2004 – 2008 圣路易斯华盛顿大学能源环境与化学工程系,博士
2002 – 2004 清华大学环境科学与工程系,硕士
1998 – 2002 清华大学环境科学与工程系,学士
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pg麻将胡了模拟器链接-pg电子赏金女王模拟器试玩 > 师资队伍 > 教师 > 大气污染与控制教研所 > 正文
大气污染与控制教研所
蒋靖坤
邮箱:jiangjk@tsinghua.edu.cn
电话:010-62781512
地点:清华大学环境节能楼
教育背景
2004 – 2008 圣路易斯华盛顿大学能源环境与化学工程系,博士
2002 – 2004 清华大学环境科学与工程系,硕士
1998 – 2002 清华大学环境科学与工程系,学士
工作履历
2017-至今 清华大学环境学院 长聘教授
2010-2016 清华大学环境学院 副研究员、准聘和长聘副教授
2008 -2010 明尼苏达大学机械工程系,博士后
教学
2021-至今 《理论与实践:空气》(本科生课程)
2020-至今 《新生导引课》(本科生课程)
2013-至今 空气质量管理(本科生课程)
2011-至今 气溶胶力学(研究生课程)
2010 《纳米技术与工程》客座教师
2008 《表面和胶体科学》助教
2005 《传递现象》助教
学术兼职
2020-至今 editorial board, environmental science & technology letters
2019-至今 editorial board, environmental research
2017-2018 technical program committee, 2018 international aerosol conference
2017-2020 guest editor, atmospheric chemistry & physics
2016-至今 editor, aerosol science and technology
2017-2019 editorial board, journal of aerosol science
2016-至今 环境模拟与污染控制国家重点联合实验室清华分室主任
研究领域
大气污染与控制、气溶胶科学与技术、颗粒物测量和成因
研究概况
改进冷凝生长技术以提高1-3纳米大气颗粒物检测效率,基金委面上项目, 2019-2022;
多尺度高时空分辨率污染物排放及变化趋势,国家重点研发计划,2018-2021;
纳米颗粒物粒径分析技术,国家重点研发计划,2017-2020;
大气细颗粒物暴露导致慢阻肺的暴露组学与系统生物学研究,基金委重大研究计划重点项目,2017-2020;
大气颗粒有机物在线前处理及富集技术研发,国家重点研发计划,2016-2020;
大气污染化学,基金委优秀青年基金项目,2015-2017;
长三角区域大气重污染事件发生特征与形成途径研究,“十二五”科技支撑项目,2014-2017;
北京市民用燃煤pm2.5排放特征研究,北京市科技新星项目,2014-2017;
多介质复合污染与控制化学,基金委创新群体项目,2013-2018;
二次细粒子粒径分布、化学组成和光学特性在线测量系统,基金委国家重大科研仪器设备研制专项,2013-2017;
烟气系统中细颗粒物的转化机制与脱除增强的机理与方法,973项目,2013-2017;
钢铁窑炉烟尘pm2.5控制技术与装备, 863项目,2013-2015;
大气二次颗粒物的化学组分特征及形成机制,基金委重大项目,2012-2016;
大气新粒子的生长机制研究, 基金委青年基金项目,2012-2014;
长江三角洲地区大气灰霾特征与控制途径研究, 环保公益性行业科研项目,2010-2013;
clusters to nanoparticles: implications for atmospheric nucleation. u.s. national science foundation, 2005-2010;
growth rates of freshly nucleated particles. u.s. department of energy, 2007-2010;
relationship between phsico-chemical characteristics and toxicological properties of nanomaterials. u.s. air force office of scientific research, 2005-2009;
full development of interactive aerosol program. u.s. national science foundation, 2005-2008;
synthesis and application of magnetic nanoparticles. u.s. national science foundation, 2003-2007;
燃烧源可吸入颗粒物源的物理化学特征及其成因研究,973计划项目,2002-2007。
奖励与荣誉
2020,es&t letters excellence in review award
2020,教育部长江学者特聘教授
2019,中国化学会青年环境化学奖
2019,清华大学青年教师教学优秀奖
2019,清华大学先进工作者
2018,smoluchowski award
2017、2018、2019, 清华大学年度教学优秀奖
2016,教育部青年长江学者
2016,北京市科技进步一等奖
2016,国家环境保护专业技术青年拔尖人才
2016,清华大学2015届&2016届毕业生心目中的好教师
2015,asian young aerosol scientist award
2015,国家科技进步二等奖
2014,“万人计划”青年拔尖人才
2014,国家优秀青年科学基金
2014,教育部科技进步一等奖
2014,北京市科技新星
2012,清华大学第五届青年教师教学大赛二等奖(理工组)
2009,a&wma dissertation award
2002,清华大学优良毕业生
学术成果
一、英文文章
1. deng, c., r. cai, c. yan, j. zheng, and j. jiang*, formation and growth of sub-3nm particles in megacities: impact of background aerosols. faraday discussions, 2021. 226: 348-363.
2. cai, r.l., c. yan, d.s. yang, r.j. yin, y.q. lu, c.j. deng, y.y. fu, j.x. ruan, x.x. li, j. kontkanen, q. zhang, j. kangasluoma, y. ma, j.m. hao, d.r. worsnop, f. bianchi, p. paasonen, v.m. kerminen, y.c. liu, l. wang, j. zheng, m. kulmala, and j. jiang*, sulfuric acid-amine nucleation in urban beijing. atmospheric chemistry and physics, 2021. 21(4): 2457-2468.
3. li, x., y. li, m.j. lawler, j. hao, j. smith*, and j. jiang*, composition of ultrafine particles in urban beijing: measurement using a thermal desorption chemical ionization mass spectrometer. environmental science & technology, 2021. 55(5): 2859-2868.
4. an, z., x. li, z. shi, b.j. williams, r.m. harrison, and j. jiang*, frontier review on comprehensive two-dimensional gas chromatography for measuring organic aerosol. journal of hazardous materials letters, 2021. 2: 100013.
5. qiao, x., q. zhang, d. wang, j. hao, and j. jiang*, improving data reliability: a quality control practice for low-cost pm2.5 sensor network. science of the total environment, 2021. 779: 146381.
6. li, z., y. yuan, h. wu, x. li, m. yuan, h. wang, x. wu, s. liu, x. zheng, m. kim, h. zheng, s. rehman, g. jiang, w. fu, and j. jiang*, investigation of mof-derived humidity-proof hierarchical porous carbon frameworks as highly-selective toluene absorbents and sensing materials. journal of hazardous materials, 2021. 411: 125034.
