PURPOSES : Construction standards have resolved overlaps and conflicts between different standards and fields through the introduction of a code system. However, the sub-technical standards were established based on the construction standards at the time of their creation and have not been revised. This has resulted in poor integration and conflicts with revised construction standards, reducing their practical applicability in the construction field. Consequently, to enhance the practical applicability of sub-technical standards and ensure their integration with construction standards, this study aimed to devise technical guidelines for sub-technical standards. METHODS : A brainstorming session was conducted with field experts to evaluate the applicability and necessity of the currently distributed sub-technical standards in the field. Each sub-technical standard was reviewed to determine whether it should be retained or abolished. On the basis of the review results, this study developed a set of draft technical guidelines (Korean Design Standard Guideline (KDSG)/Korean Construction Specification Guideline (KCSG)) for the sub-technical standards that required retention. RESULTS : A comprehensive survey of sub-technical standards identified a total of 154 standards. Of these, 109 were deemed necessary to retain, whereas 45 were considered unnecessary to retain. Among the sub-technical standards requiring retention, 20 were selected for the development of technical guidelines based on their relevance and applicability to the construction standards. A draft of these technical guidelines was subsequently prepared. CONCLUSIONS : A plan was devised to assign technical guideline codes to 20 subordinate technical standards that were deemed consistent with the road construction standards (KDS/KCS 44 00 00). This approach can provide a foundation for reorganizing the system of road construction standards and subordinate technical standards, thereby enhancing their practical usability in the construction field.
2022년 10월부터 2023년 5월까지 친환경 딸기재배 농가에서 점박이응애는 칠레이리애응애와 사막이리응애, 진딧물은 콜레마니진디벌을 대상으로 하는 천적처리구와 유기농자재를 사용하는 관행방제구에서 천적의 해 충 밀도억제 효과를 조사하였다. 천적처리구에서 점박이응애 성충 밀도는 잎당 1.5마리 이하, 알은 4개 이하로 관리되었고, 사막이리응애는 잎당 최대 0.4마리까지 증가하여 점박이응애 밀도억제에 많은 영향을 미친것으로 보인다. 반면, 관행방제구에서 점박이응애 밀도는 천적 방사구에 비하여 오히려 많은 발생량을 보였지만, 3월 9일부터는 사막이리응애의 증가와 유기농자재의 효과로 점박이응애 밀도는 급격하게 감소하였다. 진딧물 천적 처리구에서 진딧물 밀도는 1월부터 발생하였으며 3월 상순에 잎당 0.3마리까지 증가하였으나 이후 감소하였고, 콜레마니진디벌은 진딧물 발생이 많지 않아 3.9마리/㎡(2회) 방사하는 데 그쳤다. 한편, 관행방제구 포장의 진딧 물은 유기농자재의 영향으로 거의 발생하지 않았다.
In this review, we examine the latest technological developments in the utilization of truffles, a gourmet ingredient reputed to be one of the "world's three greatest delicacies," considering changing global consumption trends. Global demand for truffles is expected to increase steadily, with an average annual growth rate of 8.9% from 2023 to 2030. As truffles are expensive, the demand for truffles is expected to be concentrated in developed countries such as the United States, European countries, and Japan. In Korea, truffles are utilized in various industries, including food, functional foods, and cosmetics. Korean consumer demand for truffles has consistently remained high since 2019, and truffle products have been performing well in the market. Consequently, there exists substantial potential demand for newly developed truffle-related products and technologies. This review aims to provide objective research information through the systematic analysis of patent applications in Korea and internationally, focusing on technologies involving truffles, and can aid in setting directions for research and development.
The importance of biocomposites has increased owing to the changes in global consumption trends and rapid climate change. Technologies using mushroom mycelium cultivation, and molding methods for mycelial application have gained attention as potential strategies for producing eco-friendly composites. Currently, mushroom mycelia are used as raw materials for food and cosmetics; however, research on their utilization as biocomposite materials is limited. Therefore, the potential for the development of mushroom mycelium-related products and technologies is high. This review analyzes the domestic and international patent application trends related to the technologies for composite (packaging, insulation, adhesives, and leather) and food (substitute for meat) materials using mushroom mycelium, as an eco-friendly biocomposite material, to provide objective patent information that can further research and development (R&D) in this field.
