• 제목/요약/키워드: Bioenergy using system

검색결과 28건 처리시간 0.03초

껍질 형태의 과일폐기물과 하수슬러지를 이용한 회분식 혐기 소화공정에서 메탄 생산 (Methane Production Using Peel-type Fruit Wastes and Sewage Sludge in Batch Anaerobic Digestion Process)

  • 정태영;이종학;정형근;차형준;최석순
    • 공업화학
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    • 제20권5호
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    • pp.542-546
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    • 2009
  • 본 연구는 사과나 귤의 껍질류 과일 폐기물과 하수슬러지가 혼합된 유기성 폐기물을 이용한 회분식 혐기 분해공정에서 메탄 생산이 고찰되었다. 사과껍질 또는 귤껍질이 하수슬러지와 혼합된 기질로 사용되어졌을 때, 3 : 7의 혼합비로 운전한 것이 가장 높은 메탄 생산을 나타내었다. 그러나, 이 비율 이상에서는 사과와 귤 껍질이 함유된 유기산으로 인하여 혼합물의 pH가 8.0에서 4.5~4.7으로 감소하였으며, 결과적으로 메탄 생산이 낮아졌다. 이러한 실험 결과들은 사과, 귤 껍질과 하수슬러지의 혼합된 회분식 혐기 소화 공정에서 바이오에너지로서 메탄가스의 생산 시스템에 효과적으로 활용될 수 있을 것이다.

Impact Assessments of High Oil Prices on the Agro-Food System and the Role of Bioenergy Crops

  • Lee, Duu-Hwa;Lin, Hsin-Chun;Chang, Ching-Cheng;Hsu, Shih-Hsun;Chen, Chi-Chun;Sun, Jenny Chin-Hwa
    • 자원ㆍ환경경제연구
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    • 제16권3호
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    • pp.653-682
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    • 2007
  • In this study, multi-sectoral partial equilibrium and computable general equilibrium models of Taiwan are used to investigate the direct and indirect effects of energy price increases on overall economies and agro-food sector in Taiwan. The results suggest that agricultural prices, production cost would increase between 0.27% to 1.88%, and a reduction in GDP around 0.39% to 0.54 %. The negative impact on livestock sector is slightly higher than that on the crop sector. Negative impacts are also observed in the employment and wages. The rising oil price has the potential to discourage production of energy-intensive activity because of the possibility of substitution and adaptations. The growth rate of real GDP will shrink by 0.64% to 1.06% and CPI will increase by 1.17% to 1,95%. Both the agriculture and non-agricultural sector also respond by raising output prices by 0.80% to 1.33%. The rising international oil price has urged the government to take policy actions like using alternative fuels such as biodiesel, bioethanol, and adopting measures to cut down on energy consumptions mainly in transportation sectors in response to public concern over economic shocks.

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ICT 기반 가축분뇨 중 함유 NPK 양분의 정량적 관리기법 연구 (Automatic NPK Calculation Based on Nutrients of Livestock Manure)

  • 이명규;김수량;홍유식
    • 한국인터넷방송통신학회논문지
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    • 제17권5호
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    • pp.173-179
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    • 2017
  • 축산 선진국에서는 축산 폐기물을 바이오 에너지 및 퇴비, 액비로 자원화 이용하고 있다. 우리나라에서도 축산분뇨를 더 이상 페기물이 아닌 자원화 할 수 있도록 관련 연구가 활발하게 이루어지고 있다. 그러나 좁은 국토면적과 부족한 농지면적으로 가축분뇨 자원의 전량 자원화에는 어려운 상황이다. 특히 지역적으로 과잉되는 양분은 제2의 환경오염을 유발할 수 있어 지역적으로 잉여되는 양분의 관리기법이 매우 시급한 상황이다. 본 논문에서는 지역적으로 발생되는 가축분뇨 중 함유된 양분량을 정확하게 예측하기 위해서 사육단계별로 돼지 두수를 입력하면 자동으로 분뇨발생량 및 함유양분을 계산하도록 하였다. 또한 이를 통해 발생된 분뇨의 농지환원 시 시비량을 100평당 NPK 비료 3요소로 자동 계산토록 하여 시비량을 산출하는 모의실험을 수행하였다.

