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碩士 === 國立中央大學 === 高階主管企管碩士班 === 103 === Petrochemical fuel of excessively use the exhaustion crisis of global warming problem and the Earth limited energy for triggering, force governments in global all countries to dedicate the development"can renewable energy"(as sun light ability, water...

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Main Authors: Chang-yun Huang, 黃丈耘
Other Authors: Dach-rahn Wu
Format: Others
Language:zh-TW
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/twp2c5
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spelling ndltd-TW-103NCU056270532019-05-15T22:08:27Z http://ndltd.ncl.edu.tw/handle/twp2c5 nono 太陽光能矽晶之切削液回收再利用產業分析 Chang-yun Huang 黃丈耘 碩士 國立中央大學 高階主管企管碩士班 103 Petrochemical fuel of excessively use the exhaustion crisis of global warming problem and the Earth limited energy for triggering, force governments in global all countries to dedicate the development"can renewable energy"(as sun light ability, waterpower ability, wind force ability, subterranean heat ability, bio ability …etc.), also reduce the emissions to greenhouse gas through these clean energies with dependence of this decrease to the Earth limited resource, certainly current most have a business market condition of can the renewable energy belong to the sun light ability. The business market of sun light in the whole world ability mainly still depends on the government subsidy, many elements cause to generate electricity the cost high, however in recent years technological evolution and effort of industry, sun light ability opposite should pay of electric power price more and more Be approached to general tradition generate electricity of price of market, we believe a sun light the ability will in the near future can become the main electric power source that the general general people use. Because only can make many business wasteses in process to produce at the sun, as the silicon Be crystal to slice to pare a liquid, past origin research with Taiwanese sun light ability the silicon is crystal of slicing and paring the liquid be recycled industry analysis as the study, and use main manufacturer as individual case to analyze and make resource of Taiwan again make use of the industry for reach the target of resource lasting again move forward forward, expect to a sun light ability the industry can reach a so-called virtuous cycle and become the real green energy. Dach-rahn Wu 吳大任 2015 學位論文 ; thesis 64 zh-TW
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description 碩士 === 國立中央大學 === 高階主管企管碩士班 === 103 === Petrochemical fuel of excessively use the exhaustion crisis of global warming problem and the Earth limited energy for triggering, force governments in global all countries to dedicate the development"can renewable energy"(as sun light ability, waterpower ability, wind force ability, subterranean heat ability, bio ability …etc.), also reduce the emissions to greenhouse gas through these clean energies with dependence of this decrease to the Earth limited resource, certainly current most have a business market condition of can the renewable energy belong to the sun light ability. The business market of sun light in the whole world ability mainly still depends on the government subsidy, many elements cause to generate electricity the cost high, however in recent years technological evolution and effort of industry, sun light ability opposite should pay of electric power price more and more Be approached to general tradition generate electricity of price of market, we believe a sun light the ability will in the near future can become the main electric power source that the general general people use. Because only can make many business wasteses in process to produce at the sun, as the silicon Be crystal to slice to pare a liquid, past origin research with Taiwanese sun light ability the silicon is crystal of slicing and paring the liquid be recycled industry analysis as the study, and use main manufacturer as individual case to analyze and make resource of Taiwan again make use of the industry for reach the target of resource lasting again move forward forward, expect to a sun light ability the industry can reach a so-called virtuous cycle and become the real green energy.
author2 Dach-rahn Wu
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黃丈耘
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黃丈耘
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黃丈耘
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publishDate 2015
url http://ndltd.ncl.edu.tw/handle/twp2c5
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