bioreactor (BF-MBR) system efficiency in mitigating the impact of oily wastewater discharge to
marine environment: a microcosm approach. Aquat Toxicol 198:49–62
Pous N, Hidalgo M, Serra T, Colomer J, Colprim J, Salvadó V (2020) Assessment of zooplanktonbased eco-sustainable wastewater treatment at laboratory scale. Chemosphere 238:124683.
https://doi.org/10.1016/j.chemosphere.2019.124683
Qu X, Alvarez PJ, Li Q (2013) Applications of nanotechnology in water and wastewater treatment.
Water Res 47(12):3931–3946
Radhika VS, Kulkarni GN (2019) Status of sewage water generation in Karnataka, India. Asian J
Agric Exten Econ Sociol:1–5
Rarasati AD, Nabila RA, Sumabrata J, Rianto S (2017) Comparative study of wastewater knowledge towards sustainable infrastructure: a case study of Germany and Indonesian university
students. Symposium II UNIID 2017. 2(1):554–559
Rasool T, Rehman A, Naz I, Ullah R, Ahmed S (2018) Efficiency of a locally designed pilot-scale
trickling biofilter (TBF) system in natural environment for the treatment of domestic wastewater. Environ Technol 39(10):1295–1306
Rezapour S, Atashpaz B, Moghaddam SS, Kalavrouziotis IK, Damalas CA (2019) Cadmium
accumulation, translocation factor, and health risk potential in a wastewater-irrigated soilwheat (Triticum aestivum L.) system. Chemosphere 231:579–587
Rodríguez-Calvo A, Silva-Castro GA, Robledo-Mahón T, González-López J, Calvo C (2018)
Capacity of hydrophobic carriers to form biofilm for removing hydrocarbons from polluted
industrial wastewater: assay in microcosms. Water Air Soil Pollut 229(6):175–188
Rutkowski T, Raschid-Sally L, Buechler S (2007) Wastewater irrigation in the developing world—
two case studies from the Kathmandu Valley in Nepal. Agric Water Manag 88(1–3):83–91
Sahay S, Iqbal S, Inam A, Gupta M, Inam A (2019) Waste water irrigation in the regulation of soil
properties, growth determinants, and heavy metal accumulation in different Brassica species.
Environ Monit Assess 191(2):107. https://doi.org/10.1007/s10661-019-7228-3
Salam OEA, Reiad NA, ElShafei MM (2011) A study of the removal characteristics of heavy metals
from wastewater by low-cost adsorbents. J Adv Res 2(4):297–303
Saldías C, Speelman S, Drechsel P, Van Huylenbroeck G (2017) A livelihood in a risky environment: farmers’ preferences for irrigation with wastewater in Hyderabad, India. Ambio 46
(3):347–360
Salgare SA, Acharekar C (1992) Effect of industrial pollution on growth and content of certain
weeds. J. Nat Conserve 4:1–6
Sanz JL, Köchling T (2007) Molecular biology techniques used in wastewater treatment: an
overview. Process Biochem 42(2):119–133
Shariot-Ullah M (2019) Impacts of sugar mill’s wastewater use on physical and hydraulic properties
of soil: evidence from North Bengal Sugar Mill, Natore, Bangladesh. Sustain Water Res Manag
5(2):863–871
Sharma RK, Agrawal M (2006) Single and combined effects of cadmium and zinc on carrots:
uptake and bioaccumulation. J Plant Nutr 29(10):1791–1804
Sharma RK, Agrawal M, Marshall F (2007) Heavy metal contamination of soil and vegetables in
suburban areas of Varanasi, India. Ecotoxicol Environ Safe 66(2):258–266
Sharma N, Sharma RK, Samant SS, Pande V, Khatri S (2020a) Exposure of mountain ecosystem to
heavy metal assessed by soil and vegetable analysis in Kullu Valley, Northern India. J Toxicol
He 109:560–572
Sharma J, Kumar V, Kumar SS, Malyan SK, Mathimani T, Bishnoi NR, Pugazhendhi A (2020b)
Microalgal consortia for municipal wastewater treatment–lipid augmentation and fatty acid
profiling for biodiesel production. J Photochem Photobiol B Biol 202:111638. https://doi.org/
10.1016/j.jphotobiol.2019.111638
Sheoran V, Sheoran AS, Poonia P (2016) Factors affecting phytoextraction: a review. Pedosphere
26(2):148–166
6 Wastewater Reuse in Peri-Urban Agriculture Ecosystem: Current Scenario,. . .
145
marine environment: a microcosm approach. Aquat Toxicol 198:49–62
Pous N, Hidalgo M, Serra T, Colomer J, Colprim J, Salvadó V (2020) Assessment of zooplanktonbased eco-sustainable wastewater treatment at laboratory scale. Chemosphere 238:124683.
https://doi.org/10.1016/j.chemosphere.2019.124683
Qu X, Alvarez PJ, Li Q (2013) Applications of nanotechnology in water and wastewater treatment.