7. yan, c., r. yin, y. lu, l. dada, d. yang, y. fu, j. kontkanen, c. deng, o. garmash, j. ruan, r. baalbaki, m. schervish, r. cai, m. bloss, t. chan, t. chen, q. chen, x. chen, y. chen, b. chu, k. dällenbach, b. foreback, x. he, l. heikkinen, t. jokinen, h. junninen, j. kangasluoma, t. kokkonen, m. kurppa, k. lehtipalo, h. li, h. li, x. li, y. liu, q. ma, p. paasonen, p. rantala, r.e. pileci, a. rusanen, n. sarnela, p. simonen, s. wang, w. wang, y. wang, m. xue, g. yang, l. yao, y. zhou, j. kujansuu, t. petäjä, w. nie, y. ma, m. ge, h. he, n.m. donahue, d.r. worsnop, v.-m. kerminen, l. wang, y. liu*, j. zheng*, m. kulmala*, j. jiang*, and f. bianchi*, the synergistic role of sulfuric acid, bases, and oxidized organics governing new-particle formation in beijing. geophysical research letters, 2021. 48(7): e2020gl091944.
8. zhang, j., h. cheng, d. wang, y. zhu, c. yang, y. shen, j. yu, y. li, s. xu, s. zhang, x. song, y. zhou, j. chen, j. jiang, l. fan, c. wang, and k. hao, chronic exposure to pm2.5 nitrate, sulfate, and ammonium causes respiratory system impairments in mice. environmental science & technology, 2021. 55(5): 3081-3090.
9. zhang, j., h. cheng, d. wang, y. zhu, c. yang, y. shen, j. yu, y. li, s. xu, x. song, y. zhou, j. chen, l. fan, j. jiang, c. wang, and k. hao, revealing consensus gene pathways associated with respiratory functions and disrupted by pm2.5 nitrate exposure at bulk tissue and single cell resolution. environmental pollution, 2021. 280: 116951.
10. zhang, d., y. yang, m. li, y. lu, y. liu, j. jiang, r. liu, j. liu, x. huang, g. li, and j. qu, ecological barrier deterioration driven by human activities poses fatal threats to public health due to emerging infectious diseases. engineering, 2021. in press.
11. kulmala, m., l. dada, k.r. daellenbach, c. yan, d. stolzenburg, j. kontkanen, e. ezhova, s. hakala, s. tuovinen, t.v. kokkonen, m. kurppa, r. cai, y. zhou, r. yin, r. baalbaki, t. chan, b. chu, c. deng, y. fu, m. ge, h. he, l. heikkinen, h. junninen, y. liu, y. lu, w. nie, a. rusanen, v. vakkari, y. wang, g. yang, l. yao, j. zheng, j. kujansuu, j. kangasluoma, t. petaja, p. paasonen, l. jarvi, d. worsnop, a. ding, y. liu, l. wang, j. jiang, f. bianchi, and v.-m. kerminen, is reducing new particle formation a plausible solution to mitigate particulate air pollution in beijing and other chinese megacities? faraday discussions, 2021. 226: 334-347.
12. cai, r., c. li, x.-c. he, c. deng, y. lu, r. yin, c. yan, l. wang, j. jiang, m. kulmala, and j. kangasluoma, impacts of coagulation on the appearance time method for new particle growth rate evaluation and their corrections. atmospheric chemistry and physics, 2021. 21(3): 2287-2304.
13. alam, m.s., w. bloss, j. brean, p. brimblecombe, c. chan, y. chen, h. coe, p. fu, s. gani, j. hamilton, r. harrison, j. jiang, m. kulmala, l. lugon, g. mcfiggans, a. mehra, a. milsom, b. nelson, c. pfrang, k. sartelet, z. shi, d. srivastava, g. stewart, p. styring, h. su, d. van pinxteren, e. velasco, and j.z. yu, general discussion: aerosol formation and growth; voc sources and secondary organic aerosols. faraday discussions, 2021. 226: 479-501.
14. morgan, j.l.l., a. shauchuk, j.l. meyers, a. altemeier, x.h. quo, m. jones, e.d. smith, and j. jiang, quantifying the deposition of airborne particulate matter pollution on skin using elemental markers. environmental science & technology, 2020. 54(24): 15958-15967.
15. zhang, c., w.r. heinson, p. liu, p. beeler, q. li, j. jiang, and r.k. chakrabarty, three-dimensional tomography reveals distinct morphological and optical properties of soot aggregates from coal-fired residential stoves in china. journal of quantitative spectroscopy and radiative transfer, 2020. 254: 107184.
16. yao, l., x.l. fan, c. yan, t. kurten, k.r. daellenbach, c. li, y.h. wang, y.s. guo, l. dada, m.p. rissanen, j. cai, y.j. tham, q.z. zha, s.j. zhang, w. du, m. yu, f.x. zheng, y. zhou, j. kontkanen, t. chan, j.l. shen, j.t. kujansuu, j. kangasluoma, j. jiang, l. wang, d.r. worsnop, t. petaja, v.m. kerminen, y.c. liu, b.w. chu, h. he, m. kulmala, and f. bianchi, unprecedented ambient sulfur trioxide (so3) detection: possible formation mechanism and atmospheric implications. environmental science & technology letters, 2020. 7(11): 809-818
17. wang, g., j. deng, y. zhang, q. zhang, l. duan, j. hao, and j. jiang*, air pollutant emissions from coal-fired power plants in china over the past two decades. science of the total environment, 2020. 741: 140326.
18. wang, d., j. jiang, j. deng, y. li, and j. hao, a sampler for collecting fine particles into liquid suspensions. aerosol and air quality research, 2020. 20(3): 654-662.
19. tuovinen, s., j. kontkanen, j. jiang, and m. kulmala, investigating the effectiveness of condensation sink based on heterogeneous nucleation theory. journal of aerosol science, 2020. 149: 105613.
20. perraud, v., x. li, j. jiang, b.j. finlayson-pitts, and j.n. smith, size-resolved chemical composition of sub-20 nm particles from methanesulfonic acid reactions with methylamine and ammonia. acs earth and space chemistry, 2020. 4(7): 1182-1194.
21. ma, z., j. jiang, l. duan, z. li, j. deng, j. li, r. zhang, c. zhou, f. xu, l. jiang, and n. duan, ultrasonication to reduce particulate matter generated from bursting bubbles: a case study on zinc electrolysis. journal of cleaner production, 2020. 272: 122697.
22. ma, t., h. furutani, f. duan, t. kimoto, j. jiang, q. zhang, x. xu, y. wang, j. gao, g. geng, m. li, s. song, y. ma, f. che, j. wang, l. zhu, t. huang, m. toyoda, and k. he, contribution of hydroxymethanesulfonate (hms) to severe winter haze in the north china plain. atmos. chem. phys., 2020. 20(10): 5887-5897.
