張仁鐸

張仁鐸

張仁鐸,男,博士,中山大學環境科學與工程學院教授、博士生導師。1993年在美國懷俄明大學任教,1998年成為該校終身教授,2002年成為該校正教授。“美國土壤學會雜誌”(SSSAJ)、國際“環境質量雜誌”(JEQ)、 國際“水文學雜誌”(J. Hydrology)的編委和國際“土壤與沉積物雜誌”(J. Soils and Sediments)編委。在美國主持了30多項科研項目(總經費500多萬美元),國內主持8項國家自然科學基金課題(重點項目2項、海外傑出青年基金一項、面上項目5項)。獲美國懷俄明大學優秀導師獎、卓越教授獎,獲美國土壤科學學會(SSSA)Fellow獎和美國農業科學學會(ASA) Fellow獎(會士獎,這些科學學會的最高獎勵)。共發表SCI收錄學術論文250多篇,出版學術專著6部。

基本介紹

  • 中文名:張仁鐸
  • 畢業院校:美國亞利桑那大學
  • 學位/學歷:博士
  • 專業方向:土壤和水科學等
  • 任職院校:中山大學
人物經歷,教育經歷,工作經歷,講授課程,科研方向,科研項目,獲獎情況,論著一覽,

人物經歷

教育經歷

·1978-1982 學士, 武漢水利電力大學(現屬武漢大學),水利工程
·1984-1985 碩士, 美國亞利桑那大學,土壤和水科學
·1986-1990 博士, 美國亞利桑那大學,土壤和水科學,兼修數學、計算機和水文學

工作經歷

·1986-1990 助研, 美國亞利桑那大學, 土壤和水科學系及數學系
·1990-1993博士後, 美國農業部國家實驗室(加州大學)
·1993-1997 助理教授, 美國懷俄明大學,再生資源系
·1997-2001 副教授, 美國懷俄明大學, 再生資源系
·2002-2005 教授, 美國懷俄明大學, 再生資源系
·2001-2004 教育部“長江學者獎勵計畫”特聘教授, 武漢大學,水利工程系
·2004-現在 中山大學,環境科學與工程學院,博士生導師,廣東省環境污染控制與修復技術重點實驗室副主任。

講授課程

1. 環境微生物學(本科生,研究生)
2. 空間變異理論及套用(研究生)
3. 土壤水動力學(研究生)
4. 環境水文學(研究生)

科研方向

1.污染物質在土水環境中的物理、化學和生物遷移轉化過程研究
2.土壤溫室氣體及土壤碳匯研究
3.污染土水環境的生物和微生物治理研究
4.地下水資源污染修復與控制
5.流域非點源污染研究
6.時空變異理論和地質統計方法在環境問題中的運用
7.水土環境模擬方法研究

科研項目

美國任職期間,從美國自然科學基金會、農業部、環保局、能源部、地質局、州政府、大學及其它有關的資助系統申請到500多萬美元的科研經費,承擔了30多項科研項目。近年來在中國承擔的代表性科研項目:
1.土壤水動力參數的尺度效應和空間變異性,國家自然科學基金項目(優秀創新項目) (主持人), 2002-2005。
2.寧蒙河套灌區水平衡機制及耗水量研究,國家自然科學基金重點項目(主持人之一),2002 -2006。
3.三維地下水流場新測量方法和計算方法的研究,國家自然科學基金項目(主持人), 2006-2009。
4.污染物的擴散、摻混及輸移理論,國家自然科學基金項目(海外傑出青年項目) (主持人之一),2006-2009。
5.礦山污染生態修復理論與技術研究,廣東省自然科學基金研究團隊項目(主持人之一), 2007-2009。
6.土壤碳匯的研究:物理、化學和生物過程的耦合,國家自然科學基金項目(主持人), 2008-2010。
7.珠三角典型土壤污染的生態和健康效應與修復機制,教育部專項科研業務費重大項目培育計畫項目(主持人), 2010-2011。
8.農業面源污染物運移轉化及其環境效應,國家自然科學基金重點項目(主持人), 2011-2014。
9.生物碳對土壤碳匯和土壤溫室氣體減排的機理研究,國家自然科學基金項目(主持人), 2012-2015。
10. 土壤溫室氣體的時空變異性及尺度效應,國家自然科學基金項目(主持人), 2015-2018。
11.農業水資源的最佳管理:減少面源污染及其對環境的負面效應,國家自然科學基金項目(國際(地區)合作與交流項目)(主持人), 2016-2017。

