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倪晉仁 |
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主持的代表性項目:
l 國家優(yōu)秀中青年人才專項基金“泥石流的結(jié)構(gòu)兩相流模型”(59421004, 1995-1997 )
l 國家杰出青年基金項目“高濃度固液兩相流和風沙運動理論研究”(49625101, 1997-2001)
l 國家自然科學(xué)基金重大項目“江河泥沙形成機理及其防治研究”(59890200, 1997-2002)
l 國家重點基礎(chǔ)研究規(guī)劃項目課題“黃河斷流對河流系統(tǒng)生態(tài)環(huán)境功能的影響”(G1999043603, 1999-2004)
l 國家重點基礎(chǔ)研究規(guī)劃項目課題“流域產(chǎn)沙機制與水沙運移規(guī)律研究”(2007CB407202, 2007-2011)
l 歐盟科技項目“可持續(xù)的水環(huán)境管理策略研究”(INCO-DC-ERBIC18CT960128, 1997-2000)
l 加拿大CIDA科技合作項目“防洪、生態(tài)保護和可持續(xù)發(fā)展研究”(UPCD-Tier2-Project 098/S47074-296,項目中方負責人, 1999-2005)
l 中國-歐盟環(huán)境管理合作項目(EMCP)課題“水資源管理機制建設(shè)與河流生態(tài)修復(fù)研究”(ALA/CHN/96/6, 2004-2005)
l 國家科技支撐計劃課題“南水北調(diào)中線工程丹江口水源區(qū)黃姜加工新工藝關(guān)鍵技術(shù)研究”(2006BAB04A14, 2006-2010)
l 國家水體污染控制與治理科技重大專項課題“湘江水環(huán)境重金屬污染整治關(guān)鍵技術(shù)研究與綜合示范”(2008ZX07212-001, 2009-2012)
l 國家水體污染控制與治理科技重大專項項目“特殊類型河流污染防治與水質(zhì)改善關(guān)鍵技術(shù)研究與示范”(2008ZX07212, 2009-2012)
l 國家自然科學(xué)基金委員會(NSFC)與日本科學(xué)技術(shù)振興機構(gòu)(JST)重大國際合作研究項目“焦化廢水中高氨氮難降解有機物去除的生物強化機理研究”(21261140336/B070302, 2009-2012)
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部分國際雜志論文(通訊作者或第一作者):
水處理理論與技術(shù)(*為通訊作者)
l Hongna Li, Jinren Ni*, Electrogeneration of disinfection byproducts at a boron-doped diamond anode with resorcinol as a model substance, Electrochimica Acta, 2012, 69: 268-274.
l Xiuping Zhu, Jinren Ni*, Xuan Xing, Hongnan Li, Yi Jiang, Synergies between electrochemical oxidation and activated carbon adsorption in three-dimensional boron-doped diamond anode system, Electrochimica Acta, 2011, 56(3): 1270-1274.
l Xiuping Zhu, Jinren NI*, Scale-up of B-doped diamond anode system for electrochemical oxidation of phenol simulated wastewater in batch mode,Electrochimica Acta, 2011, 56(25): 9439-9447.
l Xiuping Zhu, Jinren Ni*, The improvement of boron-doped diamond anode system in electrochemical degradation of p-nitrophenol by zero-valent iron,Electrochimica Acta, 2011, 56(28): 10371-10377.
l Xuan Xing, Xiuping Zhu, Hongna Li, Jinren Ni*, Electrochemical oxidation of nitrogen-heterocyclic compounds at boron-doped diamond electrode,Chemosphere, 2012, 86: 368-375.
l Xiuping Zhu, Jinren Ni*, Junjun Wei, Xuan Xing, Hongna Li, Yi Jiang, Destination of organic pollutants during electrochemical oxidation of biologically-pretreated dye wastewater using boron-doped diamond anode, Journal of Hazardous Materials, 2011, 189(1-2): 127-133.
l Hongna Li, Xiuping Zhu, Jinren Ni*, Comparison of electrochemical method with ozonation, chlorination and monochloramination in drinking water disinfection, Electrochimica Acta, 2011, 56(27): 9789-9796.
l Lin Xiong, Cheng Chen, Qing Chen, Jinren Ni*, Adsorption of Pb(II) and Cd(II) from aqueous solutions using titanate nanotubes prepared via hydrothermal method, Journal of Hazardous Materials, 2011, 189(3): 741-748.
l Lin Xiong, Weiling Sun, Ye Yang, Cheng Chen, Jinren Ni*, Heterogeneous photocatalysis of methylene blue over titanate nanotubes: Effect of adsorption,Journal of Colloid and Interface Science, 2011, 356(1): 211-216.
l Junjun Wei, Xiuping Zhu, Jinren Ni*, Electrochemical oxidation of phenol at boron-doped diamond electrode in pulse current mode, Electrochimica Acta, 2011, 56(15): 5310-5315.
l Xiuping Zhu, Jinren Ni*, Wei Junju, Scale-up of BDD anode system for electrochemical oxidation of phenol simulated wastewater in continuous mode,Journal of Hazardous Materials, 2010, 184(1-3): 493-498.
l Hongna Li, Xiuping Zhu, Jinren Ni*, Inactivation of Escherichia coli in Na(2)SO(4) electrolyte using boron-doped diamond anode, Electrochimica Acta, 2011, 56(1): 448-453.
l Xiuping Zhu, Jinren Ni*, Hongna Li, Yi Jiang, Xuan Xing, Effects of ultrasound on electrochemical oxidation mechanisms of p-substituted phenols at BDD and PbO2 anodes, Electrochimica Acta, 2010, 55(20): 5569-5575.
l Jiang Yi, Xiuping Zhu, Hongna Li, Jinren Ni*, Effect of Nitro Substituent on Electrochemical Oxidation of Phenols at Boron-doped Diamond Anodes,Chemosphere, 2010, 78(9): 1093-1099.
l Hongna Li, Xiuping Zhu, Yi Jiang, Jinren Ni*, Comparative electrochemical degradation of phthalic acid esters using boron-doped diamond and Pt anodes,Chemosphere, 2010, 80(8): 845-851.