23. liu, y., c. yan, z. feng, f. zheng, x. fan, y. zhang, c. li, y. zhou, z. lin, y. guo, y. zhang, l. ma, w. zhou, z. liu, l. dada, k. dällenbach, j. kontkanen, r. cai, t. chan, b. chu, w. du, l. yao, y. wang, j. cai, j. kangasluoma, t. kokkonen, j. kujansuu, a. rusanen, c. deng, y. fu, r. yin, x. li, y. lu, y. liu, c. lian, d. yang, w. wang, m. ge, y. wang, d.r. worsnop, h. junninen, h. he, v.-m. kerminen, j. zheng, l. wang, j. jiang, t. petäjä, f. bianchi, and m. kulmala, continuous and comprehensive atmospheric observations in beijing: a station to understand the complex urban atmospheric environment. big earth data, 2020. 4(3): 295-321.
24. li, x.x., b. zhao, w. zhou, h.r. shi, r.j. yin, r.l. cai, d.s. yang, k. dallenbach, c.j. deng, y.y. fu, x.h. qiao, l. wang, y.c. liu, c. yan, m. kulmala, j. zheng, j.m. hao, s.x. wang, and j. jiang*, responses of gaseous sulfuric acid and particulate sulfate to reduced so2 concentration: a perspective from long-term measurements in beijing. science of the total environment, 2020. 721: 9.
25. leung, d.m., h. shi, b. zhao, j. wang, e.m. ding, y. gu, h. zheng, g. chen, k.-n. liou, s. wang, j.d. fast, g. zheng, j. jiang, x. li, and j.h. jiang, wintertime particulate matter decrease buffered by unfavorable chemical processes despite emissions reductions in china. geophysical research letters, 2020. 47(14): e2020gl087721.
26. kontkanen, j., c. deng, y. fu, l. dada, y. zhou, j. cai, k.r. daellenbach, s. hakala, t.v. kokkonen, z. lin, y. liu, y. wang, c. yan, t. petäjä, j. jiang, m. kulmala, and p. paasonen, size-resolved particle number emissions in beijing determined from measured particle size distributions. atmos. chem. phys., 2020. 20(19): 11329-11348.
27. kangasluoma, j., r. cai, j. jiang, c. deng, d. stolzenburg, l.r. ahonen, t. chan, y. fu, c. kim, t.m. laurila, y. zhou, l. dada, j. sulo, r.c. flagan, m. kulmala, t. petäjä, and k. lehtipalo, overview of measurements and current instrumentation for 1–10 nm aerosol particle number size distributions. journal of aerosol science, 2020. 148: 105584.
28. jiang*, j., y. vincent fu, l. liu, and m. kulmala, transmission via aerosols: plausible differences among emerging coronaviruses. aerosol science and technology, 2020. 54(8): 865-868.
29. hu, r., q. xu, s. wang, y. hua, n. bhattarai, j. jiang, y. song, k.r. daellenbach, l. qi, a.s.h. prevot, and j. hao, chemical characteristics and sources of water-soluble organic aerosol in southwest suburb of beijing. journal of environmental sciences, 2020. 95: 99-110.
30. deng, c., y. fu, l. dada, c. yan, r. cai, d. yang, y. zhou, r. yin, y. lu, x. li, x. qiao, x. fan, w. nie, j. kontkanen, j. kangasluoma, b. chu, a. ding, v.-m. kerminen, p. paasonen, d.r. worsnop, f. bianchi, y. liu, j. zheng, l. wang, m. kulmala*, and j. jiang*, seasonal characteristics of new particle formation and growth in urban beijing. environmental science & technology, 2020. 54(14): 8547-8557.
31. dada, l., i. ylivinkka, r. baalbaki, c. li, y. guo, c. yan, l. yao, n. sarnela, t. jokinen, k.r. daellenbach, r. yin, c. deng, b. chu, t. nieminen, y. wang, z. lin, r.c. thakur, j. kontkanen, d. stolzenburg, m. sipilä, t. hussein, p. paasonen, f. bianchi, i. salma, t. weidinger, m. pikridas, j. sciare, j. jiang, y. liu, t. petäjä, v.m. kerminen, and m. kulmala, sources and sinks driving sulfuric acid concentrations in contrasting environments: implications on proxy calculations. atmos. chem. phys., 2020. 20(20): 11747-11766.
32. an, z., h. ren, m. xue, x. guan, and j. jiang*, comprehensive two-dimensional gas chromatography mass spectrometry with a solid-state thermal modulator for in-situ speciated measurement of organic aerosols. journal of chromatography a, 2020. 1625: 461336.
33. wang, g.; deng, j.; zhang, y.; li, y.; ma, z.; hao, j.; jiang*, j., evaluating airborne condensable particulate matter measurement methods in typical stationary sources in china. environmental science & technology, 2020, 54: 1363-1371.
34. wang, d.; li, q.; shen, g.; deng, j.; zhou, w.; hao, j.; jiang*, j., significant ultrafine particle emissions from residential solid fuel combustion. science of the total environment, 2020, 715, 136992.
35. cai, r. and j. jiang*, models for estimating nanoparticle transmission efficiency through an adverse axial electric field. aerosol science and technology, 2020, 54: 332-341.
36. cai, r., y. zhou, and j. jiang*, transmission of charged nanoparticles through the dma adverse axial electric field and its improvement. aerosol science and technology, 2020, 54: 21-32.
37. liu, q., d. liu, x. chen, q. zhang, j. jiang, and d.-r. chen, a cost-effective, miniature electrical ultrafine particle sizer (mini- eups) for ultrafine particle (ufp) monitoring network. aerosol and air quality research, 2020, 20: 231-241.
38. zhou, y.; dada, l.; liu, y.; fu, y.; kangasluoma, j.; chan, t.; yan, c.; chu, b.; daellenbach, k. r.; bianchi, f.; kokkonen, t. v.; liu, y.; kujansuu, j.; kerminen, v. m.; petäjä, t.; wang, l.; jiang, j.; kulmala, m., variation of size-segregated particle number concentrations in wintertime beijing. atmospheric chemistry and physics, 2020, 20: 1201-1216.
39. gao, m.; liu, z.; zheng, b.; ji, d.; sherman, p.; song, s.; xin, j.; liu, c.; wang, y.; zhang, q.; xing, j.; jiang, j.; wang, z.; carmichael, g. r.; mcelroy, m. b., china's emission control strategies have suppressed unfavorable influences of climate on wintertime pm2.5 concentrations in beijing since 2002. atmospheric chemistry and physics, 2020, 20: 1497-1505.
40. li, z., r. liu, c. tang, z. wang, x. chen, y. jiang, c. wang, y. yuan, w. wang, d. wang, s. chen, x. zhang, q. zhang, and j. jiang*, cobalt nanoparticles and atomic sites in nitrogen-doped carbon frameworks for highly sensitive sensing of hydrogen peroxide. small, 2020, 16: 1902860.
