References
- X.L. Zhong, S.L. Zhou, Q. Zhu, Q.G. Zhao, Fraction distribution
and bioavailability of soil heavy metals in the Yangtze River
Delta--a case study of Kunshan City in Jiangsu Province, China,
J. Hazard. Mater., 198 (2011) 13–21.
- R. Huang, Y. Zhang, B. Carlo, High secondary aerosol
contribution to particulate pollution during haze events in
China, Nature, 514 (2014) 218–222.
- S. Rajeshkumar, Y. Liu, X.Y. Zhang, B. Ravikumar, G. Bai,
X.Y. Li, Studies on seasonal pollution of heavy metals in water,
sediment, fish and oyster from the Meiliang Bay of Taihu
Lake in China, Chemosphere, 191 (2018) 626–638.
- Y.X. Zhang, Y. Tian, M.C. Shen, G.M. Zeng, Heavy metals in
soils and sediments from Dongting Lake in China: occurrence,
sources, and spatial distribution by multivariate statistical
analysis, Environ. Sci. Pollut. Res., 25 (2018) 1–10.
- B.S. Cui, Q.J. Zhang, K.J. Zhang, X.H. Liu, H.G. Zhang,
Analyzing trophic transfer of heavy metals for food webs in
the newly-formed wetlands of the Yellow River Delta, China,
Environ. Pollut., 159 (2011) 1297–1306.
- G. Bonanno, R.L. Giudice, Heavy metal bioaccumulation by the
organs of Phragmites australis (common reed) and their potential
use as contamination indicators, Ecol. Indic., 10 (2010) 639–645.
- S. Muhammad, M.T. Shah, S. Khan, Health risk assessment of
heavy metals and their source apportionment in drinking water
of Kohistan region, northern Pakistan, Microchem. J., 98 (2011)
334–343.
- Y.K. Ma, P. Egodawatta, J. McGree, A. Liu, A. Goonetilleke,
Human health risk assessment of heavy metals in urban
stormwater, Sci. Total Environ., 557–558 (2016) 764–772.
- Y.J. Yi, C.H. Tang, T.C. Yi, Z.F. Yang, S.H. Zhang, Health risk
assessment of heavy metals in fish and accumulation patterns
in food web in the upper Yangtze River, China, Ecotoxicol.
Environ. Saf., 145 (2017) 295–302.
- L.J. Bo, D.J. Wang, T.L. Li, Y. Li, G. Zhang, C. Wang, S.Q. Zhang,
Accumulation and risk assessment of heavy metals in water,
sediments, and aquatic organisms in rural rivers in the Taihu
Lake region, China, Environ. Sci. Pollut. Res., 22 (2015)
6721–6731.
- A.Y.-C. Lin, S.C. Panchangam, P.S. Ciou, High levels of
perfluorochemicals in Taiwan’s wastewater treatment plants
and downstream rivers pose great risk to local aquatic
ecosystems, Chemosphere, 80 (2010) 1167–1174.
- M. Wang, M. Webber, B. Finlayson, J. Barnett, Rural industries
and water pollution in China, J. Environ. Manage., 86 (2008)
648–659.
- M. Chatterjee, E.V.S. Filho, S.K. Sarkar, S.M. Sella,
A. Bhattacharya, K.K. Satpathy, M.V.R. Prasad, S. Chakraborty,
B.D. Bhattacharya, Distribution and possible source of trace
elements in the sediment cores of a tropical macrotidal estuary
and their ecological significance, Environ. Int., 33 (2007) 346–356.
- Y.J. Yi, Z.F. Yang, S.H. Zhang, Ecological risk assessment of
heavy metals in sediment and human health risk assessment
of heavy metals in fishes in the middle and lower reaches of the
Yangtze river basin, Environ. Pollut., 159 (2011) 2575–2585.
- T.H. Yang, H.M. Cheng, H.H. Wang, M. Drews, S.N. Li,
W. Huang, H.L. Zhou, C.M. Chen, X.P. Diao, Comparative
study of polycyclic aromatic hydrocarbons (PAHs) and heavy
metals (HMs) in corals, surrounding sediments and surface
water at the Dazhou Island, China, Chemosphere, 218 (2019)
157–168.
- K. Ignatowicz, The impact of sewage sludge treatment on the
content of selected heavy metals and their fractions, Environ.
Res., 156 (2017) 19–22.
- M. Chen, X.S. Qin, G.M. Zeng, Impacts of human activity
modes and climate on heavy metal “spread” in groundwater
are biased, Chemosphere, 152 (2016) 439–445.
- Y.B. Xu, M.Y. Hou, Y.F. Li, L. Huang, J.J. Ruan, L. Zheng,
Q.X. Qiao, Q.P. Du, Distribution of tetracycline resistance
genes and AmpC β-lactamase genes in representative nonurban
sewage plants and correlations with treatment processes
and heavy metals, Chemosphere, 170 (2017) 274–281.
