Zhan Mingxiu, Chen Tong, Lin Xiaoqing, Fu Jianying, Li Xiaodong, Yan Jianhua, Buekens Alfons
State Key Laboratory of Clean Energy Utilization, Institute for Thermal Power Engineering, Zhejiang University, China.
State Key Laboratory of Clean Energy Utilization, Institute for Thermal Power Engineering, Zhejiang University, China.
Waste Manag. 2016 Aug;54:153-61. doi: 10.1016/j.wasman.2016.04.031. Epub 2016 May 25.
Thiourea was selected as representative of combined S- and N-inhibitors and injected after the post-combustion zone of two full-scale municipal solid waste incinerators (MSWIs) using a dedicated feeder. Firstly, the operating conditions were scrutinised by monitoring the concentrations of SO2, NH3 and HCl in the clean flue gas. The suppression experiment showed that in MSWI A thiourea could reduce the total I-TEQ value in flue gas by 73.4% from 1.41ng I-TEQ/Nm(3) to 0.37I-TEQ/Nm(3), those in fly ash by 87.1% from 14.3ng I-TEQ/g to 1.84I-TEQ/g and the total dioxins emission factor by 87.0wt.%, with a (S+N)/Cl molar ratio of 9.4. The suppression efficiencies of PCDD/Fs in flue gas and fly ash in MSWI B could be up to 69.2% and 83.0% when the (S+N)/Cl molar ratio attained 7.51. Furthermore, the congener distributions of dioxins were also analysed in the flue gas and fly ash, before and after addition of thiourea, to find cues to some suppression mechanism. In addition, the filtered fly ash was explored by the Scanning Electron Microscope (SEM) and Energy Dispersive Spectrometer (EDS) analysis of fly ash. These results suggest that poisoning the metal catalyst and blocking the chlorination are most probably responsible for suppression.
选择硫脲作为含硫和氮抑制剂的代表,通过专用进料器在两座全尺寸城市固体废物焚烧炉(MSWI)的燃烧后区域进行注入。首先,通过监测清洁烟道气中SO₂、NH₃和HCl的浓度来仔细检查运行条件。抑制实验表明,在MSWI A中,硫脲可使烟道气中的总I-TEQ值从1.41ng I-TEQ/Nm³降至0.37I-TEQ/Nm³,降幅为73.4%;使飞灰中的总I-TEQ值从14.3ng I-TEQ/g降至1.84I-TEQ/g,降幅为87.1%;使二噁英总排放因子降低87.0wt.%,此时(S+N)/Cl摩尔比为9.4。当(S+N)/Cl摩尔比达到7.51时,MSWI B中烟道气和飞灰中PCDD/Fs的抑制效率分别可达69.2%和83.0%。此外,还分析了添加硫脲前后烟道气和飞灰中二噁英同系物的分布,以寻找一些抑制机制的线索。另外,通过扫描电子显微镜(SEM)和能谱仪(EDS)对飞灰进行分析,研究了过滤后的飞灰。这些结果表明,抑制作用最有可能是由于金属催化剂中毒和氯化反应受阻所致。