l Bin Zhao, Huazhang Zhao, Jinren NI*, Arsenate removal by Donnan Dialysis: Effects of the accompanying components, Separation and Purification Technology, 2010, 72(3): 250-255.
l Bin Zhao, Huazhang Zhao, Jinren NI*, Modeling of the Donnan dialysis process for arsenate removal, Chemical Engineering Journal, 2010, 160(1): 170-175.
l Lin Xiong, Ye Yang, Jiaxing Mai, Weiling Sun, Chaoying Zhang, Dapeng Wei, Qing Chen, Jinren Ni*, Adsorption behavior of methylene blue onto titanate nanotubes, Chemical Engineering Journal, 2010, 156(2): 313-320.
l Xiuping Zhu, Jinren NI*, Peng Lai, Advanced treatment of biologically pretreated coking wastewater by electrochemical oxidation using boron-doped diamond electrodes, Water Research, 2009, 43(17): 4347-4355.
l Xiuping Zhu, Jinren NI*, Simultaneous processes of electricity generation and p-nitrophenol degradation in a microbial fuel cell, Electrochemistry Communications, 2009, 11(2): 274-277.
l Lina Xu, Huazhang Zhao, Shaoyuan Shi, Guangzhi Zhang, Jinren Ni*, Electrolytic treatment of Acid Orange 7 from aqueous solution by a three-dimensional electrode reactor, Dyes and Pigments, 2008, 77(1): 158-164.
l Jia-Xing Mai, Wei-Ling Sun, Lin Xiong, Ying Liu, Jin-Ren Ni*, Titanium dioxide mediated photocatalytic degradation of 17β-estradiol in aqueous solution,Chemosphere, 2008, 73(4): 600-606.
l Xiuping Zhu, Meiping Tong, Shaoyuan Shi, Huazhang Zhao, Jinren Ni*, An Essential Explanation to the Strong Mineralization Performance of Boron-doped Diamond Electrodes, Environmental Science and Technology, 2008, 42(13): 4914-4920.
l Xiuping Zhu, Shaoyuan Shi, Junjun Wei, Fanxiu Lv, Huazhang Zhao, Jiangtao Kong, Qi He, Jinren NI*, Electrochemical oxidation characteristics of p-Substituted phenols using boron-doped diamond electrode, Environmental Science and Technology, 2007, 41 (18): 6541-6546.
l Jun Zhu, Huazhang Zhao, Jinren Ni*, Fluoride distribution in electrocoagulation defluoridation process, Separation and Purification Technology, 2007, 56(2): 184-191.
l Jiangtao Kong, Shaoyuan Shi, Lingcai Kong, Xiuping Zhu, Jinren Ni*, Preparation and characterization of PbO2 electrodes doped with different rare earth oxides, Electrochimica Acta, 2007, 53(4): 2048-2054.
l Shuo Yao, Jinren Ni*, Qian Chen, Alistair G.L. Borthwick, Enrichment and characterization of a bacteria consortium capable of heterotrophic nitrification and aerobic denitrification at low temperature, Bioresource Technology, 2013, 127: 151-157.
l Qian Chen, Jinren Ni*, Ammonium removal by Agrobacterium sp LAD capable of heterotrophic denitrification, Journal of Bioscience and Bioengineering, 2012, 113 (5): 619-623.
l Qian Chen, Jinren Ni*, Heterotrophic nitrification-aerobic denitrification by novel isolated bacteria, Journal of Industrial Microbiology & Biotechnology, 2011, 38(9): 1305-1310.
l Hui Li, Jinren Ni*, Treatment of wastewater from Dioscorea zingiberensis tubers used for producing steroid hormones in a microbial fuel cell, Bioresource Technology, 2011, 102(3): 2731–2735.
l Jia Cheng, Xiuping Zhu, Jinren Ni*, Palm oil mill effluent treatment using a two-stage microbial fuel cells system integrated with immobilized biological aerated filters, Bioresource Technology, 2010, 101(8): 2729-2734.
l Yuling Zhu, Wen Huang, Jinren Ni*, Production of diosgenin from Dioscorea zingiberensis tubers through enzymatic saccharification and microbial transformation, Applied Microbiology and Biotechnology, 2010, 85(5): 1409-1416.
l Hui Li, Jinren Ni*, Wei Liu, Yuling Zhu, Cleaner production alternatives for saponin industry by recycling starch, Resources, Conservation and Recycling, 2010, 54(12): 1145–1151.
l Yuling Zhu, Wen Huang, Jinren Ni*, A promising clean process for production of diosgenin from Dioscorea zingiberensis C. H. Wright by Trichoderma reesei, Journal of Cleaner Production, 2010, 18(3): 242-247.
l Yuling Zhu, Jinren Ni*, Wen Huang, Process optimization for the production of diosgenin with Trichoderma reesei, Biopreocess and Biosystems Engineering, 2010, 33(5): 647-655.
l Peng Cheng, Huazhang Zhao, Jinren Ni*, Pilot treatment of wastewater from Dioscorea zingiberensis C.H. Wright production by anaerobic digestion combined with a biological aerated filter, Bioresource Technology, 2009, 100(12): 2918-2925.
l Baogang Zhang, Huazhang Zhao, Shungui Zhou, Chunhong Shi, Jinren Ni*, A novel UASB-MFC-BAF integrated system for high strength molasses wastewater treatment and bioelectricity generation, Bioresource Technology, 2009, 100(23): 5687-5693.
l Peng Lai, Huazhang Zhao, Ming Zeng, Jinren Ni*, Study on treatment of coking wastewater by biofilm reactors combined with zero-valent iron process,Journal of Hazardous materials, 2009, 162(2-3): 1423-1429.
l Lei Yao, Zheng-fang Ye, Mei-ping Tong, Peng Lai, Jin-ren Ni*, Removal of Cr3+ from aqueous solution by biosorption with aerobic granules, Journal of Hazardous Materials, 2009, 165(1-3): 250-255.
l Zhu Liang, Jinren Ni, Improving the ammonium ion uptake onto natural zeolite using an integrated modification process, Journal of Hazardous Materials, 2009, 166(1): 52-60.
