Conference proceedings

Displaying 1 - 10 of 10 in CEST2019 (remove filter), removal (remove filter)

CEST Proceedings are published under the ISSN 2944-9820.

Electrochemical Treatment of Landfill Leachate under Cold Climate Conditions

(Corresponding) Ambauen N., Meyn T., Hallé C., Muff J.
Topic: 
Advanced oxidation processes
This study shows that electrochemical oxidation of landfill leachate (LL) is significantly affected by cold temperatures prevailing in Nordic climate areas. As hypothesized, the degradation of common wastewater parameters (TOC, COD) exhibited lower efficiency when low average temperature (13°C) was...Read more
Keywords: 
Electrochemical oxidation, pollutant removal, organic disinfection by-products, temperature, applied current
Paper ID: 
cest2019_00259

Combined use of anaerobic and aerobic moving bed biofilm reactors for micropollutants’ removal from wastewater

Kora E., Theodorelou D., Herpich A., Gatidou G., Fountoulakis M., (Corresponding) Stasinakis A.
Topic: 
Emerging pollutants
A novel laboratory-scale continuous flow wastewater treatment system, consisting of an anaerobic moving bed biofilm reactor (AnMBBR) and an aerobic MBBR, was used for investigating the removal of hydroxybenzothiazole (OH-BTH) and selected benzotriazoles from municipal wastewater. The system was...Read more
Keywords: 
wastewater treatment, micropollutants, fate, biodegradation, removal
Paper ID: 
cest2019_00416

Use of the microalgae Chlorella Sorokiniana for municipal wastewater treatment: batch experiments

Kotoula D., Iliopoulou A., Irakleous-Palaiologou E., Gatidou G., Aloupi M., Fountoulakis M., (Corresponding) Stasinakis A.
Topic: 
Wastewater treatment
Batch experiments were conducted in order to investigate the use of microalgae Chlorella sorokiniana for the treatment of different types of municipal wastewater (raw sewage, anaerobically treated wastewater, aerobically treated wastewater) and investigate the role of light and addition of ammonium...Read more
Keywords: 
wastewater treatment, Chlorella sorokiniana, removal, COD removal, nutrients removal
Paper ID: 
cest2019_00417

Influence of microbial fuel cell integration on organic matter and nutrient removal in a constructed wetland for wastewater treatment

(Corresponding) Gonzalez T., Miranda J., Vidal G.
Topic: 
Wastewater treatment
The combination of constructed wetlands (CWs) and microbial fuel cells (MFCs) has emerged in recent years with the purpose of enhancing wastewater treatment efficiency of CWs while simultaneously generating electricity. Taking the above into account, the aim of this study is to evaluate the...Read more
Keywords: 
Constructed Wetland-Microbial Fuel Cell, Wastewater treatment, Removal organic matter, Bioelectricity generation.
Paper ID: 
cest2019_00488

Pharmaceutical residues in hospital and urban wastewaters: Occurrence, removal and potential risk assessment

Martinaiou P., Trantopoulos E., (Corresponding) Kosma C., Albanis T.
Topic: 
Emerging pollutants
The presence of ten pharmaceutical compounds (bupropion, venlafaxine, mirtazapine, sertraline, citalopram, caffeine, triclosan, carbamazepine, diazepam, clozapine) which belong to different treatment categories was studied in one hospital and three urban WWTPs in north and northwestern Greece. The...Read more
Keywords: 
Pharmaceuticals, WWTPs, GC-MS, removal, risk assessment
Paper ID: 
cest2019_00551

Anaerobic ammonium nitrogen oxidation and sulphate reduction in psychrophilic conditions

Przywara L.
Topic: 
Wastewater treatment
Investigations of simultaneous removal of ammonium and sulphate were carried out in anaerobic laboratory bioreactor - upflow anaerobic filter (UAF). The bioreactor was filled with the anaerobic activated sludge from WWTP Bielsko – Biała. The process was operated in psychrophilic conditions...Read more
Keywords: 
ammonium and sulfate removal, reactor UAF, psychrophilic conditions
Paper ID: 
cest2019_00585

UN(K)NOWN Project: Development of Anammox microbial inocula to improve nitrogen removal efficiency in wastewater treatment

(Corresponding) Ribeiro H., Machado A., Costa-Dias S., Wijaya I., Salgado P., Bordalo A., Teixeira C.
Topic: 
Wastewater treatment
The discovery of anaerobic ammonium oxidation (anammox) revealed the existence of a shortcut in the classic nitrogen cycle where ammonium is converted directly to dinitrogen gas. Anammox process can be used to develop more cost and energy-efficient sustainable nitrogen removal systems comparing to...Read more
Keywords: 
Anammox; Bioreactors; Ecology; Nitrogen removal; Wastewater
Paper ID: 
cest2019_00591

Start-up of the nitrogen removal process in an anaerobic up-flow reactor inoculated with aeration tank sludge

Wijaya I., (Corresponding) Ribeiro H., Soedjono E., Slamet ., Teixeira C., Bordalo A.
Topic: 
Wastewater treatment
Anaerobic ammonium oxidation (anammox) has been considered a promisingly alternative to traditional nitrification/denitrification to remove nitrogen in an autotrophic process, without using an external carbon source, requiring low energy consumption and sludge production. The start-up of the...Read more
Keywords: 
Nitrogen removal; Up-flow Bioreactors; Anaerobic processes; Anammox; Wastewater
Paper ID: 
cest2019_00598

Arsenic Removal Using Electrocoagulation Process

Vaiyakone P., (Corresponding) Soriano R., Morales-Corpuz V., (Corresponding) De Sales-Papa L., Ballesteros F.
Topic: 
Water treatment
Contamination of water resources with Arsenic poses serious health concerns because of its toxic and carcinogenic nature. Detection of Arsenic at concentrations higher than 10 parts per billion (ppb) in some Philippine water resources confirmed the need for further studies on the contamination and...Read more
Keywords: 
Arsenic Removal, Water Contamination, Electrocoagulation
Paper ID: 
cest2019_00706

Novel Polyethersulfone (PES) Alpha-Zirconium Phosphate (α-ZrP) Ion Exchange Mixed Matrix Membranes for Effective Removal of Heavy Metals from Wastewater

ABDULKARIM E., IBRAHIM Y., (Corresponding) HASAN S., NADDEO V., BANAT F.
Topic: 
Wastewater treatment
In this study, novel polyethersulfone (PES) alpha-zirconium (α-ZrP) ion exchange mixed matrix membranes were fabricated via phase inversion method using nano-sized alpha-zirconium phosphate (α-ZrP-n) and polyvinylpyrrolidone (PVP) as dispersant nano-additives in the dope solution preparation. The...Read more
Keywords: 
Wastewater, membrane, zirconium phosphate, heavy metals, removal.
Paper ID: 
cest2019_00937