獲獎情況

1. 優秀導師獎 (美國懷俄明大學,1997,1998)
2. 卓越教授獎 (美國懷俄明大學,1999)
3. “先鋒號”獎 (美國懷俄明大學,2003)
4. 美國農業科學學會(ASA)Fellow獎(2004)(該科學學會的最高獎勵)
5. 美國土壤科學學會(SSSA) Fellow獎(2004)(該科學學會的最高獎勵)

論著一覽

發表SCI收錄學術論文學術論文250多篇,出版學術專著6部。代表性論文如下:
1.Zhang, R. 2005. Applied geostatistics in environmental science. Science Press USA Inc.
2.張仁鐸 著,2005,《空間變異理論及套用》,科學出版社。
3.Zhang, R., A. W. Warrick and D. E. Myers, 1990. Variance within a finite domain as a function of sample support size. Math Geology 22:107-121.
4.Zhang, R., A. W. Warrick and D. E. Myers, 1992. Improvement of soil textural estimates using spectral properties. Geoderma 52:223-234.
5.Zhang, R., D. E. Myers, and A. W. Warrick, 1992. Estimation of spatial distribution of soil chemicals using pseudo-cross-variograms. Soil Science Society of America Journal 56:1444-1452.
6.Zhang, R., K. Huang and M. Th. van Genuchten, 1993. An efficient Eulerian-Lagrangian method for solving convection-dispersion transport problems in steady and transient flow fields. Water Resources Research 29:4131-4138.
7.Zhang, R., A. W. Warrick, and D. E. Myers, 1994. Heterogeneity, plot shape effect and optimum plot size. Geoderma 62:183-197.
8.Zhang, R., and M. Th. van Genuchten, 1994. New models for the unsaturated soil hydraulic properties. Soil Science 158:77-85.
9.Zhang, R., K. Huang, and J. Xiang, 1994. Solute transport in large homogeneous and heterogeneous soils. Advances in Water Resources 17:317-324.
10.Yang, J. R. Zhang, and J. Wu, 1996. An analytical solution of macrodispersivity for adsorbing solute transport in unsaturated soils. Water Resources Research 32:355-362.
11.Zhang, R., J. D. Hamerlinck, S. P. Gloss, and L. Munn, 1996. Determination of non-point source pollution using GIS and numerical models. Journal of Environmental Quality 25:411-418.
12.Zhang, R., and J. Yang, 1996. Iterative solution of a stochastical differential equation: an efficient method for simulating soil variability. Geoderma 72:75-88.
13.Zhang, R., 1997. Determination of soil sorptivity and hydraulic conductivity from the disc infiltrometer. Soil Science Society of America Journal 61:1024-1030.
14.Zhang, R., P. Shouse, and S. Yates, 1997. Use of pseudo-crossvariograms and cokriging to improve estimates of soil solute concentrations. Soil Science Society of America Journal 61:1342-1347.
15.Zhang, R., 1997. Infiltration models for the disc infiltrometer. Soil Science Society of America Journal 61:1597-1603.
16.Zhang, R., 1998. Estimating soil hydraulic conductivity and macroscopic capillary length from the disc infiltrometer. Soil Science Society of America Journal 62:1513-1521.
17.Zhang, R., P. Shouse, and S. Yates, 1999. Estimates of soil nitrate distributions using cokriging with pseudo-crossvariograms. Journal of Environmental Quality 28:424-428.
18.Zhang, R., 2000. A generalized transfer function model for solute transport in heterogeneous soils. Soil Science Society of America Journal 64:1959-1602.
19.Zhang, R., A. L Wood, C G. Enfield. 2003. Stochastical analysis of surfactant enhanced remediation of DNAPL contaminated soils. Journal of Environmental Quality 32:957-965.
