Seawater

11 - 20 of 54 results

This paper presents the technical characteristics as well as an economic comparison of two autonomous desalination systems. The first system concerns the laboratory experimental results of a direct coupled PV-SWRO desalination system without batteries equipped with a hydraulic energy recovery device
Desalination 221 (2008)

The main objective of this work was to investigate and compare the removals of boron from model solutions (boron as single solute in distilled and deionized water) and seawater using two commercial high rejection SWRO membranes. The impacts of dissolved solids in seawater and pH on boron rejection a
Desalination 223 (2008)

Boron (B) is an important element which should be considered seriously for drinking water production. Boron removal from seawater using nanofiltration (NF) and reverse osmosis (RO) membranes was investigated. Increase in salt concentration effects boron removal positively when RO membranes and negat
Desalination 223 (2008)

As water resources are rapidly being exhausted, more and more interest is paid to the desalination of seawater and brackish water concentrations. Today, current desalination methods require large amounts of energy which is costly both in environmental pollution and in money terms. Many studies of wa
Desalination 223 (2008)

Ultrafiltration (UF) and microfiltration (MF) are theoretically the best pre-treatment upstream reverse osmosis, removing from the feed water most of the potential elements responsible of desalinating membranes fouling such as particles, turbidity, bacteria and large molecular weight organic maters.
Desalination 222 (2008)

The main objective of this work was to investigate boron removal from seawater using two commercial high rejection SWRO membranes. The impact of solution pH, feed concentration, pressure, and cross-flow velocity on boron rejection and permeate flux was determined. The membranes used were the TorayTM
Desalination 227 (2008)

The model discussed in a previous work for the simulation of a deaerator to remove the oxygen from seawater in desalination plants has been improved. The conservative character of that model has been revised on the basis of the experimental industrial experience of FISIA Italimpianti S.p.A. In parti
Desalination 201 (2006)

Water desalination processes have contributed to a better standard of living in a number of countries during the second half of the 20th century, following an increase in water demand for drinking purposes as well as industrial and agricultural uses. However, the technologies used in water desalinat
Desalination 185 (2005)

Formation of disinfection by-products (DBPs) in chlorinated coastal (CS) and deep ocean (sampled at a 1500-m depth) seawater (DO) was explored using conventional chromatographic methods and differential absorbance spectroscopy. It was determined that trihalomethanes (THMs) predominated by bromoform,
Desalination 176 (2005)

The direct contact membrane distillation (DCMD) process was applied for water desalination. The main objective was to study the heat and mass transfer of the process. The experiments were performed on a DCMD unit using a flatsheet PVDF membrane with a pore size of 0.22 µm. Feed solutions were aqueou
Desalination 177 (2005)