41. wang, y., z. li, c. tang, h. ren, q. zhang, m. xue, j. xiong, d. wang, q. yu, z. he, f. wei, and j. jiang*, few-layered mesoporous graphene for high-performance toluene adsorption and regeneration. environmental science: nano, 2019. 6: 3113-3122.
42. fu, y., m. xue, r. cai, j. kangasluoma, and j. jiang*, theoretical and experimental analysis of the core sampling method: reducing diffusional losses in aerosol sampling line. aerosol science and technology, 2019. 53: 793-801.
43. chen, x., j. jiang, and d.-r. chen, a soft x-ray unipolar charger for ultrafine particles. journal of aerosol science, 2019. 133: 66-71.
44. chen, x., j. jiang, and d.-r. chen, maximizing the singly charged fraction of sub-micrometer particles using a unipolar charger. aerosol science and technology, 2019. 53: 990-997.
45. cai, s., l. zhu, s. wang, a. wisthaler, q. li, j. jiang, and j. hao, time-resolved intermediate-volatility and semivolatile organic compound emissions from household coal combustion in northern china. environmental science & technology, 2019. 53: 9269-9278.
46. xu, q., s. wang, j. jiang, n. bhattarai, x. li, x. chang, x. qiu, m. zheng, y. hua, and j. hao, nitrate dominates the chemical composition of pm2.5 during haze event in beijing, china. science of the total environment, 2019. 689: 1293-1303.
47. li, x., s. song, w. zhou, j. hao, d.r. worsnop, and j. jiang*, interactions between aerosol organic components and liquid water content during haze episodes in beijing. atmospheric chemistry and physics, 2019. 19: 12163-12174.
48. ren, h., m. xue, z. an, and j. jiang*, improving thermal desorption aerosol gas chromatography using a dual-trap design. journal of chromatography a, 2019. 1599: 247-252.
49. ren, h., m. xue, z. an, w. zhou, and j. jiang*, quartz filter-based thermal desorption gas chromatography mass spectrometry for in-situ molecular level measurement of ambient organic aerosols. journal of chromatography a, 2019. 1589: 141-148.
50. li, x., s. chee, j. hao, j. p. d. abbatt, j. jiang* and j. n. smith*, relative humidity effect on the formation of highly oxidized molecules and new particles during monoterpene oxidation. atmospheric chemistry and physics, 2019, 19: 1555-1570.
51. wang, g., z. ma, j. deng, z. li, l. duan, q. zhang, j. hao and j. jiang*, characteristics of particulate matter from four coal-fired power plants with low-low temperature electrostatic precipitator in china. science of the total environment, 2019, 662: 455-461.
52. wang, w., l. shao, j. li, l. chang, d. zhang, c. zhang and j. jiang, characteristics of individual particles emitted from an experimental burning chamber with coal from the lung cancer area of xuanwei, china. aerosol and air quality research, 2019, 19: 355-363.
53. wang, l., h. cheng, d. wang, b. zhao, j. zhang, l. cheng, p. yao, a. di narzo, y. shen, j. yu, y. li, s. xu, j. chen, l. fan, j. lu, j. jiang, y. zhou, c. wang, z. zhang and k. hao, airway microbiome is associated with respiratory functions and responses to ambient particulate matter exposure. ecotoxicology and environmental safety, 2019, 167: 269-277.
54. oxford, c. r., c. m. rapp, y. wang, p. kumar, d. watson, j. l. portelli, e. a. sussman, s. dhawan, j. jiang and b. j. williams, development and qualification of a vh-tdma for the study of pure aerosols. aerosol science and technology, 2019, 53: 120-132.
55. lu, y., c. yan, y. fu, y. chen, y. liu, g. yang, y. wang, f. bianchi, b. chu, y. zhou, r. yin, r. baalbaki, o. garmash, c. deng, w. wang, y. liu, t. petaja, v.-m. kerminen, j. jiang, m. kulmala and l. wang, a proxy for atmospheric daytime gaseous sulfuric acid concentration in urban beijing. atmospheric chemistry and physics, 2019, 19: 1971-1983.
56. li, z., h. he, h. cao, s. sun, w. diao, d. gao, p. lu, s. zhang, z. guo, m. li, r. liu, d. ren, c. liu, y. zhang, z. yang, j. jiang and g. zhang, atomic co/ni dual sites and co/ni alloy nanoparticles in n-doped porous janus-like carbon frameworks for bifunctional oxygen electrocatalysis. applied catalysis b: environmental, 2019, 240: 112-121.
57. li, q., j. qi, j. jiang*, j. wu*, l. duan, s. wang and j. hao, significant reduction in air pollutant emissions from household cooking stoves by replacing raw solid fuels with their carbonized products. science of the total environment, 2019, 650: 653-660.
58. cheng, h., l. wang, d. wang, j. zhang, l. cheng, p. yao, z. zhang, a. di narzo, y. shen, j. yu, c. wang, l. fan, j. lu, j. jiang and k. hao, bio(3)air, an integrative system for monitoring individual-level air pollutant exposure with high time and spatial resolution. ecotoxicology and environmental safety, 2019, 169: 756-763.
59. cai, r., j. jiang, s. mirme and j. kangasluoma, parameters governing the performance of electrical mobility spectrometers for measuring sub-3 nm particles. journal of aerosol science, 2019, 127: 102-115.
60. wang, g., j. deng, z. ma, j. hao and j. jiang*, characteristics of filterable and condensable particulate matter emitted from two waste incineration power plants in china. science of the total environment, 2018, 639: 695-704.
61. moch, j. m., e. dovrou, l. j. mickley, f. n. keutsch, y. cheng, d. j. jacob, j. jiang, m. li, j. w. munger, x. qiao and q. zhang, contribution of hydroxymethane sulfonate to ambient particulate matter: a potential explanation for high particulate sulfur during severe winter haze in beijing. geophysical research letters, 2018, 45: 11969-11979.
62. li, z., y. jiang, z. wang, w. wang, y. yuan, x. wu, x. liu, m. li, s. dilpazir, g. zhang, d. wang, c. liu and j. jiang*, nitrogen-rich core-shell structured particles consisting of carbonized zeolitic imidazolate frameworks and reduced graphene oxide for amperometric determination of hydrogen peroxide. microchimica acta, 2018, 185:501
63. li, z., y. jiang, c. liu*, z. wang, z. cao, y. yuan, m. li, y. wang, d. fang, z. guo, d. wang, g. zhang and j. jiang*, emerging investigator series: dispersed transition metals on a nitrogen-doped carbon nanoframework for environmental hydrogen peroxide detection. environmental science-nano, 2018, 5: 1834-1843.