l Li Fan, Jinren Ni*, Yanjun Wu, Yongyong Zhang, Treatment of bromoamine acid wastewater using combined process of micro-electrolysis and biological aerobic filter, Journal of Hazardous Materials, 2009, 162(2-3): 1204-1210.
l Li Fan, Shunni Zhu, Dongqi Liu, Jinren Ni*, Decolorization of 1-amino-4-bromoanthraquinone-2-sulfonic acid by a newly isolated strain of Sphingomonas herbicidovorans, International Biodeterioration & Biodegradation, 2009, 63(1): 88-92.
l Na Lu, Shun-gui Zhou, Jin-tao Zhang, Li Zhuang, Jin-ren Ni*, Electricity generation from starch processing wastewater using microbial fuel cell technology,Biochemical Engineering Journal, .2009, 43(3): 246-251.
l Dongkang Fu, Shaozu Wu, Xiaojia He, Jinren Ni*, Preparation and property analysis of polyacrylate dispersant for calcium carbonate,Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2008, 326 (3): 122-128.
l Peng Lai, Huazhang Zhao, Zhengfang Ye, Jinren Ni*,Assessing the effectiveness of treating coking effluents using anaerobic and aerobic biofilms, Process Biochemistry, 2008, 43(3): 229-237.
l Na Lu, Shungui Zhou, Jinren Ni*, Mechanism of Energy Generation of Microbial Fuel Cell, Progress in Chemistry, 2008, 20(7/8): 1233-1240.
l Shuni Zhu and Jinren NI*, Treatment of Coking Wastewater by a UBF-BAF combined Process, Journal of Chemical Technology & Biotechnology, 2008, 83(3): 317-324.
l Shunni Zhu, Dongqi Liu, Li Fan, Jinren Ni*, Degradation of quinoline by Rhodococcus sp. QL2 isolated from activated sludge, Journal of Hazardous Materials, 2008, 160(2-3): 289-294.
l Li Fan, Shunni Zhu, Jinren Ni*, Decolorization mechanism of 1-amino-4-bromoanthraquinone-2-sulfonic acid using Sphingomonas herbicidovorans FL, Dyes and Pigments, 2008, 78(1): 34-38.
l Wen Huang, Huazhang Zhao, Jinren NI*, The best utilization of D. zingiberensis C.H. Wright by an eco-friendly process, Bioresource Technology, 2008, 99: 7407-7411.
l Peng Lai, Hua-zhang Zhao, Chao Wang, Jin-ren Ni*, Advanced treatment of coking wastewater by coagulation and zero-valent iron processes, Journal of Hazardous Materials, 2007, 147(1-2), 17: 232-239.
l Ming Chang, Shungui Zhou, Na Lu, Jinren Ni*, Enhanced Bacillus thuringiensis production from sewage sludge with alkaline and ultrasonic pretreatments,Water, Air & Soil Pollution, 2007, 186 (1-4): 75-84.
l Xin Zhao, Yanming Wang, Zhengfang Ye, Alistair G.L. Borthwick, Jinren Ni*, Oil Field Wastewater Treatment in Biological Aerated Filter by Immobilized Microorganisms, Process Biochemistry, 2006, 41: 1475-1483.
l Haidong Zhou, Jinren Ni*, Wen Huang, Jiandong Zhang. Separation of hyaluronic acid from fermentation broth by tangential flow microfiltration and ultrafiltration, Separation and Purification Technology, 2006, 52 (1): 29-38.
l Jinren Ni, Dingsheng Zhong, Yuefei Huang and Hao Wang, Total waste-load control and allocation based on input-output analysis for Shenzhen, South China, Journal of Environmental Management, 2001, 61: 37-49.
水沙運動與效應(yīng)
l Jinren Ni*, Yao Yue, Alistair G.L. Borthwick, Tianhong Li , Chiyuan Miao , Erosion-induced CO2 flux of small watersheds, Global and Planetary Change, 2012, 94-95: 101–110.
l Yao Yue, Jinren Ni*, Alistair G. L. Borthwick and Chiyuan Miao, Diagnosis of river basins as CO2 sources or sinks subject to sediment movement, Earth Surface and Process Landforms, 2012, 37(13): 1398-1406.2012.
l Jinren Ni*, Jinshui Sun, Alistair G.L. Borthwick, and Yuan Fang, Rapid assessment of intertidal wetland sediments, Soil and Sediment Contamination, 2012, 21(5): 574-585.
l Zhang, Guangzhi; Sun, Weiling; Hu, Hao; Ni, Jinren*, Sorption of phenanthrene on to soil fractions in the presence of Triton X-100, Environmental Technology, 2012, 33(3): 321-327.
l Chiyuan Miao, Jinren Ni*, Alistair GL Borthwick, A preliminary estimate of human and natural contributions to the changes in water discharge and sediment load in the Yellow River, Global and Planetary Change, 2011, 76(3-4): 196-205.
l Peng Han, Jinren Ni*, Kebin Hou, Chiyuan Miao, Tianhong Li, Numerical modeling of gravitational erosion in rill systems, International Journal of Sediment Research, 2011, 26(4): 403-415.
l Jinren Ni*, Liying Sun, Tianhong Li, Xheng Huang, Assessment of flooding impacts in terms of sustainability in mainland China. Journal of Environmental Management, 2010, 91(10): 1930-1942.
l Chiyuan Miao, Jinren Ni*, Alistair GL Borthwick, Recent changes of water discharge and sediment load in the Yellow River basin, China, Progress in Physical Geography, 2010, 34(4): 541-561.
l Liying Sun, Jinren Ni*, Alistair GL Borthwick. Rapid Assessment of Sustainability in Mainland China. Journal of Environmental Management, 2010,91(4): 1021-1031.
l Mei Han, Guodong Ji, Jinren Ni*, Washing of field weathered crude oil contaminated soil with an environmentally compatible surfactant, alkyl polyglucoside, Chemosphere, .2009, 76(5): 579-586.
l Dajun Feng, Zhenshan Li, Jinren NI*, Sidewall effects of wind tunnel on aeolian sediment saltation, Geomorphology, .2009, 106(3-4): 253-260.
l Dajun Feng, Zhenshan Li, Jinren NI*, Launch velocity characteristics of non-uniform sand in aeolian saltation, Physica A: Statistical Mechanics and its Applications, 2009, 388(8): 1367-1374.