Polypropylene Bundle Attached Multilayered Stigeoclonium Biofilms Cultivated in Untreated Sewage Generate High Biomass and Lipid Productivity

  • Kim, Byung-Hyuk;Kim, Dong-Ho;Choi, Jung-Woon;Kang, Zion;Cho, Dae-Hyun;Kim, Ji-Young;Oh, Hee-Mock;Kim, Hee-Sik
    • Journal of Microbiology and Biotechnology
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    • 제25권9호
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    • pp.1547-1554
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    • 2015
  • The potential of microalgae biofuel has not been realized because of the low productivity and high costs associated with the current cultivation systems. In this study, a new low-cost and transparent attachment material was tested for cultivation of a filamentous algal strain, Stigeoclonium sp., isolated from wastewater. Initially, the different materials tested for Stigeoclonium cultivation in untreated wastewater were nylon mesh, polyethylene mesh, polypropylene bundle (PB), polycarbonate plate, and viscose rayon. Among the materials tested, PB led to a firm attachment, high biomass (53.22 g/m2, dry cell weight), and total lipid yield (5.8 g/m2) with no perceivable change in FAME profile. The Stigeoclonium-dominated biofilm consisted of bacteria and extracellular polysaccharide, which helped in biofilm formation and for effective wastewater treatment (viz., removal efficiency of total nitrogen and total phosphorus corresponded to ~38% and ~90%, respectively). PB also demonstrated high yields under multilayered cultivation in a single reactor treating wastewater. Hence, this system has several advantages over traditional suspended and attached systems, with possibility of increasing areal productivity three times using Stigeoclonium sp. Therefore, multilayered attached growth algal cultivation systems seem to be the future cultivation model for large-scale biodiesel production and wastewater treatment.

혐기성 수소발효를 결합한 생물학적 2단공정의 유기성폐자원 처리 및 바이오에너지 생산 (Two-stage Bioprocesses Combining Dark H2 Fermentation: Organic Waste Treatment and Bioenergy Production)

  • 이채영;유규선;한선기
    • 한국수소및신에너지학회논문집
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    • 제26권3호
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    • pp.247-259
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    • 2015
  • This study was performed to investigate the application of dark $H_2$ fermentation to two-stage bioprocesses for organic waste treatment and energy production. We reviewed information about the two-stage bioprocesses combining dark $H_2$ fermentation with $CH_4$ fermentation, photo $H_2$ fermentation, microbial fuel cells (MFCs), or microbial electrolysis cells (MECs) by using academic information databases and university libraries. Dark fermentative bacteria use organic waste as the sole source of electrons and energy, converting it into $H_2$. The reactions related to dark $H_2$ fermentation are rapid and do not require sunlight, making them useful for treating organic waste. However, the degradation is not complete and organic acids remain. Thus, dark $H_2$ fermentation should be combined with a post-treatment process, such as $CH_4$ fermentation, photo $H_2$ fermentation, MFCs, or MECs. So far, dark $H_2$ fermentation followed by $CH_4$ fermentation is a promising two-stage bioprocess among them. However, if the problems of manufacturing expenses, operational cost, scale-up, and practical applications will be solved, the two-stage bioprocesses combining dark $H_2$ fermentation with photo $H_2$ fermentation, MFCs, or MECs have also infinite potential in organic waste treatment and energy production. This paper demonstrated the feasibility of two-stage bioprocesses combining dark $H_2$ fermentation as a novel system for organic waste treatment and energy production.

토양환경분야 연구동향 및 전망 (Future Directions and Perspectives on Soil Environmental Researches)

  • 양재의;옥용식;정덕영
    • 한국토양비료학회지
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    • 제44권6호
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    • pp.1286-1294
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    • 2011
  • This paper reviews the future directions and perspectives on the soil environmental researches in the 21 century. Previously, the principal emphasis of soil environmental researches had put on the enhancement of food and fiber productions. Beside the basic function of soil, however, the societal needs on soil resources in the 21st century have demands for several environmental and social challenges, occurring regionally or globally. Typical global issues with which soil science should deal include food security with increasing agronomic production to meet the exploding world population growth, adaptation and mitigation of climate change, increase of the carbon sequestration, supply of the biomass and bioenergy, securing the water resource and quality, protection of environmental pollution, enhancing the biodiversity and ecosystem health, and developing the sustainable farming/cropping system that improve the use efficiency of water and agricultural resources. These challenges can be solved through the sustainable crop production intensification (SCPI) or plant welfare concept in which soil plays a key role in solving the abovementioned global issues. Through implementation of either concept, soil science can fulfill the goal of the modern agriculture which is the sustainable production of crops while maintaining or enhancing the ecosystem function, quality and health. Therefore, directions of the future soil environmental researches should lie on valuing soil as an ecosystem services, translating research across both temporal and spatial scales, sharing and using data already available for other purposes, incorporating existing and new technologies from other disciplines, collaborating across discipline, and translating soil research into information for stakeholders and end users. Through the outcomes of these approaches, soil can enhance the productivity from the same confined land, increase profitability, conserve natural resource, reduce the negative impact on environment, enhance human nutrition and health, and enhance natural capital and the flow of ecosystem services. Soil is the central dogma, final frontier and new engine for the era of sustainability development in the $21^{st}$ century and thus soil environmental researches should be carried according to this main theme.