20.Hao, X., R. Zhang, and A. Kravchenko. 2005. A Mass-conservative Switching Method for Simulating Saturated-unsaturated Flow. Journal of Hydrology 311: 254-265.
21.Luo, H., G. Liu, R. Zhang, and S. Jin. 2009. Phenol degradation in microbial fuel cells. Chemical Engineering Journal 147: 259–264.(獲“2009年中國百篇最具影響國際學術論文”稱號)
22.Sheng, F., K. Wang,R. Zhang, and H. Liu. 2009. Characterizing soil preferential flow using iodine–starch staining experiments and the active region model. Journal of Hydrology 367: 115–124.
23.Pan, R. L. Cao, R. Zhang. 2009. Combined effects of Cu, Cd, Pb, and Zn on the growth and uptake of consortium of Cu-resistant Penicillium sp. A1 and Cd-resistant Fusarium sp. A19. Journal of Hazardous Materials 171: 761–766
24.Wang, K., R. Zhang, Y. Hiroshi. 2009. Characterizing heterogeneous soil water flow and solute transport using information measures. Journal of Hydrology 370: 109–121.
25.Zhang, J., Z. Lin, R. Zhang, and J. Shen. 2010. Effects of Simulated Rainfall Events on the Soil Carbon Transformation, Australian Journal of Soil Research, 48: 404–412. (評選為“特色論文”).
26.Pan, R., L. Cao, H. Huang, R. Zhang, and Yu Mo,2010. Biosorption of Cd, Cu, Pb, and Zn from aqueous solutions by the fruiting bodies of jelly fungi (Tremella fuciformis and Auricularia polytricha). Applied Microbiology and Biotechnology, 88:997–1005.
27.Wang, K., and R. Zhang, 2011. Heterogeneous soil water flow and macropores described with combined tracers of dye and iodine. Journal of Hydrology,397: 105–117.
28.Tang, J., Y. Mo, J. Zhang, and R. Zhang,2011, Influence of biological aggregating agents associated with microbial population on soil aggregate stability, Applied Soil Ecology 47:153–159.
29.Lin, Z., and R. Zhang, 2012, Effects of climate change and elevated atmospheric CO2 on soil organic carbon: a response equation, Climatic Change 113:107–120.
30.Chen, S., G. Liu, R. Zhang, B. Qin, Y. Luo, 2012. Development of the microbial electrolysis desalination and chemical-production cell for desalination as well as acid and alkali productions, Environmental Science & Technology 46:2467?2472.
31.Lin, Z.and R. Zhang, 2012, Dynamics of soil organic carbon under uncertain climate change and elevated atmospheric CO2, Pedosphere, 22(4): 489-496.
32.Zhang, C., S. Chen, G. Liu, R. Zhang, and J. Xie, 2012,Characterization of the Strain Pseudomonas sp. Q1 in the Microbial Fuel Cell for Treatment of Quinoline Contaminated Water, Pedosphere, 22(4): 528-535.
33.Yu, L., J. Tang, R. Zhang, Q. Wu, and M. Gong, 2012, Effects of biochar application on soil methane emission at different soil moisture levels, Biology and Fertility of Soil,DOI 10.1007/s00374-012-0703-4
34. Yang, X., S. Huang, Q. Wu, and R. Zhang, 2012. Nitrate reduction coupling with microbial oxidation of sulfide in river sediments, Journal of Soils and Sediments DOI 10.1007/s11368-012-0542-9
35.Qin, B., H. Luo, G.i Liu, R. Zhang, S. Chen, Y. Hou, and Y. Luo. 2012. Nickel ion removal from wastewater using the microbial electrolysis cell. Bioresource Technology, 121: 458–461.
36.Luo, Y, F. Zhang, B. Wei, G. Liu, R. Zhang, and B.E. Logan. 2013. The use of cloth fabric diffusion layers for scalable microbial fuel cells,Biochemical Engineering Journal 73: 49– 52.
