中國(guó)給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級(jí)研討會(huì)(第十五屆)邀請(qǐng)函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))
 
當(dāng)前位置: 首頁(yè) » 行業(yè)資訊 » 水業(yè)人物 » 正文

王玉玨 所在單位: 清華大學(xué)環(huán)境學(xué)院 職  稱: 副高級(jí)

放大字體  縮小字體 發(fā)布日期:2017-12-31  瀏覽次數(shù):166
核心提示:王玉玨 所在單位: 清華大學(xué)環(huán)境學(xué)院 職  稱: 副高級(jí)
中國(guó)給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級(jí)研討會(huì)(第十五屆)邀請(qǐng)函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))

中國(guó)給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級(jí)研討會(huì)(第十五屆)邀請(qǐng)函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))
 

姓  名: 王玉玨
所在單位: 清華大學(xué)環(huán)境學(xué)院
職  稱: 副高級(jí)
郵寄地址: 清華大學(xué)環(huán)境學(xué)院 100084
電子郵件: wangyujue@tsinghua.edu.cn 
辦公地點(diǎn): 環(huán)境節(jié)能樓703室 

 

教育背景

2001.08 - 2006.09 The Pennsylvania State University 土木與環(huán)境工程系 環(huán)境工程專業(yè) 博士

1998.09 - 2001.07 清華大學(xué)環(huán)境科學(xué)與工程系 環(huán)境工程專業(yè) 碩士

1995.09 - 1998.07 清華大學(xué)自動(dòng)化系 計(jì)算機(jī)及應(yīng)用專業(yè) 學(xué)士(第二學(xué)位)

1993.09 - 1998.07 清華大學(xué)環(huán)境科學(xué)與工程系 環(huán)境工程專業(yè) 學(xué)士

工作履歷

2011.01-現(xiàn)在 清華大學(xué)環(huán)境學(xué)院,副教授

2009.12-2011.01 清華大學(xué)環(huán)境科學(xué)與工程系,副教授

2008.09-2009.12 清華大學(xué)環(huán)境科學(xué)與工程系,助理研究員

2006.10-2008.08 The Pennsylvania State University 土木與環(huán)境工程系 博士后

學(xué)術(shù)兼職

2010-至今 American Chemistry Society 會(huì)員

2010-至今 Water Environment Federation 會(huì)員

Environmental Science & Technology, Water Research, Bioresource Technology, Ozone: Science & Engineering, Thermochim Acta等雜志審稿人

研究領(lǐng)域

主要從事水處理技術(shù)研究,發(fā)明了electro-peroxone(EP)、photoelectro-peroxone(PEP)等新型高級(jí)氧化水處理技術(shù),解決了傳統(tǒng)臭氧、電化學(xué)水處理過(guò)程中污染物礦化效率低,副產(chǎn)物多,污染物降解速率受傳質(zhì)和電流限制,電極易污染等根本問(wèn)題,極大地提高了水處理的性能,被認(rèn)為在水和廢水處理領(lǐng)域具有巨大的應(yīng)用前景。

歡迎具有環(huán)境、催化、電化學(xué)、材料等相關(guān)背景的同學(xué)報(bào)考研究生,博士后進(jìn)入本課題組進(jìn)行研究工作。

研究概況

作為負(fù)責(zé)人與主要研究人員參與了20余項(xiàng)課題研究,課題來(lái)源包括中國(guó)環(huán)保部、863計(jì)劃、國(guó)家重大水專項(xiàng)、國(guó)家自然科學(xué)基金、美國(guó)國(guó)家科學(xué)基金、美國(guó)環(huán)保局、美國(guó)能源部等。

課題組成員包括博士后、博士研究生及碩士研究生等,現(xiàn)有人員15人左右。

博士后:林志榮,夏廣森,劉慎坦

博士生:姚維坤,展巨宏(聯(lián)合培養(yǎng),昆明理工大學(xué)),Syed Waqi(巴基斯坦)

碩士生:袁實(shí),姚維坤(聯(lián)合培養(yǎng),合肥工業(yè)大學(xué),聯(lián)合培養(yǎng)),王會(huì)姣(2014、2015研究生國(guó)家獎(jiǎng)學(xué)金),褚耀飛(上海應(yīng)用技術(shù)學(xué)院,聯(lián)合培養(yǎng)),郭迪(浙江大學(xué),聯(lián)合培養(yǎng)),沈文華