By Foreign Trade Act and the relevant laws, any organization which intends to export strategic items shall be classified whether the products, S/W, or technology are strategic items and obtain an export license from the Nuclear Safety and Security Commission (NSSC) in case those are nuclearrelated strategic items. The NSSC and KINAC conduct outreach activities to enhance the recognition and implementation of nuclear export and import control. However, ensuring that all target organizations identify and comply with relevant legislation and laws is difficult. Therefore, the government and regulators should continuously make efforts to reduce blind spots for nuclear export and import control. KINAC established the National Nuclear Technology Information Collection and Analysis System (NNTICAS) to find nuclear-related companies through online website information of various companies and to list organizations that handle nuclear-related strategic items. Based on the NICE corporate information website, NNTICAS finds related companies using dynamic collection methods through interactions such as search word input, search button input, check box click, and collected text from each company website using static collection methods through URL address access and HTML source code extraction. After that, the text contained on the company website is analyzed to check whether the predefined normalized word is included, and if the normalized word appears at a certain number or higher, it is judged as a potential target company dealing with nuclearrelated strategic items. Information on the potential target company is compared with the export controlled item list and finally classified as a target company dealing with nuclear-related strategic items. According to the comparison a manually analyzed result of potential target companies and finally selected target companies NNTICAS, it is confirmed that predefined normalized words need to be more detailed, and a controlled item list such as axes (0B001.b.2) needs to be additionally processed. In addition, if the collection is repeated without completing the previous classification of the collected corporate information, it is also possible to collect companies in cosmetics, semiconductors, and displays. Although it was confirmed that some supplementation is needed to use this system to select target companies for the outreach activity, it is also confirmed that target companies for outreach activity can be expanded through this system and is expected to increase the implementation rate and reduce the blind spot for nuclear export and import control.
본 연구는 기독교선교를 활성화하기 위한 목적으로 이미 우리는 4차 산업혁명시대에 살고 있고 이와 관련한 다양한 IT기술을 주변에서 쉽게 찾아볼 수 있다. 인터넷 세상, 사물인터넷 세상 그리고 인공지능과 빅데이터의 IT기술이 여러 산업군에도 적용되어 사용되고 있는 현재의 이러한 환경적인 상황에서 선교활동이나 선교와 관련되어 필요한 여러 활동들 또한 이러한 IT를 고려해야 할 필요성이 있다. 특히 코로나-19 의 영향으로 더더욱 IT기술을 고려해야 하는 이유이다. 코로나-19 환경을 극복하고 4차산업혁명 시대의 IT기술을 활용하여 선교를 활성 화하기 위한 방안을 파악해보고, 선교 활동에서 어떤 영향이 있는지를 살펴본다. 본 연구에서는 IT기술을 활용하여 기독교 선교에 영향을 줄 수 있는 부분을 다양한 시각으로 알아보고 선교와 관련하여 적용가능 한 기술적 측면과 실제 메타버스 적용사례와 이와 관련한 연관성을 찾아보기 위한 방안을 모색한다. 우리는 현재 비대면, 온라인 시대에서 삶을 살아가고 있다. 이러한 환경에서 기독교 선교를 활성화하기 위한 방안을 생각해 보고, 이를 메타버스라는 하나의 가상공간에서 실현할 가능성을 파악해야 한다.
국내 생태계의 환경유전자 적용도 가속화되고 있으나 생산된 데이터를 처리하고 분석하는데 한계를 느끼고 있으며, 분석 생산된 생물데이터의 신뢰성에 대한 의구심이 제기되기도 하고 시료 매체 (대상 시료, 물, 공기, 퇴적물, 위내용물, 분변 등) 간의 방법에 따른 차이와 분석 방법의 정량화와 개선 등이 필요한 상태이기도 하다. 따라서 국내 생태계의 환경 유전자를 활용한 생물다양성 연구의 신뢰성과 정확성을 확보하기 위해서는 생태분류학으로 축적된 데이터베이스를 적 극적으로 활용하여 검증 절차를 거치고, 유전자 서열 분석으로 높아진 데이터의 해상력을 전문가들이 검증하는 과정이 반드시 필요하다. 환경유전자 연구는 분자생물학적인 기술 적용으로만 해결될 수 없으며, 생산된 데이터의 신뢰성을 확보하기 위한 생태-분류-유전학-인포메틱스 등 학제 간의 연구 협력이 중요하며, 다양한 매체를 다루는 연구자들이 함께 접근할 수 있는 정보 공유 플랫폼이 절실한 분야이며, 발전의 속도도 급격하게 진행될 것이고 축적되는 데이터는 수년 내에 빅테이터로서 성장할 수 있을 것으로 기대된다.
In this paper, we propose a system architecture of the AMI to be applied in the modern agricultural sector. Agricultural electricity costs in South Korea is very inexpensive compared with other industries. It is expected to increase oil prices to rise over the medium to long term so the facilities must to be installed for farmers in terms of energy savings and energy costs. The research and development of plant factory which can replace the ills of modern agriculture is very active. The technologies of smart grid and plat factory are good paradigm of next generation agricultural sector. Good use of smart grid technologies, the traditional energy consumption industries, agriculture sector can be self-sufficiency industry. In this article the AMI architecture is developed and it will be applicable for modern farmers plant factory.
