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SECIENTIFIC PROGRAM
Please click the Session name and item to get detailed information
Poster Presentation
Date & Time: Tuesday-Thursday May 18-20, 2010
Location: NCKU Activity Center Gallery,
Time: May 18-19, 13:30-14:30 ; May 20 2010, 13:30-15:50
Poster Contest
Date & Time: Thursday May 20, 2010
Location: NCKU Activity Center Gallery,
Time: May 20 2010, 13:30-15:30
NOTE: The abstracts which join Poster Contest were marked by red color.
Session A
Abstract |
Title
|
|
Authors
|
A-001 |
Geogenic and anthropogenic sources of arsenic in North Portugal |
|
M. Inácio, L. Pinto, V. Pereira & E. Ferreira da Silva |
A-002 |
Arsenic contaminated groundwater from parts of Middle Ganga Plain, Uttar Pradesh, India |
|
B.A. Shah |
A-003 |
Groundwater arsenic contamination in Ganga basin of Bihar, India |
|
D.S. Mishra |
A-004 |
Distribution characteristics of high-fluoride and high-arsenic groundwater and countermeasures in Huzhou area of Zhejiang Province |
|
Y. Jiang, X. Zhou, J. Jia, Q. Zhou, Y. Li & Y. Li |
A-005 |
Arsenic contamination in the sediments of the Daliao river system in China |
|
C. Lin, M.C. He & S.L. Wang |
A-006 |
Arsenic enrichment and sources in surface water and soil in Yarlung Tsangpo and Singe Tsangpo drainages in Tibet |
|
S.H. Li, M.G. Wang, B.S. Zheng, Q. Yang & Y. Zheng |
A-007 |
Arsenic contamination in groundwater of An Giang and Dong Thap provinces in Vietnam |
|
S. Bang, T.H. Hoang, K.W. Kim & M.H. Nguyen |
A-008 |
Arsenic distributions in rivers around the world largest antimony mine of Xikuangshan in Hunan province of China |
|
X. Wang, M. He, X. Lu & J. Xi |
A-009 |
Arsenic species in the high arsenic groundwater of Shanxi, China |
|
Z. Chen, J.-H. Liang & Y.-G. Zhu |
A-010 |
Arsenic speciation in dust and rain |
|
K.S. Patel, M. Rajak, W. Corns & B. Blazhev |
A-011 |
Multivariate and hydrogeochemical analyses of arsenic-affected aquifers: Implication to arsenic release processes |
|
C.-W. Liu, Y.-H. Kao, S.-W. Wang & J.-J. Lee |
A-012 |
Subsurface sediment analysis of Gangetic aquifer: arsenic binding characteristics |
|
S. Kar, J.P. Maity, J.-S. Jean & C.-C. Liu |
A-013 |
Geochemistry and arsenic scenario in Shuklaganj area of Kanpur-Unnao District, Uttar Pradesh, India |
|
V.S. Chauhan, M.Yunus & N. Sankararamakrishnan |
A-014 |
Study of arsenic mobilization through the sediments of the Padma-Jamuna Belt |
|
M. Sarifuzzaman, M.N.A. Siddique, M. A. Rahman, E. Ahmed & A.M.S. Alam |
A-015 |
Temporal variations in arsenic and 3H/3He ages of groundwater from West Bengal, and their implications |
|
J.M. McArthur, D.M. Banerjee, S. Sengupta, A. Sarkar, P. Ravenscroft, S. Klump, R. Kipfer & B. Disch |
A-016 |
Geochemical characteristics of the arsenic-enriched groundwater from India, Bangladesh and Taiwan |
|
B. Nath, J.-S. Jean, J.P. Maity, H.-J. Yang M.-K. Lee, R. Hazra & D. Chatterjee |
A-017 |
Arsenic distribution and the influential factors in the Guandu wetland of northern Taiwain |
|
S.-W. Wang,C.-W. Liu, J.-S. Chen & Y.-C. Chen |
A-018 |
Biogeochemical interactions among the arsenic, iron, humic substances, and sulfate-reducing bacteria in mud volcanoes in southern Taiwan |
|
C.-C. Liu, J.P. Maity, J.-S. Jean & S. Kar |
