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煤层气井高产水对排采产气的影响及改进方案研究 被引量:2
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作者 陈瑞杰 《山东煤炭科技》 2018年第9期211-212,215,共3页
本文针对高河井田的实际工况,通过地质情况分析其影响产水的主要因素,采用差异性的地质选层和压裂工艺的调整来对新试井进行改进。改进后,有效控制了高产水井的数量,并降低了单井平均产水量,延长了其修井周期。
关键词 煤层 水井 排采产气 影响因素 改进方案
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A Novel Approach to Ethanol Fuel Production using Rotary Collection of Forest Debris
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作者 Marian Nicte Zappala Rajab Abujnah +1 位作者 Cesar Luna Russell Robert Chianelli 《Journal of Environmental Science and Engineering(B)》 2013年第10期614-620,共7页
In this article, the authors propose the production of ethanol from cellulose as an alternative to oil. Cellulosic-ethanol will reduce greenhouse gas emissions, and provide a means to prevent forest fires. This liquid... In this article, the authors propose the production of ethanol from cellulose as an alternative to oil. Cellulosic-ethanol will reduce greenhouse gas emissions, and provide a means to prevent forest fires. This liquid dense fuel was selected because it: (1) easily transported and dispensed as a fuel; (2) can be handled by the existing fuel distribution infrastructure; and (3) unlike its commercial competitor, Me-OH (Methanol), Et-OH (Ethanol), is edible, thus being biodegradable and nontoxic. Forest residue ethanol is cheaper to produce and more environmentally friendly than other forms of ethanol fuel. Furthermore, forests would have less available ground fuel for fires. The potential decline of forest fires would then reduce the carbon footprint attributed directly to forest fires. In combination with ethanol fuel combustion, carbon emissions can be reduced by more than 70% compared to gasoline combustion. We used GREET (Greenhouse gases, Regulated Emissions, and Energy use in Transportation) software to assess the life cycles of different fuel pathways. In conclusion, cellulosic ethanol fuel is clearly an answer to decrease dependency on current oil imports and prevent forest fires. 展开更多
关键词 Cellulosic ethanol FUEL forest residue forest fires GREET software.
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