References
- S. Foster, H.Garduño, Groundwater-resource governance: are
governments and stakeholders responding to the challenge?,
Hydrogeol. J., 21 (2013) 317–320.
- S. Hu, Y. Wu, Y. Zhang, B. Zhou, X. Xu, Nitrate removal from
groundwater by heterotrophic/autotrophic denitrification
using easily degradable organics and nano-zero valent iron as
co-electron donors, Water Air Soil Poll., 229 (2018) 56.
- J. He, L. Charlet, A review of arsenic presence in China drinking
water, Hydrogeol. J., 492 (2013) 79–88.
- B. Hu, Y. Teng, Y. Zhai, R. Zuo, J. Li, H. Chen, Riverbank
filtration in China: a review and perspective, Hydrogeol. J., 541
(2016) 914–927.
- D. Han, M.J. Currell, G. Cao, Deep challenges for China’s war
on water pollution, Environ. Pollut., 218 (2016) 1222–1233.
- Z. Han, H. Ma, G. Shi, L. He, L. Wei, Q. Shi, A review of
groundwater contamination near municipal solid waste landfill
sites in China, Sci. Total Environ., 569–570 (2016) 1255–1264.
- Y. Li, T. Zhang, Y. Zhang, Q. Xu, Geometrical appearance and
spatial arrangement of structural blocks of the Malan loess in
NW China: implications for the formation of loess columns, J.
Asian Earth Sci., 158 (2018) 18–28.
- J. Shen, H. Wu, Y. Zhang, Subsidence estimation of breakwater
built on loosely deposited sandy seabed foundation: elastic
model or elasto-plastic model, Int. J. Nav. Arch. Ocean, 9 (2017)
418–428.
- Y. Wu, Y. Zhang, J. Qian, X. Xin, S. Hu, S. Zhang, J. Wei, An
exploratory study on low-concentration hexavalent chromium
adsorption by Fe(III)-cross-linked chitosan beads, Roy. Soc.
Open Sci., 4 (2017) 170905.
- J.P. Beukes, S.P. du Preez, P.G. van Zyl, D. Paktunc, T. Fabritius,
M. Päätalo, M. Cramer, Review of Cr(VI) environmental
practices in the chromite mining and smelting industry -
Relevance to development of the Ring of Fire, Canada, J. Clean.
Prod., 165 (2017) 874–889.
- J.M. Heikoop, T.M. Johnson, K.H. Birdsell, P. Longmire, D.D.
Hickmott, E.P. Jacobs, D.E. Broxton, D. Katzman, V.V. Vesselinov,
M. Ding, D.T. Vaniman, S.L. Reneau, T.J. Goering, J. Glessner,
A. Basu, Isotopic evidence for reduction of anthropogenic
hexavalent chromium in Los Alamos National Laboratory
groundwater, Chem. Geol., 373 (2014) 1–9.
- J. Zhao, T. Al, S.W. Chapman, B.L. Parker, K.R. Mishkin, D. Cutt,
R.T. Wilkin, Determination of Cr(III) solids formed by reduction
of Cr(VI) in a contaminated fractured bedrock aquifer: evidence
for natural attenuation of Cr(VI), Chem. Geol., 474 (2017) 1–8.
- J.A. Izbicki, J.W. Ball, T.D. Bullen, S.J. Sutley, Chromium,
chromium isotopes and selected trace elements, western Mojave
Desert, USA, Appl. Geochem., 23 (2008) 1325–1352.
- P. Kar, T.K. Maji, P.K. Sarkar, P. Lemmens, S. K Pal, Development
of a photo-catalytic converter for potential use in the
detoxification of Cr(VI) metal in water from natural resources,
J. Mater. Chem. A, 6 (2018) 3674–3683.
- D. Fantoni, G. Brozzo, M. Canepa, F. Cipolli, L. Marini, G.