64. hua, y., s. wang, j. jiang, w. zhou, q. xu, x. li, b. liu, d. zhang and m. zheng, characteristics and sources of aerosol pollution at a polluted rural site southwest in beijing, china. science of the total environment, 2018, 626: 519-527.
65. cheng, z., s. wang, l. qiao, h. wang, m. zhou, x. fu, s. lou, l. luo, j. jiang, c. chen, x. wang and j. hao, insights into extinction evolution during extreme low visibility events: case study of shanghai, china. science of the total environment, 2018, 618: 793-803.
66. chen, x., p. h. mcmurry and j. jiang*, stationary characteristics in bipolar diffusion charging of aerosols: improving the performance of electrical mobility size spectrometers. aerosol science and technology, 2018, 52: 809-813.
67. chen, x., q. liu, j. jiang and d.-r. chen, performance of small plate and tube unipolar particle chargers at low corona current. aerosol and air quality research, 2018, 18: 2005-2013.
68. chen, x., q. liu, j. jiang and d.-r. chen, performance evaluation of a circular electrical aerosol classifier (cireac). journal of aerosol science, 2018, 118: 100-110.
69. chen, x. j. jiang*, retrieving the ion mobility ratio and aerosol charge fractions for a neutralizer in real-world applications. aerosol science and technology, 2018, 52: 1145-1155.
70. cai, r., d. yang, l. r. ahonen, l. shi, f. korhonen, y. ma, j. hao, t. petaja, j. zheng, j. kangasluoma and j. jiang*, data inversion methods to determine sub-3 nm aerosol size distributions using the particle size magnifier. atmospheric measurement techniques, 2018, 11: 4477-4491.
71. cai, r., i. chandra, d. yang, l. yao, y. fu, x. li, y. lu, l. luo, j. hao, y. ma, l. wang, j. zheng, t. seto and j. jiang*, estimating the influence of transport on aerosol size distributions during new particle formation events. atmospheric chemistry and physics, 2018, 18: 16587-16599.
72. cai, r., m. attoui, j. jiang, f. korhonen, j. hao, t. petaja and j. kangasluoma, characterization of a high-resolution supercritical differential mobility analyzer at reduced flow rates. aerosol science and technology, 2018, 52: 1332-1343.
73. yu, r., l. duan, j. jiang* and j. hao, an optimized two-step derivatization method for analyzing diethylene glycol ozonation products using gas chromatography and mass spectrometry. journal of environmental sciences, 2017, 53: 313-321.
74. xing, j., j. wang, r. mathur, s. wang, g. sarwar, j. pleim, c. hogrefe, y. zhang, j. jiang, d. c. wong and j. hao, impacts of aerosol direct effects on tropospheric ozone through changes in atmospheric dynamics and photolysis rates. atmos. chem. phys., 2017, 17: 9869-9883.
75. xie, y., o. a. fajardo, w. yan, b. zhao* and j. jiang*, six-day measurement of size-resolved indoor fluorescent bioaerosols of outdoor origin in an office. particuology, 2017, 31: 161-169.
76. wang, z., z. wu, d. yue, d. shang, s. guo, j. sun, a. ding, l. wang, j. jiang, h. guo, j. gao, h. c. cheung, l. morawska, m. keywood and m. hu, new particle formation in china: current knowledge and further directions. science of the total environment, 2017, 577: 258-266.
77. wang, y., s. bao, s. wang, y. hu, x. shi, j. wang, b. zhao, j. jiang, m. zheng, m. wu, a. g. russell, y. wang and j. hao, local and regional contributions to fine particulate matter in beijing during heavy haze episodes. science of the total environment, 2017, 580: 283-296.
78. wang, j., b. zhao, s. wang, f. yang, j. xing, l. morawska, a. ding, m. kulmala, v.-m. kerminen, j. kujansuu, z. wang, d. ding, x. zhang, h. wang, m. tian, t. petäjä, j. jiang and j. hao, particulate matter pollution over china and the effects of control policies. science of the total environment, 2017, 584-585: 426-447.
79. tang, q., r. cai, x. you* and j. jiang*, nascent soot particle size distributions down to 1 nm from a laminar premixed burner-stabilized stagnation ethylene flame. proceedings of the combustion institute, 2017, 36: 993-1000.
80. qi, j., q. li, j. wu*, j. jiang*, z. miao and d. li, biocoal briquettes combusted in a household cooking stove: improved thermal efficiencies and reduced pollutant emissions. environmental science & technology, 2017, 51: 1886-1892.
81. ma, z., z. li, j. jiang, j. deng, y. zhao, s. wang and l. duan, pm2.5 emission reduction by technical improvement in a typical coal-fired power plant in china. aerosol and air quality research, 2017, 17: 636-643.
82. ma, q., s. cai, s. wang, b. zhao, r. v. martin, m. brauer, a. cohen, j. jiang, w. zhou, j. hao, j. frostad, m. h. forouzanfar and r. t. burnett, impacts of coal burning on ambient pm2.5 pollution in china. atmos. chem. phys., 2017, 17: 4477-4491.
83. liu, d., q. zhang, j. jiang and d.-r. chen, performance calibration of low-cost and portable particular matter (pm) sensors. journal of aerosol science, 2017, 112: 1-10.
84. li, z., w. wang, h. cao, q. zhang, x. zhou, d. wang, y. wang, s. zhang, g. zhang, c. liu, y. zhang, r. liu* and j. jiang*, boron doped zif-67@graphene derived carbon electrocatalyst for highly efficient enzyme-free hydrogen peroxide biosensor. advanced materials technologies, 2017, 2: n/a-n/a.
85. li, z., j. jiang, z. ma, o. a. fajardo, j. deng and l. duan, influence of flue gas desulfurization (fgd) installations on emission characteristics of pm2.5 from coal-fired power plants equipped with selective catalytic reduction (scr). environmental pollution, 2017, 230: 655-662.
86. li, q., j. jiang*, s. x. wang, k. rumchev, r. mead-hunter, l. morawska and j. m. hao, impacts of household coal and biomass combustion on indoor and ambient air quality in china: current status and implication. science of the total environment, 2017, 576: 347-361.
87. jiang, l., q. li, d. zhu, m. attoui, z. deng, j. tang and j. jiang*, comparison of nanoparticle generation by two plasma techniques: dielectric barrier discharge and spark discharge. aerosol science and technology, 2017, 51: 206-213.
88. hu, j., p. wang, q. ying, h. zhang, j. chen, x. ge, x. li, j. jiang, s. wang, j. zhang, y. zhao and y. zhang, modeling biogenic and anthropogenic secondary organic aerosol in china. atmos. chem. phys., 2017, 17: 77-92.