고정발생원으로 부터 배출되고 있는 이산화탄소를 분리하여 회수 및 재이용하는 기술개발이 에너지 보전 측면에서 뿐만 아니라 환경오염 문제 등을 해결할 수 있는 중요한 과제이다. 특히 내열성, 내식성 및 기계적 강도가 뛰어난 세라믹의 특성을 이용한 기체분리막을 응용한다면 고온으로부터 저온까지의 폭넓은 온도, 압력, 가스조성의 배기가스로부터 이산화탄소를 분리하는 것이 가능해 진다. 따라서 본 총설에서는 현재 일본에서 국책과제로 진행되고 있는 이산화탄소의 고온분리에 대한 연구개발(이하, 'CO2 프로젝트'로 약칭) 현황을 소개하고자 한다.
To prevent climate change which is thought to be caused by the carbon dioxide emitted from industrial facilities by human activities, the efforts to reduce the concentrations of carbon dioxide in the atmosphere have been widely made. One of the method is to capture carbon dioxide by liquid absorbent. In this method, flue gas containing carbon dioxide is introduced to the absorber where the absorbent captures carbon dioxide selectively. After capturing, carbon dioxide is separated by heat at desorber and separated CO2 is transprted to storage site such as deep ocean or underground. However, stored CO2 is not permanently stable and these can be problematic that can cause ecosystem destruction due to low pH of the gas. By applying metal cation supplying unit after the capture process, carbon dioxide can be converted to metal carbonate salt in solid phase which can be stored stably or can be utilized or reused for industrial application. In this research, the mechanisms of carbon dioxide conversion were suggested and basic properties and conditions of the system were introduced.
The concentration of carbon dioxide in atmosphere is gradually increasing as industrial activity is being facilitated. Since most of the industries are getting their energy from fossil fuels such as coal, petroleum and gas, carbon dioxide production is inevitable. However, by applying suitable carbon capture process at the end of the carbon dioxide emission facilities, the amount of carbon dioxide emitted to atmosphere can be significantly reduced. Thus, Carbon Capture and Storage (CCS) technologies have been developed by many nations. In that technology, captured carbon dioxide is stored in deep ocean or the underground holes. However, considering environmental effects and geological distinct characteristics, CCS technologies are thought to be developed finding new way to handle captured carbon dioxide. One of the method is to turn captured carbon dioxide into precipitated calcium carbonate salt by adding calcium ions. Conventionally, calcium carbonate salt formation is achieved by reaction under high pressure and temperature. However, this method requires large amount of energy to maintain reaction condition. Hence, carbon dioxide reduction and utilization technology through carbon fixation or carbonation in aqueous phase is proposed in this research. Using aqueous absorbent, carbon dioxide is captured and precipitated calcium carbonate salt was formed by adding calcium ions. All of the reaction occurred under ambient temperature and pressure (1 atm, 298.15 K). The amount of carbon dioxide reduction as well as yield of precipitated calcium carbonate salt were considered. Also, through instrumental analysis including Scanning Electron Microscope (SEM), X‐Ray Diffraction (XRD) and Thermogravimetric Analysis (TGA), possibility of final product utilization was investigated.
과거의 온라인 게임은 일대일 접속으로 두 사람만이 데이터를 주고받으며 게임 할 수 있었으나 현재의 온라인 게임은 MMORPG라고 해서 수만 명의 사람들이 동시에 접속이 가능하다. 특히 우리나라는 세계 어느 나라에서 찾아 볼 수 없는 네트워크 인프라를 확보하고 있다. 거의 모든 가정에 초고속 인터넷 통신망이 설치되어 있으며 높은 인구 밀도는 이런 인프라의 형성을 가속화하는 것을 가능하게 했다. 하지만 이러한 온라인 게임의 급격한 증가는 제한적인 인터넷의 통신용량에 대하여 트래픽의 증가로 이어지고 온라인 게임이 접속이 불안정해지거나 접속이 다운되는 상태로 이어질 가능성이 높다. 이러한 문제를 해결하기 위해 각 게임 서버를 보다 확충함으로서 해결할 수 있으나 그럴 경우 고비용을 필요로 하게 된다. 본 논문에서는 이러한 문제점을 해결하고자 현재의 온라인 게임에서 사용되고 있는 컨텐츠별로 나누어진 게임 서버들을 지 역 클러스터 링 형태로 연결하고, 부하 균등화(Load Balancer)서버로써 특정한 게임 서버의 부하를 감소시키고 게임 서버의 성능 향상과 효율적인 게임 서버 운용을 위하여 부하 균등화 기법을 제안한다. 본 논문에서는 그룹별 각각 다른 서비스를 하고 CPU 사용율의 자원정보를 이용하여 효율적으로 부하를 균등화하는 기법을 제안한다. 각각 서로 다른 게임을 서비스하는 그룹들은 컨텐츠들에 대한 수정, 삭제, 추가 등 자원 정보 변경으로 인하여 깨어질 수도 있는 자원 정보 일관성을 유지하기 위해 네트워크 파일 시스템에 연결되어 운영된다. 성능 실험을 통해 기존의 RR방식과 LC방식보다 제안한 방식이 각각 12%와 10%의 응답시간 향상을 보여주었다.