Ottonello, M. Zuccolini, Natural hexavalent chromium in
groundwaters interacting with ophiolitic rocks, Environ. Geol.,
42 (2002) 871–882.
- D. Dermatas, T. Mpouras, M. Chrysochoou, I. Panagiotakis,
C. Vatseris, N. Linardos, E. Theologou, N. Boboti, A. Xenidis,
N. Papassiopi, L. Sakellariou, Origin and concentration profile
of chromium in a Greek aquifer, J. Hazard. Mater., 281 (2015)
35–46.
- N.S. Magesh, N. Chandrasekar, L. Elango, Trace element
concentrations in the groundwater of the Tamiraparani river
basin, South India: insights from human health risk and
multivariate statistical techniques, Chemosphere, 185 (2017)
468–479.
- J. Peng, S. Chen, P. Dong, Temporal variation of sediment load
in the Yellow River basin, China, and its impacts on the lower
reaches and the river delta, Catena, 83 (2010) 135–147.
- Ministry of Environmental Protection of the People’s Republic
of China, General Administration of Quality Supervision
(EPA) Technical specifications for environmental monitoring of
groundwater, (HJ/T 1642004) (2004).
- S. Wang, W. Zheng, M. Currell, Y. Yang, H. Zhao, M. Lv,
Relationship between land-use and sources and fate of nitrate
in groundwater in a typical recharge area of the North China
Plain, Sci. Total Environ., 609 (2017) 607–620.
- J. Qian, M. Zhang, Y. Wu, J. Niu, X. Chang, H. Yao, S. Hu, X.
Pei, A feasibility study on biological nitrogen removal (bnr)
via integrated thiosulfate-driven denitratation with anammox,
Chemosphere, 208 (2018) 793–799.
- M. Lelli, S. Grassi, M. Amadori, F. Franceschini, Natural Cr(VI)
contamination of groundwater in the Cecina coastal area and
its inner sectors (Tuscany, Italy), Environ. Earth Sci., 71 (2014)
3907–3019.
- A. Stefánsson, I. Gunnarsson, H. Kaasalainen, S. Arnórsson,
Chromium geochemistry and speciation in natural waters,
Iceland, Appl. Geochem., 62 (2015) 200–206.
- K.P. Sedlazeck, D. Höllen, P. Müller, R. Mischitz, R. Gieré,
Mineralogical and geochemical characterization of a chromium
contamination in an aquifer - A combined analytical and
modeling approach, Appl. Geochem., 87 (2017) 44–56.
- J. Li, F. Li, Q. Liu, Y. Zhang, Trace metal in surface water and
groundwater and its transfer in a Yellow River alluvial fan:
evidence from isotopes and hydrochemistry, Sci. Total Environ.,
472 (2014) 979–988.
- J.A. Izbicki, M.T. Wright, W.A. Seymour, R.B. McCleskey, M.S.
Fram, K. Belitz, B.K. Esser, Cr(VI) occurrence and geochemistry
in water from public-supply wells in California, Appl.
Geochem., 63 (2015) 203–217.
- N. Kazakis, N. Kantiranis, K. Kalaitzidou, E. Kaprara, M.
Mitrakas, R. Frei, G. Vargemezis, P. Tsourlos, A. Zouboulis, A.
Filippidis, Origin of hexavalent chromium in groundwater:
the example of Sarigkiol Basin, Northern Greece, Sci. Total
Environ., 593–594 (2017) 552–566.
- F. Li, Z. Qiu, J. Zhang, W. Liu, C. Liu, G. Zeng, Investigation,
pollution mapping and simulative leakage health risk
assessment for heavy metals and metalloids in groundwater
from a typical brownfield, middle China, Inter. J. Env. Res. Pub.
Heal., 14 (2017) 768.
- Dionex, Determination of Cr(VI) in water, wastewater and
solid waste extracts, Technical Note 26 LPN 34398–011M7/96,
Dionex Corporation, 1996 http://www1.dionex.com /en-us/webdocs/4428tn26.pdf.