l Liying Sun, Weiling Sun, Jinren Ni*, Partitioning of water soluble organic carbon in three sediment size fractions: Effect of the humic substances, Journal of Environmental Sciences, 2009, 21(1): 113-119.
l Guangzhi Zhang, Hao Hu, Weiling Sun, Jinren Ni*, Sorption of Triton X-100 on soil organic matter fractions: kinetics and isotherms, Journal of Environmental Sciences, 2009, 21(6): 795-800.
l Chiyuan Miao, Jinren Ni*, Variation of Natural Streamflow since 1470 in the Middle Yellow River, China, International Journal of Environmental Research and Public Health, 2009, 6(11): 2849-2864.
l Jinren Ni*, Xiuxia Li, Alistair GL Borthwick, Soil erosion assessment based on minimum polygons in the Yellow River basin, Geomorphology, 2008, 93(3-4): 233-252.
l Lei Yao, Zhengfang Ye, Zhongyou Wang, Jinren NI*, Characteristics of Pb2+ biosorption by aerobic granular biomass, Chinese Science Bulletin, 2008, 53(6), 948-953.
l Zhenshan Li, Dajun Feng, Shiliang Wu, Alistair GL Borthwick, Jinren Ni*, Grain size and transport characteristics of non-uniform sand in aeolian saltation,Geomorphology, 2008, 100(3-4): 484-493.
l Nan Xu, Jinren Ni*, and Weiling Sun, Effects of Copper on the Sorption of Phthalate Esters to the Yellow River Sediment, Water, Air and Soil Pollution, 2007, 184(1-4): 207-216.
l Nan Xu and Jinren Ni*, Role of Dissolved Organic Carbon in the Co-sorption of Copper and Phthalate Esters onto Yellow River Sediments, Chemosphere,2007, 69: 1419-1427.
l Jinren Ni*, Liyiing Sun, Weiling Sun, Modification of chemical oxygen demand monitoring in the Yellow River with a high content of sediments, Water Environment Research, 2007, 79 (11): 2336-2342.
l Jinren Ni*, Renzhi Liu, Onyx WH Wai, Alistair GL Borthwick, Xiaodong Ge, Rapid zonation of abrupt mass movement hazard, Part I: General principles,Geomorphology, 2006, 80 (3-4): 214-225.
l Renzhi Liu, Jinren Ni*, Alistair GL Borthwick, zhenshan Li, Onyx WH Wai, Rapid zonation of abrupt mass movement hazard, Part II: Applications,Geomorphology, 2006, 80 (3-4): 226-235.
l Jinren Ni* and Peng Han, Grain size variation in the Middle Yellow River subject to soil conservation, Journal of Water and Soil Conservation, 2005, 60(2):99-110.
l Jinren Ni*, Zhenshan Li and Cesar Mendoza, Blown-sand transport rate, Earth Surface Processes and Landforms, 2004, 29(1): 1-14.
l Jianxin Xia, Jinren NI* and Cesar Mendoza, Hydraulic lifting of manganese nodules through a riser, Journal of Offshore Mechanics & Artic Engineering,ASME, 2004, 126(1):72-77.
l Zhenshan Li, Jinren Ni* and Cesar Mendoza, An analytic expression for wind-velocity profiles within the saltation layer, Geomorphology, 2004, 60:359-369.
l Jianxin Xia, Jinren NI* and Cesar Mendoza, Upward flow of large size particles-water mixtures through swaying pipes, Journal of Transportation Engineering, ASCE, 2004, 130(4): 535-543.
l Zhenghan Qian, Jinren Ni*, An Xue, Silke Wieprecht, Severity Level of No-flow Events in the Yellow River, Water International, 2004, 29(4): 432-438.
l Jinren Ni*, Hongwu Zhang, An Xue, Silke Wieprecht, Alistair GL Borthwick, Modeling of hyper-concentrated sediment-laden floods in Lower Yellow River, Journal of Hydraulic Engineering, ASCE, 2004, 130(10): 1025-1032.
l Jinren Ni*, Xiaoyong Liu, Tianhong Li, Ye’an Zhao, Ling Jin, Efficiency of Sediment Transport by Flood and Its Control in the Lower Yellow River,Science in China (Series E), 2004, 47(Supp.): 173-185.
l Jinren Ni*, Yudong Wang, Zhenghan Qian, Tianhong Li, Yean Zhao, On the Variation of Water Resource Structure in the Lower Yellow River, Science in China (Series E), 2004, 47(Supp.):127-141.
l Huaming Luo, Tianhong Li, Jinren Ni*, Yudong Wang, Water Demand for Ecological Protection in Rivers with Hyper-concentrated Sediment-laden Flow,Science in China (Series E), 2004, 47(Supp.):186-198.
l Jinren Ni*, Zhenshan Li and Cesar Mendoza, Vertical profiles of aeolian sand mass flux, Geomorphology, 2003, 49(3-4): 205-218.
l Jinren NI* and Jianxin Xia, Particle fluctuation intensities in sediment-laden flows, Mechanics Research Communications, 2003, 30: 25-32.
l Jinren Ni*, Honglian Wei and Guohe Huang, Environmental consequences of the Sanmenxia Hydropower Station Operation in Lower Yellow River, Energy Sources, 2003, 25(6): 519-546..
l Zhenshan Li and Jinren Ni*, Sampling efficiency of vertical array aeolian sand traps, Geomorphology, 2003, 52: 243-252.
l Jinren Ni*, Yingkui Li, Approach to soil erosion assessment in terms of land-use structure changes, Journal of Water and Soil Conservation, 2003, 58(3): 158-169.
l Jinren Ni* and An Xue, Application of artificial neural network to ecological risk assessment and rapid feedback in flood diversion zone, Engineering Applications of Artificial Intelligence, 2003, 16(2): 105-119.
l Jinren Ni* and Weiling Sun, Applicability of Langmuir equation to Copper sorption by loess with high Carbonate content, Hydrobiologia, 2003, .494(1-3):259-263.
l Nan Xu, Weiling Sun and Jinren Ni*, Chemical equilibrium modeling of Copper precipitation in hyper-concentrated solid-Liquid system, Hydrobiologia, 2003, 494(1-3): 201-206.