37.Deng, Z., R. Zhang, Y. Shi, L. Hu, H. Tan, and L. Cao. 2013. Enhancement of phytoremediation of Cd- and Pb-contaminated soils by self-fusion of protoplasts from endophytic fungus Mucor sp. CBRF59, Chemosphere 91: 41–47.
38.Wu, Q., J. Zhang, R. Zhang, N. Xu, and C. Li. 2013. The source and diagenesis of sediment organic matter in the upper Pearl River Estuary as indicated by amino sugars. Journal of Soils and Sediments, 13:943–952.
39.Ouyang L., and R. Zhang. 2013. Effects of biochars derived from different feedstocks and pyrolysis temperatures on soil physical and hydraulic properties, J Soils Sediments 13:1561–1572.
40.Hou, Y., H. Luo, G. Liu, R. Zhang, Y. Luo, B. Qin, and S. Chen. 2013. DOW CORNING 1-2577 Conformal Coating as an efficient diffusion material for cathode in the microbial fuel cell, Frontiers of Environmental Science and Engineering DOI 10.1007/s11783-013-0532-1
41.Hou Y. , K. Li, H. Luo, Liu G., R. Zhang, B. Qin, S. Chen. 2013. Using crosslinked polyvinyl alcohol polymer membrane as a separator in the microbial fuel cell. Frontiers of Environmental Science & Engineering DOI 10.1007/s11783-013-0534-z
42.Chen, S., H. Luo, G. Liu, R. Zhang, H. Wang, B Qin, and Y. Hou. 2013. Integrated utilization of seawater using a five-chamber bioelectrochemical system. Journal of Membrane Science, 444: 16–21.
43.Yang, X., J. Ye, L. Lyu, Q. Wu, and R. Zhang. 2013. Anaerobic biodegradation of pyrene by paracoccus denitrificans under various nitrate/nitrite reducing conditions. Water, Air, & Soil Pollution 224:1578 DOI 10.1007/s11270-013-1578-1
44.Yang, X., S. Chen, R. Zhang. 2013. Utilization of two invasive free-floating aquatic plants (Pistia stratiotes and Eichhornia crassipes ) as sorbents for oil removal, Environ Sci Pollut Res DOI 10.1007/s11356-013-2232-6.
45.Yang, X., S. Huang, Q. Wu, and R. Zhang. 2013. Diversity and vertical distributions of sediment bacteria in an urban river contaminated by nutrients and heavy metals. Frontiers of Environmental Science & Engineering 7(6): 851–859.
46.Wang, K., Zhang, and F. Sheng. 2013. Characterizing heterogeneous processes of water flow and solute Transport in soils using multiple tracer experiments. Vadose Zone Journal, doi:10.2136/vzj2012.0125.
47.Ouyang, L., F. Wang, J. Tang, L. Yu, and R. Zhang. 2013. Effects of biochar amendment on soil aggregates and hydraulic properties, Journal of Soil Science and Plant Nutrition 13 (4), 991-1002.
48.Deng, Z., R. Zhang, Y. Shi, L. Hu, H. Tan, and L. Cao. 2013. Characterization of Cd-, Pb-, Zn-resistant endophytic Lasiodiplodia sp. MXSF31 from metal accumulating Portulaca oleracea and its potential in promoting the growth of rape in metal-contaminated soils. Environmental Sciences and Pollution Research, DOI 10.1007/s11356-013-2163-2.
49.Luo, H., G. Liu, R. Zhang, Y. Bai, S. Fu, Y. Hou, 2014. Heavy metal recovery combined with H2 production from artificialacid mine drainage using the microbial electrolysis cell, Journal of Hazardous Materials 270:153–159.
50.Jiang, X., L. Cao, and R. Zhang. 2014. Changes of labile and recalcitrant carbon pools under nitrogen addition in a city lawn soil. Journal of Soils and Sediments, 14:515–524
