Spelling suggestions: "subject:"ethoxylated"" "subject:"ethoxylate""
1 |
The processing of wax and wax additives with supercritical fluids /Schwarz, Cara Elsbeth. January 2005 (has links)
Dissertation (PhD)--University of Stellenbosch, 2005. / Bibliography. Also available via the Internet.
|
2 |
The processing of wax and wax additives with supercritical fluidsSchwarz, Cara Elsbeth 12 1900 (has links)
Waxes have many potential uses but large-scale application is hampered by their virtual
insolubility. By grafting the wax with a polyethylene glycol segment to form an alcohol ethoxylate,
the solubility of the wax in commercial solvents is significantly increased. Alcohol ethoxylates are
produced by the polymerisation addition of ethylene oxide onto an oxidised wax. Current methods
of alcohol ethoxylate production from alcohols lead to wide ethylene oxide addition distribution
and large quantities of residual alcohol.
The objective of this study is to provide a method for narrowing the ethylene oxide distribution and
to reduce the residual alcohol content. It is proposed to concentrate the alcohol ethoxylate in a
post-production separation process using supercritical fluid extraction.
The system is modelled to contain three pseudo-components: an alkane, an alcohol and an
alcohol ethoxylate. Propane is selected as the supercritical solvent of choice due to the large
solubility difference between the alkane and polyethylene glycol.
Lower molecular weight alkane phase equilibrium data with propane is abundant but extrapolation
to higher molecular weights requires further investigation as it may be complicated by molecular
folding. Molecular folding occurs in crystalline polyethylene and high molecular weight normal
alkanes but information regarding molecular folding in solution is inconclusive.
A model is proposed for molecular folding of normal alkanes in supercritical solution. A high
molecular weight alkane mixture is synthesised and phase equilibrium measurement with propane
are conducted. A lower molecular weight alkane mixture is used to prove the application of the
principle of congruency to high-pressure phase equilibria. In the high wax mass fraction region the
measurements are between the no-folding and once-folded relationship, indicating the possibility
of partial molecular folding. In the mixture critical and low wax mass fraction region the
measurements are similar to the non-folding relationship. Molecular folding in solution is thus
dependent on the solution concentration.
No phase equilibria measurements exist for propane with either high molecular weight alcohols or
alcohol ethoxylates. Measurements of propane with an alcohol mixture show total solubility below
140barA for temperatures up to 408K. Measurements of propane with an alcohol ethoxylate at
temperatures between 378 and 408K shows that for an alcohol ethoxylate mass fraction between
0.025 and 0.5 pressures greater than 275barA are required for solubilisation. When comparing the solubility of the three pseudo-components, the alkane is the most soluble
followed by the alcohol. The alcohol ethoxylate is the least soluble. A counter-current supercritical
extraction process is proposed for the concentration of the alcohol ethoxylate. Pilot plant tests
were conducted and the proposed set-up shows good separation. An estimate of the energy
requirements shows that heating and cooling constitute the majority of the energy required but
with the use of heat integration it can be reduced by approximately 33%.
This work thus shows that the proposed process is both technically and economically viable.
Although this work has provided a method for concentrating the alcohol ethoxylate, the process
has not been optimised yet and future work includes the fine-tuning of this process.
|
3 |
Source Characterization and Pretreatment Evaluation of Pharmaceuticals and Personal Care Products in Healthcare Facility WastewaterNagarnaik, Pranav Mukund 2011 May 1900 (has links)
Healthcare facility wastewaters are a potentially important and under characterized source of pharmaceuticals and personal care products to the environment. In this study the composition and magnitude of pharmaceuticals and personal care products (PPCPs) released into a single municipality’s wastewater system from a hospital, a nursing care facility, an assisted living facility and an independent living facility are presented for 54 pharmaceuticals, 8 hormones and 31 Alkylphenol ethoxylates (APEOs). Chemical oxidation using molecular ozone and advanced oxidation processes (AOPs) (UV-hydrogen peroxide, Fenton’s Reagent, and Photo – Fenton’s Reagent) were screened and evaluated as potential treatment technologies for removal of APEOs in water and wastewater.