l Jinren Ni*, Xiangjiang Huang and Alistair GL Borthwick, Some characteristics of hyper-concentrated sediment-laden flows, Journal of Engineering Mechanics, ASCE, 2003, 129(12): 1489-1493.
l Jinren Ni*, Xiaojie Meng, Damage evaluation based on point-area integrated information in flood diversion basin, International Journal of Sediment Research, 2003, 18(2): 314-320.
l Jinren Ni*, Alistair GL Borthwick, and Huapeng Qin, Integrated approach to determining post-reclamation coastline, Journal of Environmental Engineering,ASCE, 2002, 128(6): 543-551.
l Huapeng Qin, Jinren Ni* and Alistair GL Borthwick, Harmonized optimal post-reclamation coastline for Deep Bay, China, Journal of Environmental Engineering, ASCE, 2002, 128(6): 552-561.
l Jinren Ni, Particle suspension in sediment-laden flow, Progress in Natural Science, 2002, 12(7): 481-492.
l Jinren Ni and Zhenghan Qian, Functional no-flow events in the Yellow River, Science in China (Series E), 2002, 45(5): 449-457.
l Lin Liang, Jinren Ni*, Alistair GL Borthwick, Simulation of dike-break processes in the Yellow River, Science in China (Series E), 2002, 45(6): 605-618.
l Jinren Ni and Xiaogang Meng, Forces on particles and their effects on vertical sediment sorting in solid-liquid two-phase flows, International Journal of Sediment Research, 2001, 16(2): 128-138.
l Jinren Ni and Huapeng Qin, Impact of river realignment and land reclamation on flood control and ecological habitat in river-estuary-bay system, Water International, 2001, 26(2): 206-214.
l Jinren Ni, Suiji Wang, Guangqian Wang, River patterns and spatial and temporal modes, International Journal of Sediment Research, 2000, 15(4): 357-370.
l Jinren Ni, Guangqian Wang and Alistair GL Borthwick, The kinetic theory for vertical profile of particle concentration in dilute and dense solid-liquid flows,Journal of Hydraulic Engineering, ASCE, 2000, 126(12): 893-903.
l Jinren Ni, Guangqian Wang and Qian Liao, A correction model for hyper-concentrated flow, Intern Journal Sediment Research, 1999, 14(2): 145-148.
l Guangqian Wang & Jinren Ni, Dynamic model of debris flows, Chinese Science Bulletin, 1994, 39(24): 2056-2062.
l Donghuo Zhou & Jinren Ni, Effects of dynamic interaction on sediment laden turbulent flows, Journal of Geophysical Research, 1995, 100: 981-996.
l Jinren Ni & Yujia Hui, Velocity concentration relation in sediment laden flow, International Journal of Sediment Research, 1993, 8(2): 85-99.
l Jinren Ni & Guangqian Wang, Closure to “Vertical sediment distribution”, Journal of Hydraulic Engineering, ASCE, 1992, 118(10): 1460-1461.
l Jinren Ni & Guangqian Wang, Vertical sediment distribution, Journal of Hydraulic Engineering, ASCE, 1991, 117(9): 1181-1194.
l Guangqian Wang & Jinren Ni, The kinetic theory for dilute solid/liquid two-phase flows, International Journal of Multi-Phase flow, 1991, 17(2): 273-281.
l Jinren Ni & Guangqian Wang, On the two patterns of vertical distribution of suspended sediment concentration and their formation cause, International Journal of Sediment Research, 1991, 6(3): 55-72.
l Guangqian Wang & Jinren Ni, A kinetic theory for dilute particle concentration distribution, Journal of Engineering Mechanics, ASCE, 1990, 116(12): 2738-2748.
代表性中文論文:
l 倪晉仁、張仁, 河型成因的各種理論及其間關(guān)系, 地理學(xué)報, 1991年, 46卷3期, 366-372.
l 倪晉仁、王光謙, 泥石流的結(jié)構(gòu)兩相流模型: I. 地理學(xué)報, 1998年, 53卷1期, 66-76.
l 倪晉仁等, 泥石流的結(jié)構(gòu)兩相流模型: II. 地理學(xué)報, 1998年, 53卷1期, 77-86.
l 殷康前、倪晉仁, 濕地研究綜述, 生態(tài)學(xué)報, 1998年, 18卷5期, 539-546.
l 倪晉仁、周東火, 低濃度固液兩相流中泥沙垂線分布的攝動理論解, 水利學(xué)報, 1999年, 30卷5期, 1-5.
l 倪晉仁等, 低濃度固液兩相流中泥沙對紊動水流結(jié)構(gòu)的影響, 水利學(xué)報, 1999年, 30卷6期, 1-5.
l 倪晉仁、王隨繼, 論順直河流, 水利學(xué)報, 2000年, 31卷12期, 14-20.
l 倪晉仁、梁林, 水沙流中的泥沙懸。↖), 泥沙研究, 2000年第1期, 7-12.
l 倪晉仁、梁林, 水沙流中的泥沙懸。↖I), 泥沙研究, 2000年第1期, 13-19.
l 倪晉仁、王光謙, 高濃度恒定固液兩相流運動機理探析:I.理論, 水利學(xué)報, 2000年, 31卷5期, 22-26.
l 倪晉仁、王光謙, 高濃度恒定固液兩相流運動機理探析:II.應(yīng)用, 水利學(xué)報, 2000年, 31卷5期, 27-32.
l 倪晉仁、廖謙, 陣性泥石流運動與堆積的歐拉-拉格朗日模型, 自然災(zāi)害學(xué)報, 2000年, 9卷3期, 8-14.
l 倪晉仁等, 多組分流元模型在稀性泥石流堆積分選特征研究中的應(yīng)用, 水利學(xué)報, 2001年, 32卷2期, 16-23.
l 倪晉仁、方圓, 濕地泥沙環(huán)境動態(tài)評估方法及其應(yīng)用研究, 環(huán)境科學(xué)學(xué)報, 2000年, 20卷6期, 665-669.
l 倪晉仁、李英奎, 基于土地利用結(jié)構(gòu)變化的水土流失動態(tài)評估, 地理學(xué)報, 2001年, 56卷5 期, 611-621.
