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Green-House——颠覆性住宅设计国际竞赛方案,芝加哥,美国
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作者 朱文一 《城市设计》 2019年第2期98-105,共8页
竞赛要求在芝加哥城居住区中选择典型的宅基地作为设计地,在25英尺×125英尺的标准地块上设计一幢19英尺宽的住宅。芝加哥的住宅类型丰富,既有欧洲殖民式风格住宅,也有建筑大师赖特的现代主义风格住宅和密斯·凡·德·... 竞赛要求在芝加哥城居住区中选择典型的宅基地作为设计地,在25英尺×125英尺的标准地块上设计一幢19英尺宽的住宅。芝加哥的住宅类型丰富,既有欧洲殖民式风格住宅,也有建筑大师赖特的现代主义风格住宅和密斯·凡·德·罗的范斯沃斯住宅,还有各式各样现代主义建筑之后的住宅。竞赛题目中明确提出了“颠覆性设计挑战”的目标。 展开更多
关键词 住宅设计 green-house 竞赛方案
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Numerical Study and Optimization of CZTS-Based Thin-Film Solar Cell Structure with Different Novel Buffer-Layer Materials Using SCAPS-1D Software
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作者 Md. Zamil Sultan Arman Shahriar +4 位作者 Rony Tota Md. Nuralam Howlader Hasibul Haque Rodro Mahfuja Jannat Akhy Md. Abir Al Rashik 《Energy and Power Engineering》 2024年第4期179-195,共17页
This study explored the performances of CZTS-based thin-film solar cell with three novel buffer layer materials ZnS, CdS, and CdZnS, as well as with variation in thickness of buffer and absorber-layer, doping concentr... This study explored the performances of CZTS-based thin-film solar cell with three novel buffer layer materials ZnS, CdS, and CdZnS, as well as with variation in thickness of buffer and absorber-layer, doping concentrations of absorber-layer material and operating temperature. Our aims focused to identify the most optimal thin-film solar cell structure that offers high efficiency and lower toxicity which are desirable for sustainable and eco-friendly energy sources globally. SCAPS-1D, widely used software for modeling and simulating solar cells, has been used and solar cell fundamental performance parameters such as open-circuited voltage (), short-circuited current density (), fill-factor() and efficiency() have been optimized in this study. Based on our simulation results, it was found that CZTS solar cell with Cd<sub>0.4</sub>Zn<sub>0.6</sub>S as buffer-layer offers the most optimal combination of high efficiency and lower toxicity in comparison to other structure investigated in our study. Although the efficiency of Cd<sub>0.4</sub>Zn<sub>0.6</sub>S, ZnS and CdS are comparable, Cd<sub>0.4</sub>Zn<sub>0.6</sub>S is preferable to use as buffer-layer for its non-toxic property. In addition, evaluation of performance as a function of buffer-layer thickness for Cd<sub>0.4</sub>Zn<sub>0.6</sub>S, ZnS and CdS showed that optimum buffer-layer thickness for Cd<sub>0.4</sub>Zn<sub>0.6</sub>S was in the range from 50 to 150nm while ZnS offered only 50 – 75 nm. Furthermore, the temperature dependence performance parameters evaluation revealed that it is better to operate solar cell at temperature 290K for stable operation with optimum performances. This study would provide valuable insights into design and optimization of nanotechnology-based solar energy technology for minimizing global energy crisis and developing eco-friendly energy sources sustainable and simultaneously. 展开更多
关键词 Thin-Film Solar Cell CZTS Buffer-Layer Renewable Energy green-house Gases Efficiency
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Polymer Electrolyte Membrane Fuel Cells (PEMFC) in Automotive Applications: Environmental Relevance of the Manufacturing Stage 被引量:6
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作者 Daniel Garraín Yolanda Lechón Cristina de la Rúa 《Smart Grid and Renewable Energy》 2011年第2期68-74,共7页
This study presents a state of the art of several studies dealing with the environmental impact assessment of fuel cell (FC) vehicles and the comparison with their conventional fossil-fuelled counterparts, by means of... This study presents a state of the art of several studies dealing with the environmental impact assessment of fuel cell (FC) vehicles and the comparison with their conventional fossil-fuelled counterparts, by means of the Life Cycle As-sessment (LCA) methodology. Results declare that, depending on the systems characteristics, there are numerous envi-ronmental advantages, but also some disadvantages can be expected. In addition, the significance of the manufac-turing process of the FC, more specifically the Polymer Electrolyte Membrane Fuel Cell (PEMFC) type, in terms of environmental impact is presented. Finally, CIEMAT’s role in HYCHAIN European project, consisting of supporting early adopters for hydrogen FCs in the transport sector, is 展开更多
关键词 FUEL CELL (FC) Polymer Electrolyte Membrane FUEL CELL (PEMFC) Life Cycle Assessment (LCA) green-house Gases (GHG) emissions Global Warming IMPACT CATEGORY Energy Resources IMPACT CATEGORY Acidification IMPACT CATEGORY Vehicle MANUFACTURING Phase
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A METROD PREDICTING RESPONSE OF SEDIMENT YIELD TO POSSIBIE CHANGE OF PRECIPITATION DUE TO GLOBAL GREENHOUSE WARMING:AN EXAMPIE FROM NORTH FRINGE OF THE LOESS PLATEAU, CHINA 被引量:1
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作者 Xu Jiongxin(Institute of Geography, CAS, Beijing 100101 People’s Republic of China) 《Journal of Geographical Sciences》 SCIE CSCD 1994年第Z2期159-172,共14页
Starting from the supposition of time-space substitution, the Langbein-Schumm's Law was applied to deal with response of fluvial erosion System to the changes in mean annual Precipitation induced by global green-h... Starting from the supposition of time-space substitution, the Langbein-Schumm's Law was applied to deal with response of fluvial erosion System to the changes in mean annual Precipitation induced by global green-house warming. As a result, a simple method was put forward to predict change in sediment yield, with Ningxia Hui Autonomous Region in the northern fringe of the Loess Plateau of China as an example. Results show that, even the change in mean annual precipitation is the same, the direction and magnitude of the resultant chang in sediment yteld would be quite different in fferent physico-geographical zones. When mean annual precipitation is increased, sediment yield in arid or semi-arid areas with a mean anntal Peripitation of less than 400 mm will be increased, while sediment yield in sub-humid or humid areas with a mean annual precipitation of more than 400 mm will be decreased.Additionally, the complex response of fluvial erosion system in time series due to the lag of change in vegetation behind the changn in precipitation has also been qualitatively discussed in this paper. 展开更多