A-019 |
Spatial distribution and temporal trend of arsenic content in environmental matrices in the lagoon of Venice |
|
C. Cantaluppi |
A-020 |
Distribution of arsenic in weathered rocks in Sri Lanka |
|
U.de S. Jayawardena |
A-021 |
Contribution of reducing bacterial to mobilization and transformation of arsenic in groundwater |
|
K.-L. Lu, S.-W. Wang & C.-W. Liu |
A-022 |
Groundwater transport modeling in arsenic affected regions in Nadia and North 24-Paraganas districts, West Bengal, India |
|
B. Chakravorty & N.C. Ghosh |
A-023 |
Arsenic exposure in coal burning area of central India |
|
K.S. Patel, M. Garhewal, N.K. Jaiswal, R.K. Dewangan, W. Corns, B. Chen & B. Blazhev |
A-024 |
The study of purification of the soil and water from arsenic+C20 |
|
T. Dovbysheva & A.Yasko |
A-025 |
Arsenic pollution in stream sediments around the abandoned Torghabeh gold mine, Mashhad, Iran |
|
M. Saeb, A. Abedi, M. Parvaresh |
A-026 |
Distribution of high arsenic groundwater and its methods of safety water-supply in the north of China |
|
F. Zhang |
A-028 |
Correlating spatial arsenic concentrations in groundwater and rocks by co-kriging and sequential gaussian co-simulation |
|
I. Iskandar |
A-029 |
Inverse optimization for determining input and parameter of ANN in prediction of groundwater arsenic concentration |
|
Yi-Ming Kuo |
A-030 |
Experimental simulation of arsenic retention by sediments of a coastal aquifer following seawater intrusion |
|
M. Gasparon |
A-031 |
Management of groundwater in farmed pond area using Risk-based Regulation |
|
Jun-Ying Huang |
A-032 |
Arsenic contamination and the major source in Mongolia |
|
B.Tumenbayar |
A-033 |
Arsenic in marine sediments: modeling the link between biogeochemistry, bioavailability and ecotoxicology |
|
F. Battaglia-Brunet, C. Joulian, A.-G. Guezennec, M.-C. Dictor, P. Bataillard, N. Marmier, C. Hurel, A. Barats, V. Philippini, Y. Mamindy-Pajany, M. Romeo, P. Bertin, S. Koechler, F. Séby & A. Moulin |
A-034 |
Effects of anaerobic activation of indigenous bacteria on geochemical behavior of arsenic and heavy metals |
|
J.-U. Lee, D.-S. Song, J.-Y. Kim, S.-J. Hong, J.-S. Heo & J.-S. Lee |
A-035 |
Microbial taxonomic and functional diversity in sediments of mine drainage |
|
P. Bauda, F. Arsene-Ploetze, P. Bertin, A. Cordi, D. Halter, A. Heinrich Salmeron & C. Pagnout |
A-036 |
Arsenic speciation in soft-bottom polychaetes (Annelida) and sediments from Sundarban mangrove coastal regions, India |
|
S.K. Sarkar |
A-037 |
Metabolism and biological role of arsenic in the Mediterranean polychaete Sabella spallanzanii |
|
D. Fattorini |
A-038 |
Trophic transfer of arsenic species in the deep-sea ecosystem in Sagami Bay, Japan |
|
D. Hayase |
A-039 |
Diversity of cultivable thermophilic, arsenite-resistant and arsenite/ferrous oxidizing microorganisms in hot springs of Taiwan |
|
G.S. Lu |
A-040 |
Field analysis of arsenic by voltammetry—practical techniques for reduction of interferences |
|
P. Lewtas, Y. Fujikawa, T. Hamasaki, M. Sugahara & D. Yoneda |
A-041 |
Investigating the surface of solid gold electrode to improve the sensitivity of anodic stripping voltammetry for arsenic detection |
|
M. Wajrak |
A-042 |
