To evaluate the potential benefits of biomass use for air pollution control, this paper identified and quantified the emissions of major reactive organic compounds anticipated from biomass-fired industrial boilers. Wo...To evaluate the potential benefits of biomass use for air pollution control, this paper identified and quantified the emissions of major reactive organic compounds anticipated from biomass-fired industrial boilers. Wood pellets(WP) and straw pellets(SP) were burned to determine the volatile organic compound emission profiles for each biomass-boiler combination. More than 100 types of volatile organic compounds(VOCs) were measured from the two biomass boilers. The measured VOC species included alkanes, alkenes and acetylenes, aromatics, halocarbons and carbonyls. A single coal-fired boiler(CB) was also studied to provide a basis for comparison. Biomass boiler 1(BB1) emitted relatively high proportions of alkanes(28.9%–38.1% by mass) and alkenes and acetylenes(23.4%–40.8%),while biomass boiler 2(BB2) emitted relatively high proportions of aromatics(27.9%–29.2%)and oxygenated VOCs(33.0%–44.8%). The total VOC(TVOC) emission factors from BB1(128.59–146.16 mg/kg) were higher than those from BB2(41.26–85.29 mg/kg). The total ozone formation potential(OFP) ranged from 6.26 to 81.75 mg/m^3 with an average of 33.66 mg/m^3 for the two biomass boilers. The total secondary organic aerosol potential(SOAP) ranged from 61.56 to 211.67 mg/m^3 with an average of 142.27 mg/m^3 for the two biomass boilers.The emission factors(EFs) of TVOCs from biomass boilers in this study were similar to those for industrial coal-fired boilers with the same thermal power. These data can supplement existing VOC emission factors for biomass combustion and thus enrich the VOC emission inventory.展开更多
为了揭示生物质锅炉中活性分子臭氧脱硝的特点,在一台应用了活性分子臭氧深度一体化超低排放技术的生物质循环流化床锅炉上,开展烟气臭氧脱硝试验。采用烟气分析仪测量锅炉尾部烟道活性分子臭氧喷入前和塔顶烟囱处的烟气组分,重点探究...为了揭示生物质锅炉中活性分子臭氧脱硝的特点,在一台应用了活性分子臭氧深度一体化超低排放技术的生物质循环流化床锅炉上,开展烟气臭氧脱硝试验。采用烟气分析仪测量锅炉尾部烟道活性分子臭氧喷入前和塔顶烟囱处的烟气组分,重点探究了脱硝前后烟气污染物的排放特性以及臭氧投加量对脱硝效果的影响。结果表明:由于入炉生物质燃料的水分和热值的变化有较强的随机性,机组负荷及CO、NOx等污染物初始浓度均随之波动;烟气中NOx初始浓度的平均值为146mg/m3,最高值可达480 mg/m3,其瞬时值与含氧量有着非常强的线性相关性,线性回归相关系数(R2)为0. 96;随着臭氧投加量的增加,脱硝率从臭氧发生器功率为118 k W时的24%增至250 k W时的95%;应用活性分子臭氧脱硝技术后,臭氧发生器功率为250 k W时,烟气中NOx浓度一直稳定在15 mg/m3以下,满足超低排放标准要求。展开更多
The paper discusses the features of the Biomass Boiler drum water level. Conventional PID Control System can not reach a satisfaction result in nonlinearity and time different from Biomass Boiler Drum Water Control Sy...The paper discusses the features of the Biomass Boiler drum water level. Conventional PID Control System can not reach a satisfaction result in nonlinearity and time different from Biomass Boiler Drum Water Control System. In this study, a kind of fuzzy self-adaptive PID controller is described and this controller is used in biomass boiler’s drum water level control system. Using the simulink tool of MATLAB simulation software to simulate the fuzzy adaptive PID and conventional PID control system, the result of the comparison shows that the fuzzy self-adaptive PID has the strong anti-jamming, flexibility and adaptability as well as the higher control precision in Biomass Boiler Drum Water.展开更多