已畢業(yè)學(xué)生:

博士生:李翔宇(2015年研究生國(guó)家獎(jiǎng)學(xué)金,2015年清華大學(xué)環(huán)境學(xué)院優(yōu)秀畢業(yè)生)

碩士生:Phivos Frangos(塞浦路斯),姚維坤(聯(lián)合培養(yǎng),合肥工業(yè)大學(xué)),周國(guó)強(qiáng),Belal Bakheet(蘇丹;2014年清華大學(xué)優(yōu)秀碩士畢業(yè)生,2014年校級(jí)優(yōu)秀碩士畢業(yè)論文),李兆欣(聯(lián)合培養(yǎng),昆明理工大學(xué)),Md. Suruzzaman(孟加拉),栗廣宇(聯(lián)合培養(yǎng),中國(guó)礦業(yè)大學(xué)),Juliana Querubin (法國(guó)),蘇露(碩士),李曉亮(聯(lián)合培養(yǎng),北京化工大學(xué))

出站博士后:于艷卿,李劍,李永坤,邱翠翠,馮宇,張海鳳

在研課題:

1)Electro-peroxone水處理技術(shù),國(guó)際合作項(xiàng)目

2)廢水電化學(xué)深度處理與工業(yè)園區(qū)內(nèi)生物質(zhì)廢棄物資源化技術(shù)研究(國(guó)家重大科技專項(xiàng)子課題)

3)Electro-peroxone技術(shù)的協(xié)同作用機(jī)理及其在難降解廢水處理中的應(yīng)用研究(國(guó)家重點(diǎn)實(shí)驗(yàn)室基金)

4)富氧氣化與燃?xì)庵卣苽渖餁潢P(guān)鍵設(shè)備研發(fā)與示范,國(guó)家科技支撐計(jì)劃子課題

5)砂型鑄造揮發(fā)性有機(jī)物與危險(xiǎn)性空氣污染物源頭削減技術(shù)研究(國(guó)家自然科學(xué)基金)

6) 造紙黑液木質(zhì)素催化熱解制備高附加值芳基化學(xué)品技術(shù)研究(公益性技術(shù)應(yīng)用研究計(jì)劃)

學(xué)術(shù)成果

發(fā)表文章:

以通訊作者或第一作者在Environmental Science & Technology,Water Research, Electrochemistry Communications,Bioresource Technology,Applied Catalysis A: General,Journal of Hazardous Materials, Electrochimica Acta等權(quán)威刊物發(fā)表論文30余篇。
Selected Publications (*: corresponding author)

2016

(1) Weikun Yao; Xiaofeng Wang; Hongwei Yang; Gang Yu; Shubo Deng; Jun Huang; Bin Wang; Yujue Wang*. Removal of pharmaceuticals from secondary effluents by an electro-peroxone process. Water Research 2016, 88, 826-35.

(2) Zhirong Lin; Weikun Yao; Yujue Wang*; Gang Yu; Shubo Deng; Jun Huang; Bin Wang. Perchlorate formation during the electro-peroxone treatment of chloride-containing water: Effects of operational parameters and control strategies. Water Research 2016, 88, 691-702.

(3) Juhong Zhan; Huijiao Wang; Xuejun Pan; Jinlin Wang; Gang Yu; Shubo Deng; Jun Huang; Bin Wang; Yujue Wang*. Simultaneous regeneration of p-nitrophenol-saturated activated carbon fiber and mineralization of desorbed pollutants by electro-peroxone process. Carbon 2016, 101, 399-408.

(4) Meifang Hou; Yaofei Chu; Xiang Li; Huijiao Wang; Weikun Yao; Gang Yu; Seiichi Murayama; Yujue Wang*. Electro-peroxone degradation of diethyl phthalate: Cathode selection, operational parameters, and degradation mechanisms. Journal of Hazardous Materials 2016, doi:10.1016/j.jhazmat.2015.12.054

(5) Phivos Frangos; Wenhua Shen; Huijiao Wang; Xiang Li; Gang Yu; Shubo Deng; Jun Huang; Bin Wang; Yujue Wang*. Improvement of the degradation of pesticide deethylatrazine by combining UV photolysis with electrochemical generation of hydrogen peroxide. Chemical Engineering Journal 2016, 291, 215-224.