Analysis of arsenic species formed in the human gastrointestinal matrix using HPLC-ICP-MS |
|
P. Alava, G. Du Laing , T. Van de Wiele & F. Tack |
A-043 |
Determination of arsenic speciation in tea samples by HPLC-ICP-MS |
|
Y.D. Feng, X.F. Lu, Y. Zhou, M. Jarosz & K. Pawlak |
A-044 |
Arsenic speciation in feeds by HPLC-ICP-DRC-MS |
|
X.R. Yang, Q.Q. Fan, Y. Zhou, K. Pawlak & M. Jarosz |
A-045 |
Evaluation of arsenic species preservation method for groundwater samples in Taiwan |
|
S.-W. Wang, K.-L. Lu, W.-K. Wang & C.-W. Liu |
A-046 |
Recent developments for the speciation of arsenic in seawater by hydride generation atomic fluorescence spectrometry |
|
Bin Chen |
A-047 |
Microbial biosensors as an alternative for quantification of arsenic in drinking water |
|
E. Amora |
A-048 |
Sulfate-reducing bacteria in Chianan Plain, southwest Taiwan |
|
Chih-Ping Lee |
A-049 |
The presence of methanogens in the groundwaters of Chianan and Ilan Plain, Taiwan, by Polymerase chain reaction (PCR) |
|
Chih-Ping Lee |
A-050 |
The study of purification of the soil and water from arsenic |
|
T. Dovbysheva & A.Yasko |
|
Session B
Abstract |
Title |
|
Authors |
B-001 |
Biogeochemistry of arsenic and heavy metals in soils of mining areas (North of Portugal) |
|
P.J.C. Favas, M.E.P. Gomes & J.M.S. Pratas |
B-002 |
Comparison of stability of arsenic and selenium in contaminated soils |
|
S. Krejčová, B. Doušová & R. Kadlecová |
B-003 |
Factors limiting As availability in highly As-contaminated soils in Guandu Plain of Taipei |
|
S.-W. Su & Z.-S. Chen |
B-004 |
The effects of phosphates on arsenic uptake by plants from soils polluted with As(III) and As(V) |
|
K. Lewińska, A. Karczewska & B. Gałka |
B-005 |
Could flowers be grown in arsenic polluted soils and be an extra-source of income for rural villagers of India? |
|
F. Burló, A.A. Carbonell-Barrachina, A.J. Signes-Pastor, R.O. Jenkins & P.I. Haris |
B-006 |
Protective effect of nitric oxide against As-induced toxicity in rice roots |
|
H.P. Singh, G. Kaur & D.R. Batish |
B-007 |
Arsenic impairs sugar and protein metabolism during germination in Mung bean |
|
S. Kaur & H.P. Singh |
B-008 |
Correlation of arsenic in water, soil and food chain at highly arsenic endemic areas |
|
A. Al Mamun, M.N.E.A. Siddique, M.A. Rahman, M.A. Islam & A.M.S. Alam |
B-009 |
Arsenic concentration in poultry and livestock feeds and manures from intensive farms |
|
F.-S. Zhang, W. Li & Y.-X. Li |
B-010 |
Arsenic contents in plants species growing on arsenic enriched soils in Tuscany (Italy) |
|
L. Rossato, G. Tanelli, C. Gonnelli & R. Gabbrielli |
B-011 |
Impact of chronic exposure to arsenic in combination with mercury cobalt and nickel in Cirrihinus mrigala |
|
R.K. Gupta & K.L. Jain |
B-012 |
Arsenic in the Environment |
|
E.A. Alhebshi |
B-013 |
Biogeology of arsenic, natural cycle and its implication in the ecosystem |
|
M. Zengo |
B-014 |
Study on the Photo-reduction treatment of Arsenic in Polluted Soils |
|
Yan-Jia Liou, Chin-Long Huang,
Jy-Gau Sah and Wu-Jang Huang |
B-015 |
Arsenic in the environment |
|
H.R. Rahmani |
B-016 |
Root porosity and radial oxygen loss related to arsenic tolerance and uptake in 20 wetland plants |
|
H. Li |
B-017 |
