科學研究:
研究方向:
工業(yè)場地土壤與地下水風險管控與修復技術(shù)、綠色高效凈化功能材料研發(fā)、礦井水污染防控與生態(tài)修復。
承擔科研項目情況:
主持了英國倫敦2012年奧運會奧運公園污染場地管理與修復方案設計項目,大型防洪工程項目、新老核電站的環(huán)境影響評估項目、固體廢物填埋對水環(huán)境的風險評估項目、廢物焚燒對農(nóng)牧產(chǎn)品與生態(tài)環(huán)境的風險評估項目等。
1、易擴散有機溶劑污染場地物化與生物修復技術(shù)設備與示范,主持,國家級,2013-03--2016-12。
2、環(huán)保部公益項目:稀土金屬冶選尾礦庫滲漏對地下水污染的生態(tài)風險評估與控制研究,主持, 國家級, 2013-05--2015-12。
3、污染場地地下水納米零價鐵復合材料修復技術(shù)研究與示范, 主持,部委級,2015-01--2016-12。
4、地下水中二惡烷的納米四氧化三鐵/生物炭活化過硫酸鹽高級氧化修復機理研究,主持,國家級, 2015-01--2017-12。
5、常。ㄈA達、常宇)公司原廠址地塊環(huán)境污染防控工程實施方案,主持, 院級,2016-09--2017-12。
6、改性鐵-炭復合材料制備及其去除環(huán)境介質(zhì)中含鹵有機物反應機理,主持, 國家級,2018-01--2020-12。
7、土壤環(huán)境質(zhì)量詳細調(diào)查方案編制及土壤環(huán)境背景調(diào)查,主持,省級,2017-09--2019-09。
8、中國科學院知識創(chuàng)新工程重要方向項目“POPs污染場地土壤和地下水污染機制及修復技術(shù)研究”。
9、湖南省株洲市清水塘重金屬污染土壤治理工程——場地調(diào)查與風險評估。
科研成果:
1 污染場地健康與環(huán)境風險評估軟件(HERA)開發(fā)與應用推廣 陳夢舫;羅飛;韓璐;李春平;韋婧;董敏剛;冉睿予;姚晉 中國科學院南京土壤研究所 2013
2 污染場地健康與環(huán)境風險評估軟件(HERA)開發(fā)與推廣應用 陳夢舫,羅飛,韓璐,李春平,韋婧,董明剛,冉睿予,姚晉 中國科學院南京土壤研究所 2013
發(fā)明專利:
[1]錢林波,陳夢舫,陳云,歐陽達,晏井春,韓璐. 利用可滲透反應墻修復地下水的方法[P]. CN110357241A,2019-10-22.
[2]陳夢舫,晏井春,錢林波,韓璐. 一種納米四氧化三鐵/改性生物炭復合材料及其制備方法和應用[P]. CN110142023A,2019-08-20.
[3]陳夢舫,韓璐,錢林波,晏井春. 鈀鐵生物碳復合材料及其制備方法和應用[P]. CN109569509A,2019-04-05.
[4]陳夢舫,陳云,晏井春,錢林波,韓璐,歐陽達. 一種含銅混合金屬氧化物/過硫酸鈉體系及其應用[P]. CN109095586A,2018-12-28.
[5]陳夢舫,歐陽達,晏井春,錢林波,韓璐,陳云. 一種降解水體中二惡烷的組合物及其應用[P]. CN109095589A,2018-12-28.
[6]晏井春,陳夢舫,錢林波,高衛(wèi)國,陳云. 一種降解有機污染物的方法[P]. CN109081419A,2018-12-25.
[7]錢林波,陳夢舫,晏井春,張文影. 一種納米零價鐵-生物炭復合材料及其制備方法和應用[P]. CN108911005A,2018-11-30.
[8]吳駿,張后虎,李春平,夏偉霞,晏井春,陳夢舫. 一種生活垃圾填埋場終場覆蓋系統(tǒng)[P]. CN104324925A,2015-02-04.
[9]吳駿,張后虎,李春平,韓璐,晏井春,陳夢舫. 一種高負荷重金屬污染場地粘性土壤的修復方法[P]. CN104190698A,2014-12-10.
[10]晏井春,陳夢舫,錢林波,高衛(wèi)國,韓璐. 一種活化劑復合材料活化過硫酸鹽降解水體中有機污染物的方法[P]. CN104129841A,2014-11-05.