(6) Phivos Frangos; Huijiao Wang; Wenhua Shen; Gang Yu; Shubo Deng; Jun Huang; Bin Wang; Yujue Wang*. A novel photoelectro-peroxone process for the degradation and mineralization of substituted benzenes in water. Chemical Engineering Journal 2016, 286, 239-248.

(7) Xiangyu Li; Guangyu Li; Jian Li; Yanqing Yu; Yu Feng; Qun Chen; Sridhar Komarneni; Yujue Wang*. Producing petrochemicals from catalytic fast pyrolysis of corn fermentation residual by-products generated from citric acid production. Renewable Energy 2016, 89, 331-338.

(8) Shubo Deng*; Tao Chen; Tianning Zhao; Xiaolong Yao; Bin Wang; Jun Huang; Yujue Wang; Gang Yu. Role of micropores and nitrogen-containing groups in CO2 adsorption on indole-3-butyric acid potassium derived carbons. Chemical Engineering Journal 2016, 286, 98-105.

(9) Qingwei Bu; Bin Wang; Jun Huang; Kai Liu; Shubo Deng; YujueWang; GangYu*. Estimating the use of antibiotics for humans across China. Chemosphere 2016, 144, 1384-1390.

2015

(1) Huijiao Wang; Shi Yuan; Juhong Zhan; Yujue Wang*; Gang Yu; Shubo Deng; Jun Huang; Bin Wang. Mechanisms of enhanced total organic carbon elimination from oxalic acid solutions by electro-peroxone process. Water Research 2015, 80, (0), 20-9.

(2) Jian Li; Yanqing Yu; Xiangyu Li; Wei Wang; Gang Yu; Shubo Deng; Jun Huang; Bin Wang; Yujue Wang*. Maximizing carbon efficiency of petrochemical production from catalytic co-pyrolysis of biomass and plastics using gallium-containing MFI zeolites. Applied Catalysis B: Environmental 2015, 172, (0), 154-164.

(3) Huijiao Wang; Belal Bakheet; Shi Yuan; Xiang Li; Gang Yu; Seiichi Murayama; Yujue Wang*. Kinetics and energy efficiency for the degradation of 1,4-dioxane by electro-peroxone process. Journal of Hazardous Materials 2015, 294, (0), 90-8.

(4) Yongkun Li; Wenhua Shen; Shujie Fu; Hongwei Yang*; Gang Yu; Yujue Wang*. Inhibition of bromate formation during drinking water treatment by adapting ozonation to electro-peroxone process. Chemical Engineering Journal 2015, 264, (0), 322-328.

(5) Weikun Yao; Jian Li; Yu Feng; Wei Wang; Xianlong Zhang; Qun Chen; Sridhar Komarneni; Yujue Wang*. Thermally stable phosphorus and nickel modified ZSM-5 zeolites for catalytic co-pyrolysis of biomass and plastics. RSC Advances 2015, 5, (39), 30485-30494.

(6) Shuzhen Zhang; Jun Huang; Yang Yang; Yuancheng Li; Bin Wang; Yujue Wang; Shubo Deng; Gang Yu*. Rapid mechanochemical synthesis of VOx/TiO2 as highly active catalyst for HCB removal. Chemosphere 2015, 141, 197-204.

(7) Yang Yang; Shuzhen Zhang; Siwen Wang; Kunlun Zhang; Haizhu Wang; Jun Huang; Shubo Deng; Bin Wang; Yujue Wang; Gang Yu*. Ball Milling Synthesized MnOx as Highly Active Catalyst for Gaseous POPs Removal: Significance of Mechanochemically Induced Oxygen Vacancies. Environmental Science & Technology 2015, 49, (7), 4473-4480.

(8) Bin Wang*; Guohua Dai; Shubo Deng; Jun Huang; Yujue Wang; Gang Yu. Linking the environmental loads to the fate of PPCPs in Beijing: Considering both the treated and untreated wastewater sources. Environmental Pollution 2015, 202, 153-159.

(9) Xiang Li; Yujue Wang; Jian Zhao; Huijiao Wang; Bin Wang; Jun Huang; Shubo Deng; Gang Yu?. Electro-peroxone treatment of the antidepressant venlafaxine: Operational parameters and mechanism. Journal of Hazardous Materials 2015, 300, 298-306.

