出版著作:
1. 蔣建國主編,城市環(huán)境衛(wèi)生基礎設施建設與管理,化學工業(yè)出版社,2005
2. 蔣建國編著,固體廢物處理處置工程,化學工業(yè)出版社,2005
3. 蔣建國主編,注冊環(huán)保工程師專業(yè)考試復習教材——第4篇 固體廢物處理處置與資源化工程基礎與實踐,環(huán)境科學出版社,2007.5(2008.1第二版)
4. 蔣建國編著,固體廢物處置與資源化(“十一五”國家級規(guī)劃教材),化學工業(yè)出版社,2008.5
5. 蔣建國副主編,《城市生活垃圾處理知識問答》(環(huán)?破諈矔,中國環(huán)境科學出版社,2012.7
6. 蔣建國編著,《固體廢物處置與資源化(第二版)》(“十二五”國家級規(guī)劃教材),化學工業(yè)出版社,2013.1
7. 蔣建國主編,《固體廢物處理處置工程技術》(注冊環(huán)保工程師培訓教材),中國環(huán)境出版社,2017.3
發(fā)表文章:
在國內外核心刊物上發(fā)表論文200余篇,其中SCI收錄71篇,EI收錄105篇(含SCI共同收錄),國際會議論文23篇。
近5年以來發(fā)表的45篇SCI期刊論文(IF大于4.0的論文33篇)清單如下:
[1] Sicong Tian, Jianguo Jiang*. Sequestration of flue gas CO2 by direct gas-solid carbonation of air pollution control system residues. Environmental Science & Technology, 2012, 46, 13545-13551.
[2] Jiang Jianguo*, Tian Sicong, Chang Zhang. Influence of SO2 in incineration flue gas on the sequestration of CO2 by municipal solid waste incinerator fly ash. Journal of Environmental Sciences-China, 2013, 25 (4), 735-740.
[3] Jishi Zhang, Qinqing Wang, Jianguo Jiang. Lime mud from paper-making process addition to food waste synergistically enhances hydrogen fermentation performance. International Journal of Hydrogen Energy, 2013, 38 (6), 2738-2745.
[4] Sicong Tian, Jianguo Jiang*, Xuejing Chen, Feng Yan, Kaimin Li. Direct gas-solid carbonation kinetics of steel slag and the contribution to in-situ sequestration of flue gas CO2 in steel-making plants. ChemSusChem, 2013, 6 (12), 2348-2355.
[5] Jianguo Jiang*, Yujing Zhang, Kaimin Li, Quan Wang, Changxiu Gong, Menglu Li. Volatile fatty acids production from food waste: Effects of pH, temperature, and organic loading rate. Bioresource Technology, 2013, 143, 525-530.
[6] Jianguo Jiang*, Changxiu Gong, Sicong Tian, Shihui Yang, Yujing Zhang. Impact of ultrasonic treatment on dewaterability of sludge during Fenton oxidation. Environmental Monitoring and Assessment, 2014, 186 (12), 8081-8088.
[7] Kaimin Li, Jianguo Jiang*, Feng Yan, Sicong Tian, Xuejing Chen. The influence of polyethyleneimine type and molecular weight on the CO2 capture performance of PEI-nano silica adsorbents. Applied Energy, 2014, 136, 750-755.
[8] Ye Xiao, Jianguo Jiang*, Hai Huang. Chemical dechlorination of hexachlorobenzene with polyethylene glycol and hydroxide: Dominant effect of temperature and ionic potential. Scientific Reports, 2014, 4, 6305-6310.
[9] Ming Zhao, Jeffrey Shi, Xia Zhong, Sicong Tian, John Blamey, Jianguo Jiang* and Paul S. Fennell. A novel calcium looping absorbent incorporated with polymorphic spacers for hydrogen production and CO2 capture. Energy & Envrionmental Science, 2014, 7, 3291-3295.
[10] Feng Yan, Jianguo Jiang*, Xuejing Chen, Sicong Tian, Kaimin Li. Synthesis and characterization of silica nanoparticles preparing by low-temperature vapor-phase hydrolysis of SiCl4. Industrial & Engineering Chemistry Research, 2014, 53 (30), 11884-11890.
[11] Hai Huang, Jianguo Jiang*, Ye Xiao, Xuejing Chen, Shuang Liu. A novel and efficient method for dechlorination of hexachlorobenzene using a sodium carbonate/glycerol system. Chemical Engineering Journal, 2014, 256 (9), 205-211.
