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Archive for the ‘Press Releases’ Category

ADVANCED OXIDATION FOR REFRACTORY COD REMOVAL IN INDUSTRIAL WASTE WATER

Thursday, October 15th, 2015

ESCO International UK – October  2015

 

Introduction

An investigation into alternatives for refractory COD removal in industrial waste waters  which is economically attractive and do not produce sludge lead to an evaluation of ozone based advanced oxidation processes.

The results of this ozone based AOP pilot study indicate that refractory COD from pre-treated refinery wastewater effluent can effectively be destroyed and is a viable alternative to traditional chemical precipitation  removal technologies for COD removal.  

The pilot study results show that the primary control parameters for COD and BOD removal using ozone based-AOP are oxidant dosage, contact time and pH.

This report presents the results of the AOP pilot testing program.

 

Materials and Methods

The ozone-AOP pilot plant consisted of a 6 m high column, operated in a counter-current mode. 

Ceramic diffuser and injector supplied ozone generated from a PSA oxygen source at specific gas flow rate and O3 concentration ranging from 6% to 12% wt. Ozone was monitored in the influent gas and the off-gas.

Influent and effluent ozone dosages were monitored using an ozone gas analyser.

Ozone concentrations in the feed-gas and hydrogen peroxide (30%wt) were adjusted to provide the desired oxidants concentrations.  

 

Results and Data Analysis

 

The removal efficiency of the organic compounds in the two waste water samples by ozone-AOP was measured in terms of COD and BOD5. The correlation of COD removal and oxidant(s) dosage is presented in figure below.

At low oxidant(s) dosages (Conc. x Time), there does not appear to be significant COD removal.

This concurs with the observations noted in previous pilot tests that at low ozone (oxidants) concentrations there is not an adequate ozone dosage to break the long chain bond and colour. It is anticipated that there is little COD destroyed when the ozone (oxidant) attacks and does not break apart the carbon-carbon double bonds in the large, colour contributing, organic molecules. As the ozone (oxidants) dose is increased, carbon-carbon single bonds are attacked and broken, resulting in a loss of COD, BOD and TOC. At stoichiometric ozone (oxidants) dosages, COD removal rate is higher than 95%.

The test results for COD and BOD5 of the two ozone treated waster water samples are summarised in Table 1.

Table 1: laboratory analysis of untreated and treated samples.

 

Results analysis:

The graphs below (fig 1 and fig 2) show the COD reduction trends for samples A and B, based on pilot test results.

The simulated pilot test results indicate that by simply increasing the ozone & H2O2 dose rates (Cx T), we can easily achieve less than 10 ppm in COD in both cases, if needed.

 

 

 

 

 

 

 

Fig 1. COD reduction vs C.T ( concs. x time) for sample A.

 

 

 

 

 

 

 

Fig 2. COD reduction vs C.T ( concs. x time) for sample B.

 

 

 

 

 

 

Conclusions

An analysis of the AOP Ozone pilot tests for oxidative destruction of COD and BOD in industrial wastewater effluent was conducted. The results of this study indicated that ozone AOP oxidation process can efficiently remove COD to below 10 ppm without the generation of sludge. This eliminates the need for an additional treatment system and solid management  program as is typically required with precipitation  methods.

Kinetics have been developed for full scale AOP design which show that our high intensity mixed ozone based AOP reactor system design can provide highly improved kinetics and would result in lower ozonation dosage, hence, lower capital and running costs and smaller system footprint.

 

For Professional solutions email: info@escouk.com or visit our website: www.escouk.com or call +44 (0) 1492 584140.

Posted in General, Press Releases, Site News | 5,937 Comments »

Oxidative degradation of COD in a Petrochemical facility using Ozone-based advanced oxidation

Tuesday, July 28th, 2015

ESCO International UK – July 2015

 

The aim of this study was to investigate the use of ozone-based advanced oxidation processes for the oxidative destruction of COD in a petrochemical facility.

Several  AOP experiments were carried out in order to select and optimise the successful treatment option.

A LABO3-AOP pilot unit was used where filtered waste water (COD 1250 ppm) was circulated throughout the AOP reactor and ozone & H2O2 injected at various dose rates using Venturi-type  injectors. Treated samples were withdrawn from the test unit for COD analysis.  The amount of ozone and H2O2 used in the COD oxidative degradation process were also monitored.

 

Results analysis:

The graph below shows the COD reduction trend based on laboratory test results.

The results indicate that by simply increasing the ozone & H2O2 dose rates and reaction time, we can easily achieve less than 100 ppm COD as requested by the customer. Extended tests show that COD of less than 60 ppm can be achieved.

                                                

 

Conclusions:

Test results indicate that , under laboratorty testing & analytical conditions, the ozonation process can successully  oxidize  COD . Additional tests using a combination of ozone and H2O2, shows that COD can be further reduced to meet lower COD targets of less than 60 ppm. These laboratory experiment confirm that, under certain operating conditions, O3/H2O2 process is the most suitable solution for the oxidative degradation of COD .

As a result, the petrochemical facility selected ESCO International for the submission of a full scale O3/H2O2 treatment solution design.

This project demonstrates once more, ESCO International’s technical capabilities in providing advanced water treatment solutions to meet specific customer needs.

email: info@escouk.com or visit our website: www.escouk.com or call +44 (0) 1492 584140.

Posted in General, Press Releases, Site News | 5,173 Comments »

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