(10) Ziwen Du; Shubo Deng*; Youguang Chen; Bin Wang; Jun Huang; Yujue Wang; Gang Yu. Removal of perfluorinated carboxylates from washing wastewater of perfluorooctanesulfonyl fluoride using activated carbons and resins. Journal of Hazardous Materials 2015, 286, (0), 136-43.

(11) Shubo Deng*; Bingyin Hu; Tao Chen; Bin Wang; Jun Huang; Yujue Wang; Gang Yu. Activated carbons prepared from peanut shell and sunflower seed shell for high CO2 adsorption. Adsorption 2015, 21, (1-2), 125-133.

(12) Shubo Deng*; Yue Bei; Xinyu Lu; Ziwen Du; Bin Wang; Yujue Wang; Jun Huang; Gang Yu. Effect of co-existing organic compounds on adsorption of perfluorinated compounds onto carbon nanotubes. Frontiers of Environmental Science and Engineering 2015, 9, (5), 784-792.
(13) Tao Chen; Shubo Deng*; Bin Wang; Jun Huang; Yujue Wang; Gang Yu. CO2 adsorption on crab shell derived activated carbons: contribution of micropores and nitrogen-containing groups. RSC Advances 2015, 5, (60), 48323-48330.

2014

(1) Xiang Li; Yujue Wang; Shi Yuan; Zhaoxin Li; Bin Wang; Jun Huang; Shubo Deng; Gang Yu*. Degradation of the anti-inflammatory drug ibuprofen by electro-peroxone process. Water Research 2014, 63, 81-93.

(2) Guoqiang Zhou; Jian Li; Yanqing Yu; Xiangyu Li; Yujue Wang*; Wei Wang; Sridhar Komarneni. Optimizing the distribution of aromatic products from catalytic fast pyrolysis of cellulose by ZSM-5 modification with boron and co-feeding of low-density polyethylene. Applied Catalysis A: General 2014, 487, 45-53.

(3) Cuicui Qiu; Shi Yuan; Xiang Li; Huijiao Wang; Belal Bakheet; Sridhar Komarneni; Yujue Wang*. Investigation of the synergistic effects for p-nitrophenol mineralization by a combined process of ozonation and electrolysis using a boron-doped diamond anode. Journal of Hazardous Materials 2014, 280, 644-653.

(4) Xiangyu Li; Jian Li; Guoqiang Zhou; Yu Feng; Yujue Wang*; Gang Yu; Shubo Deng; Jun Huang; Bin Wang. Enhancing the production of renewable petrochemicals by co-feeding of biomass with plastics in catalytic fast pyrolysis with ZSM-5 zeolites. Applied Catalysis A: General 2014, 481, 173-182.

(5) Belal Bakheet; Cuicui Qiu; Shi Yuan; Yujue Wang*; Gang Yu; Shubo Deng; Jun Huang; Bin Wang. Inhibition of polymer formation in electrochemical degradation of p-nitrophenol by combining electrolysis with ozonation. Chemical Engineering Journal 2014, 252, 17-21.

(6) Haifeng Zhang; Hongqing Zhao; Kuo Zheng; Xiangyu Li; Guangli Liu; Yujue Wang*, Diminishing hazardous air pollutant emissions from pyrolysis of furan no-bake binders using methanesulfonic acid as the binder catalyst. Journal of Thermal Analysis and Calorimetry, 2014, 116, 373-381.

(7) Jian Li; Xiangyu Li; Guoqing Zhou; Wei Wang; Chengwen Wang; Sridhar Komarneni; Yujue Wang*, Catalytic fast pyrolysis of biomass with mesoporous ZSM-5 zeolites prepared by desilication with NaOH solutions. Applied Catalysis A: General, 2014, 470, 115-122.

(8) Haifeng Zhang; Lu Su; Xiangyu Li; Jiane Zuo; Guangli Liu; Yujue Wang*, Evaluation of soil microbial toxicity of waste foundry sand for soil-related reuse. Frontiers of Environmental Science and Engineering, 2014, 8, (1), 89-98.

