Speciation analysis of arsenic in coal and its combustion by-products in coal-fired power plants
- Corresponding author: YUAN Chun-gang, cgyuan@ncepu.edu.cn
Citation:
HE Kai-qiang, SHI Meng-dan, LI Yan, JIANG Yang-hong, LI Yuan-peng, YUAN Chun-gang. Speciation analysis of arsenic in coal and its combustion by-products in coal-fired power plants[J]. Journal of Fuel Chemistry and Technology,
;2020, 48(11): 1310-1317.
ZHAO Y C, YANG J P, MA S M, ZHANG S B, LIU H, GONG B G, ZHANG J Y, ZHENG C G. Emission controls of mercury and other trace elements during coal combustion in China:A review[J]. Int Geol Rev, 2018,60:638-670.
LUO G Q, YU Q, MA J, J , ZHANG B, XIAO L, LUO J, ZHOU T, WANG Y, XU M H, YAO H. Pilot-scale study of volatilization behavior of Hg, Se, As, Cl, S during decoupled conversion of coal[J]. Fuel, 2013,112:704-709.
HE K Q, YUAN C G, SHI M D, JIANG Y H. Accelerated screening of arsenic and selenium fractions and bioavailability in fly ash by microwave assistance[J]. Ecotox Environ Safe, 2020,187109820.
XU H, ZHANG C, YUAN C L, YU S H, LI Q, FANG Q Y, CHEN G. Study on arsenic adsorption characteristics by mineral elements in simulated flue gas atmosphere[J]. J Fuel Chem Technol, 2019,47(7):876-883.
QIN Y Q, CHEN X L, CHEN H D, LIU H F. Effects of adding CaO on the release and transformation of arsenic and sulfur during coal pyrolysis[J]. J Fuel Chem Technol, 2017,45(2):147-156.
DONG J L, GENG X, GAO Z Y, LIU Y F. Adsorption mechanism of trace As on the defect sites of SiO2 in fly ash[J]. J Fuel Chem Technol, 2018,46:1401-1408.
LIU H, ZHAO Y C, ZHOU Y M, CHANG L, ZHANG J Y. Removal of gaseous elemental mercury by modified diatomite[J]. Sci Total Environ, 2018,652:651-659.
XIE J J, YUAN C G, XIE J, SHEN Y W, HE K Q, ZHANG K G. Speciation and bioaccessibility of heavy metals in PM2.5 in Baoding city, China[J]. Environ Pollut, 2019,252:336-343.
REID M S, HOY K S, SCHOFIELD J R M, UPPAL J S, LE X C. Arsenic speciation analysis:A review with an emphasis on chromatographic separations[J]. Trac-Trend Anal Chem, 2019,123115770.
MAHER W, FOSTER S, KRIKOWA F, DONNER E, LOMBI E. Measurement of inorganic arsenic species in rice after nitric acid extraction by HPLC-ICPMS:Verification using XANES[J]. Environ Sci Technol, 2013,47:5821-5827.
TORRES AIGDL, GIRALDEZ I, MARTINEZ F, PALENCIA P, CORNS W T, SANCHEZRODAS D. Arsenic accumulation and speciation in strawberry plants exposed to inorganic arsenic enriched irrigation[J]. Food Chem, 2020,315126215.
MENON M, SARKAR B, HUFTON J, REYNOLDS C, YOUNG S. Do arsenic levels in rice pose a health risk to the UK population[J]. Ecotox Environ Safe, 2020,197110601.
NARUKAWA T, TAKATSU A, CHIBA K, RILEY KW, FRENCH D. Investigation on chemical species of arsenic, selenium and antimony in fly ash from coal fuel thermal power stations[J]. J Environ Monitor, 2005,7:1342-1348.
SUN M, LIU G J, WU Q H, LIU W Q. Speciation analysis of inorganic arsenic in coal samples by microwave-assisted extraction and high performance liquid chromatography coupled to hydride generation atomic fluorescence spectrometry[J]. Talanta, 2013,106:8-13.
XU Z, HU H Y, CHEN D K, CAO J X, YAO H. Determination of inorganic arsenic speciation in municipal solid waste incineration fly ash by high performance liquid chromatography-hydride generation-atomic fluorescence spectroscopy with phosphoric acid as extracting agent[J]. Chin J Anal Chem, 2015,43:490-494.