- P. Miretzky, A.F. Cirelli, Cr(VI) and Cr(III) removal from
aqueous solution by raw and modified lignocellulosic materials:
a review, J. Hazard. Mater., 180 (2010) 1–19.
- D. Mohan, C.U. Pittman, Activated carbons and low cost
adsorbents for remediation of tri- and hexavalent chromium
from water, J. Hazard. Mater., 137 (2006) 762–811.
- M. Novak, E. Martinkova, V. Chrastny, M. Stepanova, O.
Sebek, A. Andronikov, J. Curik, F. Veselovsky, E. Prechova, M.
Houskova, F. Buzek, J. Farkas, A. Komarek, The fate of Cr(VI) in
contaminated aquifers 65years after the first spillage of plating
solutions: a 53Cr study at four Central European sites, Catena,
158 (2017) 371–380.
- H. Wang, X. Jiang, L. Wan, G. Han, H. Guo, Hydrogeochemical
characterization of groundwater flow systems in the discharge
area of a river basin, Hydrogeol. J., 527 (2015) 433–441.
- X. Shi, Y. Wang, J.J. Jiao, J. Zhong, H. Wen, R. Dong, X. Shi,
Y. Wang, J.J. Jiao, J. Zhong, Assessing major factors affecting
shallow groundwater geochemical evolution in a highly
urbanized coastal area of Shenzhen City, China, J. Geochem.
Explor., 184 (2018) 17–27.
- N. Kazakis, N. Kantiranis, K.S. Voudouris, M. Mitrakas, E.
Kaprara, A. Pavlou, Geogenic Cr oxidation on the surface of
mafic minerals and the hydrogeological conditions influencing
hexavalent chromium concentrations in groundwater, Sci. Total
Environ., 514 (2015) 224–238.
- Z. Li, G. Wang, X.Wang, L. Wan, Z. Shi, H. Wanke, S.
Uugulu, C.I. Uahengo, Groundwater quality and associated
hydrogeochemical processes in Northwest Namibia, J.
Geochem. Explor., 186 (2018) 202–214.
- E. Giménez-Forcada, Dynamic of sea water interface using
hydrochemical facies evolution diagram, Ground Water, 48
(2010) 212–216.
- E. Giménez-Forcada, Space/time development of seawater
intrusion: a study casein Vinaroz coastal plain (Eastern Spain)
using HFE-diagram, and spatial distribution of hydrochemical
facies, J. Hydrol., 517 (2014) 617–627.
- E. Giménez-Forcada, M. Vega-Alegre, S. Timón-Sánchez,
Characterization of regional cold-hydrothermal inflows
enriched in arsenic and associated trace-elements in the
southern part of the Duero Basin (Spain), by multivariate
statistical analysis, Sci. Total Environ., 593–594 (2017) 211–226.
- M. Economou-Eliopoulos, R. Frei, C. Atsarou, Application
of chromium stable isotopes to the evaluation of Cr(VI)
contamination in groundwater and rock leachates from central
Euboea and the Assopos basin (Greece), Catena, 122 (2014)
216–228.
- S. Hu, Y. Wu, N. Yi, S. Zhang, Y. Zhang, X. Xin, Chemical
properties of dissolved organic matter derived from sugarcane
rind and the impacts on copper adsorption onto red soil,
Environ. Sci. Pollut. R., 24 (2017) 21750–21760.
- S. Hu, C. Lu, C. Zhang, Y. Zhang, H. Yao, Wu Y., Effects of fresh
and degraded dissolved organic matter derived from maize
straw on copper sorption onto farmland loess, J. Soil. Sediment.,
16 (2016) 327–338.
- Y. Wang, J.J. Jiao, K. Zhang, Y. Zhou, Enrichment and
mechanisms of heavy metal mobility in a coastal quaternary
groundwater system of the Pearl River Delta, China, Sci. Total
Environ., 545–546 (2016) 493–502.