简要介绍了常用热喷涂技术,基于对热喷涂防腐涂层在燃煤锅炉防腐工作中的研究进展,进一步分析了热喷涂涂层在生物质锅炉防腐中的现状,介绍了金属涂层中的Ni Cr Ti Fe系列涂层、陶瓷涂层及金属陶瓷复合涂层、纳米涂层等现有技术比较成熟...简要介绍了常用热喷涂技术,基于对热喷涂防腐涂层在燃煤锅炉防腐工作中的研究进展,进一步分析了热喷涂涂层在生物质锅炉防腐中的现状,介绍了金属涂层中的Ni Cr Ti Fe系列涂层、陶瓷涂层及金属陶瓷复合涂层、纳米涂层等现有技术比较成熟的涂层,对热喷涂防腐涂层的发展趋势进行了展望。展开更多
基金supported by the National Natural Science Foundation of China(No.41275135)the Chinese National Key Research and Development Plan(No.2017YFC0212503)
文摘To evaluate the potential benefits of biomass use for air pollution control, this paper identified and quantified the emissions of major reactive organic compounds anticipated from biomass-fired industrial boilers. Wood pellets(WP) and straw pellets(SP) were burned to determine the volatile organic compound emission profiles for each biomass-boiler combination. More than 100 types of volatile organic compounds(VOCs) were measured from the two biomass boilers. The measured VOC species included alkanes, alkenes and acetylenes, aromatics, halocarbons and carbonyls. A single coal-fired boiler(CB) was also studied to provide a basis for comparison. Biomass boiler 1(BB1) emitted relatively high proportions of alkanes(28.9%–38.1% by mass) and alkenes and acetylenes(23.4%–40.8%),while biomass boiler 2(BB2) emitted relatively high proportions of aromatics(27.9%–29.2%)and oxygenated VOCs(33.0%–44.8%). The total VOC(TVOC) emission factors from BB1(128.59–146.16 mg/kg) were higher than those from BB2(41.26–85.29 mg/kg). The total ozone formation potential(OFP) ranged from 6.26 to 81.75 mg/m^3 with an average of 33.66 mg/m^3 for the two biomass boilers. The total secondary organic aerosol potential(SOAP) ranged from 61.56 to 211.67 mg/m^3 with an average of 142.27 mg/m^3 for the two biomass boilers.The emission factors(EFs) of TVOCs from biomass boilers in this study were similar to those for industrial coal-fired boilers with the same thermal power. These data can supplement existing VOC emission factors for biomass combustion and thus enrich the VOC emission inventory.
文摘为了揭示生物质锅炉中活性分子臭氧脱硝的特点,在一台应用了活性分子臭氧深度一体化超低排放技术的生物质循环流化床锅炉上,开展烟气臭氧脱硝试验。采用烟气分析仪测量锅炉尾部烟道活性分子臭氧喷入前和塔顶烟囱处的烟气组分,重点探究了脱硝前后烟气污染物的排放特性以及臭氧投加量对脱硝效果的影响。结果表明:由于入炉生物质燃料的水分和热值的变化有较强的随机性,机组负荷及CO、NOx等污染物初始浓度均随之波动;烟气中NOx初始浓度的平均值为146mg/m3,最高值可达480 mg/m3,其瞬时值与含氧量有着非常强的线性相关性,线性回归相关系数(R2)为0. 96;随着臭氧投加量的增加,脱硝率从臭氧发生器功率为118 k W时的24%增至250 k W时的95%;应用活性分子臭氧脱硝技术后,臭氧发生器功率为250 k W时,烟气中NOx浓度一直稳定在15 mg/m3以下,满足超低排放标准要求。
文摘The paper discusses the features of the Biomass Boiler drum water level. Conventional PID Control System can not reach a satisfaction result in nonlinearity and time different from Biomass Boiler Drum Water Control System. In this study, a kind of fuzzy self-adaptive PID controller is described and this controller is used in biomass boiler’s drum water level control system. Using the simulink tool of MATLAB simulation software to simulate the fuzzy adaptive PID and conventional PID control system, the result of the comparison shows that the fuzzy self-adaptive PID has the strong anti-jamming, flexibility and adaptability as well as the higher control precision in Biomass Boiler Drum Water.