Effects of salinity on the treatment of synthetic petroleum-industry wastewater in pilot vertical flow constructed wetlands under simulated hot arid climatic conditions

被引:10
|
作者
Wagner, Thomas, V [1 ,2 ]
Al-Manji, Fatma [1 ]
Xue, Jie [1 ]
Wetser, Koen [1 ]
de Wilde, Vinnie [1 ]
Parsons, John R. [2 ]
Rijnaarts, Huub H. M. [1 ]
Langenhoff, Alette A. M. [1 ]
机构
[1] Wageningen Univ & Res, Dept Environm Technol, POB 17, NL-6700 EV Wageningen, Netherlands
[2] Univ Amsterdam, Inst Biodivers & Ecosyst Dynam IBED, POB 94248, NL-1092 GE Amsterdam, Netherlands
关键词
Benzotriazole; Benzoic acid; Zinc; Phragmites australis; Typha latifolia; Vertical flow constructed wetlands; GAS PRODUCED WATER; OIL-PRODUCED WATER; CONTAMINANT REMOVAL; TREATMENT SYSTEMS; BENZOIC-ACID; PERFORMANCE; REUSE; FIELD; DEGRADATION; IRRIGATION;
D O I
10.1007/s11356-020-10584-8
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Petroleum-industry wastewater (PI-WW) is a potential source of water that can be reused in areas suffering from water stress. This water contains various fractions that need to be removed before reuse, such as light hydrocarbons, heavy metals and conditioning chemicals. Constructed wetlands (CWs) can remove these fractions, but the range of PI-WW salinities that can be treated in CWs and the influence of an increasing salinity on the CW removal efficiency for abovementioned fractions is unknown. Therefore, the impact of an increasing salinity on the removal of conditioning chemicals benzotriazole, aromatic hydrocarbon benzoic acid, and heavy metal zinc in lab-scale unplanted andPhragmites australisandTypha latifoliaplanted vertical-flow CWs was tested in the present study.P. australiswas less sensitive thanT. latifoliato increasing salinities and survived with a NaCl concentration of 12 g/L. The decay ofT. latifoliawas accompanied by a decrease in the removal efficiency for benzotriazole and benzoic acid, indicating that living vegetation enhanced the removal of these chemicals. Increased salinities resulted in the leaching of zinc from the planted CWs, probably as a result of active plant defence mechanisms against salt shocks that solubilized zinc. Plant growth also resulted in substantial evapotranspiration, leading to an increased salinity of the CW treated effluent. A too high salinity limits the reuse of the CW treated water. Therefore, CW treatment should be followed by desalination technologies to obtain salinities suitable for reuse. In this technology train, CWs enhance the efficiency of physicochemical desalination technologies by removing organics that induce membrane fouling. Hence,P. australisplanted CWs are a suitable option for the treatment of water with a salinity below 12 g/L before further treatment or direct reuse in water scarce areas worldwide, where CWs may also boost the local biodiversity.
引用
收藏
页码:2172 / 2181
页数:10
相关论文
共 21 条
  • [1] Effects of salinity on the treatment of synthetic petroleum-industry wastewater in pilot vertical flow constructed wetlands under simulated hot arid climatic conditions
    Thomas V. Wagner
    Fatma Al-Manji
    Jie Xue
    Koen Wetser
    Vinnie de Wilde
    John R. Parsons
    Huub H. M. Rijnaarts
    Alette A. M. Langenhoff
    Environmental Science and Pollution Research, 2021, 28 : 2172 - 2181
  • [2] Optimization of Petroleum Refinery Wastewater Treatment by Vertical Flow Constructed Wetlands Under Tropical Conditions: Plant Species Selection and Polishing by a Horizontal Flow Constructed Wetland
    Mustapha, Hassana Ibrahim
    van Bruggen, J. J. A.
    Lens, P. N. L.
    WATER AIR AND SOIL POLLUTION, 2018, 229 (04):
  • [3] Optimization of Petroleum Refinery Wastewater Treatment by Vertical Flow Constructed Wetlands Under Tropical Conditions: Plant Species Selection and Polishing by a Horizontal Flow Constructed Wetland
    Hassana Ibrahim Mustapha
    J. J. A. van Bruggen
    P. N. L. Lens
    Water, Air, & Soil Pollution, 2018, 229
  • [4] Performance studies of constructed wetlands for treatment of wastewater under temperate climatic conditions
    Harne, Kailash
    Joshi, Himanshu
    Research Square, 2022,
  • [5] Treatment of olive mill wastewater in pilot-scale vertical flow constructed wetlands
    Herouvim, Elissavet
    Akratos, Christos S.
    Tekerlekopoulou, Athanasia
    Vayenas, Dimitrios V.
    ECOLOGICAL ENGINEERING, 2011, 37 (06) : 931 - 939
  • [6] Effectiveness of wastewater treatment from the fruit and vegetable industry in the vertical flow-type constructed wetlands
    Puchlik, Monika
    10TH CONFERENCE ON INTERDISCIPLINARY PROBLEMS IN ENVIRONMENTAL PROTECTION AND ENGINEERING EKO-DOK 2018, 2018, 44
  • [7] Partially Saturated Vertical Constructed Wetlands and Free-Flow Vertical Constructed Wetlands for Pilot-Scale Municipal/Swine Wastewater Treatment Using Heliconia latispatha
    Fernandez Viveros, Jose Antonio
    Martinez-Resendiz, Georgina
    Zurita, Florentina
    Luis Marin-Muniz, Jose
    Lopez Mendez, Maria Cristina
    Zamora, Sergio
    Sandoval Herazo, Luis Carlos
    WATER, 2022, 14 (23)
  • [8] Vertical flow-constructed wetlands for domestic wastewater treatment under tropical conditions: effect of different design and operational parameters
    Bohorquez, Eliana
    Paredes, Diego
    Arias, Carlos Alberto
    ENVIRONMENTAL TECHNOLOGY, 2017, 38 (02) : 199 - 208
  • [9] Contaminant removal in septage treatment with vertical flow constructed wetlands operated under batch flow conditions
    Jong, Valerie Siaw Wee
    Tang, Fu Ee
    WATER SCIENCE AND TECHNOLOGY, 2016, 73 (04) : 909 - 915
  • [10] Performance of pilot-scale vertical flow constructed wetlands treating simulated municipal wastewater: effect of various design parameters
    Stefanakis, Alexandros I.
    Tsihrintzis, Vassilios A.
    DESALINATION, 2009, 248 (1-3) : 753 - 770