姓 名: | 官寶紅 | |
學(xué) 歷: | 博士 | |
職 務(wù): | 副所長 | |
職 稱: | 教授 | |
部 門: | 環(huán)境工程研究所 | |
導(dǎo) 師: | 博導(dǎo) | |
聯(lián)系電話: | 0571-88982026 | |
電子郵箱: | guanbaohong@zju.edu.cn | |
招生專業(yè) | ||
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環(huán)境工程 | ||
研究方向 | ||
固體廢物資源化,水污染控制與治理,地表水體修復(fù),無機(jī)非金屬材料 | ||
研究成果 | ||
學(xué)術(shù)論文 [1] Hailu Fu, Baohong Guana*, Zhongbiao Wu. Transformation Pathways from Calcium Sulfite to α-Calcium Sulfate Hemihydrate in Concentrated CaCl2 Solutions. Fuel, 2015. In Press. [2] Guangming Jiang, Qiaoshan Chen, Sen Zhang, Caiyun Jia, Zhongbiao Wu, Baohong Guan. Controlled Synthesis of Monodisperse α-Calcium Sulfate Hemihydrate Nanoellipsoids. Physical Chemistry Chemical Physics, 2015. In Press. [3] Jingwei Mao, Guangming Jiang, Qiaoshan Chen, Baohong Guan*. Influences of citric acid on the metastability of α-calcium sulfate hemihydrate in CaCl2 solution. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014: 443(20): 265–271. [4] Hailu Fu, Guangming Jiang, Hao Wang, Zhongbiao Wu, Baohong Guan*. Solution mediated transformation kinetics of calcium sulfate dihydrate to α-calcium sulfate hemihydrate in CaCl2 solutions at elevated temperature. Industrial & Engineering Chemistry Research, 2013, 52 (48): 17134–17139. [5] Jie Yu, Minhui Guo, Xinhua Xu, Baohong Guan*. The role of temperature and CaCl2 in activated sludge dewatering under hydrothermal treatment. Water Research, 2013, 50:10-17. [6] Guangming Jiang, Hailu Fu, Keith Savino, Jiajing Qian, Zhongbiao Wu, Baohong Guan*. Nonlattice Cation-SO42- Ion Pairs in Calcium Sulfate Hemihydrate Nucleation. Crystal Growth and Design, 2013, 13(11): 5128-5134. [7] Guangming Jiang, Jinwei Mao, Hailu Fu, Xu Zhou, Baohong Guang*. Insight Into Metastable Lifetime of α-Calcium Sulfate Hemihydrate in CaCl2 Solution. Journal of the American Ceramic Society, 2013, 96(10): 3265-3271. [8] Jie Yu, Wenxia Liu, Aibin Zeng, Baohong Guan*, Xinhua Xu. Effect of SO42- on 1,1,1 - Trichloroethane Degradation by Fe0 in Aqueous Solution. Groundwater, 2013, 51(2): 286-292. [9] Baohong Guan*, Bao Kong, Hailu Fu, Jie Yu, Guangming Jiang, Li Yang. Pilot scale preparation of α-calcium sulfate hemihydrate from FGD gypsum in Ca-K-Mg aqueous solution under atmospheric pressure. Fuel, 2012, 98: 48-54. [10] Bao Kong, Jie Yu, Keith Savino, Yigang Zhua, Baohong Guan*. Synthesis of α-calcium sulfate hemihydrate submicron-rods in water/n-hexanol/CTAB reverse microemulsion. