• Title/Summary/Keyword: R&D of Green Energy

Search Result 141, Processing Time 0.031 seconds

Characteristics of Hydrogen Sulfide Removal by a Catalyst-assisted Plasma System (촉매-플라즈마 반응 시스템을 이용한 황화수소의 처리특성 연구)

  • Lee, Jeong-Keun;Kim, Hyeok-Gyu;Bong, Choon-Keun;Park, Seong-Jin;Lee, Myong-Hwa;Hwang, Ui-Hyun;Kim, Jong-Ho
    • Journal of Korean Society for Atmospheric Environment
    • /
    • v.27 no.4
    • /
    • pp.379-386
    • /
    • 2011
  • Catalyst-assisted plasma system with a DBD (Dielectric Barrier Discharge) reactor was used to remove hydrogen sulfide, which is one of the odorous species in this study. The ${\gamma}-Al_2O_3$ and ${\beta}$-Zeolite catalysts impregnated by Ag, Cu and Mn species were employed as catalysts and their $H_2S$ removal characteristics under plasma irradiation were investigated. From the experimental study, we found that the $H_2S$ removal efficiency increases with decreasing space velocity in the system and increasing specific input energy. Furthermore, ${\beta}$-Zeolite catalysts are efficient to remove $H_2S$ than ${\gamma}-Al_2O_3$ catalysts. Especially, the catalysts impregnated by Ag have higher removal efficiency than other catalysts (Cu, Mn).

Analysis on the National R&D Trends Related to Agro-Healing Using NTIS R&D DATA in Korea (NTIS 국가연구개발사업 정보를 활용한 치유농업 국가 R&D 동향 분석)

  • Jung, Yeo-Joo;Kim, Jeong-Eun;Ryu, Jin-Seok;Yang, Myung-Seok;Kim, Dae-Sik
    • Journal of Korean Society of Rural Planning
    • /
    • v.27 no.3
    • /
    • pp.85-92
    • /
    • 2021
  • As the paradigm of green has been expended as the core of sustainable development in Korea, agro-healing projects increasingly have been a priority at the national policy and investment area. But little is known about the current overview of national research and development(R&D) related to agro-healing. The aim of this study was generally to investigate the research trends of national R&D related to agro-healing over the past five years. Dataset were gathered from provided by National Science & Technology Information Service(NTIS), word cloud techniques were applied. The main results showed that amounts of number and funding related to agro-healing projects have been increasing. In particular, the Rural Development Administration had the highest number of research, and it was found that the Ministry of Trade, Industry and Energy have spended a lot of money on agro-healing. As a results, it is necessary to expand the scope of the field of agro-healing projects, especially at the multisectoral and intersectoral level for improving health, well-being and a sustainable future.

ECONOMIC ASSESSMENT OF THE SOLAR-ENERGY SYSTEM USING LIFE CYCLE COST ANALYSIS

  • Chang-Yoon Ji;Dong-Won Jang;Taehoon Hong;Chang-Taek Hyun
    • International conference on construction engineering and project management
    • /
    • 2009.05a
    • /
    • pp.669-675
    • /
    • 2009
  • As the use of new and renewable energy is one of the ways by which the exhaustion of fossil fuels and the other existing environmental problems can be addressed, a policy of spreading information regarding it and of conducting R&D related to it is currently being implemented in advanced countries. In the construction field, the concept of "green building" was born, and the application of this concept has increased, with the end in view of achieving energy savings, resource savings, and recycling, and of conserving the natural environment. In this context, the government of Korea amended the "Law on the Development, Use, and Promotion of New and Recycled Energy" in 2004, which contains 11 provisions related to new and renewable energy and their sources, including solar and geothermal energy as well as sunlight, water, rainfall, and organisms. Since solar-energy should be used instead of fossil fuels by converting sunlight directly into electricity, many researches on this subject are in progress. There are few researches, however, employing the economic approach to the subject. Thus, in this study, an economic assessment of the solar-energy system was conducted using both life cycle cost (LCC) analysis and sensitivity analysis. The results of the LCC analysis show that the solar-energy system will become economically better than the fossil fuel system after 16 years, although the initial construction cost of the solar-energy system is higher than that of the fossil fuel system. The results of this study are expected to be used in selecting an eco-friendly and economical solar-energy system when the construction of a green building is planned.