- T. Yang, H.J. Huang, F.Y. Lai, Pollution hazards of heavy metals
in sewage sludge from four wastewater treatment plants in
Nanchang, China, Trans. Nonferrous Met. Soc. China, 27 (2017)
2249–2259.
- P. Janoá, L. Herzogová, J. Rejnek, Assessment of heavy metals
leachability from metallo organic sorbent iron humate with the
aid of sequential extraction test, Talanta, 62(2004) 497–501.
- J.M. McArthur, P.K. Sikdar, M.A. Hoque, U. Ghosal, Wastewater
impacts on groundwater: Cl/Br ratios and implications
for arsenic pollution of groundwater in the Bengal basin and
Red river basin, Vietnam, Sci. Total Environ., 437 (2012) 390–402.
- L. Hua, L. Kun, W. Gang, G. Lin, J. Ping, Using micro-ecosystem
to assess the bioactivity of heavy metals in the mine tailings
from dexing copper mine, China, Acta Ecol. Sin., 22 (2002) 73–79.
- J.H. Li, C.J. Jia, Y. Lu, S.F. Tang, H. Shim, Multivariate analysis
of heavy metal leaching from urban soils following simulated
acid rain, Microchem. J., 122 (2015) 89–95.
- X.H. Liu, G.D. Zhang, Y. Liu, S.Y. Lu, P Qin, X.C. Guo, B. Bi,
L. Wang, B.D. Xi, F.C. Wu, W.L. Wang, T.T. Zhang, Occurrence
and fate of antibiotics and antibiotic resistance genes in typical
urban water of Beijing, China, Environ. Pollut., 246 (2019)
163–173.
- US EPA, Guidelines for Carcinogen Risk Assessment,
Risk Assessment Forum, USEPA/630/P-03/001F, US EPA,
Washington, DC, 2005.
- B. Bi, X.H. Liu, X.C. Guo, S.Y. Lu, Occurrence and risk assessment
of heavy metals in water, sediment, and fish from Dongting
Lake, China, Environ. Sci. Pollut. Res., 25 (2018) 34076–34090.
- Ministry of Environmental Protection, Exposure Factors
Handbook of Chinese Population, Environmental Science
Press, Beijing, China, 2013, pp. 262–263, 765.
- N. Sankararamakrishnan, A.K. Sharma, R. Sanghi, Organochlorine
and organophosphorous pesticide residues in ground
water and surface waters of Kanpur, Uttar Pradesh, India,
Environ. Int., 31 (2005) 113–120.
- Y.Q. Huang, C.K.C. Wong, J.S. Zheng, H. Bouwman, R. Barra,
B. Wahlström, L. Neretin, M.H. Wong, Bisphenol A(BPA) in
China: a review of sources, environmental levels, and potential
human health impacts, Environ. Int., 42 (2012) 91–99.
- H. Jia, H. Ma, M. Wei, Urban wetland planning: a case study
in the Beijing central region, Ecol. Complexity, 8 (2011) 213–221.
- W. Zhuang, S. Ying, A. Frie, Q. Wang, J. Song, Y. Liu, Q. Chen,
X. Lai, Distribution, pollution status, and source apportionment
of trace metals in lake sediments under the influence of
the South-to-North Water Transfer Project, China, Sci. Total
Environ., 671 (2019) 108–118.
- M. Sun, Y. Yu, Y. Song, J. Mao, Quantitative analysis of the
spatio-temporal evolution of the anthropogenic transfer of
lead in China, Sci. Total Environ., 645 (2012) 1554–1556.
- W. Zhuang, Y. Liu, Q. Chen, Q. Wang, F. Zhou, A new index
for assessing heavy metal contamination in sediments of the
Beijing-Hangzhou Grand Canal (Zaozhuang Segment): a case
study, Ecol. Indic., 69 (2016) 252–260.
- L. Hu, Z. Xu, W. Huang, Development of a river-groundwater
interaction model and its application to a catchment in
northwestern China, J. Hydrol., 543 (2016) 483–500.
- Z. Zhu, J. Wang, M. Hu, L. Jia, Geographical detection of
groundwater pollution vulnerability and hazard in karst
areas of Guangxi Province, China, Environ. Pollut., 245 (2019)
627–633.
- Y. Wang, J.J. Jiao, K. Zhang, Y.Z. Zhou, Enrichment and
mechanisms of heavy metal mobility in a coastal quaternary
groundwater system of the Pearl River Delta, China, Sci. Total
Environ., 546 (2016) 493–502.
- Y. Zhai, F. Zheng, X. Zhao, X. Xia, Y. Teng, Identification of
hydrochemical genesis and screening of typical groundwater
pollutants impacting human health: a case study in Northeast
China, Environ. Pollut., 252 (2019) 1202–1215.
- J.J. Feng, X.L. Chen, L. Jia, Q.Z. Liu, X.J. Chen, D.M. Han,
J.P. Cheng, Effluent concentration and removal efficiency of
nine heavy metals in secondary treatment plants in Shanghai,
China, Environ. Sci. Pollut. Res., 25 (2018) 17058–17065.