关键词 sediment yield Langbein-Schumm's Law prediction of changed sediment yield global green-house warming complex response
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Global Climate
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作者 Mobolaji Abubakar Kolawole John L.Adams 《地学前缘》 EI CAS CSCD 北大核心 2009年第S1期32-32,共1页
Global surface temperature has increased by 0.2℃per decade in the past 30 years,similar to the warming rate predicted in the 1980s in initial global climate model simulations with transient greenhouse gas changes.War... Global surface temperature has increased by 0.2℃per decade in the past 30 years,similar to the warming rate predicted in the 1980s in initial global climate model simulations with transient greenhouse gas changes.Warming is larger in the Western Equatorial Pacific than in the Eastern Equatorial Pacific over the past century previous research on the economic impacts of a climate-induced sea level rise has been based on the gradual erosion of the shoreline。 展开更多
关键词 global surface temperature green-house GAS CLIMATE CHANGE
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Development and Evaluation of an All Weather-Type Solar Drying House to Make for Wood Pellet Material
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作者 Kimio Kanayama Shinya Koga +1 位作者 Hiromu Baba Tomoyoshi Sugawara 《Open Journal of Applied Sciences》 2012年第3期153-162,共10页
To suppress the global environment pollutions, we tried to develop a new-type solar drying house by improving a typical agricultural green-house, so that an all weather-type solar drying house was invented ultimately.... To suppress the global environment pollutions, we tried to develop a new-type solar drying house by improving a typical agricultural green-house, so that an all weather-type solar drying house was invented ultimately. This house is capable to dry raw wood materials (Ogako) into suitable moisture content (Mc) to make a wood pellet. The all weather-type solar Ogako drying house is covered with a triple transparent film, and an open/close free-type shield sheet is spread along with house’s inner surface with a small space, which is opened when solar radiation is incident on the house in daytime and closed to prevent heat loss from the house while out of sun shining in night. Inside of the all weather-type solar Ogako drying house, there are four belt-conveyors over which four top radiation panels are hanged, and on which four Ogako agitators are touched, a turn-table, two hoppers, four small fans, and besides, a floor heating is molded in concrete floor. Also on the north wall outside the house, two insulated cylinders (chimney) are stood up vertically to exhaust inside moist air passively. Then, to make clearly the operation performance of the house, the drying tests for the proof examination were conducted nineteen times at first test site in Ashoro where is located east-central part of Hokkaido, Japan. As a result of the drying test for the proof examination, it was made clear that the all weather-type solar Ogako drying house is practically useful as a supplementary apparatus to produce the dried Ogako, and consequently to suppress CO2 exhaustion. 展开更多
关键词 Solar ENERGY and Biomass ENERGY Agricultural green-house Ogako Drying HOUSE WOOD Powder (Ogako) WOOD PELLET Moisture Content (Mc) Decrease of Oil Consumption Suppression of CO2 EXHAUSTION
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The Use of Molecular-Sieving Materials as Ameliorant for Peat Degradation in the Tropics
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作者 Laksmita P. Santi Didiek H. Goenadi +1 位作者 Supiandi Sabiham Yazid Bindar 《Journal of Minerals and Materials Characterization and Engineering》 2021年第4期362-374,共13页
Peat utilization for agriculture expansion area is commonly found extensively in tropical region during the last few decades. Most agronomical practices involve drainage resulting decomposition of organic materials an... Peat utilization for agriculture expansion area is commonly found extensively in tropical region during the last few decades. Most agronomical practices involve drainage resulting decomposition of organic materials and increasing drying. This study was carried out to determine the potential use of molecular-sieving materials (MPMs) as an ameliorant for peat soil targeted for reducing the potential hazard of peat degradation. A clinoptilolite-zeolite, empty fruit bunches of oil palm biochar (EFBOPB), and their combination were studied its characteristics to evaluate the ability in adsorbing water and green-house gas emission. A series of laboratory analyses were conducted to determine physicochemical and mineralogical characteristics of both materials and its combination, including elemental analyses, cation exchange capacity (CEC), pH, ore spaces, water holding capacity (WHC), and adsorption capacity for CO<sub>2</sub>, NH<sub>3</sub>, and N<sub>2</sub>. The study revealed that 100 - 150 mesh size of zeolite possesses higher values of CEC, WHC, and adsorption capacity for CO<sub>2</sub>, NH<sub>3</sub>, and N<sub>2</sub> compared to EFBOPB, whereas the latter indicated a higher organic-C content and pore spaces. Combination of 75% (w/w) zeolite and 25% (w/w) EFBOPB showed the best composition of these two MPMs to improve WHC of peat and as consequences slowing down the firing process of the peat. Based on the gas adsorption data, it could be assumed that the mixture of MPMs studied could be considered as an effective material to reduce risk of peat from fire potential hazard and retard GHG emission. 展开更多
关键词 BIOCHAR CLINOPTILOLITE Empty Fruit Bunches green-house Gas Emission
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