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2012, 409: 88- 93. [11] Bao Kong, Baohong Guan*, Matthew Yates, Zhongbiao Wu. Control of α-calcium sulfate hemihydrate morphology using reverse microemulsions. Langmiur, 2012,, 28, 14137−14142. [12] Hailu Fu, Baohong Guan, Guangming Jiang, Matthew Z. Yates, Zhongbiao Wu. Effect of supersaturation on competitive nucleation of CaSO4 phases in a concentrated CaCl2 solution. Crystal Growth and Design, 2012, 12 (3): 1388–1394. [13] Baohong Guan*, Jie Yu, Hailu Fu, Minhui Guo, Xinhua Xu. Improvement of activated sludge dewaterability by mild thermal treatment in CaCl2 solution. Water research, 2012.12, 46(2): 425-432. [14] Baohong Guan*, Li Yang, Hailu Fu, Bao Kong, Tingying Li, Liuchun Yang. α- Calcium sulfate hemihydrate preparation from FGD gypsum in recycling mixed salt solutions. Chemical Engineering Journal, 2011, 174: 296-303. [15] Baohong Guan*, Guangming Jiang, Hailu Fu, Li Yang, Zhongbiao Wu. Thermodynamic preparation window of alpha calcium sulfate hemihydrate from calcium sulfate dihydrate in non-electrolyte glycerol-water solution under mild conditions. Industrial and Engineering Chemistry Research, 2011, 50: 13561–13567. [16] Baohong Guan*, Guangming Jiang, Zhongbiao Wu, Jingwei Mao, Bao Kong. Preparation of a-calcium sulfate hemihydrate from calcium sulfate dihydrate in methanol-water solution under mild conditions. Journal of the American Ceramic Society, 2011, 94: 3261-3266. [17] Baohong Guan*, Hailu Fu, Jie Yu, Guangming Jiang, Bao Kong. Direct transformaton of calcium sulfite to alpha-calcium sulfate hemihydrate in a concentrated Ca-Mg-Mn chlorid solution under atmospheric pressure. Fuel, 2011/1, 90: 36-41. [18] Qingqing Ye, Baohong Guan*, Wenbin Lou, Li Yang, Bao Kong. Effect of particle size distribution on the hydration and compressive strength development of α-calcium sulfate hemihydrate paste. Powder Technology, 2011/2, 207: 208–214. [19] Wenbin Lou, Baohong Guan*, Zhongbiao Wu. Dehydration behavior of FGD gypsum by simultaneous TG and DSC analysis. Journal of Thermal Analysis and Calorimetry, 2011/4, 104(2): 661-669. [20] Baohong Guan, Liuchun Yang, Zhongbiao Wu. Effect of Mg2+ ions on the nucleation kinetics of calcium sulfate in concentrated calcium chloride solutions. Industrial and Engineering Chemistry Research, 2010/5, 49 (12), 5569-5574. [21] Baohong Guan, Qingqing Ye, Jiali Zhang, Wenbin Lou, Zhongbiao Wu. Interaction between α-calcium sulfate hemihydrates and superplasticizer from the point of adsorption