(9) Shubo Deng*; Pingping Meng; Xinyu Lu; Ziwen Du; Bin Wang; Jun Huang; Yujue Wang; Gang Yu; Baoshan Xing. Role of Air Bubbles Overlooked in the Adsorption of Perfluorooctane Sulfonate on Hydrophobic Carbonaceous Adsorbents. Environmental Science & Technology 2014, 48, 13785-13792.

(10) S. Bagherifam*; S. Komarneni*; A. Lakzian; A. Fotovat; R. Khorasani; W. Huang; J. Ma; Y.J. Wang. Evaluation of Zn–Al–SO4 layered double hydroxide for the removal of arsenite and arsenate from a simulated soil solution: Isotherms and kinetics. Applied Clay Science 2014, 95, 119-125.

(11) S. Bagherifam*; S. Komarneni*; A. Lakzian; A. Fotovat; R. Khorasani; W. Huang; J. Ma; S. Hong; F.S. Cannon; Y.J. Wang. Highly selective removal of nitrate and perchlorate by organoclay. Applied Clay Science 2014, 95, 126-132.

2013

(1) Belal Bakheet; Shi Yuan; Zhaoxin Li; Huijiao Wang; Jiane Zuo; Sridhar Komarneni; Yujue Wang*, Electro-peroxone treatment of Orange II dye wastewater. Water Research, 2013, 47, (16), 6234-43.

(2) Shi Yuan; Zhaoxin Li; Yujue Wang*. Effective degradation of methylene blue by a novel electrochemically driven process. Electrochemistry Communications, 2013,29, 48-51.

(3) Zhaoxin Li; Shi Yuan; Yujue Wang*; Xuejun Pan; Jiane Zuo; Chengwen Wang. Effective degradation of refractory organic pollutants in landfill leachate by electro-peroxone treatment. Electrochimica Acta, 2013, 102, 174-182.

(4) Yanqing Yu; Yelin Zeng; Jiane Zuo; Fuying Ma; Xuewei Yang; Xiaoyu Zhang*; Yujue Wang*. Improving the conversion of biomass in catalytic fast pyrolysis via white-rot fungal pretreatment. Bioresource Technology, 2013, 134, 198-203.

(5) Xiangyu Li; Haifeng Zhang; Jian Li; Lu Su; Jiane Zuo; Sridhar Komarneni; Yujue Wang*. Improving the aromatic production in catalytic fast pyrolysis of cellulose by co-feeding low-density polyethylene. Applied Catalysis A: General, 2013, 455, 114-121.

(6) Zhihua Wang; Xiaoliang Li; Saijin Zheng; Xiangyu Li; Jiane Zuo; Yujue Wang*. The important role of quinic acid in the formation of phenolic compounds from pyrolysis of chlorogenic acid. Journal of Thermal Analysis and Calorimetry, 2013, 114, (3), 1231-1238.

(7) Komarneni, S.*; Aref, A. R.; Hong, S. Q.; Noh, Y. D.; Cannon, F. S.; Wang, Y. J., Organoclays of high-charge synthetic clays and alumina pillared natural clays: Perchlorate uptake. Applied Clay Science, 2013, 80-81, 340-345.

(8) Xinyang Li; Chengwen Wang*; Yi Qian; Yujue Wang; Liwei Zhang. Simultaneous removal of chemical oxygen demand, turbidity and hardness from biologically treated citric acid wastewater by electrochemical oxidation for reuse. Separation and Purification Technology. 2013, 107, 281-288.

2012

(1) Yanqing Yu; Yujue Wang*; Lu Su; Xiangyu Li; Huizhong Zhang. The role of shape selectivity in catalytic fast pyrolysis of lignin with zeolite catalysts. Applied Catalysis A: General 2012, 447–448, 115–123.

(2) Yujue Wang*; Xinyang Li; Limin Zhen; Heqing Zhang; Chengwen Wang. Electro-Fenton treatment of concentrates generated in nanofiltration of biologically pretreated landfill leachate. Journal of Hazardous Materials. 2012, 229–230, 115-121.

(3) Xiangyu Li; Lu Su; Yujue Wang*; Yanqing Yu; Chengwen Wang; Xiaoliang Li; Zhihua Wang. Catalytic fast pyrolysis of Kraft lignin with HZSM-5 zeolite for producing aromatic hydrocarbons. Frontiers of Environmental Science and Engineering, 2012, 6 (3), 295–303.