Effects of inorganic salts on biomass production, cell wall components, and bioethanol production in Nicotiana tabacum

  • Sim, Seon Jeong;Yong, Seong Hyeon;Kim, Hak Gon;Choi, Myung Suk;Choi, Pil Son
    • Journal of Plant Biotechnology
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    • 제48권4호
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    • pp.278-288
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    • 2021
  • The development of bioenergy through biomass has gained importance due to the increasing rates of fossil fuel depletion. Biomass is important to increase the productivity of bioethanol, and production of biomass with high biomass productivity, low lignin content, and high cellulose content is also important in this regard. Inorganic salts are important in the cultivation of biomass crops for the production of biomass with desirable characteristics. In this study, the roles of various inorganic salts in biomass and bioethanol production were investigated using an in vitro tobacco culture system. The inorganic salts evaluated in this study showed dramatic effects on tobacco plant growth. For example, H2PO4 substantially improved plant growth and the root/shoot (R/S) ratio. The chemical compositions of tobacco plants grown in media after removal of various inorganic salts also showed significant differences; for example, lignin content was high after Mg2+ removal treatment and low after K+ treatment and H2PO4 removal treatment. On the other hand, NO3- and H2PO4 treatments yielded the highest cellulose content, while enzymatic hydrolysis yielded the highest glucose concentration ratio 24 h after NH4+ removal treatment. The ethanol productivity after H2PO4 removal treatment was 3.95% (w/v) 24 h after fermentation and 3.75% (w/v) after 36 h. These results can be used as the basis for producing high-quality biomass for future bioethanol production.

호흡명상기공테라피가 파킨슨병 환자의 후각 및 음성 기능장애 개선에 미치는 효과 (The Effect of Breathing Meditation Qigong Therapy on the Recovery of Olfactory Disorders and Voice Handicap Index in Parkinson's Disease Patients)

  • 안소정;안훈모
    • 대한의료기공학회지
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    • 제23권1호
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    • pp.10-29
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    • 2024
  • Objective : The purpose of this study is to determine whether An's breathing meditation qigong therapy (ABMQT) delivers bioenergy to the frontal lobe, prefrontal lobe, the olfactory tract in the mesolimbic pathway, olfactory bulb, CV22, CV21, olfactory area and vocal-related areas in Parkinson's disease (PD) patients to help improve olfactory disorders (anosmia) and vocal functions. Methods : The subjects of this study were 4 patients with idiopathic PD (3 males/1 female, 65.0±NA/68.7±10.2 years old). ABMQT was applied once a week, 120 minutes per session for 12 weeks in a non-invasive and noncontact manner, and the test before and after ABMQT application included olfactory impairment test the Korean version of Sniffin' stick test (KVSS), voice acoustic test, aerodynamic test, vocal handicap index (VHI-30), and auditory perception scale test tools. The results before and after the experiment were analyzed assuming a normal distribution, and a chi-square test was performed using a continuity correction, and the significance level was set to p<0.05. And the medical diagnosis and findings of the examiner (doctor in charge) before and after the experiment were described. Results : KVSS was significant as 0.2±0.5 and 9.0±0.0 before and after the experiment. There was no significant difference between the voice acoustic test FO and Jitter, the vocal aerodynamic test MPT, SP, AE, the vocal disorder index test, and the auditory perception test. However, the medical diagnosis findings of four study subjects showed that olfactory disorders, voice disorders, and laryngeal function were improved before and after the application of ABMQT. Conclusions : The breathing meditation qigong program showed significant effects on improving the olfactory disorders (anosmia) and speech function of each study subject. However, to produce meaningful results, it is thought that experiments involving a larger number of research participants are necessary, and additional blood and FMRI tests are conducted to verify metabolic activities and the olfactory neuron signal transmission system.