[11]吳駿,陳夢舫,李春平,羅飛,晏井春,宋昕. 一種工業(yè)場地污染防控方法[P]. CN103739023A,2014-04-23.
論文專著:
發(fā)表學術(shù)論文30余篇。
出版專著:
1、陳夢舫,錢林波,晏井春. 地下水可滲透反應墻:修復技術(shù)原理,設計與應用.科學出版社. 2017.
2、陳夢舫,韓璐,羅飛. 污染場地土壤與地下水風險評估方法學. 科學出版社. 2017.
發(fā)表英文論文:
1、Linbo Qian, Wengying Zhang, Jingchun Yan, Lu Han, Yun Chen, Da Ouyang, Mengfang Chen*. Nanoscale zero-valent iron supported by biochars produced at different temperatures: Synthesis mechanism and effect on Cr(VI) removal. Environmental Pollution. 2017, 223: 153-160.
2、Jingchun Yan, Yun Chen, Linbo Qian, Weiguo Gao, Da Ouyang, Mengfang Chen*. Heterogeneously catalyzed persulfate with a cumgfe layered double hydroxide for the degradation of ethylbenzene. Journal of Hazardous Materials, 2017, 338: 372-380.
3、Yun Chen, Jingchun Yan, Da Ouyang, Linbo Qian, Lu Han, Mengfang Chen*. Heterogeneously catalyzed persulfate by CuMgFe layered doubleoxide for the degradation of phenol, Applied Catalysis A: General, 2017, 538: 19-26.
4、 Da Ouyang, Jingchun Yan, Linbo Qian, Yun Chen, Lu Han, Anqi Su, Wenying Zhang, Hao Ni, Mengfang Chen*. Degradation of 1,4-dioxane by biochar supported nano magnetite particles activating persulfate, Chemosphere, 2017, 184: 609-617.
5、Qian, L., Zhang, W., Yan, J., Han, L., Gao, W., Liu, R., Chen, M*. 2016b. Effective removal of heavy metal by biochar colloids under different pyrolysis temperatures. Bioresource Technology, 206, 217-224.
6、Yan, J., Gao, W., Dong, M., Han, L., Qian, L., Nathanail, C.P., Chen, M*. 2016. Degradation of trichloroethylene by activated persulfate using a reduced graphene oxide supported magnetite nanoparticle. Chemical Engineering Journal, 295, 309-316.
7、Jingchun Yan, Lu Han, Weiguo Gao, Song Xue, Mengfang Chen*. Biochar supported nanoscale zerovalent iron composite used as persulfate activator for removing trichloroethylene. Journal of Bioresource Technology, 2015, 175:269-274.
8、C. Geng, Q. Luo, M. Chen, Z. Li and C. Zhang, 2008. Quantitative risk assessment of Tricholorthene for a former chemical works in Shanghai. SoilRem2008 Conference Proceeding, October 2008, Nanjing, China
9、C. Geng, Q. Luo, M. Chen, Z. Li and C. Zhang, 2010. Quantitative risk assessment of Tricholorthene for a former chemical works in Shanghai. Journal of Human and Ecological Risk Assessment, V16 (2), p429-423.
10、Chen, M and Soulsby, C 1996 River-aquifer interactions in alluvial aquifer of the River Spey, Scotland: combining numerical and hydrogeochemical modelling, Hydrogéologie, 4, 47-60. A special publication on Alluvial aquifers and their relationship with surface water.
11、Chen, M and Soulsby, C 1997 Groundwater-surface water interactions in a major Scottish Floodplain. In: Floodplain Rivers: Hydrological Processes and Ecological Significance (edited by Large, A), British Hydrological Society Ocassional Paper 8, 53-68.
12、Chen, M and Soulsby, C 1997 Implementation of groundwater protection strategies in the UK. Proceedings of the 30th International Geological Congress (edited by Fei, J and Krothe, N C), V22 (hydrogeology), 299-307.
13、Chen, M and Soulsby, C 1997 Modelling Stream-Aquifer Interactions: a case study of environmental risk assessment for a proposed groundwater abstraction scheme in north east Scotland. In: Sustainability of Water Resources under Increasing Uncertainty (edited by Dan Rosbjerg). IAHS Publication 241, 427 435.