2011

(1) Yujue Wang*; Fred S. Cannon; Xiangyu Li. Comparative analysis of hazardous air pollutant emissions of casting materials measured in analytical pyrolysis and conventional metal pouring emission tests. Environmental Science & Technology. 2011, 45 (19), 8529–8535.

(2) Yujue Wang*; Ying Zhang; Lu Su; Xiangyu Li; Lei Duan; Chengwen Wang; Tianyou Huang. Hazardous air pollutants formation from pyrolysis of typical Chinese casting materials. Environmental Science & Technology 2011, 45, 6539–6544.

2010

(1) Chengwen Wang; Yujue Wang*; Yanqi Zhang; Qi Zhao; Ran Wang. Reclamation of elemental sulfur from flue gas biodesulfurization waste sludge. Journal of Air and Waste Management. 2010, 60, 603-610.

(2) Brian C. Moore; Yujue Wang*; Fred S. Cannon; D. H. Metz; J. Westrick. Relationships between adsorption mechanisms and pore structure for the adsorption of natural organic matter by virgin and reactivated granular activated carbons during water treatment. Environmental Engineering Science. 2010, 27, 187-198.

2009

(1) He Huang*; Yujue Wang; Fred S. Cannon. Pore structure development of in-situ pyrolyzed coals for pollution prevention in iron foundries. Fuel Processing Technology. 2009, 90, 1183-1191.

(2) Yujue Wang; Fred S. Cannon; Magda Salama; D. A. Fonseca; Scott Giese. Characterization of pyrolysis products from a biodiesel phenolic urethane binder. Environmental Science & Technology. 2009, 43 (5), 1559-1564.

2007

(1) Yujue Wang; He Huang; Fred S. Cannon; Robert C. Voigt; Sridhar Komarneni; James Furness. Evaluation of hydrocarbon emission characteristics of typical carbonaceous additives in green sand foundries. Environmental Science & Technology. 2007, 41, 2957-2963.

(2) Yujue Wang; Fred S. Cannon; Magda Salama; Jeff Goudzwaard; Jame C. Furness. Characterization of hydrocarbon emissions from green sand foundry core binders by analytical pyrolysis. Environmental Science & Technology. 2007, 41, 7922-7927.

(3) Nohemi Milan-Segovia; Yujue Wang*; Fred Cannon; Robert C. Voigt, James Furness. Comparison of hydroxyl radical generation for various advanced oxidation combinations as applied to foundries. Ozone: Science & Engineering, 2007, 29, 461-471.

2006

(1) Yujue Wang; Fred Cannon; Robert Voigt; Sridhar Komarneni; James Furness. Effects of advanced oxidation on green sand properties via iron casting into green sand molds. Environmental Science & Technology. 2006, 40, 3095-3101.

2005

(1) Yujue Wang; Fred Cannon; Sridhar Komarneni; Robert Voigt; James Furness. Mechanisms of advanced oxidation processing on bentonite consumption reduction in foundry. Environmental Science & Technology. 2005, 39, 7712-7718.

申請(qǐng)專利、注冊(cè)軟件:

一種原位電產(chǎn)生H2O?2協(xié)同O3氧化的廢水處理技術(shù)

一種從煙氣生物脫硫污泥中回收和提純單質(zhì)硫的方法

一種從煙氣生物脫硫污泥中回收和提純單質(zhì)硫的裝置

一種處理印染廢水的UASB-MBR聯(lián)用系統(tǒng)

環(huán)境污染事件特征污染物快速檢測(cè)智能化軟件, 2011SR000011

工業(yè)園區(qū)大氣污染擴(kuò)散敏感點(diǎn)甄別系統(tǒng),2011SR030585

污染事故應(yīng)急檢測(cè)與處理處置系統(tǒng),2010SRBJ5498

 
微信掃一掃關(guān)注中國(guó)水業(yè)網(wǎng)/>
</div>
<div   id= 
 
[ 行業(yè)資訊搜索 ]  [ ]  [ 打印本文 ]  [ 關(guān)閉窗口 ]

 
0條 [查看全部]  相關(guān)評(píng)論

 
推薦圖文
推薦行業(yè)資訊
點(diǎn)擊排行