ZOU H M, ZHOU C, LI Y X, YANG X S, WEN J, SONG S J, LI C X, SUN C J. Speciation analysis of arsenic in edible mushrooms by high-performance liquid chromatography hyphenated to inductively coupled plasma mass spectrometry[J]. Food Chem, 2020127033.
HE K Q, YUAN C G, SHI M D, JIANG Y H, YU S J. Fractions of arsenic and selenium in fly ash by ultrasound-assisted sequential extraction[J]. Rsc Adv, 2020,10:9226-9233.
MONTPERRUS M, BOHARI Y, BUENO M, ASTRUC A, ASTRUC M. Comparison of extraction procedures for arsenic speciation in environmental solid reference materials by high-performance liquid chromatography-hydride generation-atomic fluorescence spectroscopy[J]. Appl Organomet Chem, 2010,16:347-354.
LEERMAKERS M, BAEYENS W, DE GIETER M, SMEDTS B, MEERT C, DE BISSCHOP H C, MORABITO R, QUEVAUVILLER P. Toxic arsenic compounds in environmental samples:Speciation and validation[J]. Trac-Trend Anal Chem, 2006,25(1):1-10.
GARCIAMANYES S, JIMENEZ G, PADRO A, RUBIO R, RAURET G. Arsenic speciation in contaminated soils[J]. Talanta, 2002,58:97-109.
GAO X B, WANG Y X, HU Q H. Fractionation and speciation of arsenic in fresh and combusted coal wastes from Yangquan, northern China[J]. Environ Geochem Hltha, 2012,34:113-122.
LIU Z X, HAO Y, ZHANG J, WU S M, PAN Y, ZHOU J Z, QIAN G R. The characteristics of arsenic in Chinese coal-fired power plant flue gas desulphurisation gypsum[J]. Fuel, 2020,271117515.
LI J Y, WANG J M. Integrated life cycle assessment of improving saline-sodic soil with flue gas desulfurization gypsum[J]. J Clean Prod, 2018,202:332-341.
HUANG Y D, YANG Y H, HU H Y, XU M, LIU H, LI X, WANG X Y, YAO H. A deep insight into arsenic adsorption over γ-Al2O3 in the presence of SO2/NO[J]. Process Combust Inst, 2019,37:2951-2957.
Chao Liu , Chao Jia , Shi-Xian Gan , Qiao-Yan Qi , Guo-Fang Jiang , Xin Zhao . A luminescent one-dimensional covalent organic framework for organic arsenic sensing in water. Chinese Chemical Letters, 2024, 35(11): 109750-. doi: 10.1016/j.cclet.2024.109750
Zhaojing Huang , Hao Li , Jiayi Luo , Shunxing Li , Ming Zhao , Fengjiao Liu , Haijiao Xie . Deep learning-based simultaneous bioavailability assessment and speciation analysis of dissolved organic copper. Chinese Chemical Letters, 2025, 36(5): 110209-. doi: 10.1016/j.cclet.2024.110209
Kai Han , Guohui Dong , Ishaaq Saeed , Tingting Dong , Chenyang Xiao . Morphology and photocatalytic tetracycline degradation of g-C3N4 optimized by the coal gangue. Chinese Journal of Structural Chemistry, 2024, 43(2): 100208-100208. doi: 10.1016/j.cjsc.2023.100208
Junhua Wang , Xin Lian , Xichuan Cao , Qiao Zhao , Baiyan Li , Xian-He Bu . Dual polarization strategy to enhance CH4 uptake in covalent organic frameworks for coal-bed methane purification. Chinese Chemical Letters, 2024, 35(8): 109180-. doi: 10.1016/j.cclet.2023.109180
Yaping ZHANG , Tongchen WU , Yun ZHENG , Bizhou LIN . Z-scheme heterojunction β-Bi2O3 pillared CoAl layered double hydroxide nanohybrid: Fabrication and photocatalytic degradation property. Chinese Journal of Inorganic Chemistry, 2025, 41(3): 531-539. doi: 10.11862/CJIC.20240256
Fanxin Kong , Hongzhi Wang , Huimei Duan . Inhibition effect of sulfation on Pt/TiO2 catalysts in methane combustion. Chinese Journal of Structural Chemistry, 2024, 43(5): 100287-100287. doi: 10.1016/j.cjsc.2024.100287
