Journal of the Korean Society of Food Science and Nutrition (한국식품영양과학회지)
- Volume 13 Issue 3
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- Pages.251-258
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- 1984
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- 1226-3311(pISSN)
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- 2288-5978(eISSN)
Studies on Stability for the Quality of Ginseng Products -5. Improvement of Physical Properties on Moisture Sorption of Spray Dried Red Ginseng Extract Powder-
인삼제품(人蔘製品)의 품질안정성(品質安定性)에 관한 연구(硏究) -5. 홍삼정분(紅蔘精粉)의 흡습물성(吸濕物性) 개선(改善)-
- Choi, Jin-Ho (Department of Nutrition and Food Science, National Fisheries University of Pusan) ;
- Byun, Dae-Seok (Department of Nutrition and Food Science, National Fisheries University of Pusan) ;
- Ro, Jae-Il (Department of Nutrition and Food Science, National Fisheries University of Pusan) ;
- Park, Kil-Dong (Korea Ginseng & Tobacco Research Institute) ;
- Sung, Hyun-Soon (Korea Ginseng & Tobacco Research Institute)
- Published : 1984.09.30
Abstract
In order to improve the physical properties on moisture sorption of spray dried red ginseng extract powder (SD-RGEP), the various additives and coating agents were treated, and solubility, sedimentation rate and storage stability of RGEPs treated were investigated. For the moisture-proofing, additive itself was effective in the order casein>dextrin>starch>avicell, but RGEPs treated with additives were effective in the order cord oil+tween-40>starch>casein. But there was no significant difference between RGEP treated less than 1% additive and the moisture-proofing. The coating effect of AEA and CAP on RGEP could not be recognized for the moisture-proofing, whereas that of HPC, corn oil, lecithin and HPC+corn oil was proved to be very effective for the moisture-proofing of RGEP. Also it is required to control the initial moisture content of RGEP. The sedimentation rate of RGEP nontreated was 65.1 seconds, whereas that of RGEPs coated with 1% HPC, 1% corn oil, 1% lecithin and 1% HPC+0.5% corn oil was in the range of 96.2 to 114.3 seconds. The sedimentation rate of RGEPs coated was 1.5 to 1.8 times higher than that of RGEP nontreated, and there was significant difference between solubility and sedimentation rate. Therefore it was no matter for the keeping quality. The sorption rates of RGEPs coated with lecithin
홍삼정분(紅蔘精粉)의 흡습물성(吸濕物性) 개선(改善)에 의한 품질안정성(品質安定性)을 유지(維持)하기 위하여 천연(天然)고무질, 다당류(多糖類), 단백질(蛋白質) 및 지질(脂質) 등을 첨가(添加) 및 피막처리(被膜處理)하여 흡습율(吸濕率), 용해도(溶解度), 침강속도(沈降速度) 등을 비교(比較)하였으며 학대조건(虐待條件)하에서 장기저장(長期貯藏)하면서 피막처리제품(被朧處理製品)의 품질안정성(品質安定性)을 비교(比較)하였다. 1. 첨가제(添加劑) 자체의 방습효과(防濕效果)는 casein>dextrin>starch>aviceil의 순(順)이었으며 첨가(添加)했을 때는 corn oil + tween 40>starch>case의 순(順)으로 효과(效果)가 인정되었으나 대조구(對照區)에 비해 1%의 첨가(添加)로는 만족할만한 효과(效果)를 기대할 수 없었다. 2. 홍삼정분(紅蔘精粉)의 피막처리(被膜處理)에 사용된 피막제(被膜劑) 중에서 AEA, CAP 등은 방습효과(防濕動果)를 인정할 수 없었지만 HPC, corn oil, lecithin, HPC+corn oil등은 상당한 방습효과(防濕效業)가 인정되었으며 피막처리(被膜處理) 전에 홍삼정분(紅蓼精粉)의 초기수분함량(初期水分含量)을 조정(調整)할 필요가 있다고 판단되었다. 3. 1%이하의 피막제(被膜劑)처리(處理)에 의한 홍삼정분(紅蓼精粉)의 용해도(溶解度)에는 문제(問題)가 없었으며 침전속도(沈澱速度)를 비교(比較)하더라도 대조구(對照區) (65.1 sec)에 비해 1% HPC, 1% corn oil, 1% lecithin, 1% HPC +0.5% corn oil 처리구(處理區)(95.2
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