Assessment of the arsenic contamination in groundwater in Hired gold mine zone (northwest of Nehbandan—Iran) |
|
E. Damshenas, B. Dahrazma, M. Sadeghian & A. Askari |
B-018 |
Arsenic leaching from chromated copper arsenate treated wood |
|
F.-C. Chang, P.-J. Chen, C.-H. Ko & K.-K. Chen |
B-019 |
Assessment of arsenic contamination and its remedial measure using rainwater harvesting in Bangladesh |
|
M.M. Islam & F.N.-F. Chou |
B-020 |
Relative importance of arsenic exposure from water and rice in Allama Iqbal town, a peri-urban area of Lahore, Pakistan |
|
S.A. Khattak, D.A. Polya & M. Samanta |
B-021 |
Arsenic removal on treated laterite from contaminated groundwater |
|
A. Maiti, B.K. Thakur, J.K. Basu & S. De |
B-022 |
Treatment of drinking water contaminated by arsenic: remediation by adsorption on natural materials |
|
M. Egal, C. Hurel, A. Barats, G. Feraud & N. Marmier |
B-023 |
Conventional clarification treatment to remove arsenic in drinking water, Mixco, Guatemala |
|
S. Garrido, M. Avilés, A. Ramírez, C. Grajeda, S. Cardoso & A. Velásquez |
B-024 |
Reduction of arsenic concentrations in mineral water from Jermuk, Armenia |
|
G.A. Karapetyan & G.B. Aivazyan |
B-025 |
Surface modification of aluminosilicates applicable for removal of arsenic toxic oxyanions |
|
L. Herzogová, B. Doušová, L. Fuitová, M. Lhotka & T. Grygar |
B-026 |
Adsorption of arsenate on iron oxide coated perlite by batch experiment: Equilibrium and kinetics studies |
|
M.G. Mostafa, Y.-H. Chen, J.-S. Jean & C.-C. Liu |
B-027 |
Adsorption efficiency of As(V) onto nano-size titanium oxide-coated on perlite |
|
M.G. Mostafa, Y.-H. Chen, J.-S. Jean & C.-C. Liu |
B-028 |
Separation of As(V) by PVDF hollow-fiber membrane based extraction |
|
A. Figoli, A. Criscuoli, S. Simone, E. Drioli, S. Bey, M. Benamor & A.A. Leopold |
B-029 |
Potentiality of barnyard grass and rice for remediation of arsenic contaminated soil |
|
R. Sultana & K. Kobayashi |
B-030 |
Arsenic removal through rhizofiltration by Eleocharis machrostachya |
|
M.T. Alarcón-Herrera, M.A. Olmos-Márquez, I.R. Martin-Domínguez & D. Martin-Alarcón |
B-031 |
Assessment of arsenic resistance and removal by Pseudomonas sp. ASR3 isolated from arsenic-enriched water sources |
|
S. Shakya & B. Pradhan |
B-032 |
Removal of arsenic from groundwater with oyster shell: it’s chemical equilibrium model |
|
M.A. Rahman, M. Atiqur Rahman, M.A. Samad & A.M.S. Alam |
B-033 |
Study and optimization of low cost multilayer system used for the removal of arsenic from groundwater |
|
A. Samad, M.N.A. Siddique, M.Arifur Rahman & M.S. Alam |
B-034 |
Contamination and phytoremediation of arsenic and antimony in soils in a mining impacted area |
|
H. M. Anawar & M.C. Freitas |
B-035 |
Treatment of As-contaminated Mediterranean dredged sediments |
|
Y. Mamindy-Pajany, C. Hurel, N. Marmier & M. Romeo |
B-036 |
Arsenic removal and recovery from smeltery waste water using titanium oxide |
|
Ting Luo |
B-037 |
Removal of arsenate from water by zero-valent iron/carbon galvanic couples |
|
Xiaomin Dou |
B-038 |
Arsenic in drinking water of rural areas of Iran: A review of past 10 years studies |
|
M. Mosaferi |
B-039 |
Risk assessment of Arsenic concentration in groundwater to the rice containing arsenic in Chia-Nan Area |
