Search Results - "Lehl, Harvinder Kaur"

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  1. 1

    A highly efficient single chambered up-flow membrane-less microbial fuel cell for treatment of azo dye Acid Orange 7-containing wastewater by Thung, Wei-Eng, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Ridwan, Fahmi, Oon, Yoong-Ling, Oon, Yoong-Sin, Lehl, Harvinder Kaur

    Published in Bioresource technology (01-12-2015)
    “…[Display omitted] •UFML MFC is able to decolorize AO7 and generate electricity.•The COD and color removal by the bioreactor was up to 90%.•Electron competition…”
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    Journal Article
  2. 2

    Role of macrophyte and effect of supplementary aeration in up-flow constructed wetland-microbial fuel cell for simultaneous wastewater treatment and energy recovery by Oon, Yoong-Ling, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Dahalan, Farrah Aini, Oon, Yoong-Sin, Lehl, Harvinder Kaur, Thung, Wei-Eng, Nordin, Noradiba

    Published in Bioresource technology (01-01-2017)
    “…[Display omitted] •Simultaneous organic matter, nutrient removal and bioenergy recovery by UFCW-MFC.•Supplementary aeration contributed to oxygenation of the…”
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    Journal Article
  3. 3

    Hybrid system up-flow constructed wetland integrated with microbial fuel cell for simultaneous wastewater treatment and electricity generation by Oon, Yoong-Ling, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Oon, Yoong-Sin, Lehl, Harvinder Kaur, Thung, Wei-Eng

    Published in Bioresource technology (01-06-2015)
    “…[Display omitted] •A hybrid system, UFCW integrated into MFC planted with cattail was developed.•Wastewater treatment and electricity generation were achieved…”
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    Journal Article
  4. 4
  5. 5

    Biodegradation of Acid Orange 7 in a combined anaerobic-aerobic up-flow membrane-less microbial fuel cell: Mechanism of biodegradation and electron transfer by Thung, Wei-Eng, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Ridwan, Fahmi, Lehl, Harvinder Kaur, Oon, Yoong-Ling, Oon, Yoong-Sin

    “…[Display omitted] •AO7 is capable to function as electron acceptor at cathode region in UFML MFC.•AO7 decolorization efficiency was up to 96% by using UFML…”
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    Journal Article
  6. 6

    Disclosing the synergistic mechanisms of azo dye degradation and bioelectricity generation in a microbial fuel cell by Oon, Yoong-Sin, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Oon, Yoong-Ling, Lehl, Harvinder Kaur, Thung, Wei-Eng, Nordin, Noradiba

    “…[Display omitted] •Excellent decolourisation and bioelectricity generation were obtained in the MFC.•Low external resistance and azo dye concentration enhanced…”
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    Journal Article
  7. 7

    Synergistic effect of up-flow constructed wetland and microbial fuel cell for simultaneous wastewater treatment and energy recovery by Oon, Yoong-Ling, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Dahalan, Farrah Aini, Oon, Yoong-Sin, Lehl, Harvinder Kaur, Thung, Wei-Eng

    Published in Bioresource technology (01-03-2016)
    “…[Display omitted] •Novel multiple anodes to study the effect of electrode spacing.•Organic loading influenced the voltage output despite electrode…”
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    Journal Article
  8. 8

    Up-flow constructed wetland-microbial fuel cell for azo dye, saline, nitrate remediation and bioelectricity generation: From waste to energy approach by Oon, Yoong-Ling, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Dahalan, Farrah Aini, Oon, Yoong-Sin, Lehl, Harvinder Kaur, Thung, Wei-Eng, Nordin, Noradiba

    Published in Bioresource technology (01-10-2018)
    “…[Display omitted] •Excellent decolourisation was achieved by UFCW-MFC.•Supplementary aeration enhanced mineralization of azo dye intermediates.•NaCl…”
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    Journal Article
  9. 9

    Innovative baffled microbial fuel cells for azo dye degradation: Interactive mechanisms of electron transport and degradation pathway by Oon, Yoong-Sin, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Oon, Yoong-Ling, Lehl, Harvinder Kaur, Thung, Wei-Eng

    Published in Journal of cleaner production (01-05-2021)
    “…Two membrane-less baffled microbial fuel cells (BMFCs) were developed for non-dye (BMFC1) and dye degradation (BMFC2) investigations along with simultaneous…”
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    Journal Article
  10. 10