characteristics, hydration and hardening process. Cement and Concrete Research, 2010/2, 40: 253 - 259. [22] Wenbin Lou, Baohong Guan*, Zhongbiao Wu. Calorimetric study of ternary binder of calcium aluminate cement, Portland-limestone cement and FGD gypsum, Journal of Thermal Analysis and Calorimetry, 2010/7, 101(1):119-127. [23] Baohong Guan*, Qingqing Ye, Zhongbiao Wu, Wenbin Lou, Liuchun Yang. Analysis of the relationship between particle size distribution of alpha-calcium sulfate hemihydrate and compressive strength of set plaster-Using grey model. Powder Technology, 2010/6, 200(3): 136-143. [24] Xiaoqin Wu, Wei He, Baohong Guan*, Zhongbiao Wu. Solubility of calcium sulfate dihydrate in Ca-Mg-K chloride salt solution in the range of (348.15 to 371.15) K. Journal of Chemical & Engineering Data, 2010/4, 55 (6): 2100–2107. [25] Jiangjiang Pan, Baohong Guan*. Adsorption of nitrobenzene from aqueous solution on activated sludge modified by cetyltrimethylammonium bromide. Journal of Hazardous Materials, 2010/11, 183: 341-346. [26] Bao Kong, Bao Hong Guan*, Liu Chun Yang. Influence of Seed Crystal and Modifier on the Morphology of α-calcium Sulfate Hemihydrate Prepared by Salt Solution Method in Pilot Scale, Advanced Materials Research, 2010/12, 168-170: 8-12. [27] Baohong Guan, Liuchun Yang, Zhongbiao Wu, Zhuoxian Shen, Xianfa Ma, Qingqing Ye. Preparation of α-calcium sulfate hemihydrate from FGD gypsum in K, Mg-containing concentrated CaCl2 solution under mild conditions. Fuel, 2009/7, 88(7): 1286 - 1293. [28] Liuchun Yang, Zhongbiao Wu, Baohong Guan*, Hailu Fu, Qingqing Ye. Growth rate of α-calcium sulfate hemihydrate in K-Ca-Mg-Cl-H2O systems at elevated temperature. Journal of Crystal Growth, 2009/10, 311(20): 4518 - 4524. [29] Zhuoxian Shen, Baohong Guan*, Hailu Fu, Liuchun Yang. Effect of potassium sodium tartrate and sodium citrate on the preparation of a-calcium sulfate hemihydrate from flue gas desulfurization (FGD) gypsum in concentrated electrolyte solution. Journal of the American Ceramic Society, 2009/12, 92(12): 2894 - 2899. [30] Baohong Guan, Weimin Ni, Zhongbiao Wu, Yong Lai. Removal of Mn(II) and Zn(II) Ions from Flue Gas Desulfurization Wastewater with Water-soluble Chitosan, Separation & Purification Technology, 2009/3/12, 65(3): 269-274. [31] Liuchun Yang, Baohong Guan*, Zhongbiao Wu, Xianfa Ma. Solubility and phase transitions of calcium sulfate in KCl solutions between 85 °C and 100 °C. Industrial and Engineering Chemistry Research, 2009/7, 