中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2014年
32期
5728-5733
,共6页
潘凤萍%陈华忠%庞志强%王超%斯俊平%刘小伟
潘鳳萍%陳華忠%龐誌彊%王超%斯俊平%劉小偉
반봉평%진화충%방지강%왕초%사준평%류소위
燃煤锅炉%颗粒物%选择性催化还原(SCR)%静电除尘器(ESP)%烟气脱硫(FGD)%分布特性
燃煤鍋爐%顆粒物%選擇性催化還原(SCR)%靜電除塵器(ESP)%煙氣脫硫(FGD)%分佈特性
연매과로%과립물%선택성최화환원(SCR)%정전제진기(ESP)%연기탈류(FGD)%분포특성
coal-fired boiler%particulate matter%selective catalytic reduction (SCR)%electrostatic precipitator(ESP)%flue gas desulphurization (FGD)%distribution characteristics
采用承重撞击器颗粒物采样系统在国内某燃煤电厂4#锅炉进行颗粒物采集,采样点包括选择性催化还原(SCR)入口、静电除尘器(ESP)入口和烟气脱硫(FGD)入口。对采集的颗粒物的质量粒径分布特性和无机成分分布特性进行研究,结果表明相较于 SCR 入口,ESP 入口处 PM0.2~10的量减少24.45%,但主要减少超微米颗粒物;该锅炉ESP的效率很高,对 PM0.2~1.0、PM0.2~2.5和 PM0.2~10的脱除率分别达到99.52%、99.64%和99.79%;S在各采样点浓度差异明显,Al、Si的差异主要体现在亚微米颗粒物,Na、Ca浓度几乎不变;FGD入口,PM0.2~1.0中各无机元素的排放总量分别为:Na 0.03 mg/m3、Ca 0.19 mg/m3、Al 0.11 mg/m3、Si 0.26 mg/m3和S 0.08 mg/m3。
採用承重撞擊器顆粒物採樣繫統在國內某燃煤電廠4#鍋爐進行顆粒物採集,採樣點包括選擇性催化還原(SCR)入口、靜電除塵器(ESP)入口和煙氣脫硫(FGD)入口。對採集的顆粒物的質量粒徑分佈特性和無機成分分佈特性進行研究,結果錶明相較于 SCR 入口,ESP 入口處 PM0.2~10的量減少24.45%,但主要減少超微米顆粒物;該鍋爐ESP的效率很高,對 PM0.2~1.0、PM0.2~2.5和 PM0.2~10的脫除率分彆達到99.52%、99.64%和99.79%;S在各採樣點濃度差異明顯,Al、Si的差異主要體現在亞微米顆粒物,Na、Ca濃度幾乎不變;FGD入口,PM0.2~1.0中各無機元素的排放總量分彆為:Na 0.03 mg/m3、Ca 0.19 mg/m3、Al 0.11 mg/m3、Si 0.26 mg/m3和S 0.08 mg/m3。
채용승중당격기과립물채양계통재국내모연매전엄4#과로진행과립물채집,채양점포괄선택성최화환원(SCR)입구、정전제진기(ESP)입구화연기탈류(FGD)입구。대채집적과립물적질량립경분포특성화무궤성분분포특성진행연구,결과표명상교우 SCR 입구,ESP 입구처 PM0.2~10적량감소24.45%,단주요감소초미미과립물;해과로ESP적효솔흔고,대 PM0.2~1.0、PM0.2~2.5화 PM0.2~10적탈제솔분별체도99.52%、99.64%화99.79%;S재각채양점농도차이명현,Al、Si적차이주요체현재아미미과립물,Na、Ca농도궤호불변;FGD입구,PM0.2~1.0중각무궤원소적배방총량분별위:Na 0.03 mg/m3、Ca 0.19 mg/m3、Al 0.11 mg/m3、Si 0.26 mg/m3화S 0.08 mg/m3。
The gravimetric impacter (DGI) sampling system was applied to particulate matter (PM) sampling in the 4# boiler of a coal-fired power plant in China. The sampling sites include the inlet of selective catalytic reduction (SCR), the inlet of electrostatic precipitator(ESP) and the inlet of flue gas desulphurization (FGD). The mass particle size distribution characteristics and the composition of PM were analyzed, and the results indicate that comparing to the inlet of SCR, the amount of PM decreases by 24.45 % at the inlet of ESP, and the effect is mainly on supermicron PM. The efficiency of ESP of this boiler is very high, and the collection efficiencies of PM0.2~1.0, PM0.2~2.5 and PM0.2~10 are 99.52 %, 99.64 % and 99.79 % respectively. The concentration of S varies significantly at different sampling sites, and that of Al or Si only change in submicron PM. The concentrations of Na and Ca nearly exhibit no change. The emissions of Na, Ca, Al, Si and S in PM0.2~1.0 at the inlet of FGD are 0.03 mg/m3, 0.19 mg/m3, 0.11 mg/m3, 0.26 mg/m3 and 0.08 mg/m3 respectively.