l 倪晉仁, 張劍, 基于自組織理論的黃土坡面細溝形成機理模型, 水利學(xué)報, 2001年, 32卷8期, 1-7.
l 倪晉仁, 韓鵬, 基于自組織理論的黃土坡面細溝發(fā)育特征分析, 水利學(xué)報, 2002年, 33卷第1期, 6-15.
l 倪晉仁、錢征寒, 論黃河功能性斷流, 中國科學(xué), 2002年, 32卷4期, 496-502.
l 倪晉仁等, 論河流生態(tài)環(huán)境需水, 水利學(xué)報, 2002 年, 33卷 9 期, 14-19.
l 倪晉仁等, 黃河下游河流最小生態(tài)環(huán)境需水量初步研究, 水利學(xué)報, 2002年, 33卷10期, 1-7.
l 倪晉仁、秦華鵬, 填海工程對潮間帶濕地生境損失的影響評估, 環(huán)境科學(xué)與學(xué)報, 2003年, 23卷3期, 345-349.
l 倪晉仁, 論泥沙災(zāi)害學(xué)體系建立的理論基礎(chǔ), 應(yīng)用基礎(chǔ)與工程科學(xué)學(xué)報, 2003年, 11卷 1期, 1-9.
l 倪晉仁等, 泥沙災(zāi)害鏈及其在災(zāi)害過程規(guī)律研究中的應(yīng)用, 自然災(zāi)害學(xué)報, 2004年, 13卷5期, 1-9.
l 倪晉仁、劉小勇, 黃河下游水資源轉(zhuǎn)化結(jié)構(gòu)及其變化規(guī)律, 中國科學(xué)(E輯), 2004年, 34卷 (增刊I), 103-116.
l 倪晉仁、王裕東, 黃河下游洪水輸沙效率及其調(diào)控,中國科學(xué)(E輯), 2004年, 34卷 (增刊I), 144-154.
l 倪晉仁、劉元元, 論河流生態(tài)修復(fù), 水利學(xué)報, 2006 年, 37卷9期, 1029-1037.
l 孔令裕、倪晉仁, 人工濕地去污模型的統(tǒng)一結(jié)構(gòu)特征, 生態(tài)學(xué)報, 2007年, 27卷4期, 1-6.
l 倪晉仁、高曉薇, 河流綜合分類及其生態(tài)特征分析:方法, 水利學(xué)報, 2011年, 42卷9期, 1009-1016.
l 倪晉仁、高曉薇, 河流綜合分類及其生態(tài)特征分析:應(yīng)用, 水利學(xué)報, 2011年, 42卷10期, 1177-1184.
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l 倪晉仁、王光謙、張紅武, 《固液兩相流基本理論及其最新應(yīng)用》, 科學(xué)出版社, 1991, 391.
l 倪晉仁、馬靄乃, 《河流動力地貌學(xué)》, 北京大學(xué)出版社, 1998, 396.
l 倪晉仁、李振山, 《風沙兩相流理論及其應(yīng)用》, 科學(xué)出版社, 2006, 204.
l 倪晉仁、王兆印、王光謙等, 《江河泥沙災(zāi)害形成機理及其防治》, 科學(xué)出版社, 2008, 681.
l 倪晉仁、李天宏、毛小苓等(譯),《四倍躍進》, 中華工商聯(lián)合出版社,2001, 415.
l 周海林、倪晉仁(執(zhí)行主編), 《城市河流生態(tài)修復(fù)手冊》, 社會科學(xué)文獻出版社, 2008, 273.
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l 倪晉仁、葉正芳, 溫麗麗, 垃圾滲濾液處理系統(tǒng)及方法, 專利號:ZL 2004 1 0074744.4
l 倪晉仁、朱秀萍, 一種用于深度處理垃圾滲濾液的方法, 專利號: ZL 201010222274.7
l 溫麗麗、倪晉仁等, 一種中老齡垃圾滲濾液處理方法,專利號: ZL 200710119367.5
l 倪晉仁等, 從黃姜加工到廢水處理一體化工藝, 專利號: ZL200610000162.0
l 倪晉仁等, 用催化溶劑法從黃姜提取皂素的生產(chǎn)工藝, 專利號: ZL 200910084842.9
l 朱秀萍、倪晉仁、程鵬, 一種黃姜廢水的深度處理方法, 專利號: ZL 201010222283.6
l 倪晉仁、朱秀萍、魏俊俊, 一種用于處理苯酚廢水的裝置及其方法, 專利號: ZL 201010222308.2
l 朱秀萍、倪晉仁, 一種用于深度處理制藥廢水的方法, 專利號: ZL 201010222306.3
l 曾明、倪晉仁、葉正芳, 一種對高氨氮低C/N比的廢水處理工藝及用途, 專利號: ZL 200710120657.1
l 倪晉仁、陳倩, 一步式去除廢水中碳氮污染物的方法, PCT/CN2010/074604
l 倪晉仁、陳倩, 用于生物脫氮的木糖氧化無色桿菌菌株及其應(yīng)用, 專利號: ZL 200910085187.9
l 倪晉仁、姚碩, 一種低溫生物脫氮的約氏不動桿菌菌株及其應(yīng)用, 專利號: ZL 201010543800.8
l 倪晉仁、仝國平、陳倩, 不同溶解氧條件下脫氮的銅綠假單胞菌菌株及其應(yīng)用,專利號: ZL 2010191919.5
l 倪晉仁、朱婷婷, 一種可高效降解苯并[a]芘的不動桿菌及其應(yīng)用, 專利號: ZL 201110047392.3
l 倪晉仁、朱婷婷, 一種可高效降解苯并[a]芘的短小芽孢桿菌及其應(yīng)用, 專利號: ZL 201110047402.3
l 倪晉仁、姚磊, 培養(yǎng)好氧顆粒污泥的裝置及其專用反應(yīng)器, 專利號: ZL 200910088569.7