14、Chen, M and Soulsby, C 1997 Risk assessment for a proposed groundwater abstraction Scheme in northern Strathmore, north east Scotland: a modelling approach. Journal of the Chartered Institution of Water and Environmental Management, 11 (1), 47-55.
15、Chen, M, Soulsby, C and Willetts, B 1997 Modelling river-aquifer interactions at the Spey Abstraction Scheme, north east Scotland: Implications for Aquifer Protection. Quarterly Journal of Engineering Geology, 30 (2), 123-136.
16、Chen, M, Soulsby, C and Younger, P L 1997 Predicting water quality impacts from future minewater outflows in an urbanised Scottish catchment. In: Groundwater in the Urban Environment. Proceeding of International Association of Hydrogeologists XXVII Congress, Nottingham UK.
17、Chen, M, Soulsby, C and Younger, P L 1999 Modelling the evolution of minewater pollution at Polkemmet Colliery, Almond catchment, Scotland. Quarterly Journal of Engineering Geology, 32, 351-362.
18、Chen, M. 2008 Updating contaminated land policy. Builder and Engineer Magazine. Issue 150, p29 to 30.
19、Chen, M. 2008. Review of risk based guidance and modelling approaches in the UK and USA. Keynote Speech at SoilRem2008 Conference Proceeding, October 2008, Nanjing, China.
20、Chen, M. 2010. Alternative integration procedures in combining multiple exposure routes for the derivation of generic assessment criteria with the CLEA model. Journal of Land Contamination and Reclamation, V18.2, p135-150.
21、Chen, M. 2010. Analytical integration procedures for the derivation of risk based or generic assessment criteria for soil. Journal of Human and Ecological Risk Assessment, V16, p1295-1317.
22、Chen, M. and Waterfall, L. 2007 Implementation of RBCA model within UK legislative context. Geo-environmental Conference, IOM3 Press.
23、McArthur, J M, Kennedy, W J, Chen, M, Thirlwall, M F and Gale, A S 1994 Strontium isotope stratigraphy for the Late Cretaceous time: direct numeric calibration of the Sr isotope curve based on the US Western Interior. Palaeogeogr. Palaeoclimatol. Palaeoecol., 108, 95 119.
24、McArthur, J M, Kennedy, W J, Gale, A S, Thirlwall, M F, Chen, M, Burnett, J and Hancock, J M 1992 Strontium isotope stratigraphy for the Late Cretaceous: international correlation of the Campanian/Maastrichtian boundary. Terra Nova, 4, 332 345.
25、McArthur, J M, Thirlwall, M F, Chen, M, Gale, A S and Kennedy, W J 1993 Strontium isotope stratigraphy in the Late Cretaceous: numeric calibration of the Sr isotope curve and intercontinental correlation for the Campannian. Paleeoceanography, 8, 859 873.
26、Moir, H, Soulsby, C and Chen, M 1997 Modelling the impact of groundwater abstraction on river flows and salmonid habitats. Proceeding of the Seventh International Symposium on Regulated Streams (SISORS III), Tennessee, USA.
27、Roberts, R and Chen, M. 2006 Waste incineration – How big is the health risk? a quantitative method to allow comparison with other health risks. Journal of Public Health, V28, No.3, p261-266.
28、Soulsby, C and Chen, M, Ferrier, R C, Helliwell, R C, Jenkins, A, and Harriman, R 1997 Groundwater influence on the hydrology and hydrochemistry of upland streams in Scotland. Proceeding of 6th British Hydrological Society-National Hydrology Symposium, 2.9-2.16.
29、Soulsby, C, Chen, M and Malcolm, R 1997 Groundwater protection in the UK: towards blending science and policy. In: Water Quality, Processes and Policy (edited by Webb, B W, Trudgillt, S T T and Walling, D E). John Wiley and Sons.
30、Soulsby, C, Chen, M, Ferrier, R C, Helliwell, R C, Jenkins, A and Harriman, R 1998 Hydrogeochemistry of groundwater in an upland Scottish catchment. Hydrological Processes, 1111-1127.
31、Soulsby, C., Moir, H., Chen, M. and Gibbins, C. (1998) Assessing the impact of groundwater development on Atlantic salmon spawning habitat in a Scottish river: integrating hydrogeological and hydroecological models. In: Wheater, H. and Kirby, C.. (eds) Hydrology in a Changing Environment: hydrological and ecological interactions. Wiley, Chichester. 3-16
發(fā)表中文期刊論文:
[1]蘇安琪,韓璐,晏井春,錢林波,歐陽達,陳夢舫.基于保護健康和水環(huán)境的氯代烴類污染場地地下水風險評估[J].環(huán)境工程,2018,36(07):138-143.