Water Res 47(12):3931–3946
Radhika VS, Kulkarni GN (2019) Status of sewage water generation in Karnataka, India. Asian J
Agric Exten Econ Sociol:1–5
Rarasati AD, Nabila RA, Sumabrata J, Rianto S (2017) Comparative study of wastewater knowledge towards sustainable infrastructure: a case study of Germany and Indonesian university
students. Symposium II UNIID 2017. 2(1):554–559
Rasool T, Rehman A, Naz I, Ullah R, Ahmed S (2018) Efficiency of a locally designed pilot-scale
trickling biofilter (TBF) system in natural environment for the treatment of domestic wastewater. Environ Technol 39(10):1295–1306
Rezapour S, Atashpaz B, Moghaddam SS, Kalavrouziotis IK, Damalas CA (2019) Cadmium
accumulation, translocation factor, and health risk potential in a wastewater-irrigated soilwheat (Triticum aestivum L.) system. Chemosphere 231:579–587
Rodríguez-Calvo A, Silva-Castro GA, Robledo-Mahón T, González-López J, Calvo C (2018)
Capacity of hydrophobic carriers to form biofilm for removing hydrocarbons from polluted
industrial wastewater: assay in microcosms. Water Air Soil Pollut 229(6):175–188
Rutkowski T, Raschid-Sally L, Buechler S (2007) Wastewater irrigation in the developing world—
two case studies from the Kathmandu Valley in Nepal. Agric Water Manag 88(1–3):83–91
Sahay S, Iqbal S, Inam A, Gupta M, Inam A (2019) Waste water irrigation in the regulation of soil
properties, growth determinants, and heavy metal accumulation in different Brassica species.
Environ Monit Assess 191(2):107. https://doi.org/10.1007/s10661-019-7228-3
Salam OEA, Reiad NA, ElShafei MM (2011) A study of the removal characteristics of heavy metals
from wastewater by low-cost adsorbents. J Adv Res 2(4):297–303
Saldías C, Speelman S, Drechsel P, Van Huylenbroeck G (2017) A livelihood in a risky environment: farmers’ preferences for irrigation with wastewater in Hyderabad, India. Ambio 46
(3):347–360
Salgare SA, Acharekar C (1992) Effect of industrial pollution on growth and content of certain
weeds. J. Nat Conserve 4:1–6
Sanz JL, Köchling T (2007) Molecular biology techniques used in wastewater treatment: an
overview. Process Biochem 42(2):119–133
Shariot-Ullah M (2019) Impacts of sugar mill’s wastewater use on physical and hydraulic properties
of soil: evidence from North Bengal Sugar Mill, Natore, Bangladesh. Sustain Water Res Manag
5(2):863–871
Sharma RK, Agrawal M (2006) Single and combined effects of cadmium and zinc on carrots:
uptake and bioaccumulation. J Plant Nutr 29(10):1791–1804
Sharma RK, Agrawal M, Marshall F (2007) Heavy metal contamination of soil and vegetables in
suburban areas of Varanasi, India. Ecotoxicol Environ Safe 66(2):258–266
Sharma N, Sharma RK, Samant SS, Pande V, Khatri S (2020a) Exposure of mountain ecosystem to
heavy metal assessed by soil and vegetable analysis in Kullu Valley, Northern India. J Toxicol
He 109:560–572
Sharma J, Kumar V, Kumar SS, Malyan SK, Mathimani T, Bishnoi NR, Pugazhendhi A (2020b)
Microalgal consortia for municipal wastewater treatment–lipid augmentation and fatty acid
profiling for biodiesel production. J Photochem Photobiol B Biol 202:111638. https://doi.org/
10.1016/j.jphotobiol.2019.111638
Sheoran V, Sheoran AS, Poonia P (2016) Factors affecting phytoextraction: a review. Pedosphere
26(2):148–166
6 Wastewater Reuse in Peri-Urban Agriculture Ecosystem: Current Scenario,. . .
145
