• Title/Summary/Keyword: 덧유리

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The Effect of the Attached Glazing and Windbreak on the Thermal Performance and Air Tightness of Sliding window (덧유리 및 방풍재 적용을 통한 슬라이딩 창의 단열 및 기밀성능 개선효과 분석)

  • Bae, Min-Jung;Kang, Jae-Sik;Choi, Gyeong-Seok;Choi, Hyung-Joung
    • KIEAE Journal
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    • v.17 no.4
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    • pp.59-65
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    • 2017
  • Purpose: Thermal performance and air tightness of window are improved for the building energy efficiency. As the deteriorated houses are increased, the improve measures with low cost and easy installation are developed in the energy performance of window. Attached glazing and windbreak can be easily applied to the window with low cost. In this paper, the effect of the attached glazing and windbreak on the thermal performance and air tightness of window is analyzed as the measure to improve performance of window. Method: Thermal transmittance of glazing is evaluated through WINDOW simulation according to thickness of attached glazing and air cavity. Based on the simulation results, thermal transmittance, air tightness and condensation resistance performance of four cases are tested according to Korea standards. One type of PVC sliding double window is chosen as the specimen. For the analysis on low performance of window, the outside of window is excluded in the PVC sliding double window. Result: This study shows that thermal performance of glazing can be increased by the application of attached glazing. Furthermore, lower thermal performance of glazing can obtain the higher effect of attached glazing. The application of attached glazing and windbreak can effect on increasing thermal performance and air tightness of window.

Studies on the Fermentation on Soy Sauce by Bacteria (세균(細菌)을 이용(利用)한 간장 제조(製造)에 관(關)한 연구(硏究))

  • Ju, Hyun-Kyu;Ro, Sin-Kyu;Im, Moo-Hyun
    • Korean Journal of Food Science and Technology
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    • v.4 no.4
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    • pp.276-284
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    • 1972
  • A strain of Bacillus sp. which has powerful enzymatic activity and sets free a little amount of ammonia nitrogen and large amount of amino nitrogen was separated from Meju, Denzang, Chungkukjang, and paddy straw to make the soy-sauce rapidly and conveniently in the various mixing ratio of steamed soy-bean and wheat parched or steamed. Total nitrogen and amino nitrogen were increased during the maturing. The acidity of soy-sauce was increased to $1.15{\sim}1.98%$ than ordinary soy-sauce. pH were ranged in $4.6{\sim}6.0%$. The fermenting time takes 30 days while it takes at least 4 monthes in ordinary method. The best results were obtained with the mixed ratio of 1 : 1 or 1 : 2 (wheat : soy-bean).

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Effects of Mashing Proportion of Soybean to Salt Brine on Kanjang(soy sauce) Quality (메주의 담금비율이 간장의 품질에 미치는 영향)

  • Choi, Kwang-Soo;Choi, Jong-Dong;Chung, Hyun-Chae;Kwon, Kwang-Il;Im, Moo-Hyeog;Kim, Young-Ho;Kim, Woo-Seong
    • Korean Journal of Food Science and Technology
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    • v.32 no.1
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    • pp.174-180
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    • 2000
  • This work was carried out to investigate the effects of mashing proportion of meju(as wet weight basis of raw soybean) to 20% salt brine on the chemical compositions and sensory characteristics of kanjang. By increasing the salt brine proportion in the kanjang mash, total nitrogen, TCA soluble nitrogen and total free amino acid content in kanjang were decreased accordingly, but although pH values and organic acids content were not different noticeably, the major organic acids in kanjang, lactic acid, pyroglutamic acid and acetic acid were increased up to the mashing proportion of 1:2 from 1:1 and pH values decreased up to that of 1:2.5. Residual sugar content in 1:1 kanjang was exceptionally high. The major free amino acids in kanjang were glutamic acid, lysine, alanine and leucine. The acceptability scores of kanjang tested by sensory evaluation were decreased in inverse proportion to the salt brine proportion of kanjang mash, but those of kanjang samples with $1:1{\sim}1:2.5$ mashing proportions were not significantly different but that of 1:3 different from 1:1 statistically at 5% level. The major chemical compositions, significantly effective to the acceptability of kanjang, were found to be glutamic acid and free amino acid by statistical analysis.