Xuan Song , Teng Fu , Yajie Yang , Yahan Kuang , Xiuli Wang , Yu-Zhong Wang . Spatial-confinement combustion strategy enabling free radicals chemiluminescence direct-measurement in flame-retardant mechanism. Chinese Chemical Letters, 2025, 36(5): 110699-. doi: 10.1016/j.cclet.2024.110699
Tianbo Jia , Lili Wang , Zhouhao Zhu , Baikang Zhu , Yingtang Zhou , Guoxing Zhu , Mingshan Zhu , Hengcong Tao . Modulating the degree of O vacancy defects to achieve selective control of electrochemical CO2 reduction products. Chinese Chemical Letters, 2024, 35(5): 108692-. doi: 10.1016/j.cclet.2023.108692
Yubang Li , Xixi Hu , Daiqian Xie . The microscopic formation mechanism of O + H2 products from photodissociation of H2O. Chinese Journal of Structural Chemistry, 2024, 43(5): 100274-100274. doi: 10.1016/j.cjsc.2024.100274
Qin Cheng , Ming Huang , Qingqing Ye , Bangwei Deng , Fan Dong . Indium-based electrocatalysts for CO2 reduction to C1 products. Chinese Chemical Letters, 2024, 35(6): 109112-. doi: 10.1016/j.cclet.2023.109112
Deli Chen , Jiawen Li , Xudong Xu , Zhaocui Sun , Yun Yang , Minghui Xu , Hanqiao Liang , Junshan Yang , Hui Meng , Guoxu Ma , Jianhe Wei . Plant-microbial interactions inspired the discovery of novel sesquiterpenoid dimeric skeletons of hidden natural products from Hibiscus tiliaceus. Chinese Chemical Letters, 2024, 35(10): 109451-. doi: 10.1016/j.cclet.2023.109451
Jinqi Yang , Xiaoxiang Hu , Yuanyuan Zhang , Lingyu Zhao , Chunlin Yue , Yuan Cao , Yangyang Zhang , Zhenwen Zhao . Direct observation of natural products bound to protein based on UHPLC-ESI-MS combined with molecular dynamics simulation. Chinese Chemical Letters, 2025, 36(5): 110128-. doi: 10.1016/j.cclet.2024.110128
Jiajun Wang , Guolin Yi , Shengling Guo , Jianing Wang , Shujuan Li , Ke Xu , Weiyi Wang , Shulai Lei . Computational design of bimetallic TM2@g-C9N4 electrocatalysts for enhanced CO reduction toward C2 products. Chinese Chemical Letters, 2024, 35(7): 109050-. doi: 10.1016/j.cclet.2023.109050
Quan Xu , Ye-Qing Du , Pan-Pan Chen , Yili Sun , Ze-Nan Yang , Hui Zhang , Bencan Tang , Hong Wang , Jia Li , Yue-Wei Guo , Xu-Wen Li . Computation assisted chemical study of photo-induced late-stage skeleton transformation of marine natural products towards new scaffolds with biological functions. Chinese Chemical Letters, 2025, 36(5): 110141-. doi: 10.1016/j.cclet.2024.110141
Guorong Li , Yijing Wu , Chao Zhong , Yixin Yang , Zian Lin . Predesigned covalent organic framework with sulfur coordination: Anchoring Au nanoparticles for sensitive colorimetric detection of Hg(Ⅱ). Chinese Chemical Letters, 2024, 35(5): 108904-. doi: 10.1016/j.cclet.2023.108904
A-Yang Wang , Sheng-Hua Zhou , Mao-Yin Ran , Xin-Tao Wu , Hua Lin , Qi-Long Zhu . Regulating the key performance parameters for Hg-based IR NLO chalcogenides via bandgap engineering strategy. Chinese Chemical Letters, 2024, 35(10): 109377-. doi: 10.1016/j.cclet.2023.109377
Jie Zhou , Chuanxiang Zhang , Changchun Hu , Shuo Li , Yuan Liu , Zhu Chen , Song Li , Hui Chen , Rokayya Sami , Yan Deng . Electrochemical aptasensor based on black phosphorus-porous graphene nanocomposites for high-performance detection of Hg2+. Chinese Chemical Letters, 2024, 35(11): 109561-. doi: 10.1016/j.cclet.2024.109561
Jiaxuan Wang , Tonghe Liu , Bingxiang Wang , Ziwei Li , Yuzhong Niu , Hou Chen , Ying Zhang . Synthesis of polyhydroxyl-capped PAMAM dendrimer/silica composites for the adsorption of aqueous Hg(II) and Ag(I). Chinese Chemical Letters, 2024, 35(12): 109900-. doi: 10.1016/j.cclet.2024.109900