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煤炭地下气化矿物碳酸化固定二氧化碳的研究 被引量:8
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作者 张尚军 张宇 +3 位作者 胡静娟 潘佳 张述雄中国矿业大学(北京)化学与环境工程学院 刘淑琴 《煤炭转化》 CSCD 北大核心 2013年第3期9-13,38,共6页
通过固-液-气三相模拟反应,研究了煤炭地下气化灰渣在模拟咸水中对二氧化碳的固化作用,考察了反应温度、反应压力、颗粒粒径及反应介质对二氧化碳矿物碳酸化固化率的影响.结果表明,反应温度从50℃升至200℃,固化率先增加后降低,150℃时... 通过固-液-气三相模拟反应,研究了煤炭地下气化灰渣在模拟咸水中对二氧化碳的固化作用,考察了反应温度、反应压力、颗粒粒径及反应介质对二氧化碳矿物碳酸化固化率的影响.结果表明,反应温度从50℃升至200℃,固化率先增加后降低,150℃时最高;反应压力从1.0MPa升至2.5MPa,固化率从0.93%增至1.65%;颗粒粒径由75μm~150μm降至75μm以下,固化率从1.18%增至1.48%;反应介质由蒸馏水变为模拟咸水,固化率从0.38%增至1.65%.在150℃,2.5MPa,反应时间1h,颗粒粒径小于75μm的条件下,气化灰在模拟咸水中的固化率最高,可达1.65%. 展开更多
关键词 煤炭地下气化 二氧化碳 气化灰 模拟咸水 矿物碳酸化
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Soil Erosion as Affected by Polyacrylamide Application Under Simulated Furrow Irrigation with Saline Water 被引量:6
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作者 DOU Chao-Yin LI Fa-Hu L.S.WU 《Pedosphere》 SCIE CAS CSCD 2012年第5期681-688,共8页
The reduction of soil and water losses under furrow irrigation with saline water is important to environmental protection and agricultural production. The objective of this study was to determine the effect of polyacr... The reduction of soil and water losses under furrow irrigation with saline water is important to environmental protection and agricultural production. The objective of this study was to determine the effect of polyacrylamide (PAM) application on soil infiltration and erosion under simulated furrow irrigation with saline water. Polyacrylamide was applied by dissolving it in irrigation water at the rates of 1.5, 7.5, and 15.0 mg L-1 or spreading it as a powder on soil surface at the rates of 0.3, 1.5, 3.0, and 6.0 g m-2, respectively. The electrolyte concentration of tested irrigation water was 10 and 30 mmolc L-1 and its sodium adsorption ratio (SAR) was 0.5, 10.0, and 20.0 (mmolc L-1)0.5. Distilled water was used as a control for irrigation water quality. Results indicated that the electrolyte concentration and SAR generally did not significantly affect soil and water losses after PAM application. Infiltration rate and total infiltration volume decreased with the increase of PAM application rate. Polyacrylamide application in both methods significantly reduced soil erosion, but PAM application rate did not significantly affect it. The solution PAM application was more effective in controlling soil erosion than the powdered PAM application, but the former exerted a greater adverse influence on soil infiltration than the latter. Under the same total amounts, the powdered PAM application resulted in a 38.2%-139.6% greater infiltration volume but a soil mass loss of 1.3-3.4 times greater than the solution PAM application. 展开更多
关键词 electrolyte concentration sodium adsorption ratio soil infiltration soil loss water loss
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