51.Wang, K., R. Zhang, and H. Chen. 2014. Drainage process analyses for agricultural non-point source pollution from irrigated paddy systems. ASCE Journal of Irrigation and Drainage Engineering. 140(1), DOI: 10.1061/(ASCE)IR.1943-4774.0000662.
52.Luo, H., B. Qin, G. Liu, R. Zhang, Y. Tang, and Y. Hou. 2013. Selective recovery of Cu2+ and Ni2+ from wastewater using the bioelectrochemical systems, Frontiers of Environmental Science & Engineering, 7(4): 526-530.
53.Ouyang, L., L. Yu, and R. Zhang. 2014. Effects of amendment of different biochars on soil carbon mineralization and sequestration. Soil Research, 52: 46–54.
54.Jiang, X., L. Cao, and R. Zhang. 2014. Effects of addition of nitrogen on soil fungal and bacterial biomass, and carbon utilization efficiency in a city lawn soil. Soil Research, 52: 97–105.
55.Hu, L., L. Cao, and R. Zhang. 2014. Bacterial and fungal taxon changes in soil microbial community composition induced by short-term biochar amendment in red oxidized loam soil, World Journal of Microbiology and Biotechnology 30:1085–1092.
56.Jiang, X., L. Cao, R. Zhang, L. Yana, Y. Mao, and Y. Yang. 2014. Effects of nitrogen addition and litter properties on litterdecomposition and enzyme activities of individual fungi, Applied Soil Ecology 80: 108–115
57.Yang X, Guo M, Wu Y, Wu Q, Zhang R, 2014. Removal of Emulsified Oil from Water by Fruiting Bodies of Macro-Fungus (Auricularia polytricha). PLoS ONE 9(4): e95162. doi:10.1371/journal.pone.0095162
58.Shen, X., J. Zhang, and Renduo Zhang, 2014. Phosphorus metabolic disorder of Guizhou semi-fine wool sheep, PLoS ONE 9(2): e89472.
59.Zheng, S., H. Huang, R. Zhang, and L. Cao. 2014. Removal of Cr(VI) from aqueous solutions by fruiting bodies of the jelly fungus (Auricularia polytricha). Appl Microbiol Biotechnol., 98:8729–8736.
60.Ouyang L., Q. Tang, L. Yu, and R. Zhang. 2014. Effects of amendment of different biochars on soil enzyme activities related to carbon mineralization. Soil Research, 52:706–716.
61.Deng, Z., X. Cao, R. Zhang,L. Cao. 2014. Enhanced phytoremediation of multi-metal contaminated soils by interspecific fusion between the protoplasts of endophytic Mucor sp. CBRF59 and Fusarium sp. CBRF14. Soil Biology & Biochemistry, 77: 31-40.
62.Luo, H., S. Fu, G. Liu, R. Zhang, Y. Bai, and X. Luo. 2014. Autotrophic biocathode for high efficient sulfate reduction in microbial electrolysis cells, Bioresource Technology, 167, 462-468.
63.Liu, G., H. Luo, Y. Tang, S. Chen, R. Zhang, and Y. Hou. 2014. Tetramethylammonium hydroxide production using the microbial electrolysis desalination and chemical-production cell. Chemical Engineering Journal, 258:157 – 162.
64.Hou, Y., H. Luo, G. Liu, R. Zhang, J. Li, and S. Fu. 2014. Improved hydrogen production in the microbial electrolysis cell by inhibiting methanogenesis using ultraviolet irradiation. Environmental Science & Technology, 48 (17): 10482–10488.
65.Liu, G., H. Luo, H. Wang, B. Wang, R. Zhang, and S. Chen. 2014. Malic acid production using a biological electrodialysis with bipolar membrane. Journal of Membrane Science, 471: 179–184.
