본 연구는 2015년과 2016년에 ‘상주둥시’ 감의 수확시기 를 달리하여 수확 후 PE필름, 1-MCP 및 AVG를 처리가 저온저장동안 과실의 품질에 미치는 영향을 조사하였다. 2016년 과실 수확시기는 2015년에 비하여 10일 빠른 조기 수확을 실시하였다. 과실의 에틸렌 발생 정도는 조기수확 한 과실들에서 현저히 낮았고, 과실의 경도는 저온저장동안 1-MCP 처리구들이 다른 처리구의 과실에 비하여 높게 유지되었다. 과실의 감모율은 수확기를 달리한 모든 과실 들에서 PE 필름 처리 과실들에서 현저히 억제되었다. 성숙기에 수확한 과실은 저온저장 중 과실의 꽃받침 부위과 경와부의 과피색(L* 및 b*) 변화를 보면 무처리와 PE필름 처리구에 비하여 1-MCP 처리구들이 그 변화정도가 낮았다. 과실의 부패와 연화정도는 PE필름 처리 과실들에서 높게 나타났지만 AVG 처리구들에서는 부패과 발생이 없었다. 그리고 조기수확한 과일은 성숙기에 수확한 과실에 비하여 경도가 높게 유지되었고, 과피색의 변화가 낮은 경향을 보였고, 성숙기에 수확한 과실들은 당도, 과피의 적색 (Hunter a 값) 발현 및 호흡율이 높게 나타났다. 따라서 감 과실의 저장성 향상을 위해서는 조기수확이 중요한 요인으로 작용하고 또한 수확 후 1-MCP 처리가 과일의 경도를 높게 유지하고 과피색의 변화를 억제하였으며, 과실의 감 모율은 PE 필름 처리에 의해 현저하게 억제됨을 확인하였다.
We investigated the effect of PE film thickness on the modified atmosphere packaging (MAP) deastringency of ‘Sanggamdungsi’ (Diospyros kaki cv.) astringent persimmon at room temperature (25°C) and low temperature (-1°C). The fruits were individually packaged with PE film of which the thickness is 60, 80, 100, 115 or 130 μm and stored at room or low (-1°C) temperature. At room temperature, firmness shows the highest value (23.3-26.5) at 100 μm thickness. Top flesh browning and decay was monitored at 20 days after storage, and peel blackening and style-end softening was negligible at optimal thickness. Therefore, optimal film thickness of deastringency at room temperature is 80-100 μm. At this thickness, the astringency was removed after 5 days and the fruits can be distributed until 10 days after the MAP. At low (-1°C) temperature, firmness was maintained regardless of film thickness. However, the firmness is higher as the film is thicker. Top flesh browning and decay was not occurred even after 90 days after storage. Peel blackening and style-end softening was monitored at 90 days after storage. Off-flavor was monitored at 115 and 130 μm thickness. Therefore, optimal film thickness of deastringency at low (-1°C) temperature is 80-100 μm. At this thickness, the astringency was removed after 50 days and the fruits can be distributed until 80 days after the MAP.
The aim of the research is suggesting the curing method and selection of surface-covered curing materials with the goal of achieving non-cracking concrete by applying on the actually constructed top slab of the apartment and comparing the surface covering method using single-layered white bubble sheet with the surface covering method using polyethylene film.
This research evaluated the environmental impact of waste film used in the farming industry which is subject to voluntary agreement by Waste Charge System using Life Cycle Assessment (LCA). When analyzing the environmental scores applying weighted values, production of raw materials, production of goods and disposal had nearly 73%, 15% and 11% of contribution to the environmental impact and also, amongst impact categories, resource depletion and global warming had 63% and 32% of contribution respectively. For resource depletion which had the highest contribution, production of raw materials, production of goods and disposal occupied around 86%, 9% and 4% of it, and the impact category of resource depletion that belongs to production of raw materials, accounted for about 54% of the whole environmental score. Here, over 95% of it was caused by crude oil. When investigating the contribution of each phase to global warming that is the key issue of low carbon green growth, production of raw materials, production of goods and disposal had respectively, 45%, 28% and 27% of contribution. As the result, production of goods and disposal had higher contributions than resource depletion. The entire contribution of production of goods and disposal to global warming was about 17%, and it is predicted that it would bring a huge impact, considering the possibility of establishing improvement plans. In the production of goods, electricity consumed was the main cause of global warming, and electricity used in the recycling process and incineration occupied approximately 52% and 42% of the disposal stage. In conclusion, we should pay attention to energy used in the production of goods and recycling for improving an environmental competitiveness of goods, and reduction of energy would be able to satisfy economic feasibility and environmental efficiency of the whole process of agricultural PE film.
PE필름과 스티로폴 상자를 이용한 생강 저장시 탄산가스 흡착제 및 저장 온 .습도가 생강의 저장성에 미치는 영향을 구명하기 위하여 PE필름이나 스티로폴 상자에 생강을 저장하여 온 습도와 환기공수 및 탄산가스 흡착제 처리에 따른 효과를 검토해 본 결과는 다음과 같다. PE 필름 포장에 의해 중량감소가 현저하게 억제되었으며 0.05 mm보다 0.08 mm에서 중량감소율은 낮았으나 부패율 및 곰팡이발생율이 높았고, 저장온도별로는 15에 비하여 1에서