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Studies on the Components Korean Sake (Part 2) -Detection of the Free Amino Acids in Takju by Paper Partition Chromatography- (한국(韓國) 주류성분(酒類成分)에 관(關)한 연구(硏究) (제2보(第2報)) -Paper Chromatography에 의(依)한 탁주중(濁酒中)의 유리(遊離) Amino 산(酸)의 검색(檢索)-)

  • Kim, Chan-Jo
    • Applied Biological Chemistry
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    • v.9
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    • pp.59-64
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    • 1968
  • Takju (Korean native Sake) was mashed with two different materials. One of the material was polished rice and Nuruk(mold wheat), the other one was corn and Nuruk. The amino acids in those fermenting mashes were identified by paper partition chromatography at regular intervals. The results were summarized as follows; a) Following 14 kinds of amino acids were identified in the mash of rice material; lysine, valine, proline, leucine, serine, glycine, aspartic acid, alanine, cystine, tyrosine, histidine, glutamic acid, tryptophan and phenylalanine b) Following 12 kinds of amino acids were identified in the mash of corn material; lysine, valine, proline, leucine, serine, glycine, aspartic acid, alanine, cystine, histidine, argrinine and tryptophan. c) The main amino acids in the Takju mash according to the color density of the each amino acid spot on the paper chromatograms were checked as lysine, valine, leucine, serine, proline and glycine.

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Studies on the Yeasts for the Brewing of Soy sauce(Part 7) -Industrial utilization of Saccharomyces rouxii $T_9$ in the brewing of soy sauce- (간장발효에 관여하는 효모에 관한 연구 (제 7 보) -Saccharomyces rouxii $T_9$을 이 용한 간장의 발효시험-)

  • Lee, Taik-Soo;Lee, Suk-Kun;Chu, Young-Ha;Shin, Bo-Kyu
    • Applied Biological Chemistry
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    • v.14 no.2
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    • pp.121-129
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    • 1971
  • During the Brewing of Soy Sauce on an industrial scale, Saccharomyces rouxii $T_9$ was cultured and added to the soy sauce mash. The comparative experiments of soy sauce mash in non-addition and addition group of yeast were examined in this report. The yeast flora and chemical composition of Soy sauce mash through out the brewing were observed and the results obtained were as follows. (1) The number of Osmophilic yeast in one ml of soy sauce mash showed $185{\times}10^3$ 1 month after mashing and $750{\times}10^3$ 4 months after mashing in case of yeast group, while presented as $98{\times}10^3$ 1 month after mashing and $394{\times}10^3$ 4 months after mashing in case of non-yeast group. And the number of Osmphilic yeast in yeast group was twice of that in non-yeast group. (2) The number of ordinary yeast of TTC red group was shown as $2132{\times}10^3\;to\;3252 ×10^3$ 5 to 6 months after mashing in case of yeast group, while presented $752{\times}10^3\;to\;1251{\times}10^3$ in case of non-yeast group. And the yeast group was shown more than non-yeast group in ordinary, red pink and pink yeast number. (3) TTC red yeast were strongly appeared in both addition and non-addition group of yeast from 1 month after mashing to 6 months after mashing. (4) Though total nitrogen, pure extract, pH and buffer action contents of soy sauce showed similiar tendency in yeast and non-yeast group, alcohol and color density contents were highly appeared in yeast group and reducing sugar content was in non-yeast group respectively. (5) By the results of Organic function test of soy sauce mash, the difference of taste quality in yeast and non-yeast group were not evidently appeared, however, the appearance and flavour of the soy sauce were better in yeast group than in non-yeast group.

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