中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2014年
2期
240-246
,共7页
马双忱%熊远南%吴国栋%王一宁%刘席洋%谢佳林
馬雙忱%熊遠南%吳國棟%王一寧%劉席洋%謝佳林
마쌍침%웅원남%오국동%왕일저%류석양%사가림
高聚物%阻力耗能%减阻实验研究%减阻剂配方%减阻效果
高聚物%阻力耗能%減阻實驗研究%減阻劑配方%減阻效果
고취물%조력모능%감조실험연구%감조제배방%감조효과
polymer%energy consumption due to resistance%experimental study of resistance reduction%drag reducing agent (DRA) formula%resistance reduction effect
高聚物聚氧化乙烯(polyethyleneoxide,PEO)、聚丙烯酰胺(polyacrylamide,PAM)能够减少管道中流体阻力。目前,电厂脱硫主要以湿式石灰石石膏法为主,脱硫系统中循环泵传输浆液产生巨大的阻力耗能。因此,文中针对电厂脱硫系统进行减阻实验研究。模拟实际环境中的生产情况,在湿式石灰石脱硫浆液中,添加不同浓度的减阻剂,研究浆液流体特性以及高聚物的减阻性能。基于影响高聚物 PEO、PAM 减阻效果的因素实验分析,探索最佳的减阻剂配方。研究表明,高聚物PEO、PAM均存在自最佳减阻浓度;减阻剂配方由 PEO、PAM、硫脲3种组分按质量浓度配比3:1:2组成,600 mg/L减阻剂的减阻效果最佳,最佳减阻率在40%左右。
高聚物聚氧化乙烯(polyethyleneoxide,PEO)、聚丙烯酰胺(polyacrylamide,PAM)能夠減少管道中流體阻力。目前,電廠脫硫主要以濕式石灰石石膏法為主,脫硫繫統中循環泵傳輸漿液產生巨大的阻力耗能。因此,文中針對電廠脫硫繫統進行減阻實驗研究。模擬實際環境中的生產情況,在濕式石灰石脫硫漿液中,添加不同濃度的減阻劑,研究漿液流體特性以及高聚物的減阻性能。基于影響高聚物 PEO、PAM 減阻效果的因素實驗分析,探索最佳的減阻劑配方。研究錶明,高聚物PEO、PAM均存在自最佳減阻濃度;減阻劑配方由 PEO、PAM、硫脲3種組分按質量濃度配比3:1:2組成,600 mg/L減阻劑的減阻效果最佳,最佳減阻率在40%左右。
고취물취양화을희(polyethyleneoxide,PEO)、취병희선알(polyacrylamide,PAM)능구감소관도중류체조력。목전,전엄탈류주요이습식석회석석고법위주,탈류계통중순배빙전수장액산생거대적조력모능。인차,문중침대전엄탈류계통진행감조실험연구。모의실제배경중적생산정황,재습식석회석탈류장액중,첨가불동농도적감조제,연구장액류체특성이급고취물적감조성능。기우영향고취물 PEO、PAM 감조효과적인소실험분석,탐색최가적감조제배방。연구표명,고취물PEO、PAM균존재자최가감조농도;감조제배방유 PEO、PAM、류뇨3충조분안질량농도배비3:1:2조성,600 mg/L감조제적감조효과최가,최가감조솔재40%좌우。
The polymer compounds, such as polyethyleneoxide (PEO), polyacrylamide (PAM) are able to reduce the pipe fluid resistance. Nowadays, flue gas desulfurization in power plants mainly adopts the method of wet limestone/gypsum method; Circulation pump transporting circulation slurry causes large resistance, consuming a lot of energy in the desulfurization system. Therefore, the experimental research on resistance reduction for desulfurization system in power plants was carried out. To simulate actual environment in wet limestone desulfurization slurry, different concentrations of drag reducing agent (DRA) were added into the slurry, and flow properties of desulfurization slurry and resistance reduction performance of polymer were investigated at the same time. The best formula of DRA was obtained through the experimental analysis of influence factors upon drag-reduction performance of polymer PEO PAM. The study shows that DRA has the best resistance reduction effect at the optimum mass concentration ratio of PEO, PAM and thiourea of 3:1:2 and DRA concentration of 600 mg/L, and the best resistance reduction rate is about 40%.