89. cheng, z., x. ma, y. he, j. jiang*, x. wang, y. wang*, l. sheng, j. hu and n. yan, mass extinction efficiency and extinction hygroscopicity of ambient pm2.5 in urban china. environmental research, 2017, 156: 239-246.
90. cai, r., d. yang, y. fu, x. wang, x. li, y. ma, j. hao, j. zheng* and j. jiang*, aerosol surface area concentration: a governing factor in new particle formation in beijing. atmos. chem. phys., 2017, 17: 12327-12340.
91. cai, r. j. jiang*, a new balance formula to estimate new particle formation rate: reevaluating the effect of coagulation scavenging. atmos. chem. phys., 2017, 17: 12659-12675.
92. cai, r., d.-r. chen, j. hao and j. jiang*, a miniature cylindrical differential mobility analyzer for sub-3 nm particle sizing. journal of aerosol science, 2017, 106: 111-119.
93. zhou, w., j. jiang*, l. duan and j. hao, evolution of submicrometer organic aerosols during a complete residential coal combustion process. environmental science & technology, 2016, 50: 7861-7869.
94. ma, z., j. deng, z. li, q. li, p. zhao, l. wang, y. sun, h. zheng, l. pan, s. zhao, j. jiang*, s. wang and l. duan*, characteristics of nox emission from chinese coal-fired power plants equipped with new technologies. atmospheric environment, 2016, 131: 164-170.
95. liu, j., j. jiang*, q. zhang, j. deng and j. hao, a spectrometer for measuring particle size distributions in the range of 3 nm to 10 μm. frontiers of environmental science & engineering, 2016, 10: 63-72.
96. li, q., x. li, j. jiang*, l. duan, s. ge, q. zhang, j. deng, s. wang and j. hao*, semi-coke briquettes: towards reducing emissions of primary pm2.5, particulate carbon, and carbon monoxide from household coal combustion in china. scientific reports, 2016, 6: 19306.
97. li, q., j. jiang*, q. zhang, w. zhou, s. cai, l. duan, s. ge and j. hao, influences of coal size, volatile matter content, and additive on primary particulate matter emissions from household stove combustion. fuel, 2016, 182: 780-787.
98. li, q., j. jiang*, j. qi, j. deng, d. yang, j. wu, l. duan and j. hao, improving the energy efficiency of stoves to reduce pollutant emissions from household solid fuel combustion in china. environmental science & technology letters, 2016, 3: 369-374.
99. li, q., j. jiang*, s. cai, w. zhou, s. wang, l. duan and j. hao, gaseous ammonia emissions from coal and biomass combustion in household stoves with different combustion efficiencies. environmental science & technology letters, 2016, 3: 98-103.
100. hua, y., s. wang, j. wang, j. jiang, t. zhang, y. song, l. kang, w. zhou, r. cai, d. wu, s. fan, t. wang, x. tang, q. wei, f. sun and z. xiao, investigating the impact of regional transport on pm2.5 formation using vertical observation during apec 2014 summit in beijing. atmos. chem. phys., 2016, 16: 15451-15460.
101. fajardo, o. a., j. jiang* and j. hao, continuous measurement of ambient aerosol liquid water content in beijing. aerosol and air quality research, 2016, 16: 1152-1164.
102. chu, b., x. zhang, y. liu, h. he, y. sun, j. jiang, j. li and j. hao, synergetic formation of secondary inorganic and organic aerosol: effect of so2 and nh3 on particle formation and growth. atmos. chem. phys., 2016, 16: 14219-14230.
103. cheng, z., l. luo, s. wang, y. wang, s. sharma, h. shimadera, x. wang, m. bressi, r. m. de miranda, j. jiang, w. zhou, o. fajardo, n. yan and j. hao, status and characteristics of ambient pm2.5 pollution in global megacities. environment international, 2016, 89-90: 212-221.
104. zheng, x., y. wu, j. jiang, s. zhang, h. liu, s. song, z. li, x. fan, l. fu and j. hao, characteristics of on-road diesel vehicles: black carbon emissions in chinese cities based on portable emissions measurement. environmental science & technology, 2015, 49: 13492-13500.
105. wang, y., j. li, h. jing, q. zhang, j. jiang and p. biswas, laboratory evaluation and calibration of three low-cost particle sensors for particulate matter measurement. aerosol science and technology, 2015, 49: 1063-1077.
106. wang, j., s. wang, a. s. voorhees, b. zhao, c. jang, j. jiang, j. s. fu, d. ding, y. zhu and j. hao, assessment of short-term pm2.5-related mortality due to different emission sources in the yangtze river delta, china. atmospheric environment, 2015, 123, part b: 440-448.
107. wang, c., y. wu, j. jiang, s. zhang, z. li, x. zheng and j. hao, impacts of load mass on real-world pm1 mass and number emissions from a heavy-duty diesel bus. international journal of environmental science and technology, 2015, 12: 1261-1268.
108. li, z., j. jiang, z. ma, s. wang and l. duan, effect of selective catalytic reduction (scr) on fine particle emission from two coal-fired power plants in china. atmospheric environment, 2015, 120: 227-233.
109. li, q., j. jiang*, l. duan, j. deng, l. jiang, z. li and j. hao, improving the removal efficiency of elemental mercury by pre-existing aerosol particles in double dielectric barrier discharge treatments. aerosol air qual. res., 2015, 15: 1506-1513.
110. li, q., j. jiang* and j. hao, a review of aerosol nanoparticle formation from ions. kona powder and particle journal, 2015, 57-74.
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112. jiang*, j., w. zhou, z. cheng, s. wang, k. he and j. hao, particulate matter distributions in china during a winter period with frequent pollution episodes (january 2013). aerosol and air quality research, 2015, 15: 494-503.
113. hua, y., z. cheng, s. wang, j. jiang, d. chen, s. cai, x. fu, q. fu, c. chen, b. xu and j. yu, characteristics and source apportionment of pm2.5 during a fall heavy haze episode in the yangtze river delta of china. atmospheric environment, 2015, 123: 380-391.
114. cheng, z., j. jiang*, c. chen, j. gao, s. wang*, j. g. watson, h. wang, j. deng, b. wang, m. zhou, j. c. chow, m. l. pitchford and j. hao, estimation of aerosol mass scattering efficiencies under high mass loading: case study for the megacity of shanghai, china. environmental science & technology, 2015, 49: 831–838.
115. wang, y., q. zhang, j. jiang, w. zhou, b. wang, k. he, f. duan, q. zhang, s. philip and y. xie, enhanced sulfate formation during china's severe winter haze episode in january 2013 missing from current models. journal of geophysical research: atmospheres, 2014, 119: 2013jd021426.