[12] Ye Xiao, Jianguo Jiang*. Base-catalyzed decomposition of hexachlorobenzene: Effect on dechlorination efficiency of different hydrogen donors, alkalis and catalysts. RSC Advances, 2014, 4 (30), 15713-15719.
[13] Kaimin Li, Jianguo Jiang*, Sicong Tian, Xuejing Chen, Feng Yan. Influence of silica types on synthesis and performance of amine-silica hybrid materials used for CO2 capture. The Journal of Physical Chemistry C, 2014, 118 (5), 2454-2462.
[14] Xuejing Chen, Jianguo Jiang*, Feng Yan, Sicong Tian, Kaimin Li. A novel low temperature vapor phase hydrolysis method for the production of nano-structured silica materials using silicon tetrachloride. RSC Advances, 2014, 4 (17), 8703-8710.
[15] Changxiu Gong, Jianguo Jiang*, Jiaming Wang, Sicong Tian, Yujing Zhang. Effects of ultrasound pre-treatment on the amount of dissolved organic matter extracted from food waste. Bioresource Technology, 2014, 155, 266-271.
[16] Sicong Tian, Jianguo Jiang*, Kaimin Li, Feng Yan, Xuejing Chen. Performance of steel slag in carbonation-calcination looping for CO2 capture from industrial flue gas. RSC Advances, 2014, 4 (14), 6858-6862.
[17] Wei Du, Jianguo Jiang, Ye Xiao, Yujing Zhang, Qinshuo Guo, Shihui Yang. Characterization and composition of municipal solid waste in cities in southeast China. Waste Management, 2014,34(11):V-VI.
[18] Sicong Tian, Jianguo Jiang*, Yan Feng and Kaimin Li. Synthesis of highly efficient CaO-based, self-stabilizing CO2 sorbents via structure-reforming of steel slag. Environmental Science & Technology, 2015, 49 (12), 7464-7472.
[19] Changxiu Gong, Jianguo Jiang*, De’an Li, Sicong Tian. Ultrasonic application to boost hydroxyl radical formation during Fenton oxidation and release organic matter from sludge. Scientific Reports, 2015, 5, 11419–11427.
[20] Quan Wang, Jianguo Jiang*, Yujing Zhang, Kaimin Li. Effect of initial total solids concentration on volatile fatty acid production from food waste during anaerobic acidification. Environmental Technology, 2015, 36 (15), 1884-1891.
[21] Feng Yan, Jianguo Jiang*, Ming Zhao, Sicong Tian, Kaimin Li, Tianran Li. A green and scalable synthesis of highly stable Ca-based sorbents for CO2 capture. Journal of Materials Chemistry A, 2015, 3, 7966-7973.
[22] Xuejing Chen, Jianguo Jiang*, Sicong Tian, Kaimin Li. Biogas dry reforming for syngas production: Catalytic performance of nickel supported on waste-derived SiO2. Catalysis Science & Technology, 2015, 5, 860-868.
[23] Kaimin Li, Jianguo Jiang*, Sicong Tian, Xuejing Chen, Feng Yan. Polyethyleneimine-nano silica composites: a low-cost and promising adsorbent for CO2 capture. Journal of Material Chemistry A, 2015, 3, 2166–2175.
[24] Changxiu Gong, Jianguo Jiang*, De’an Li. Ultrasound coupled with Fenton oxidation pre-treatment of sludge to release organic carbon, nitrogen and phosphorus. Science of the Total Environment, 2015, 532, 495-500.
[25] Fen Yan, Jianguo Jiang*, Kaimin Li, Sicong Tian, Ming Zhao, Xuejing Chen. Performance of coal fly ash stabilized, CaO-based sorbents under different carbonation-calcination conditions. ACS Sustainable Chemistry & Engineering, 2015, 3, 2092-2099.
[26] Jiaming Wang, Jianguo Jiang*, Dean Li, Tianran Li, Nuo Liu, Wenjie Zhang. Removal of Pb and Zn from contaminated soil by different washing methods: the influence of reagents and ultrasound. Environmental Science and Pollution Research, 2015, 22:20084–20091.
[27] Sicong Tian, Jianguo Jiang*, Davood Hosseini, Agnieszka M. Kierzkowska, Qasim Imtiaz, Marcin Broda, Christoph R. Müller. Development of a Steel-slag-based, iron-functionalized sorbent for an autothermal carbon dioxide capture process. ChemSusChem, 2015, 8 (22): 3839?3846.