|
Kuo-Chin Hsu |
B-040 |
Sustainable arsenic free surface waters in Bangladesh |
|
R. Wilson |
B-041 |
Nanostructured materials for arsenic removal, stabilsation and safe disposal |
|
A. Bansiwal |
B-042 |
Determination of arsenic contamination in ground water of Sobhodero Taluka of Khairpur District and its implication for health effect |
|
M.A. Jakhrani |
B-043 |
Modification of bentonite clay: equilibrium, kinetic data and process design for adsorption of arsenic from wastewater |
|
Z.Z. Chowdhury |
B-044 |
Evaluation of Oil Palm Fuel Ash (POFA) for the adsorption of As (III) and As(V) from aqueous solution : A comperative study with activated carbon |
|
Z.Z. Chowdhury |
B-045 |
Phytoremediation using aquatic plants as a method of removing arsenic from well water and modeling of drinking water network in rural areas (Latin America - Argentina). |
|
M. Vergara |
B-046 |
Study of arsenic uptake in rice varieties grown in Mid Ganga Plain, India |
|
N. Bose |
B-047 |
Arsenic, in the food chain |
|
H.R.Rahmani |
B-048 |
Distribution of arsenic in sediment from San Juan River basin in Nuevo
Leon, Mexico |
|
L. Sandoval & J.M. Alfaro |
B-049 |
Arsenic distributions in rivers around an antimony mine area of China |
|
Xiangqin Wang |
B-050 |
Arsenic incorporation and cycling in common bacterial strains isolated from the South Coast of New South Wales, Australia. |
|
E. Duncan, S. Foster &W. Maher |
| B-051 |
Arsenic in soil, vegetation and water of a contaminated area in Bijar (Iran)
|
|
Naser karimie and Sattar zandsalimi |
Session C
Abstract |
Title
|
|
Authors
|
C-001 |
Polymorphisms in hOGG1 Ser326Cys and XPD Lys751Gln, arsenic exposure and urothelial cancer risk in Taiwan |
|
Y.-H. Wang, S.-D. Yeh, C.-H. Shen, K.-H. Shen C.-T. Liu & H.Y-. Chiou |
C-002 |
Functional STK15 Phe31Ile and p53 Pro72Arg polymorphism and bladder cancer in southwestern Taiwan |
|
Y.-Y. Cheng & H.-R. Guo |
C-003 |
Association between arsenic methylation capacity, DNA oxidative damage and skin lesions in a population chronically exposed to arsenic in Inner Mongolia, China |
|
X.J. Guo, G.Y. Mao, Y. Wang, Z.P. Yang, H. Kasai, K. Tanabe & K. Takahashi |
C-004 |
Arsenic contamination in groundwater of Moyna and Adrebok villages in West Bengal, India: health effects |
|
J.P. Maity, S. Kar, J.-S. Jean, C.-C. Liu, S.C. Santra & S. Banerjee |
C-005 |
Chronic arsenic exposure and arsenic methylation capacity are associated with elevated serum lactate dehydrogenase (LDH) |
|
Y. Liao, C. Chen, W. Chen, W. Li, H. Chen & S. Wang |
C-006 |
Exposure of arsenic and male reproductive impairment— epidemiological and experimental study |
|
A. Roy Chowdhury |
C-007 |
Assessing cancer risks via seafood consumption based on arsenic metabolites in human urine |
|
B.-C. Chen, W.-Y. Chen, C.-M. Liao & W.-C. Chou |
C-008 |
Assessment of arsenic-induced health risk: how much arsenic causes what kind of harm? |
|
M.M. Hassan & P.J. Atkins |
C-009 |
Urinary arsenic concentrations and species excretion patterns in pregnant woman in central Taiwan |
|
Y. Liu, J. Chen, Y. Chung, C. Chang & S. Wang |
C-010 |
Methylation of inorganic arsenic and genetic polymorphisms in arsenic (+III oxidation state) methyltransferase in a Vietnamese population |
