Effect of Calcium Phosphates Additives on PM Emissions From the Combustion of Corn-stalk

被引:0
|
作者
Yang P. [1 ]
Zhu Y. [2 ]
Fan J. [1 ]
Cheng W. [1 ]
Wu G. [1 ]
Shao J. [1 ]
Yang H. [1 ]
Chen H. [1 ]
机构
[1] State Key Laboratory of Coal Combustion, Huazhong University of Science & Technology, Wuhan
[2] School of Energy and Power Engineering, Zhengzhou University of Light Industry, Zhengzhou
来源
Chen, Hanping (hp.chen@163.com) | 1600年 / Chinese Society for Electrical Engineering卷 / 40期
基金
中国国家自然科学基金;
关键词
Calcium phosphates; Combustion; Particulate matter; Pollutant emission; Straw biomass;
D O I
10.13334/j.0258-8013.pcsee.191618
中图分类号
学科分类号
摘要
Agricultural biomass combustion generates a large amount of particulate matters, greatly restricting its utilization in heat and electricity production. This paper investigated the effect of three calcium phosphates additives, namely CaHPO4, Ca(H2PO4)2 and Ca3(PO4)2, on the reduction of fine particulate matter emissions during cornstalk combustion. The combustion was conducted by using a fixed bed reactor and the particulate matters were collected by a Dekati low pressure impactor (DLPI). Meanwhile, the chemical compositions and crystalline phases of the residual ashes were analyzed by using X-ray fluorescence (XRF) and X-ray diffraction(XRD). It was found that the total amount of PM10, especially PM1, was reduced to varying degrees with the addition of three calcium phosphates. When the P/K molar ratio equals to 1, Ca(H2PO4)2 showed a better PM reduction effect than CaHPO4 and Ca3(PO4)2 and the highest PM10 reduction rate of 44.09% and PM1 reduction rate of 51.93% were achieved when Ca(H2PO4)2 was used. Analysis of the residual ash show that the reactions between the calcium phosphates additives and K slats in corn stalk resulted in the formation of high-melting K-Ca/Mg phosphates, such as KCaPO4, K2CaP2O7, Ca9MgK(PO4), which can reduce the formation of the PM1. It is suggested to add CaHPO4 or Ca(H2PO4)2 to corn stalk biomass according to the ratio of P/K mole ratio equal to 1 to reduce the emission of particulate matter, when economy and emission reduction effect was taken into account comprehensively. This study could provide scientific guidance for the reduction of PM emissions during the combustion of corn stalk. © 2020 Chin. Soc. for Elec. Eng.
引用
收藏
页码:5955 / 5962
页数:7
相关论文
共 26 条
  • [11] Knudsen J N, Jensen P A, Dam-Johansen K., Transformation and release to the gas phase of Cl, K, and S during combustion of annual biomass, Energy & Fuels, 18, 5, pp. 1385-1399, (2004)
  • [12] Dayton D C, French R J, Milne T A., Direct observation of alkali vapor release during biomass combustion and gasification. 1. application of molecular beam/mass spectrometry to switchgrass, Energy & Fuels, 9, 5, pp. 855-865, (1995)
  • [13] Bafver L S, Ronnback M, Leckner B, Et al., Particle emission from combustion of oat grain and its potential reduction by addition of limestone or kaolin, Fuel Processing Technology, 90, 3, pp. 353-359, (2009)
  • [14] Yang Wei, Zhu Youjian, Cheng Wei, Et al., Effect of minerals and binders on particulate matter emission from biomass pellets combustion, Applied Energy, 215, pp. 106-115, (2018)
  • [15] Bostrom D, Skoglund N, Grimm A, Et al., Ash transformation chemistry during combustion of biomass, Energy & Fuels, 26, 1, pp. 85-93, (2012)
  • [16] Wang Qian, Han Kuihua, Wang Jiamin, Et al., Influence of phosphorous based additives on ash melting characteristics during combustion of biomass briquette fuel, Renewable Energy, 113, pp. 428-437, (2017)
  • [17] Fan Jiyuan, Zhu Youjian, Wu Guihao, Et al., Effect of NH<sub>4</sub>H<sub>2</sub>PO<sub>4</sub> additives on PM emissions from the combustion of biomass, Proceedings of the CSEE, 40, 1, pp. 176-182, (2020)
  • [18] Fan Jiyuan, Effect of the addition of P-based additives on particulate matter emissions during the combustion of biomass, (2019)
  • [19] ASTEM E, Standard test method for ash in biomass, (2015)
  • [20] Zhu Youjian, Yang Wei, Fan Jiyuan, Et al., Effect of sodium carboxymethyl cellulose addition on particulate matter emissions during biomass pellet combustion, Applied Energy, 230, pp. 925-934, (2018)