[2]高衛(wèi)國,錢林波,韓璐,陳夢舫.錳鐵氧體吸附及催化檸檬酸還原六價鉻的過程及機理[J].環(huán)境化學,2018,37(07):1525-1533.
[3]劉榮琴,錢林波,晏井春,韓璐,胡欽紅,陳夢舫.pH及共存金屬離子對生物質(zhì)炭吸附鉛穩(wěn)定性的影響[J].土壤,2017,49(03):467-475.
[4]羅飛,宋靜,陳夢舫.油菜餅粕生物炭制備過程中多環(huán)芳烴的生成、分配及毒性特征[J].農(nóng)業(yè)環(huán)境科學學報,2016,35(11):2210-2215.
[5]羅飛,宋靜,陳夢舫.熱解制備玉米秸稈和城市污泥生物炭過程中PAHs的污染特征[J].環(huán)境科學研究,2016,29(11):1651-1658.
[6]劉徽,晏井春,陳云,陳夢舫,張雪峰.改性沸石負載Fe_3O_4催化H_2O_2去除亞甲基藍染料廢水[J].應用化工,2016,45(12):2207-2211+2216.
[7]薛嵩,錢林波,晏井春,高衛(wèi)國,陳夢舫,曹志強,施維林.生物炭攜載納米零價鐵對溶液中Cr(Ⅵ)的去除[J].環(huán)境工程學報,2016,10(06):2895-2901.
[8]董敏剛,張建榮,羅飛,韓璐,晏井春,陳夢舫.我國南方某典型有機化工污染場地土壤與地下水健康風險評估[J].土壤,2015,47(01):100-106.
[9]羅飛,宋靜,董敏剛,夏偉霞,韋婧,陳夢舫.菜籽餅生物炭中污染物賦存特征及其用于土壤改良的適宜性評價[J].環(huán)境科學研究,2014,27(11):1292-1297.
[10]陳夢舫.我國工業(yè)污染場地土壤與地下水重金屬修復技術(shù)綜述[J].中國科學院院刊,2014,29(03):327-335.
[11]陳夢舫.污染場地健康與環(huán)境風險評估軟件(HERA)[J].中國科學院院刊,2014,29(03):344+335+399.
[12]李春平,吳駿,羅飛,韋婧,陳夢舫.某有機化工污染場地土壤與地下水風險評估[J].土壤,2013,45(05):933-939.
[13]韋婧,宋靜,黃玉娟,羅飛,李春平,陳夢舫,駱永明.溶解性富里酸對土壤中多環(huán)芳烴遷移的影響[J].土壤學報,2013,50(02):230-236.
[14]滕應,李秀芬,潘澄,馬文亭,宋靜,劉五星,李振高,吳龍華,陳夢舫,駱永明.土壤及場地持久性有機污染的生物修復技術(shù)發(fā)展及應用[J].環(huán)境監(jiān)測管理與技術(shù),2011,23(03):43-46.
[15]羅飛,宋靜,潘云雨,陳夢舫,駱永明,陳義,史建霞.基于健康風險的三氯殺螨醇生產(chǎn)設備表面污染物篩選值推算的初步研究[J].環(huán)境監(jiān)測管理與技術(shù),2011,23(03):34-38.
[16]李春平,陳夢舫,駱永明,宋靜,吳春發(fā),羅飛,韋婧.重點行業(yè)的關(guān)注污染物與環(huán)境危害簡析[J].環(huán)境監(jiān)測管理與技術(shù),2011,23(03):7-13.
[17]陳夢舫,駱永明,宋靜,李春平,吳春發(fā),羅飛,韋婧.中、英、美污染場地風險評估導則異同與啟示[J].環(huán)境監(jiān)測管理與技術(shù),2011,23(03):14-18.
[18]陳夢舫,駱永明,宋靜,李春平,吳春發(fā),羅飛,韋婧.污染場地土壤通用評估基準建立的理論和常用模型[J].環(huán)境監(jiān)測管理與技術(shù),2011,23(03):19-25.
