Evaluation of Contaminated Water Treatment on the Durability of Steel Piles

Author:

Sultan Hussein Kareem1ORCID,Yousif Aziz Hussein1,Hussain Maula Baydaa2,Hasan Ali A.1,Hatem Wadhah A.2

Affiliation:

1. College of Engineering, University of Al-Muthanna, Samawah, Iraq

2. Middle Technical University, Institute of Technology, Baghdad, Iraq

Abstract

The most common effluent created by the oil industry is oily wastewater. This produced water (PW) corrodes the steel piles in the infrastructure of bridges, which shortens their service life. It is important to remove organic content in PW to prevent this outcome. Samples from the Ahdab oil field were used in this study. Two catalysts were selected: zinc oxide (ZnO) and titanium dioxide (TiO2) with photo presence as an energy source. The results were organic elimination of 96.4% and 93.4% using ZnO and TiO2, respectively. The experimental conditions were pH = 3 and an irradiation time of 120 min. Due to the ability of ZnO to adsorb high amounts of organic content from PW, there was an increased elimination of organic content. Hence, the maintenance of steel piles durability is a good alternative to approach the goals of this study. The results of the study demonstrated that the organic adsorption on a catalyst agent reinforced in nonappearance of radiation photo is insignificant.

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

Reference31 articles.

1. Treatment of the oily produced water (OPW) using coagulant mixtures

2. utilisation of cassia surattensis seeds as natural adsorbent for oil content removal in oilfield produced water;M. K. Ibrahim;Journal of science and Technology,2019

3. Oxidative mineralisation of petroleum refinery effluent using Fenton-like process;A. A. Aziz;Chemical Engineering Research and Design,2012

4. Integrated processes for produced water polishing: Enhanced flotation/sedimentation combined with advanced oxidation processes

5. Adsorption separation of condensate oil from produced water using ACTF prepared of oil palm leaves by batch and fixed bed techniques;M. Fathy;Egyptian Journal of Petroleum,2017

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