho-Chan;Lee, Jung-Suk;Yun, Zu-Whan;Yi, Yun-Seok;Cho, Hong-Yon
    • Applied Biological Chemistry
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    • v.41 no.6
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    • pp.465-470
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    • 1998
  • For the need of bio-degradable flocculant in stage of wastewater treatment, some cultural conditions of bioflocculant production were optimized with Aeromonas hydrophila KH-54. About 260 strains of type culture and bacteria isolated from marsh, pond, activated sludge, etc were examined for their ability to flocculate kaolin particles and swine wastewater. Among them, KH-54 showed the highest flocculating activity and was identified as Aeromonas hydrophila according to the cultural, morphological and physiological properties. The maximum production of the flocculant secreted by Aeromonas hydrophila KH-54 was observed in culture medium containing 2.0% mannitol, 0.05% ammonium chloride, 0.02% potassium phosphate dibasic, 0.01% $MgSO_4{\cdot}7H_2O$ and 0.05% yeast extract at initial pH 7.0 when cultured on rotary shaker controlled at $25^{\circ}C$ and 150 rpm. Under the optimized condition, the flocculating ability reached to 770 units/ml of kaolin flocculating activity and 81% of NTU removal efficiency against swine wastewater after 4 days cultivation. The bioflocculant was also effective on various organic wastewaters other than swine wastewater, showing NTU removal rate ranging from 92% to 34%.

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Efects of Chitosan on Cell Flocculation in Soybean Curd Wastewater Treated by Photosynthetic Bacteria (Chitosan에 의한 광합성세균 처리 두부공업폐수의 균체 응집효과)

  • 오준현;조홍연;양한철
    • Microbiology and Biotechnology Letters
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    • v.23 no.6
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    • pp.763-769
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    • 1995
  • As a mean to recover photosynthetic bacterial(PSB) cells and its practical uses in food industrial wastewater treatment, various biodegradable polyelectrolytes were first investigated for flocculation of suspended colloids in the PSB treatment process of soybean curd wastewater. Anionic polyelectrolytes such as sodium alginate and carrageenan were not effective but a cationic polyelectrolyte chitosan isolated from Portunus trituberclatus showed very effective flocculation activity. The concentration of chitosan, pH and temperature of wastewater for maximal flocculation were 40 mg/l, pH 7 and room temperature, respectively. Test using deacetylated chitosan to various degree showed higher flocculating activities in samples deacetylated over 75% and time for maximum flocculation was 40 min by stirring slowly under the above optimal conditions. Chitosan was not only effective to flocculate cells but also removed COD and MLSS of the wastewater. COD of 42% and MLSS of 87% were removed by addition of chitosan to the soybean curd wastewater treated with PSB.

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Production of Photosynthetic Bacterial Cells of Rhodospirillum rubrum P17 from Soybean Curd Waste Water (두부공업폐수를 이용한 광합성세균 Rhodospirillum rubrum P17의 균체생산)

  • 강성옥;조경덕;임완진;조흥연;양한철
    • Microbiology and Biotechnology Letters
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    • v.21 no.6
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    • pp.622-627
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    • 1993
  • Rhodospirillum rubrum P17 was used to investigate the pontential for the treatment of soybean curd waste and for the utilization of the biomass produced. The maximal biomass production and COD removal from the waste water were obtained at 30C, pH 7.0 under 2,500lux production and 50 rpm of agitation. The initial COD level of the soybean curd waste water was 3,240mg/l, and after 4 days of cultivation in batch culture, 3.46g/l of cells was obtained and COD level of the waste water reduced to 150mg/l (COD removal rate 95.4%).

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