[28] Haowei Zhang, Jianguo Jiang*, Menglu Li, Changxiu Gong, Quan Wang. Biological nitrate removal using a food waste-derived carbon source in synthetic wastewater and real sewage. Journal of Environmental Management, 2016, 166:407-413.
[29] Jing Chang, Hongjing Tian*, Jianguo Jiang, Cong Zhang, Qingjie Guo. Simulation and experimental study on the desulfurization for smelter off-gas using a recycling Ca-based desulfurizer. Chemical Engineering Journal, 2016, 291:225–237.
[30] Sicong Tian, Kaimin Li, Jianguo Jiang*, Xuejing Chen and Feng Yan. CO2 abatement from the iron and steel industry using a combined Ca-Fe chemical loop. Applied Energy, 2016, 170:345-352.
[31] Kaimin Li, Sicong Tian, Jianguo Jiang*, Jiaming Wang, Xuejing Chen, Feng Yan. Pine Cone Shell-Based Activated Carbon Used for CO2 Adsorption. Journal of Materials Chemistry A, 2016, 4, 5223-5234.
[32] Sicong Tian, Jianguo Jiang*, Kaimin Li, Xuejing Chen and Feng Yan. Highly efficient CO2 capture with simultaneous iron and CaO recycling for the iron and steel industry. Green Chemistry, 2016, 18, 4022-4031.
[33] Li Dean,Jiang Jianguo*,Li Tianran, Wang Jiaming. Soil heavy metal contamination related to roasted stone coal slag: A study based on geostatistical and multivariate analyses. Environmental Science and Pollution Research, 2016, 23 (14), 14405-14413.
[34] Nuo Liu, Jianguo Jiang*, Changxiu Gong, Feng Yan, Sicong Tian. Controlling odors from sewage sludge using ultrasound coupled with Fenton oxidation. Journal of Environmental Management, 2016, 181:124-128.
[35] Feng Yan, Jianguo Jiang*, Sicong Tian, Zongwen Liu, Jeffrey Shi, Kaimin Li, Xuejing Chen, and Yiwen Xu. A green and facile synthesis of ordered mesoporous nano-silica using coal fly ash. ACS Sustainable Chemistry & Engineering, 2016, 4 (9):4654–4661.
[36] Kaimin Li, Jianguo Jiang*. Research on Urea Formation of Amine Functional Adsorbent During CO2 Capture process: Two Key Factors Analysis, Temperature and Moisture. Journal of Physical Chemistry C, 2016, 120:25892?25902.
[37] Feng Yan, Jianguo Jiang*, Kaimin Li, Sicong Tian, Zongwen Liu, Jeffrey Shi, Xuejing Chen, Jingyuan Fei, and Yuxiang Lu. Cyclic performance of waste-derived SiO2 stabilized, CaO-based sorbents for fast CO2 capture. ACS Sustainable Chemistry & Engineering, 2016, 4 (12), 7004-7012.
[38] Xuejing Chen, Jianguo Jiang*, Sicong Tian, Kaimin Li,and Feng Yan. Oxidative dry reforming of biogas to produce syngas on a Ni/SiO2 catalyst: the enhanced anti-deactivation effect of O2. Applied Energy, 2017, 185(P1):687-697.
[39] Jianguo Jiang*, Meng Yang, Yucheng Gao, Jiaming Wang, Dean Li, Tianran Li. Removal of heavy metals from vanadium-contaminated soils using a washing method: Reagent selection and parameter optimization. Chemosphere (http://dx.doi.org/10.1016/j.chemosphere.2017.03.116)
[40] Feng Yan, Jianguo Jiang,* Kaimin Li, Nuo Liu, Xuejing Chen, Yuchen Gao and Sicong Tian. Green synthesis of nanosilica from coal fly ash and its stabilizing effect on CaO sorbents for CO2 capture. Environmental Science & Technology, 2017, 51 (13), 7606–7615.