  • PDF

An Efficient Synthesis of GUDN as Green Oxidizer (친환경 산화제 GUDN의 효율적 합성)

  • Sul, Min-Jung;Joo, Young-Hyuk;Jeong, Won-Bok;Park, Young-Chul
    • Journal of the Korean Society of Propulsion Engineers
    • /
    • v.17 no.6
    • /
    • pp.97-104
    • /
    • 2013
  • N-Guanylurea dinitramide (GUDN) is an energetic material with low sensitivities and good performance for use as propellants or insensitive munitions explosives. The efficient synthesis and characterization of high energy density material of GUDN is reported. GUDN was characterized spectroscopically as well as elemental analysis. In addition, the heats of formation were calculated with the Gaussian 09 suite of programs. For initial safety testing, the impact sensitivity and the friction sensitivity were tested following BAM procedure.

Design and Operation of a Small-Scale Hydrogen Liquefier (소형 수소액화기 설계 및 운전에 관한 연구)

  • Baik, Jong Hoon;Karng, Sarng Woo;Kang, Hyungmook;Garceau, Nathaniel;Kim, Seo Young;Oh, In-Hwan
    • Transactions of the Korean hydrogen and new energy society
    • /
    • v.26 no.2
    • /
    • pp.105-113
    • /
    • 2015
  • In order to accelerate hydrogen society in current big renewable energy trend, it is very important that hydrogen can be transported and stored as a fuel in efficient and economical fashion. In this perspective, liquid hydrogen can be considered as one of the most prospective storage methods that can bring early arrival of the hydrogen society by its high gravimetric energy density. In this study, a small-scale hydrogen liquefier has been designed and developed to demonstrate direct hydrogen liquefaction technology. Gifford-McMahon (GM) cryocooler was employed to cool warm hydrogen gas to normal boiling point of hydrogen at 20K. Various cryogenic insulation technologies such as double walled vacuum vessels and multi-layer insulation were used to minimize heat leak from ambient. A liquid nitrogen assisted precooler, two ortho-para hydrogen catalytic converters, and highly efficient heat pipe were adapted to achieve the target liquefaction rate of 1L/hr. The liquefier has successfully demonstrated more than 1L/hr of hydrogen liquefaction. The system also has demonstrated its versatile usage as a very efficient 150L liquid hydrogen storage tank.

Measuring Industry Greening Indices for Korean high priority green technologies by technology-industry concordance analysis (27대 중점녹색기술의 기술산업연계구조분석을 통한 산업녹색도 지수 연구)

  • Coh, Byoung-Youl
    • Journal of Technology Innovation
    • /
    • v.18 no.2
    • /
    • pp.121-145
    • /
    • 2010
  • This study relates to measure impact of green technology on industry sector by uses of industry greening indices. For this study, we performed patent trend analysis, technology-industry concordance analysis, and designed some industry greening indices. Through the results of this research, we found out the impact of Korean high priority green technologies on respective industries, and consequently identified which industries play an important role in the era of green innovation. IT related industries would catch somewhat weak attention in green technology policy, though they manufacture and use plenty of patents at present. Meanwhile, Energy related industry, such as battery industry would catch strong attention in green innovation, showed very high value of industry greening indices. In order to design proper R&D strategy for green technologies, understanding industry and market structure that can adapt and promote green technology innovation is important. In this context, this study could be an effective and systematic tool for assisting green innovation policy. Also, these indices developed are not limited to the case of green technology, other technologies can be used universally as a input for analysis.

  • PDF

Horizontal-Axis Screw Turbine as a Micro Hydropower Energy Source: A Design Feasibility Study (마이크로 수력 에너지원의 수평축 스크류 터빈 : 설계 타당성 연구)

  • SHAMSUDDEEN, MOHAMED MURSHID;KIM, SEUNG-JUN;MA, SANG-BUM;KIM, JIN-HYUK
    • Transactions of the Korean hydrogen and new energy society
    • /
    • v.33 no.1
    • /
    • pp.95-104
    • /
    • 2022
  • Micro hydropower is a readily available renewable energy source that can be harvested utilizing hydrokinetic turbines from shallow water canals, irrigation and industrial channel flows, and run-off river stream flows. These sources generally have low head (<1 m) and low velocity which makes it difficult to harvest energy using conventional turbines. A horizontal-axis screw turbine was designed and numerically tested to extract power from such low-head water sources. The 3-bladed screw-type turbine is placed horizontally perpendicular to the incoming flow, partially submerged in a narrow water channel at no-head condition. The turbine hydraulic performances were studied using Computational Fluid Dynamics models. Turbine design parameters such as the shroud diameter, the hub-to-shroud ratios, and the submerged depths were obtained through a steady-state parametric study. The resulting turbine configuration was then tested by solving the unsteady multiphase free-surface equations mimicking an actual open channel flow scenario. The turbine performance in the shallow channel were studied for various Tip Speed Ratios (TSR). The highest power coefficient was obtained at a TSR of 0.3. The turbine was then scaled-up to test its performance on a real site condition at a head of 0.3 m. The highest power coefficient obtained was 0.18. Several losses were observed in the 3-bladed turbine design and to minimize losses, the number of blades were increased to five. The power coefficient improved by 236% for a 5-bladed screw turbine. The fluid losses were minimized by increasing the blade surface area submerged in water. The turbine performance was increased by 74.4% after dipping the turbine to a bottom wall clearance of 30 cm from 60 cm. The final output of the novel horizontal-axis screw turbine showed a 2.83 kW power output at a power coefficient of 0.63. The turbine is expected to produce 18,744 kWh/year of electricity. The design feasibility test of the turbine showed promising results to harvest energy from small hydropower sources.

