State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangzhou 310027, China.
Zhejiang Fuchunjiang Environmental Technology Research Co., Ltd., Hangzhou 311401, China.
Molecules. 2021 Jul 15;26(14):4290. doi: 10.3390/molecules26144290.
For the long-term operation of municipal solid waste incineration (MSWI), online monitoring and feedback control of polychlorinated dibenzo--dioxin and dibenzofuran (PCDD/F) can be used to control the emissions to national or regional standards. In this study, 500 PCDD/F samples were determined by thermal desorption gas chromatography coupled to tunable-laser ionization time-of-flight mass spectrometry (TD-GC-TLI-TOFMS) for 168 h. PCDD/F emissions range from 0.01 ng I-TEQ/Nm to 2.37 ng I-TEQ/Nm, with 44% of values below 0.1 ng I-TEQ/Nm (the national standard). In addition, the temperature of the furnace outlet, bed pressure, and oxygen content are considered as key operating parameters among the 13 operating parameters comprising four temperature parameters, four pressure parameters, four flow parameters, and oxygen content. More specifically, maintaining the furnace outlet temperature to be higher than 800 °C, or bed pressure higher than 13 kPa, or the oxygen content stably and above 10% are effective methods for reducing PCDD/F emissions. According to the analysis of the Pearson coefficients and maximal information coefficients, there is no significant correlation between operating parameters and PCDD/F I-TEQ. Only when there is a significant change in one of these factors will the PCDD/F emissions also change accordingly. The feedback control of PCDD/F emissions is realized by adjusting the furnace outlet temperature, bed temperature, and bed pressure to control the PCDD/F to be less than 0.1 ng I-TEQ/Nm.
为实现城市固体废物焚烧(MSWI)的长期运行,可采用在线监测和反馈控制多氯二苯并-对-二恶英和多氯二苯并呋喃(PCDD/F),将排放控制在国家或地区标准以内。本研究采用热脱附气相色谱-可调谐激光电离飞行时间质谱法(TD-GC-TLI-TOFMS)对 500 个 PCDD/F 样品进行了 168 小时的测定。PCDD/F 的排放范围为 0.01ng I-TEQ/Nm 至 2.37ng I-TEQ/Nm,其中 44%的值低于 0.1ng I-TEQ/Nm(国家标准)。此外,炉膛出口温度、床层压力和氧含量被认为是 13 个操作参数中的关键操作参数,这 13 个操作参数包括 4 个温度参数、4 个压力参数、4 个流量参数和氧含量。更具体地说,保持炉膛出口温度高于 800°C,或床层压力高于 13kPa,或稳定并保持氧含量在 10%以上,是减少 PCDD/F 排放的有效方法。根据 Pearson 系数和最大信息系数的分析,操作参数与 PCDD/F-TEQ 之间没有显著的相关性。只有当这些因素中的一个发生显著变化时,PCDD/F 的排放量才会相应变化。通过调整炉膛出口温度、床层温度和床层压力来实现对 PCDD/F 排放的反馈控制,将 PCDD/F 控制在 0.1ng I-TEQ/Nm 以下。