|
T. Agusa, J. Fujihara, H. Takeshita, S. Tanabe, H. Iwata, T. Kunito, T.B. Minh, P.T.K. Trang & P.H. Viet |
C-011 |
Arsenic levels in groundwater of Sindh, Pakistan |
|
S.A. Majidano, G.M. Arain, M.Y. Khuhawar, D.R. Bajaj & P. Iqbal |
C-012 |
Toxicological significance of arsenic in Indian groundwater |
|
S.K.Sharma |
C-013 |
Human risk assessment of arsenic contaminated groundwater in India |
|
R. P. Singh |
C-014 |
The quality of life and mental health status of arsenic-affected patients in Bangladesh |
|
E.H. Syed |
C-015 |
Nutritional status among arsenic exposed and non-exposed children in Bangladesh |
|
M.R. Karim, S.A. Ahmad & M. Shahidullah |
C-016 |
Arsenic contamintion in drinking water and its health impacts: A case study from Central India |
|
V.K. Jena |
C-017 |
The apoptotic effect of arsenic compounds on MA-10 mouse leydig tumor cells |
|
Yi-Fen Mu |
C-018 |
Arsenic exposure in pregnancy is associated with increased risk of lower respiratory tract infection and diarrhea in the offspring: A prospective cohort study in Bangladesh |
|
A. Rahman |
C-019 |
Health hazards and community responses to arsenic effects in developing country |
|
S.D. Joshi |
C-020 |
Arsenic effects knowledge in rural areas in developing country |
|
S.D. Joshi |
C-021 |
Effects of arsenic-induced toxicity on respiratory system: modulation by supplementation of jaggery in mice |
|
N. Singh, D. Kumar, A.P. Sahu & S. Raisuddin |
C-022 |
Effects of postnatal arsenic exposure on rat testis: light and electron- microscopic study |
|
P. Kaushal, P. Dhar, & R.D. Mehra |
C-023 |
Acute toxicity modeling of aquaculture species exposure to waterborne arsenic |
|
W.-Y. Chen & C.-M. Liao |
C-024 |
Effect of arsenite and arsenate on microglial cell survival |
|
T.-J. Wu, S.-T. Weng & S.-F. Tzeng |
C-025 |
Anticancer effects of realgar As4S4 particles prepared by nanomilling |
|
P. Baláž, M. Fabián, M. Pastorek, D. Cholujová & J. Sedlák |
C-026 |
The synergistic effect of arsenic and ferric in acute hepatic injury in rats |
|
P.-C. Huang, V.R.M. Chandrasekaran & M.-Y. Liu |
C-027 |
Role of α-lipoid acid (ALA) in ameliorating arsenic induced developmental neurotoxicity (rat hippocampus) |
|
S. Dixit, P. Dhar & R.D. Mehra |
C-028 |
Mechanisms of atherosclerosis caused by arsenic exposure in animal model |
|
T.-J. Cheng, J.-J. Chuu & H.-R. Guo |
C-029 |
In vitro and in vivo study of the effect of arsenic treatment on Aurora-A overexpression in bladder tumorigenesis |
|
Y.-T. Kao & H.-S. Liu |
C-030 |
Phytodrugs: possible ameliorators of arsenic toxicity |
|
M.K. Sharma, A. Sharma, A. Kumar & M.Kumar |
C-031 |
Source apportionment of arsenic in atmospheric dust fallout at urban acadamic environment of Central India. |
|
G. Balakrishna |
C-032 |
Arsenic methylation, GSTO1, AS3MT polymorphisms, and metabolic syndrome: observation from a highly exposed population in arseniasis endemic area of southwestern Taiwan |
|
Jein-Wen Chen |
C-033 |
Determination of arsenic contamination in ground water of sobhodero taluka of khairpur district and its implication for health effect |
|
M.A. Jakhrani, K.M. Malik, A.Ahmed & M.Q. Mazari |
|
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