A Study on the Development of Particulate Matters Emission Factors from Biomass Burning: Mainly Commercial Meat Cooking (생물성 연소에서 발생하는 미세먼지 배출계수 개발에 관한 연구: 고기구이를 중심으로)

  • Park, Seong-Kyu;Choi, Sang-Jin;Kim, Jin-Yun;Lee, Ho-Jin;Jang, Young-Kee;Bong, Choon-Keun;Kim, Jong-Ho;Hwang, Ui-Hyun
    • Journal of Korean Society for Atmospheric Environment
    • /
    • v.27 no.4
    • /
    • pp.426-435
    • /
    • 2011
  • In this study, PM emission factors for commercial meat cooking were developed by the experiment using the similar restaurant model. The commercial material types of meat cooking were beef, pork and duck. And meat cooking materials were classified with marinated and raw cooking methods. The marinated and raw cooking methods were flat griddle (LPG) and under fired charbroiling grill. As a results, $PM_{10}$ emission factors for underfired pork cooking was estimated as 7.39 g/kg-meat which was the highest value in this study. The emission factors of under fired charbroiling grill method were higher than that of flat griddle method regardless of meat cooking material types and marinated meat. The particle size distribution of meat cooking was 0.23~5 ${\mu}m$ and median diameter was 2~2.5 ${\mu}m$.

Power Quality Measurement for LED-based Green Energy Lighting Systems (LED 기반 그린에너지 조명시스템을 위한 전력품질 측정)

  • Yu, Hyung-Mo;Choi, Jin-Won;Choe, Sangho
    • Journal of the Institute of Electronics and Information Engineers
    • /
    • v.50 no.2
    • /
    • pp.174-184
    • /
    • 2013
  • For the successful R&D and deployment of LED-based green energy lighting systems, the real-time power quality measurement of both various non-linear power signals including pulse waveform, spike waveform, etc and the undesired-signals including harmonics, sag, swell, etc is required. In this paper, we propose a low-cost power quality measurement (PQM) method for low- (60Hz-several KHz) to high-frequency (several tens KHz) power signals, which are generated by green-energy lighting systems, and implement a PQM testbed using TI TMS320F28335 MCU. The proposed algorithm is programmed using C in the CCS (Code Composer Studio) 3.3 environment and is verified using test signals generated by an arbitrary signal generator, NF-WF1974. In the implemented testbed, we can measure various non-linear current signals that LED SMPS generates, analyze harmonics by fast Fourier transform, and test sag, swell, and interruption using wavelet transform.

Analysis of the Low-Carbon Economy of China on the Emissions of Carbon (탄소 배출량에 대한 중국 저탄소 경제의 분석)

  • Chen, Si Jia;Ahn, Jong-Chang
    • Journal of the Korea Academia-Industrial cooperation Society
    • /
    • v.20 no.7
    • /
    • pp.528-534
    • /
    • 2019
  • This study analyzes the factors affecting China's carbon emissions from 1985 to 2016. In recent years, the whole industries of China are in the midst of industrialization and have several problems. Now, the low-carbon economy has become the main task of China's economic development. This study analyzes the factors affecting China 's carbon emissions by selecting relevant data onto the Chinese yearbook and using a time series model. The analysis shows that related industries continue to innovate and increase the use of green energy such as electricity, but coal is still the largest share of the energy consumed. As energy use efficiency increases and industrial R&D investment increases year by year, carbon emissions are increasing every year. In addition, there is a stereotype that industry is the biggest factor affecting carbon emissions. The research found that the impact of the industry on China's carbon emissions is declining gradually. While controlling industrial carbon emissions, keeping continue to improve technology development and focusing on carbon emissions from other industries are critical to reduce overall carbon emissions. Based on the empirical results, if we can change stereotypes starting from the nature of the data, we will quickly reach a low carbon sustainable development economy.