116. wang, j. d., s. x. wang, j. jiang, a. j. ding, m. zheng, b. zhao, d. c. wong, w. zhou, g. j. zheng, l. wang, j. e. pleim and j. m. hao, impact of aerosol-meteorology interactions on fine particle pollution during china's severe haze episode in january 2013. environmental research letters, 2014, 9: 094002.
117. liu, j., d. fung, j. jiang* and y. zhu*, ultrafine particle emissions from essential-oil-based mosquito repellent products. indoor air, 2014, 24: 327-335.
118. jiang*, j., c. kim, x. wang, m. r. stolzenburg, s. l. kaufman, c. qi, g. j. sem, h. sakurai, n. hama and p. h. mcmurry, aerosol charge fractions downstream of six bipolar chargers: effects of ion source, source activity, and flowrate. aerosol science and technology, 2014, 48: 1207-1216.
119. chu, b. w., k. wang, h. takekawa, j. h. li, w. zhou, j. jiang, q. x. ma, h. he and j. m. hao, hygroscopicity of particles generated from photooxidation of alpha-pinene under different oxidation conditions in the presence of sulfate seed aerosols. journal of environmental sciences-china, 2014, 26: 129-139.
120. chu, b., y. liu, j. li, h. takekawa, j. liggio, s.-m. li, j. jiang, j. hao and h. he, decreasing effect and mechanism of feso4 seed particles on secondary organic aerosol in α-pinene photooxidation. environmental pollution, 2014, 193: 88-93.
121. cheng, z., s. wang, x. fu, j. g. watson, j. jiang, q. fu, c. chen, b. xu, j. yu, j. c. chow and j. hao, impact of biomass burning on haze pollution in the yangtze river delta, china: a case study in summer 2011. atmospheric chemistry and physics, 2014, 14: 4573-4585.
122. cao, c., w. jiang, b. wang, j. fang, j. lang, g. tian*, j. jiang* and t. f. zhu*, inhalable microorganisms in beijing’s pm2.5 and pm10 pollutants during a severe smog event. environmental science & technology, 2014, 48: 1499-1507.
123. fajardo, o. a., j. jiang* and j. hao*, assessing young people’s preferences in urban visibility in beijing. aerosol and air quality research, 2013, 13: 1536-1543.
124. chu, b., j. hao, j. li, h. takekawa, k. wang and j. jiang, effects of two transition metal sulfate salts on secondary organic aerosol formation in toluene/nox photooxidation. frontiers of environmental science & engineering, 2013, 7: 1-9.
125. cheng, z., s. wang, j. jiang, q. fu, c. chen, b. xu, j. yu, x. fu and j. hao, long-term trend of haze pollution and impact of particulate matter in the yangtze river delta, china. environmental pollution, 2013, 182: 101-110.
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127. zhang, h., s. wang, j. hao, l. wan, j. jiang, m. zhang, h. e. s. mestl, l. w. h. alnes, k. aunan and a. w. mellouki, chemical and size characterization of particles emitted from the burning of coal and wood in rural households in guizhou, china. atmospheric environment, 2012, 51: 94-99.
128. zhang, h., j. li, q. ying, j. z. yu, d. wu, y. cheng, k. he and j. jiang, source apportionment of pm2.5 nitrate and sulfate in china using a source-oriented chemical transport model. atmospheric environment, 2012, 62: 228-242.
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146. suriyawong, a., c. j. hogan, j. jiang and p. biswas, charged fraction and electrostatic collection of ultrafine and submicrometer particles formed during o2-co2 coal combustion. fuel, 2008, 87: 673-682.
147. jiang, j., g. oberdörster, a. elder, r. gelein, p. mercer and p. biswas, does nanoparticle activity depend upon size and crystal phase? nanotoxicology, 2008, 2: 33 - 42.
148. jiang, j., m. h. lee and p. biswas, model for nanoparticle charging by diffusion, direct photoionization, and thermionization mechanisms. journal of electrostatics, 2007, 65: 209-220.
149. jiang, j., c. j. hogan, d. r. chen and p. biswas, aerosol charging and capture in the nanoparticle size range (6-15 nm) by direct photoionization and diffusion mechanisms. journal of applied physics, 2007, 102: 034904.
150. jiang, j., d. r. chen and p. biswas, synthesis of nanoparticles in a flame aerosol reactor with independent and strict control of their size, crystal phase and morphology. nanotechnology, 2007, 18: 285603.
151. wu, y., s. x. wang, d. g. streets, j. m. hao, m. chan and j. jiang, trends in anthropogenic mercury emissions in china from 1995 to 2003. environmental science & technology, 2006, 40: 5312-5318.
152. streets, d. g., j. m. hao, y. wu, j. jiang, m. chan, h. z. tian and x. b. feng, anthropogenic mercury emissions in china. atmospheric environment, 2005, 39: 7789-7806.
二、中文文章
1. 王东滨, 薛墨, 陈小彤, 蒋靖坤*. 一种新型软x射线气溶胶荷电器的开发与评测. 大气与环境光学学报, 2020, 15(06): 429-437.
2. 张莹, 邓建国, 王刚, 李妍菁, 续鹏, 蒋靖坤*. 典型钢铁焦化厂可凝结颗粒物排放特征,环境工程,2020, 38(09): 154-158.
3. 邓建国, 张莹, 王乐冰, 李妍菁, 段雷, 郝吉明, 蒋靖坤*,测量固定源可凝结颗粒物的稀释间接法及系统,环境科学学报,2020,40(11):4162-4168.
4. 楚碧武, 马庆鑫, 段凤魁, 马金珠, 蒋靖坤, 贺克斌, 贺泓. 大气“霾化学”: 概念提出和研究展望. 化学进展, 2020, 32: 1-4.
5. 蒋靖坤*, 邓建国, 王刚, 张莹, 李妍菁, 段雷, 郝吉明. 固定污染源可凝结颗粒物测量方法. 环境科学, 2019, 40(12): 5234-5239.
6. 王东滨, 郝吉明, 蒋靖坤*. 民用固体燃料燃烧超细颗粒物排放及其潜在健康影响. 科学通报, 2019, 64: 3429.
7. 薛墨, 傅月芸, 蔡润龙, 蒋靖坤*, 郝吉明. 1~3 nm颗粒物在粒径分布测量仪中的通过效率研究. 环境科学学报, 2019, 39(9): 2896-2902.
8. 邓建国, 马子轸, 李振, 段雷, 蒋靖坤*. 不同湿法脱硫工艺对燃煤电厂pm2.5排放的影响. 环境科学, 2019, 40(8): 3457-3462.
9. 姚群, 柳静献, 蒋靖坤. 钢铁窑炉烟尘细颗粒物超低排放技术与装备. 中国环保产业, 2018, 6: 39-43.