[19]宋靜,陳夢舫,駱永明,夏家淇,吳春發(fā),羅飛,韋婧,李春平.制訂我國污染場地土壤風險篩選值的幾點建議[J].環(huán)境監(jiān)測管理與技術(shù),2011,23(03):26-33.
[20]陳夢舫,駱永明,宋靜,李春平,吳春發(fā),韋婧,羅飛.場地含水層氯代烴污染物自然衰減機制與納米鐵修復技術(shù)的研究進展[J].環(huán)境監(jiān)測管理與技術(shù),2011,23(03):85-89.
發(fā)表中文會議論文:
[1]陳夢舫. 稀土尾礦庫地下水滲透性反應墻(PRB)技術(shù)修復技術(shù)研究與示范[C]. 澳大利亞環(huán)境污染評估與修復聯(lián)合研究中心(CRC CARE)、澳大利亞紐卡斯爾大學全球環(huán)境修復中心(GCER, UON)、中國科學院、中國生態(tài)修復網(wǎng).2016國際棕地治理大會暨首屆中國棕地污染與環(huán)境治理大會論文摘要集.澳大利亞環(huán)境污染評估與修復聯(lián)合研究中心(CRC CARE)、澳大利亞紐卡斯爾大學全球環(huán)境修復中心(GCER, UON)、中國科學院、中國生態(tài)修復網(wǎng):北京易修復生態(tài)科技有限公司,2016:50+137.
[2]陳夢舫. 城市棕地再開發(fā)中的關(guān)鍵性技術(shù)問題探討[C]. 重慶市環(huán)境科學學會.2011污染場地修復產(chǎn)業(yè)國際論壇暨重慶市環(huán)境科學學會第九屆學術(shù)年會會刊.重慶市環(huán)境科學學會:重慶市環(huán)境科學學會,2011:15-16.
代表性工業(yè)報告:
1、M. Chen 2010 Derivation of material re-use criteria for Elgin Flood Aleviation Scheme. The Moray Council.
2、M. Chen 2010 Geological and hydrogeological conceptualization. As part of environmental impact assessment for British Energy New Power Plants (Sizewell, Bradwell, Dungeness and Hinkley Power Stations).
3、M. Chen 2009 Detailed post remediation quantitative risk assessment for Milford Haven Oil Refinery Sites. Undertaken on behalf of 4 GAS Limited.
4、M. Chen, 2008 Derivation of soil screening values for London 2012 Olympic Park. Prepared for London Development Agency (LDA).
5、M. Chen, 2007. Quantitative human health and environmental risk assessment and development of site specific remedial strategies for Olympic Construction Zones. Prepared for London Development Agency (LDA).
6、M. Chen, 2006 Groundwater modelling (MODFLOW) in support of the Permeable Reactive Barrier (PRB) design for Yalding facility, Kent. Prepared for EDSR Ltd.
7、M. Chen, 2005 Derivation of soil and groundwater screening values and remedial targets for 130 contaminants including chlorinated solvents, poly-aromatic hydrocarbons, pesticides, TPH fractions, SVOC and metals. Yalding facility, Kent. Prepared for EDSR Ltd.
8、M. Chen, 2004 Modelling natural attenuation of chlorinated solvents in groundwater for a dry-cleaning site (MODFLOW and RT3D). A confidential site.
9、M. Chen, 2003 Hydrogeological risk assessment for Danes Moss Landfill Site. Undertaken for Waste Recycling Group.
10、M. Chen, 2002 Air quality assessment and human health risk assessment for the proposed Wrexham and Neath Waste Reclamation and Energy Centre. HLC Environmental Projects Limited.
11、M. Chen 2001 Groundwater flow and contaminant transport modelling (MODFLOW and MT3DMS) for a site contaminated by copper, zinc and chromium. Venlo Facility, Belden Wire and Cable, Netherlands.
12、M. Chen, 2000 Modelling dewatering processes and river aquifer interactions (MODFLOW and MT3DMS) at the sewage works near Derby. Severn Trent Water Utilities Ltd.
參與會議:
1)會議總結(jié) 第四屆污染場地風險管控與修復技術(shù)國際研討會 2017-10-13
2)Application of nZVI-biochar composite for In-situ groundwater treatment 第七屆國際污染場地修復會議 2017-09-10
3)納米零價鐵在中國的應用前景 第三屆污染場地政策、環(huán)境管理與修復技術(shù)國際研討會 2015-04-26