48(16): 7773 - 7779. [32] Baohong Guan, Wenbin Lou, Qingqing Ye, Hailu Fu, Zhongbiao Wu. Calorimetric study of calcium aluminate cement blended with flue gas desulfurization gypsum. Journal of Thermal Analysis and Calorimetry, 2009/6, 98(3): 737 - 742. [33] Baohong Guan*, Xianfa Ma, Zhongbiao Wu, Liuchun Yang, Zhuoxian Shen. Crystallization routes and metastability of α-calcium sulfate hemihydrate in potassium chloride solutions under atmospheric pressure. Journal of Chemical & Engineering Data, 2009/3, 54(3): 719–725. [34] Zhong-biao Wu, Wei-min Ni and Bao-hong Guan*. Application of chitosan as flocculant for coprecipitation of Mn(II) and suspended solids from dual-alkali FGD regenerating process, Journal of Hazardous Materials, 2008/4, 152(2): 757–764. [35] Baohong Guan*, Zhuoxian Shen, Zhongbiao Wu, Liuchun Yang, Xianfa Ma. Effect of pH on the preparation of α-calcium sulfate hemihydrate from FGD gypsum with the hydrothermal method. Journal of the American Ceramic Society, 2008/12, 91(12): 3835 - 3840. [36] Meng Yafeng, Guan Baohong*, Wu Zhongbiao, Wang Dahui. Enhanced degradation of carbon tetrachloride by surfactant-modified zero-valent iron, Journal of Zhejiang University Science B, 2006/9, 7(9):702-707. [37] Guan Bao-hong*. Stability of Expanded Granular Sludge Bed Process for Terylene Artificial Silk Printing and Dyeing Wastewater Treatment, Journal of environmental sciences, 2005/3, 17(3):419-424. [38] GUAN Bao-hong*, WU Zhong-biao, XU Gen-liang. Kinetics of aerobically activated sludge on terylene artificial silk printing and dyeing wastewater treatment, Journal of Zhejiang University Science A, 2004/4, 5(4): 441-449. [39] Guan Bao-hong*, Wu Zhong-biao, Wu Zu-ceng, Xu Gen-liang, and Tan Tian-en. Biodegradability of terephthalic acid in terylene artificial silk printing and dyeing wastewater, Journal of environmental sciences, 2003/1,15(3):296-301. [40] MENG Ya-feng, GUAN Bao-hong*, WU Zhong-biao, WANG Da-hui. Enhanced degradation of carbon tetrachloride by surfactant-modified zero-valent iron. Journal of Zhejiang University Science B, 2006/9, 7(9):702-707. [41] 于潔, 官寶紅*, 劉文霞, 胡達(dá)清, 吳忠標(biāo). 抑制雙堿法煙氣脫硫漿液中SO32-的重金屬催化氧化, 環(huán)境科學(xué), 2010/3, 31(3):591-597. [42] 葉青青, 官寶紅*, 李君. 杭州城市內(nèi)河底泥磷污染與磷釋放水力模擬, 環(huán)境科學(xué), 2009/5, 30(5):97-103. [43] 馬憲法, 官寶紅*. 常壓KCl鹽溶液中α-半水石膏的脫水過程, 硅酸鹽學(xué)報(bào), 2009/10, 37(10): 58-63. [44] 湯優(yōu)敏,官寶紅*,吳忠標(biāo). Fenton去除廢水中甲基多巴的機(jī)制及動力學(xué), 環(huán)境科學(xué), 2008/5, 29(5): 1271-1276. [45] 官寶紅*, 李君, 曾愛斌, 鄧勁松, 張軍. 