10. 闫威卓, 王步英, oscar fajardo, 蒋靖坤*, 郝吉明. 北偏西大风对北京冬季生物气溶胶的影响. 环境科学, 2017, 38(9): 3561-3568.
11. 李晓晓, 张强, 邓建国, 蒋靖坤*, 郝吉明. 用于滤膜称重的饱和氯化镁溶液恒湿系统搭建与评估. 环境科学, 2017, 38(8): 3095-3101.
12. 李庆, 段雷, 蒋靖坤*, 王书肖, 郝吉明. 我国民用燃煤一次颗粒物的减排潜力研究. 中国电机工程学报, 2016, 16: 4408-4414
13. 樊筱筱, 蒋靖坤*, 吴烨, 张强, 李振华, 段雷. 不同稀释条件与测量技术下缸内直喷汽车排放颗粒物数浓度和粒径分布特征. 中国电机工程学报,2016, 16
14. 赵承美, 邵龙义, 蒋靖坤, 段雷, 李庆, 王文华. 民用煤燃烧排放pm2.5的微观形貌和化学组分. 中国电机工程学报,2016, 16
15. 樊筱筱, 蒋靖坤*, 张强, 李振华, 何立强, 吴烨, 胡京南, 郝吉明. 轻型汽油车排放颗粒物数浓度和粒径分布特征. 环境科学,2016, 37(10): 3743-3749
16. 蒋靖坤*, 邓建国, 李振, 马子轸, 周伟, 张强, 段雷, 郝吉明. 双级虚拟撞击采样器应用于固定污染源pm10和pm2.5排放测量. 环境科学,2016, 37(6): 2003-2007
17. 张琦, 李庆, 蒋靖坤*, 邓建国, 段雷, 郝吉明. 一套民用固体燃料燃烧大气污染物排放测试系统的搭建和评测. 环境科学学报,2016,36:3393-3399
18. 陈小彤, 蒋靖坤*, 邓建国, 李庆, 段雷,郝吉明. 一种气溶胶测量仪器标定系统的设计及性能评估. 环境科学,2016, 37(3): 789-794
19. 马子轸, 李振, 蒋靖坤, 叶芝祥, 邓建国, 段雷. 燃煤电厂产生和排放的pm2.5中水溶性离子特征. 环境科学, 2015, 36(7):2361-2366
20. 王步英, 郎继东, 张丽娜, 方剑火, 曹晨, 郝吉明, 朱听, 田埂*, 蒋靖坤*. 基于16s rrna基因测序法分析的北京霾污染过程pm2.5和pm10中细菌群落特征. 环境科学, 2015, 36(8): 2727-2734
21. 李兴华, 曹阳, 蒋靖坤, 段雷, 邓建国, 张强, 韩军赞. 固定源pm2.5稀释采样器的研制. 环境科学学报, 2015, 10: 3309-3315
22. 段雷, 马子轸, 李振, 蒋靖坤, 叶芝祥. 燃煤电厂排放细颗粒物的水溶性无机离子特征综述. 环境科学, 2015, 36(3): 1117-1122
23. 蒋靖坤*, 邓建国, 段雷, 张强, 李振, 陈小彤, 李兴华, 郝吉明. 基于虚拟撞击原理的固定源pm10/pm2.5采样器的研制. 环境科学, 2014, 35(10): 3639-3643.
24. 蒋靖坤*, 邓建国, 李振, 李兴华, 段雷, 郝吉明. 固定污染源排气中pm2.5采样方法综述. 环境科学, 2014, 35(5): 2018-2024.
25. 麦华俊, 蒋靖坤*, 何正旭, 郝吉明. 一种纳米气溶胶发生系统的设计及性能测试. 环境科学, 2013,34: 2950-2954
26. 宋少洁, 吴烨, 蒋靖坤, 杨柳, 郝吉明. 北京市典型道路交通环境细颗粒物元素组成及分布特征. 环境科学学报, 2012,32: 66-73.
27. 王书肖, 刘敏, 蒋靖坤, 郝吉明, 吴烨, david g.streets. 中国非燃煤大气汞排放量估算. 环境科学, 2006, 27: 2401-2406.
28. 蒋靖坤, 郝吉明, 吴烨, david g. streets, 段雷, 田贺忠. 中国燃煤汞排放清单的初步建立. 环境科学, 2005, 26: 34-39.
已毕业学生
李泽晖,2020,北京大学物理学院,博士后(博雅计划)
李晓晓,2020,清华大学环境学院,博士后(水木学者)
李妍菁,2020,奥园集团有限公司,工作
马子轸,2020,青岛理工大学,副教授
花国诚,2020,埃睿迪信息技术有限公司,工作
张莹,2020,冶金工业规划研究院,工作
蔡润龙,2019,university of helsinki,博士后
陈小彤,2019,全球能源互联网集团,工作
薛墨,2019,深圳麦克韦尔股份有限公司,工作
傅月芸,2019,宝洁中国,工作
王刚,2019,中国石油大学(华东),副教授
任海霞,2019,epc natural products co., 工作
王亚玲,2019,北京市环境保护科学研究院,工作
李雨阳,2019,清华大学环境学院,读博
李怡然,2019,清华大学环境学院,读博
姜月,2019,清华大学环境学院,工作
张晨翀,2017,washington university in st. louis,读博
赵天宁,2017,harvard university,读博
李振,2017,virginia commonwealth university, 博士后
闫威卓,2017,中冶节能环保有限责任公司,工作
吴欣尔,2017,清华大学环境学院,读硕
王浩,2017,清华大学环境学院,读博
李妍菁,2017,清华大学深圳研究生院,读硕
周伟,2017,北京雪迪龙科技股份有限公司,工作
oscar farjardo, 2016, universidad central, 副教授
李庆,2016,复旦大学,青年研究员
王宏恩,2016,casella公司,工作
marie larivoire, 2016, mc2i groupe, 工作
樊筱筱,2016,深圳市高新投集团有限公司,工作
姜仑,2016,uc berkeley,读硕
于然,2015,同方集团,工作
王步英,2015,北京市环境保护监测中心,工作
张琦,2015,stanford university,读硕
刘洁琼,2014,西北设计院,工作
李佳育,2014,washington university in st. louis, 读博
李晨曦,2014,university of minnesota,读博
麦华俊,2013,caltech,读博
刘俊,2013,uc san diego,读博
吕晓佟,2013,virginia tech, 读博
骆锋,2012,道达尔集团(total),工作
何正旭,2012,清华大学地学中心,读硕
彭来,,北京大学光华管理学院,读硕
(课题组有本科生、硕士生、博士生和博士后开展科学研究的岗位,请联系:jiangjk@tsinghua.edu.cn)
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