    Microbial fuel cell operation using monoazo and diazo dyes as terminal electron acceptor for simultaneous decolourisation and bioelectricity generation by Oon, Yoong-Sin, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Oon, Yoong-Ling, Lehl, Harvinder Kaur, Thung, Wei-Eng, Nordin, Noradiba

    Published in Journal of hazardous materials (05-03-2017)
    “…[Display omitted] •Monoazo and diazo dyes were used as electron acceptor in the abiotic cathode of MFC.•Simultaneous decolourisation and bioelectricity…”
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    Journal Article
  11. 11

    Sustainable green technology on wastewater treatment: The evaluation of enhanced single chambered up-flow membrane-less microbial fuel cell by Thung, Wei-Eng, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Ridwan, Fahmi, Oon, Yoong-Ling, Oon, Yoong-Sin, Lehl, Harvinder Kaur

    Published in Journal of environmental sciences (China) (01-04-2018)
    “…This study demonstrated the potential of single chamber up-flow membrane-less microbial fuel cell (UFML-MFC) in wastewater treatment and power generation. The…”
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    Journal Article
  12. 12

    Long-term operation of double chambered microbial fuel cell for bio-electro denitrification by Oon, Yoong-Sin, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Oon, Yoong-Ling, Lehl, Harvinder Kaur, Thung, Wei-Eng

    Published in Bioprocess and biosystems engineering (01-06-2016)
    “…The main aim of this study is to investigate the performance of organic oxidation and denitrification of the system under long-term operation. The MFC reactor…”
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    Journal Article
  13. 13

    Simultaneous Wastewater Treatment and Power Generation with Innovative Design of an Upflow Membrane-Less Microbial Fuel Cell by Thung, Wei-Eng, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Oon, Yoong-Ling, Oon, Yoong-Sin, Lehl, Harvinder Kaur

    Published in Water, air, and soil pollution (01-05-2015)
    “…The objective of this study was to evaluate the performance of an upflow membrane-less microbial fuel cell (UFML MFC) with various types of carbon material as…”
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    Journal Article
  14. 14

    Decolourization and mineralization of Acid Red 27 metabolites by using multiple zoned aerobic and anaerobic constructed wetland reactor by Lehl, Harvinder Kaur, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Naemah, Farah, Oon, Yoong-Ling, Oon, Yoong-Sin, Thung, Wei-Eng

    Published in Desalination and water treatment (01-08-2019)
    “…Acid Red 27 (AR27) is widely used in paper processing, textiles, foods, cosmetics, beverages and medicines. Effluents containing AR27 are discharged daily into…”
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    Journal Article
  15. 15

    Bioelectricity Generation in Batch-Fed Up-Flow Membrane-Less Microbial Fuel Cell: Effect of Surface Morphology of Carbon Materials as Aqeuous Biocathodes by Thung, Wei-Eng, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Ridwan, Fahmi, Oon, Yoong-Ling, Oon, Yoong-Sin, Lehl, Harvinder Kaur

    Published in Water, air, and soil pollution (01-08-2016)
    “…The surface morphology of biocathode was one of the limiting factors for microbial fuel cell (MFC) design. Up-flow membrane-less single-chambered MFC (UFML…”
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    Journal Article
  16. 16

    Decolorization and mineralization of Amaranth dye using multiple zoned aerobic and anaerobic baffled constructed wetland by Lehl, Harvinder Kaur, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Saad, Farah Naemah Mohd, Oon, Yoong-Ling, Oon, Yoong-Sin, Thung, Wei-Eng, Yong, Chin-Yii

    Published in International journal of phytoremediation (03-08-2017)
    “…The objective of this study is to determine the reduction efficiency of Chemical Oxygen Demand (COD) as well as the removal of color and Amaranth dye…”
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    Journal Article
  17. 17

    Multiple aerobic and anaerobic baffled constructed wetlands for simultaneous nitrogen and organic compounds removal by Lehl, Harvinder Kaur, Ong, Soon-An, Ho, Li-Ngee, Wong, Yee-Shian, Naemah Mohd Saad, Farah, Oon, Yoong-Ling, Oon, Yoong-Sin, Yong, Chin-Yii, Thung, Wei-Eng

    Published in Desalination and water treatment (01-12-2016)
    “…The objective of this study is to determine the reduction efficiency of chemical oxygen demand (COD) as well as the removal of NH4+-N and NO3--N by the…”
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    Journal Article