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Experimental study of the influence of temperatures under SCR conditions using an on-line digital image technique

机译:在线数字图像技术对SCR条件下温度影响的实验研究

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In this paper, the drop tube furnace (DTF) system was utilized to study the ash deposition growth of different temperatures in the mixed atmosphere of NH3 and SO3 using an on-line digital image technique. A series of tests, such as XRD, SEM, and EDS, were also used to further study the ash deposition characteristics. The experimental results show that the stable thickness of ash deposition decreases and heat flux at the probe surface increases as the temperature increases. The average ash deposition thickness at the temperatures of 553, 593 and 633 K is 2.13, 1.64 and 1.53 mm, respectively, and the average heat flux is 17.13, 24.19 and 31.33 kW/m(2), respectively. Ash deposition growth can be divided into three stages: the rapid growth stage, the slow growth stage, and the stable stage. Ammonium bisulfate (ABS) was detected by XRD, and an N element was detected by EDS, indicating the viscous ABS generated in the mixed atmosphere and aggravated fly ash deposition. SEM analysis showed that the ash deposition on the upper part of the probe was mostly agglomerated and the particle size increased, and the lower ash deposition is mostly spherical, similar to the fly ash. In addition, the agglomeration of the upper ash deposition is weakened, and the lower ash deposition becomes smoother and looser as the temperature increases. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在本文中,利用滴管炉(DTF)系统在线数字图像技术研究NH3和SO3混合气氛中不同温度的灰分沉积生长。还用于进一步研究灰沉积特性的一系列测试,例如XRD,SEM和EDS。实验结果表明,随着温度升高,探针表面的灰分沉积厚度降低和热通量增加。平均灰分沉积厚度在553,593和633k的温度下分别为2.13,1.64和1.53mm,平均热通量分别为17.13,24.19和31.3 kW / m(2)。灰分沉积生长可分为三个阶段:快速生长阶段,缓慢的生长阶段,稳定阶段。通过XRD检测双硫酸铵(ABS),并通过EDS检测N个元素,表示在混合气氛中产生的粘性ABS并加重粉煤灰沉积。 SEM分析表明,探针的上部上的灰分沉积大多数凝聚,粒度增加,并且下灰分沉积主要是球形的,类似于粉煤灰。另外,削弱上灰分沉积的凝聚,并且随着温度升高,下灰分沉积变得更光滑并松动。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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