l 陳倩、倪晉仁, 具有異養(yǎng)硝化-好氧反硝化能力的土壤桿菌及其在含氮廢水處理中的應(yīng)用, 專利號: ZL 200910083014.3
l 倪晉仁、瞿利建、陳倩, 利用異養(yǎng)硝化-好氧反硝化細菌強化AB工藝脫氮的方法, 專利號: ZL 201110147010.4
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l 環(huán)境科學(xué)與工程前沿 l 環(huán)境工程學(xué)科前沿研討班
l 水沙環(huán)境研究
l 專業(yè)英語
若干學(xué)術(shù)觀點
(1) 面向生態(tài)的水資源開發(fā)利用和管理是解決中國水問題的唯一出路。
主要觀點(《人民日報》,2001年3月6日第十一版)
進入21世紀后,傳統(tǒng)的工程型和資源型水資源開發(fā)利用和管理模式已不足以從根本上解決中國復(fù)雜的水問題,而且還可能會引起自然生態(tài)系統(tǒng)的嚴重退化。因而,必須在觀念上進行轉(zhuǎn)變,尋求能夠解決中國水問題的根本出路。 面向生態(tài)的核心就是以最小的水資源投入獲得最大的水生態(tài)服務(wù), 即獲得最大的自然-社會-經(jīng)濟綜合生態(tài)效益。消耗的物質(zhì)愈多,就意味著我們從自然生態(tài)系統(tǒng)索取的物質(zhì)愈多,從而對生態(tài)系統(tǒng)可能造成的損害也就愈大。面向生態(tài)的水資源在某些方面可以在負成本的條件下得以實現(xiàn),做到有利可圖。面向生態(tài)的水資源開發(fā)利用和管理模式是提高水資源利用效率、治愈水資源浪費的良方。 面向生態(tài),可以使水消耗和水污染更少,并使人們生活得更好。越是需要調(diào)水的地方,越需要面向生態(tài)。越是生態(tài)脆弱的地區(qū),越需要面向生態(tài)。 面向生態(tài),應(yīng)該變水資源供需導(dǎo)向為水資源生產(chǎn)率提高導(dǎo)向,變單純的分配定額制度為水資源的有償轉(zhuǎn)讓制度,按照面向生態(tài)的市場機制利用水資源、出租水資源、回收水資源、轉(zhuǎn)讓水資源、管理水資源,使節(jié)水者獲益。 在現(xiàn)有經(jīng)濟技術(shù)條件下,以不同地區(qū)的生態(tài)需求定開發(fā)利用的水資源量,以水定糧、以水定產(chǎn)、以水定草、以水定林、以水定發(fā)展。 我認為,面向生態(tài)的水資源開發(fā)利用是解決中國水問題的唯一出路。 上述觀點于2001年3月4日在國家主席出席的全國政協(xié)九屆四次會議民建、工商聯(lián)界聯(lián)組會上發(fā)言闡述, 后在人民日報、人民網(wǎng)、中國政協(xié)報報道或轉(zhuǎn)載;在香山科學(xué)會議第158次學(xué)術(shù)討論會“面向生態(tài)的水資源合理配置與調(diào)控”會議(2001年3月23-25日,倪晉仁、王浩、夏軍任會議執(zhí)行主席)上以“面向生態(tài)的水資源利用模式思考”為題報告,在中國科學(xué)基金上報道;全文詳見“倪晉仁, 面向生態(tài)的水資源合理配置與調(diào)控, 《科學(xué)前沿與未來》(第六集, 香山科學(xué)會議主編),中國環(huán)境科學(xué)出版社, 2002年12月, 19-26”。 (2) 黃河不斷流與功能性不斷流的河流調(diào)控目標有著本質(zhì)的不同。
主要觀點(倪晉仁、錢征寒, 論黃河功能性斷流, 中國科學(xué), 2002年32卷4期, 496-502)
首次提出黃河功能性斷流的概念,它本質(zhì)上不同于通常意義的“零流量”斷流,它是河道徑流量不能滿足河流基本功能最小需水量要求的特定事件,只有從功能上看待斷流事件才能觸及河流健康本質(zhì)。 黃河斷流系指河道水量減至為零的特殊現(xiàn)象, 只要尚存少許徑流就不被認為斷流; 黃河功能性斷流著眼河流功能受損衰竭的臨界狀態(tài), 即使河水仍未干枯也會被看作“斷流”. 其次, 前者屬于一種自然表象上的“絕對斷流”, 后者則類似一種內(nèi)在功能性的“相對斷流”. 在河道徑流明顯減少直至小于某臨界值時, 盡管黃河并未斷流, 但是黃河功能性斷流可能早已發(fā)生而且或許開始導(dǎo)致河流系統(tǒng)諸項(或某項)功能受損甚至暫時或永久地喪失. 黃河功能性斷流屬于一種不利于維護河流系統(tǒng)功能的事件, 它對各項功能的影響大小與斷流發(fā)生的時空范圍、頻度和功能的易損性有著密切關(guān)系.黃河斷流的影響不僅表現(xiàn)為河流功能受損的嚴重程度, 而且取決于受損河流功能的恢復(fù)能力. 黃河斷流后需要恢復(fù)的是流量不為零的表象景觀, 而黃河功能性斷流后需要恢復(fù)的則是健康河流的實際功能, 應(yīng)該從近期和遠期綜合考慮, 將現(xiàn)狀與后效優(yōu)化協(xié)調(diào).黃河斷流的現(xiàn)象必然會引出黃河功能性斷流的問題. 黃河表象不斷流與功能性不斷流的河流調(diào)控目標有著本質(zhì)的不同。 上述觀點于1997年10月31日~11月2日在中國科協(xié)舉辦的第27次“青年科學(xué)家論壇”港、澳、臺、大陸“環(huán)境-水利-地理-泥沙交叉科學(xué)前沿問題”討論會(倪晉仁、王光謙、李行偉任執(zhí)行主席)上報告,在《科技導(dǎo)報》1998年第4期上發(fā)布了青年科學(xué)家關(guān)于及時開展“黃河斷流問題研究”的建議;后在973課題支持下發(fā)表系列論文;目前,黃河等多條河流已將“從河流不斷流到河流功能性不斷流”作為河流健康維護的基本原則和努力目標。 (3) 泥沙災(zāi)害理論體系的建立是解決新時期江河水沙災(zāi)害問題的基礎(chǔ)。