杭州市城市土地利用對河流水質(zhì)的影響, 資源科學(xué), 2008/6, 30(6): 857-863. [46] 湯優(yōu)敏, 官寶紅*, 吳忠標(biāo). Fenton氧化-PAM絮凝-A/O工藝處理甲基多巴生產(chǎn)廢水. 給水排水, 2006/11, 32(11): 49-51. [47] 官寶紅*, 吳國華, 曾愛斌, 阮俊安, 王春花. 京杭運(yùn)河杭州段水污染源特征與截污措施建議. 給水排水, 2005, 31(2): 1-5. [48] 官寶紅*, 曾愛斌, 徐根良, 譚天恩. 處理滌綸仿真絲綢印染廢水的膨脹顆粒污泥床的啟動. 浙江大學(xué)學(xué)報(bào)(理學(xué)版), 2005, 32(3): 304-308. [49] 官寶紅, 徐根良, 譚天恩. 堿性印染廢水的pH對活性污泥的影響及其控制, 高;瘜W(xué)工程學(xué)報(bào), 2002/6,16(3):316-320. [50] 官寶紅, 吳忠標(biāo), 倪偉敏, 曾愛斌, 徐根良. 微生物量對印染廢水中的基質(zhì)去除速率的影響. 浙江大學(xué)學(xué)報(bào)(理學(xué)版), 2002,29(6):685-691. 發(fā)明專利: [1] 一種鈣基污泥的脫水方法. 授權(quán)號: ZL 201110271626.2. 授權(quán)日期:2013.01.31. [2] 以鋁土礦與脫硫石膏為基料的自流平材料及其制備方法. 授權(quán)號:ZL 200910155268.1. 授權(quán)日期:2012.06.27 [3] 一種強(qiáng)化剩余活性污泥脫水性能的方法. 授權(quán)號: ZL 201210381224.2. 授權(quán)日期:2014.07.30. [4] 一種以脫硫石膏和尿素為原料的溶液結(jié)晶法制備尿素石膏的技術(shù). 受理號:201310026027.3. 授權(quán)中。 [5] 一種利用磷石膏為原料的溶液結(jié)晶法制備尿素磷石膏的方法. 授權(quán)號:ZL 201310025701.6. 授權(quán)日期:2014.07.30。 [6] 一種工業(yè)廢水脫色處理工藝.授權(quán)號: ZL201110172779.1. 授權(quán)日期: 2011.06.24. [7] 一種催化金屬還原-絮凝沉淀法處理氯仿和四氯化碳工業(yè)廢水工藝. 授權(quán)號: ZL03154176.3. 授權(quán)日期: 2006.2.22. [8] 一種去除廢水中有機(jī)氯化物的方法及設(shè)備. 授權(quán)號:ZL200610049204.X. 授權(quán)日期: 2008.10.29. [9] 一種超聲輔助強(qiáng)化金屬還原有機(jī)氯化物脫氯的方法. 授權(quán)號: ZL200610050387.7. 授權(quán)日期:2008.7.2. [10] 陽離子表面活性劑增強(qiáng)金屬還原有機(jī)氯化物脫氯的方法. 授權(quán)號: ZL200610053042.7. 授權(quán)日期: 2008.7.2. [11] 處理偏氯乙烯皂化廢水的方法. 授權(quán)號: ZL200610053041.2. 授權(quán)日期: 2009.7.1. [12] 一種脫硫石膏自流平材料及其制備方法. 授權(quán)號: ZL 200710069007.9, 授權(quán)日期: 2010.12.1. [13] 在常壓KCl溶液中將脫硫石膏轉(zhuǎn)化為a-半水石膏的方法. 授權(quán)號: ZL 200810121470.8, 授權(quán)日期: 2011.4.27. [14] 一種將剩余活性污泥制備成吸附劑的化學(xué)改性方法. 授權(quán)號: ZL200910096906.7, 授權(quán)日期: 2010.12.1. [15] 抑制雙堿法煙氣脫硫漿液中有效脫硫組分催化氧化的方法. 授權(quán)號: ZL200910098248.5, 授權(quán)日期: 20110601. [16] 一種二水石膏在鹽溶液中制備α-半水石膏的控制方法. 授權(quán)號: 200910097993.8, 授權(quán)日期: 2010.6.1. [17] 基于灰色模型優(yōu)化顆粒級配提高石膏膠凝體強(qiáng)度的方法. 授權(quán)號: ZL200910096555.X, 授權(quán)日期: 20111207. [18] 一種以醇水溶液為結(jié)晶介質(zhì)制備α-半水石膏方法, 授權(quán)號: ZL201110159307.2, 授權(quán)日期: 2013.1.16. [19] 一種防水保溫輕質(zhì)高強(qiáng)石膏板材及其制備方法, 授權(quán)號:ZL 201310120712.2, 授權(quán)日期:2014.11.20. 