66.Lin, X., K. Spokas, R. Venterea, R. Zhang, J. Baker, and G.W. Feyereisen. 2014. Assessing Microbial Contributions to N2O Impacts Following Biochar. Agronomy, 4:478-496; doi:10.3390/agronomy4040478.
67.Liu, G., S. Yu, H. Luo, R. Zhang, S. Fu, and X. Luo. 2014. Effects of salinity anions on the anode performance in bioelectrochemical systems, Desalination 351, 77–81.
68.Chen, S., H. Luo, Y. Hou, G. Liu, R. Zhang, and P. Qing. 2015. Comparison of the removal of monovalent and divalent cations in the microbial desalination cell. Frontiers of Environmental Science & Engineering, 9(2): 317–323.
69.Tao, Q., J. Luo, J. Zhou, S.Zhou, G. Liu, and R. Zhang. 2014. Effect of dissolved oxygen on nitrogen and phosphorus removal and electricity production in microbial fuel cell, Bioresource Technology, 164:402-407.
70.Teng, W., G. Liu, H. Luo, R. Zhang, and Y. Xiang, 2015. Simultaneous sulfate and zinc removal from acid wastewater using an acidophilic andautotrophic biocathode, Journal of Hazardous Materials 11:58-65.
71.Wang, K., Z. Lin, and R. Zhang. 2016. Impact of phosphate mining and separation of mined materials on the hydrology and water environment of the Huangbai River basin, China, Science of the Total Environment 543: 347–356.
72.Wang, K., M. Wu, and R. Zhang. 2016. Water and solute fluxes in soils undergoing freezing and thawing. Soil Science, 181 (5): 193–201,doi: 10.1097/SS.0000000000000148.
73.Wu,Y., R. Han,·X. Yang, X. Fang, X. Chen, D. Yang, and R. Zhang. 2016. Correlating microbial community with physicochemical indices and structures of a full-scale integrated constructed wetland system. Applied Microbiology and Biotechnology DOI 10.1007/s00253-016-7526-4.
74.Wang, W., L. Cao, H. Tan, and R. Zhang. 2016. Endophytic bacterial and fungal microbiota in sprouts, roots and stems of rice (Oryza sativa L.), Microbiological Research, 188-189: 1-8.
75.Wang, W., L. Cao, H. Tan, and R. Zhang. 2016. Illumina-based analysis of core actinobacteriome in roots, stems and grains of rice,Microbiological Research, 190:12-18.
76.Luo, H., S. Yu, G. Liu, R. Zhang, and W. Teng. 2016. Effect of in-situ immobilized anode on performance of the microbial fuel cell with high concentration of sodium acetate,Fuel, 182: 732–739.
77.Wang, W., L. Cao, H. Tan, and R. Zhang, 2016. Nitrogen removal from synthetic wastewater using single and mixed culture systems of denitrifing fungi, bacteria, and actinobacteria, Applied Microbiology and Biotechnology, 100: 9699–9707.
78.Luo, H., X. Cheng, G. Liu, Y. Zhou, Y. Lu, R. Zhang, X. Li, and W. Teng. 2016. Citric acid production using a biological electrodialysis with bipolar membrane,Journal of Membrane Science, 532: 122–128.
79.Wu Y.,, R. Han, X. Yang, Y. Zhang, and R. Zhang. 2017. Long-term performance of an integrated constructed wetland for advanced treatment of mixed wastewater, Ecological Engineering 99: 91–98.
80.Hou, Y., R. Zhang, Z. Yu, L. Huang, Y. Liu, and Z. Zhou, 2017. Accelerated azo dye degradation and concurrent hydrogen production in single-chamber photocatalytic microbial electrolysis cell, Bioresource Technology 224: 63–68.
