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控制生产工艺用水是氧化铝厂节能降耗的有效途径
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作者 张存兵 赵萍 《轻金属》 CSCD 北大核心 2000年第11期16-17,共2页
通过对山西铝厂氧化铝四分厂生产工艺用水的现状分析 ,提出措施指出控制好生产工艺用水 。
关键词 氢氧化铝 节能降耗 氧化铝厂 生产工艺用水
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产水量为120t/h的膜处理纯化水技术方案
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作者 段晓锋 《川化》 2008年第4期37-42,共6页
介绍了某化工厂产水量为120t/h的净水技术方案。根据原水水质情况及产品水水质要求,通过对各种净水工艺的比较,选择采用预处理+一级反渗透处理的净水工艺,预处理工艺采用自动叠片过滤+加药阻垢+5μm的精密过滤。整个工艺采用PLC自动控... 介绍了某化工厂产水量为120t/h的净水技术方案。根据原水水质情况及产品水水质要求,通过对各种净水工艺的比较,选择采用预处理+一级反渗透处理的净水工艺,预处理工艺采用自动叠片过滤+加药阻垢+5μm的精密过滤。整个工艺采用PLC自动控制。还介绍了整个工艺主要设备的选型。采用该方案的净水装置出水达到生产工艺用水要求,投资回报期短,经济效益显著。 展开更多
关键词 反渗透膜处理技术 工艺 生产工艺用水 处理方案
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The Characteristics of a Sorption-enhanced Steam-Methane Reaction for the Production of Hydrogen Using CO_2 Sorbent 被引量:15
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作者 吴素芳 T.H.Beum +1 位作者 J.I.Yang J.N.Kim 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第1期43-47,共5页
The objective of the present study is to characterize the production of hydrogen with a sorptionenhanced steam-methane reaction process using Ca(OH)2 as the CO2 adsorbent. Theoretical equilibrium compositions at diffe... The objective of the present study is to characterize the production of hydrogen with a sorptionenhanced steam-methane reaction process using Ca(OH)2 as the CO2 adsorbent. Theoretical equilibrium compositions at different operation conditions were calculated using an iterative method. It was found that with Ca(OH)2 as the CO2 sorbent, the concentration of CO2 adsorption was reduced in the product stream, that gave rise to higher methane conversion and higher H2 concentration. An experimental setup was built to test the theoretical calculation. The effects of sorbents and the particle size of Ca(OH)2 on the concentration of CO2 and H2 were investigated in detail. Results showed that the reactor packed with catalyst and Ca(OH)2 particles produced H2 concentration of 94%. It was nearly 96% of the theoretical equilibrium limit, much higher than H2 equilibrium concentration of 67.5% without CO2 sorption under the same conditions of 500℃, 0.2 MPa pressure and a steam-to-methane ratio 6. In addition, the residual mole fraction of CO2 was less than 0.001. 展开更多
关键词 HYDROGEN reactive-adsorption calcium hydroxide steam-methane reforming
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