主持設(shè)計(jì)工業(yè)廢水處理、中水回用、地表水修復(fù)工程 [1] 阿特維斯制藥有限公司,化工制藥廢水, 2015. [2] 建德市蓮花鎮(zhèn)林查水庫,水體修復(fù),2014-2015. [3] 建德市蓮花鎮(zhèn)戴家水庫,疏浚與水體修復(fù),2014-2015. [4] 建德五馬洲工業(yè)集中式污水處理廠二期工程, 2014-2015. [5] 海安城南化工有限公司,化工制藥廢水,2014-2015. [6] 巨化集團(tuán)漢正制藥有限公司,化工制藥廢水,2014. [7] 康恩貝集團(tuán)豐登化工有限公司,化工廢水,2014. [8] 金華宏達(dá)染整有限公司,印染廢水,2014. [9] 金華光陽印染有限公司,印染廢水,2013-2014. [10] 金華東方線業(yè)有限公司,印染廢水,2013-2014. [11] 浙江真愛家居有限公司,印染廢水,2013. [12] 浙江巨宏工貿(mào)有限公司,重金屬廢水,2013. [13] 桐廬金利針織有限公司,印染廢水,2013. [14] 臺州椒江星明印染廠,印染廢水,2013. [15] 浙江新星月印染有限公司,印染廢水,2013. [16] 臺州市恒虹砂洗有限公司,印染廢水,2013. [17] 江蘇鹽化集團(tuán)公司,氯苯化工廢水,2012. [18] 巨化集團(tuán)氟化廠,氨氮化工廢水,2011. [19] 巨化集團(tuán)電化廠,氯堿化工廢水,2010. [20] 山東東岳化工集團(tuán)公司,氯堿化工廢水,2011. [21] 浙江三美化工有限公司,甲烷氯化物廢水,2009. [22] 金華金東區(qū)電鍍企業(yè)聯(lián)片治理,電鍍廢水,2009. [23] 浙江順達(dá)高分子材料有限公司,化工廢水,2009. [24] 京杭運(yùn)河杭州段21條支流,污染調(diào)查與評估,2006-2008. [25] 浙江圣山實(shí)業(yè)有限公司,印染廢水,2006. [26] 巨化集團(tuán)氟化廠,甲烷氯化物廢水,2006. [27] 京杭運(yùn)河杭州段主航道污染調(diào)查與評估,2003-2005. [28] 浙江手心醫(yī)藥化學(xué)品有限公司,化工制藥廢水,2005. 獎勵(lì) [1] 高等學(xué)?茖W(xué)技術(shù)進(jìn)步獎,一等獎,教育部,2009.01,第三完成人。 [2] 浙江省科學(xué)技術(shù)獎,二等獎,浙江省人民政府,2005.12,第三完成人。 [3] 國家環(huán)境保護(hù)科學(xué)技術(shù)獎,二等獎,環(huán)境保護(hù)部,2013.12,第三完成人。 [4] 浙江省環(huán)境保護(hù)科學(xué)技術(shù)獎,二等獎,浙江省環(huán)保局,2007,第一完成人。 政府推薦技術(shù) [1] 科技部,科技惠民計(jì)劃先進(jìn)科技成果,均相催化還原法處理有機(jī)氯化物工業(yè)廢水,2012;申報(bào)單位:浙江大學(xué);第一完成人。 [2] 環(huán)保部,國家重點(diǎn)環(huán)境保護(hù)實(shí)用技術(shù),均相催化還原法處理有機(jī)氯化物工業(yè)廢水,2012;申報(bào)單位:浙江大學(xué),杭州浙大易泰環(huán)境科技有限公司;第一完成人。 [3] 浙江省環(huán)保廳,浙江環(huán)境保護(hù)先進(jìn)適用技術(shù),印染染色廢水高級催化氧化降解脫色與回用技術(shù),2013;申報(bào)單位:浙江大學(xué),杭州浙大易泰環(huán)境科技有限公司;第一完成人。 [4] 浙江省“五水共治”適用技術(shù),均相催化還原脫氯廢水處理技術(shù),2014,申報(bào)單位:浙江大學(xué),第一完成人。 [5] 浙江省“五水共治”適用技術(shù),印染廢水深度處理與脫色技術(shù),2014,申報(bào)單位:杭州浙大易泰環(huán)境科技有限公司,第一完成人。 [6] 浙江省“五水共治”適用技術(shù),高級催化氧化深度降解達(dá)標(biāo)保障技術(shù),2014,申報(bào)單位:浙江大學(xué),第一完成人。 [7] 浙江省“五水共治”適用技術(shù),水/污水除臭技術(shù),2014,申報(bào)單位:浙江大學(xué),第一完成人。 |
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個(gè)人簡介 | ||
個(gè)人簡介 1989年中國地質(zhì)大學(xué)地球化學(xué)系本科畢業(yè),2001年浙江大學(xué)化學(xué)工程系研究生畢業(yè),工學(xué)博士。2001年開始在浙江大學(xué)環(huán)境與資源學(xué)院任教,2011年-2013年羅切斯特大學(xué)訪問學(xué)者,F(xiàn)任環(huán)境工程研究所副所長。 主要研究方向?yàn)楣I(yè)固體廢物資源化技術(shù)、無機(jī)非金屬材料、水污染控制與治理技術(shù)、工業(yè)廢水處理技術(shù)、污水深度處理技術(shù)。 發(fā)明了多項(xiàng)工業(yè)廢水和污水處理技術(shù)和設(shè)備,開發(fā)了均相催化多金屬還原處理復(fù)雜和毒害性廢水技術(shù)、非均相催化氧化深度處理污水和微污染水技術(shù),實(shí)現(xiàn)了工程化、裝備成套化和市場推廣,被推薦為國家科技惠民計(jì)劃優(yōu)秀成果、國家重點(diǎn)環(huán)境保護(hù)實(shí)用技術(shù)、國家節(jié)能減排技術(shù)、浙江先進(jìn)適用廢水處理技術(shù)、浙江省“五水共治”適用技術(shù)。 發(fā)明了脫硫石膏高值資源化常壓鹽溶液法制備α半水石膏的工藝技術(shù),開發(fā)了下游系列二次產(chǎn)品,建立了國內(nèi)外首套中試裝置,生產(chǎn)出高品質(zhì)α半水石膏,起草了國家行業(yè)標(biāo)準(zhǔn)。 解決了多介質(zhì)中石膏相變熱力學(xué)、結(jié)晶動力學(xué)和形貌調(diào)控關(guān)鍵理論問題,發(fā)展了膠凝強(qiáng)度發(fā)育理論,構(gòu)建了α半水石膏粉末級配與強(qiáng)度模型,建立了新的制備技術(shù)和理論開發(fā)工具。 |