81.Wang, W., Y. Zhai, L. Cao, H. Tan, and R. Zhang. Improvement of rice seedling growth and nitrogen use efficiency by seed inoculation with endophytic denitrifiers, Environ Sci Pollut Res (2017) 24:14477–14483.
82.Chen, G., Z. Zhang, Z. Zhang, and R. Zhang, 2017. Influence of biochar addition on the denitrification process and N2O emission in Cd-contaminated soil, Water, Air, & Soil Pollution 228: 47-57, DOI 10.1007/s11270-016-3228-x
83.Xiang, Y., G. Liu, R. Zhang, Y. Lu, and H. Luo, 2017. High-efficient acetate production from carbon dioxide using a bioanode microbial electrosynthesis system with bipolar membrane, Bioresource Technology 233: 227–235.
84.Zhang, Z., R. Zhang, A. Cescatti, G. Wohlfahrt, N. Buchmann, J. Zhu, G. Chen, F. Moyano, J. Pumpanen, T. Hirano, K. Takagi, and L. Merbold. 2017. Effect of climate warming on the annual terrestrial net ecosystem CO2 exchange globally in the boreal and temperate regions, Scientific Reports 7: 3108 | DOI:10.1038/s41598-017-03386-5.
85.Wang, W., Y. Lu, H. Luo, G. Liu, and R. Zhang. 2017. Effect of improved gas diffusion cathode on carbamazepine removal using the electro-Fenton process, RSC Advances, 7: 25627–25633
86.Li, X., Y. Lu, H. Luo, G. Liu, and R. Zhang. 2017. Microbial stratification structure within cathodic biofilm of the microbial fuel cell using the freezing microtome method, Bioresource Technology 241: 384–390.
87.Xiang, Y., G. Liu, R. Zhang, Y. Lu, and H. Luo. 2017. Acetate production and electron utilization facilitated by sulfate-reducing bacteria in a microbial electrosynthesis system,Bioresource Technology 241: 821–829
88.Lu, Y., H. Luo, K. Yang, G. Liu, R. Zhang, X. Li, and B. Ye. 2017. Formic acid production using a microbial electrolysis desalination and chemical-production cell, Bioresource Technology, 243: 118–125.
89.Lin, Z., R. Zhang, S. Huang, and K. Wang. 2017. Impact of chemical leaching on permeability and cadmium removal from fine-grained soils, Environmental Science and Pollution Research, 24:18229–18239, DOI 10.1007/s11356-017-9523-2
90.Luo, H., G. Xu, Y. Lu, G. Liu, R. Zhang, X. Li, X. Zheng, and M. Yu. 2017. Electricity generation in the microbial fuel cell using yogurt wastewater under an alkali condition,RSC Advances, 7: 32826–32832.
91.Lu, Y., G. Liu, H. Luo, and R. Zhang. 2107. Efficient in-situ production of hydrogen peroxide using a novel stacked electrosynthesis reactor, Electrochimica Acta 248: 29–36.
92.Ye, B., H. Luo, Y. Lu, G. Liu, R. Zhang, and X. Li. 2017. Improved performance of the microbial electrolysis desalination and chemical-production cell with enlarged anode and high applied voltages, Bioresource Technology 244: 913–919.
93.Liu, Y., L. Cao, H. Tan, and R. Zhang. 2017. Surface display of ACC deaminase on endophytic Enterobacteriaceae strains to increase saline resistance of host rice sprouts by regulating plant ethylene synthesis, Microbial Cell Factories 16:214 DOI 10.1186/s12934-017-0831-5
94.Chen, G., Z. Zhang, Z. Zhang, and R. Zhang*. 2018. Redox-active reactions in denitrification provided by biochars pyrolyzed at different temperatures, Journal: Science of the Total Environment, 615: 1547–1556.

相關詞條

熱門詞條

聯絡我們