主要觀點(倪晉仁, 論泥沙災(zāi)害學(xué)體系建立的理論基礎(chǔ), 應(yīng)用基礎(chǔ)與工程科學(xué)學(xué)報, 11 卷 1 期, 2003年, 1-9;倪晉仁、王兆印、王光謙,江河泥沙災(zāi)害形成機理及其防治研究,中國科學(xué)基金,1999年第5期,287-284)
提出了泥沙災(zāi)害、泥沙圈的概念和泥沙災(zāi)害學(xué)學(xué)科體系建立的框架。 泥沙災(zāi)害學(xué)是泥沙學(xué)、地貌學(xué)與災(zāi)害學(xué)學(xué)科交叉的產(chǎn)物, 它是描述泥沙在其侵蝕、輸移和沉積運動發(fā)生變異時造成災(zāi)禍過程及其防治方法的科學(xué)。泥沙災(zāi)害既具有類似于其它災(zāi)害的一般特性, 又具有自身的特性和規(guī)律。 泥沙災(zāi)害具有鏈鎖式反應(yīng)機制, 在一定條件下構(gòu)成泥沙災(zāi)害鏈。泥沙災(zāi)害的漸發(fā)特征和強次生災(zāi)害特征、時間積累效應(yīng)和異地傳輸效應(yīng)研究,是認識流域泥沙災(zāi)害過程規(guī)律和制定防治戰(zhàn)略的重要基礎(chǔ)。 作為相對獨立于過去四大災(zāi)害的系統(tǒng), 明確的運動物質(zhì)主體、固有的顆粒運動特性、獨特的泥沙災(zāi)害系統(tǒng)和不同的災(zāi)害防治方法形成了泥沙災(zāi)害學(xué)的特殊體系。 20世紀90年代以來,泥沙運動已成為近年來加劇江河洪災(zāi)引發(fā)“小水大災(zāi)”的根本原因之一,迫切需要從深層次揭示泥沙災(zāi)害形成規(guī)律和防治方法。鑒于此,1997年國家自然科學(xué)基金委員會與水利部聯(lián)合設(shè)立自然科學(xué)基金重大項目“江河泥沙災(zāi)害形成機理及其防治研究”(項目主持人為倪晉仁、王兆印、王光謙),開展了歷時5年的系統(tǒng)研究。項目完成后獲得“特優(yōu)”評價,成果集中反映在100多萬字的專著《江河泥沙災(zāi)害形成機理及其防治研究》中,主要成果獲得2010年國家科技進步二等獎。 (4) 受損河流生態(tài)修復(fù)的關(guān)鍵是其系統(tǒng)功能的恢復(fù)。
主要觀點:(詳見代表性中文論文:論河流生態(tài)環(huán)境需水,黃河下游河流最小生態(tài)環(huán)境需水量初步研究,論河流生態(tài)修復(fù), 濕地研究綜述等 4 篇相關(guān)中文論文被 CNKI《中國引文數(shù)據(jù)庫》他引約 800次)
輸沙功能是多沙河流要求滿足的一項重要系統(tǒng)功能,研究多沙河流的生態(tài)環(huán)境需水必須考慮河流的輸沙用水。一般確定河流生態(tài)環(huán)境需水量的計算方法,因其很少考慮多沙河流的生態(tài)環(huán)境需水特點而往往只適用于少沙河流。黃河生態(tài)環(huán)境需水中輸沙用水需求遠高于其他功能用水需求, 輸沙需水占生態(tài)環(huán)境需水的絕大部分。 黃河下游汛期最小生態(tài)環(huán)境需水量主要由輸沙用水的需求決定,當汛期輸沙需水得到滿足時, 不僅可以輸送全年的大部分泥沙, 而且河流其他功能用水需求可以自動得到滿足, 此時的生態(tài)環(huán)境需水量與輸沙需水量相當。 在非汛期,高村、艾山、利津三部對應(yīng)的各種功能所需臨界流量也以輸沙需水量為最大,但因該階段各個河段輸沙效率較低,可以優(yōu)先考慮河流污染防治功能與河流生態(tài)功能,取其所需臨界流量中較大的一個作為河流生態(tài)環(huán)境需水量。 非汛期輸沙需水得到滿足時,同樣可以滿足河流其他功能的用水需求, 但因輸沙效率較低而導(dǎo)致相應(yīng)的水資源浪費。根據(jù)多沙河流生態(tài)環(huán)境需水的特點, 可利用水利樞紐進行適當?shù)乃辰M合調(diào)控,將非汛期來沙集中在汛期輸送, 從而達到減輕河道淤積,降低生態(tài)環(huán)境需水量,提高水資源利用效率的目的。 根據(jù)水資源在河流系統(tǒng)中的不同服務(wù)目標, 將黃河下游各主要水文斷面的水資源劃分為生態(tài)環(huán)境水、資源水和災(zāi)害水3個組成部分(簡稱“三水”), 并給出了50多年來“三水”的相互轉(zhuǎn)化情況及其變化規(guī)律。 以提高洪水輸沙用水效率為目標, 采用開環(huán)控制和反饋控制對洪水輸沙過程調(diào)控進行了模擬與仿真,指出當黃河下游花園口以下河段含沙量小于20kg/m3時, 流量對輸沙用水量減小有很好的調(diào)控作用;含沙量為20 kg/m3時, 適宜的調(diào)控流量范圍是2390~2900 m3/s。 以河流系統(tǒng)諸功能與河流健康之間的關(guān)系為主線,從人與河流關(guān)系的發(fā)展與變化出發(fā),深入探討了原始自然階段、工程控制階段、污染治理階段和河流生態(tài)系統(tǒng)修復(fù)和改善等四個階段的河流特點和治理條件,分析了各個階段河流系統(tǒng)平衡的特征和影響因素,建立了河流健康診斷指標體系,提出了河流生態(tài)修復(fù)的主要原則。河流生態(tài)修復(fù)的總體目標是恢復(fù)河流系統(tǒng)健康,實現(xiàn)人與河流的和諧共存。明確河流健康、河流功能、功能要素和生態(tài)修復(fù)措施四個層次的關(guān)系是實現(xiàn)河流生態(tài)修復(fù)基礎(chǔ)。 |