[41] Wenjie Zhang, Jianguo Jiang*, Kaimin Li, Tianran Li, De’an Li. Amendment of vanadium mine tailings with zerovalent iron and soil conditioners. International Journal of Phytoremediation(accept)
[42] Nuo Liu, Quan Wang, Jianguo Jiang*, Changxiu Gong, Haowei Zhang. Enhanced production of volatile fatty acid from food waste: independent and combined effects of salt and grease. Renewable Energy, 2017, 113C, 1523-1528
[43] Xuejing Chen, Jianguo Jiang*, Kaimin Li, Feng Yan, and Sicong Tian. Dry reforming of biogas on a Ni/SiO2 catalyst: overall performance and mechanisms of sulfur poisoning and regeneration. ACS Sustainable Chemistry & Engineering (accept)
[44] Yuchen Gao, Jianguo Jiang*, Sicong Tian, Kaimin Li, Feng Yan, Nuo Liu, Meng Yang, Xuejing Chen. BOF steel slag as a low-cost sorbent for vanadium (V) removal from synthetic soil washing effluent. Scientific Reports(accept)
[45] Aikelaimu Aihemaiti, Jianguo Jiang*, De’an Li, Tianran Li, Wenjie Zhang, Xutong Ding. Toxic metals tolerance in native plant species grown in Vanadium mining area. Environmental Science and Pollution Research (accpet )
申請專利、注冊軟件:
已獲得授權國家發(fā)明專利35項,清單如下:
[1]一種污泥超聲波脫水方法,ZL200610011413.5
[2]一種污泥燃料棒及其制備方法,ZL200610011414.X
[3]一種利用垃圾焚燒灰渣固定CO2的方法,ZL200610144282.8
[4]一種化學穩(wěn)定化處理城市垃圾焚燒飛灰的方法,ZL200610007581.7
[5]脫氮兼氧型生活垃圾生物反應器填埋場及滲濾液回灌工藝,ZL200710064165.5
[6]一種污泥與石灰高效混合反應設備,ZL200910218481.2
[7]一種城市生活垃圾轉運站污水生化調節(jié)處理工藝,ZL201010182907.6
[8]一種污泥與石灰混合穩(wěn)定化設備,ZL201010150659.7
[9]一種可移動的垃圾轉運站污水處理設備,ZL201010199649.2
[10]一種污泥與石灰高效預混合反應設備,ZL201010150660.X
[11]一種有機物污染土壤滾筒式逆向熱脫附系統(tǒng),ZL201010598161.7
[12]有機固體廢物并聯(lián)序批式干式厭氧消化處理的工藝方法,ZL200910238451.8
[13]一種移動式餐飲廢水處理設備,ZL201010623425.X
[14]一種含氯代有機物工業(yè)廢物堿催化分解裝置及方法,ZL201010598133.5
[15]一種城市污水廠脫水污泥生物干化處理方法,ZL200810239356.5
[16]一種于污泥中回收磷酸鐵方法,ZL201110375682.0
[17]一種有機物污染土壤真空強化遠紅外熱脫附系統(tǒng),ZL201010623993.X
[18]一種超聲波耦合Fenton氧化破解污泥方法,ZL201110375745.2
[19] 一種利用餐廚垃圾厭氧制碳源的方法,ZL201310164723.0
[20]一種四氯化硅氣相水解合成納米級二氧化硅的方法,ZL201310129807.0
[21]超聲波噴霧熱解法合成二氧化硅負載鎳鉑催化劑的方法,ZL201310130768.6
[22]一種四氯化硅合成高純δ-層狀二硅酸鈉的方法,ZL201310520099.3
[23]一種含氯代有機物工業(yè)廢物堿催化反應設備,ZL201210365597.0
[24]一種利用聚乙二醇和堿性物質處理氯代有機物的工藝,ZL201210434599.0
[25]一種以鋼渣為原料制備氧化鈣基CO2循環(huán)吸附材料方法,ZL201410065745.6
[26]一種餐廚垃圾超聲波強化水解處理方法,ZL201310180801.6
[27]一種治理污染土壤的泡沫及其治理方法,ZL201310431852.1
[28]一種堿催化銷毀含氯代持久性有機物的方法,ZL201310684839.7
[29]一種修復鉻污染地下水的雙層可滲透反應墻系統(tǒng),ZL201410088161.0
[30]一種出料含固率可控的勻漿除砂一體化設備,ZL201410115276.4
[31]一種粉煤灰合成沸石的方法,ZL201410641519.8
[32]一種滲濾液深度脫氮與去除COD的方法,ZL201410522718.7
[33]一種改性生物炭原位固定釩礦污染土壤的方法,ZL201510194890.9
[34]一種修復釩礦污染土壤的重金屬固化劑及修復方法,ZL201510194062.5
[35]一種用于釩礦污染土壤的復配改良劑及制備方法與改良方法,ZL201510191189.1