- M. Östman, R.H. Lindberg, J. Fick, E. Björn, M. Tysklind,
Screening of biocides, metals and antibiotics in Swedish sewage
sludge and wastewater, Water Res., 115 (2017) 318–328.
- M. Karvelas, A. Katsoyiannis, C. Samara, Occurrence and
fate of heavy metals in the wastewater treatment process,
Chemosphere, 53 (2003) 1201–1210.
- X. Han, D. Zhang, J. Yan, S. Zhao, J. Liu, Process development
of flue gas desulphurization wastewater treatment in coalfired
power plants towards zero liquid discharge: energetic,
economic and environmental analyses, J. Cleaner Prod.,
261 (2020) 121–144.
- T. Tian, Q. Liu, Effects of added salts on sewage sludge char
characteristics and heavy metal behaviors, J. Anal. Appl.
Pyrolysis, 146 (2020), doi: 10.1016/j.jaap.2020.104774.
- Z.Y. Fu, F.C. Wu, L.L. Chen, B.B. Xu, C.L. Feng, Y.C. Bai,
H.Q. Liao, S.Y. Sun, J.P. Giesy, W.J. Guo, Copper and zinc, but
not other priority toxic metals, pose risks to native aquatic
species in a large urban lake in Eastern China, Environ. Pollut.,
219 (2016) 1069–1076.
- L. Xu, J. Tan, Financial development, industrial structure and
natural resource utilization efficiency in China, Resour. Policy,
66 (2020), doi: 10.1016/j.resourpol.2020.101642.
- L. Qi, J. Li, Y. Yao, Y. Zhang, Heavy metal poisoned and
regeneration of selective catalytic reduction catalysts, J. Hazard.
Mater., 366 (2019) 492–500.
- G.E. Ustün, Occurrence and removal of metals in urban
wastewater treatment plants, J. Hazard. Mater., 172 (2009)
833–838.
- G. Romano, L. Masserini, Factors affecting customers’
satisfaction
with tap water quality: does privatisation
matter in Italy?, J. Cleaner Prod., 258 (2020), doi: 10.1016/j.
jclepro.2020.120593.
- A. Kaushik, A. Singh, Metal removal and recovery using
bioelectrochemical technology: the major determinants and
opportunities for synchronic wastewater treatment and energy
production, J. Environ. Manage., 270 (2020), doi: 10.1016/j.
jenvman.2020.110826.
- K.B. Chipasa, Accumulation and fate of selected heavy metals
in a biological wastewater treatment system, Waste Manage.,
23 (2003) 135–143.
- N.K. Salihoglu, Assessment of urban source metal levels in
influent, effluent, and sludge of two municipal biological
nutrient removal wastewater treatment plants of bursa, an
industrial city in turkey, Clean Soil Air Water, 41 (2013) 153–165.
- I. Pérez-Alvarez, H. Islas-Flores, L.M. Gómez-Oliván,
D. Barceló, M.L.D. Alda, S.P. Solsona, L. Sánchez-Aceves,
N. SanJuan-Reyes, M. Galar-Martínez, Determination of
metals and pharmaceutical compounds released in hospital
wastewater from Toluca, Mexico, and evaluation of their toxic
impact, Environ. Pollut., 240 (2018) 330–341.
- E. Emmanuel, Y. Perrodin, G. Keck, J.M. Blanchard, P. Vermande,
Ecotoxicological risk assessment of hospital wastewater:
a proposed framework for raw effluents discharging into
urban sewer network, J. Hazard. Mater., 117 (2005) 1–11.
- K.S. Le Corre, C. Ort, D. Kateley, B. Allen, B.I. Escher, J. Keller,
Consumption-based approach for assessing the contribution
of hospitals towards the load of pharmaceutical residues in
municipal wastewater, Environ. Int., 45 (2012) 99–111.
- Z.Y. Fu, W.J. Guo, Z. Dang, Q. Hu, F.C. Wu, C.L. Feng,
X.L. Zhao, W. Meng, B.S. Xing, J.P. Giesy, Refocusing on
nonpriority toxic metals in the aquatic environment in
China, Environ. Sci. Technol., 51 (2017) 3117–3118.
- T. Ungureanu, G.O. Iancu, M. Pintilei, M.M. Chicos, Spatial
distribution and geochemistry of heavy metals in soils: a case
study from the NE area of Vaslui county, Romania, J. Geochem.
Explor., 176 (2016) 20–32.
- K.P. Singh, D. Mohan, V.K. Singh, A. Malik, Studies on
distribution and fractionation of heavy metals in Gomti
river sediments - a tributary of the Ganges, India, J. Hydrol.,
312 (2005) 14–27.
- X. Liu, D. Li, G. Song, Assessment of heavy metal levels in
surface sediments of estuaries and adjacent coastal areas in
China, Front. Earth. Sci., 11 (2017) 85–94.