In this research, APEOs were found to be dominant PPCP class out of 94 individual analytes measured, accounting for more than 65% of the total mass loading observed leaving the healthcare facility wastewater. Seventy one out of the total measured PPCPs were detected in wastewater from at least one of the facilities. Healthcare facility wastewater are the source of PPCPs to the environment; however, their contribution to the total magnitude of PPCPs in municipal wastewater and the surrounding environment will be determined by the relative flow contribution of wastewater released from the facility to the municipal sewer network. Molecular ozone and advanced oxidation processes were observed to remove APEOs from analyzed water matrices; however, understanding the product formation during the oxidation process is important before concluding a suitable treatment process. Molecular ozone reacted selectively with the double bond in the APEO while AOPs reaction was non selective oxidation. During the AOPs, OH· formation rate and scavenging rate constant of wastewater was found to be the factors governing the oxidation process. Thus, the research carried out informs a risk management decisions concerning the prevalence of PPCPs in the wastewater and use of oxidation systems as a treatment technologies for removal of PPCPs.
|
4 |
Stanovení nonylfenolu a jeho izomerů ve vodách / Determination of nonylphenol and its isomers in watersSedláček, Jaroslav January 2013 (has links)
This diploma thesis is focused on the issue of nonylphenol, degradation product of surfactants. Nonylphenol however most often arises in wastewater treatment plants predominantly during the microbial degradation of nonylphenol ethoxylates used in industry. It is a substance highly bioaccumulative, toxic predominantly to aquatic organisms. Furthermore, it belongs among hormone disruptors. The detailed research was prepared, on the basis which experimental part of diploma thesis was solved. Nonylphenol was determined in samples of the wastewater. The solid phase extraction (SPE) was used for the isolation of the analyte and purification of the extract. The final determination was performed on the gas chromatography with tandem mass spectrometry with time of flight analyzer (TOF). All steps of the preanalytical and the analytical procedure were optimized.
|
5 |
Απομάκρυνση ξενοβιωτικών ουσιών κατά τη βιοσταθεροποίηση της ιλύος και άλλες αερόβιες διεργασίεςΠάκου, Κωνσταντίνα 07 April 2011 (has links)
Τις τελευταίες δεκαετίες η συνεχώς αυξανόμενη παγκόσμια δραστηριότητα, λόγω της έντονης αστικοποίησης και βιομηχανοποίησης, έχει σαν αποτέλεσμα την παραγωγή σημαντικών ποσοτήτων αποβλήτων. Μεταξύ αυτών είναι και η ιλύς, δηλαδή το ημιστερεό υπόλειμμα που παράγεται από τις μονάδες επεξεργασίας αστικών και βιομηχανικών αποβλήτων. Μολονότι η ιλύς αντιμετωπίζεται ως απόβλητο που πρέπει να διατεθεί, είναι στην πραγματικότητα ένας σοβαρά υποτιμημένος πόρος. Πιο συγκεκριμένα, η ιλύς διαθέτει πολύτιμα θρεπτικά συστατικά, ενώ παράλληλα έχει και υψηλή θερμική αξία, ιδιότητες που την καθιστούν κατάλληλη για ένα μεγάλο εύρος χρήσεων. Ωστόσο, η ιλύς είναι φορέας ρύπων, όπως οι παθογόνοι μικροοργανισμοί και οι ξενοβιοτικές ουσίες, η ύπαρξη των οποίων βρίσκεται στο επίκεντρο των ενδιαφερόντων των ερευνητών. Ανάμεσα στις διάφορες διεργασίες που έχουν εφαρμοσθεί μέχρι σήμερα τόσο για την επεξεργασία της ιλύος, όσο και για την απομάκρυνση των ξενοβιοτικών παραγόντων από το περιβάλλον, οι βιολογικές διεργασίες φαίνεται να υπερτερούν αισθητά έναντι των άλλων.
Στόχος της παρούσας διατριβής ήταν η εφαρμογή μιας βιολογικής μεθόδου, της βιοσταθεροποίησης, για την επεξεργασία της ιλύος. Η ολοκλήρωση της μελέτης της βιοσταθεροποίησης έγινε με την ανάπτυξη ενός μαθηματικού μοντέλου ικανό να περιγράφει τη διεργασία. Παράλληλα, ερευνήθηκε η δυναμικότητα της διεργασίας αυτής στη βιοαποκατάσταση της ιλύος από το ξενοβιοτικό περιεχόμενό της. Επιπρόσθετα, μελετήθηκε η απομάκρυνση των ξενοβιοτικών ουσιών, μέσω της βιοαποδόμησής τους από αυτόχθονες μικροβιακούς πληθυσμούς της ιλύος, σε άλλα αερόβια περιβάλλοντα.
Η εφαρμογή της διεργασίας της βιοσταθεροποίησης πραγματοποιήθηκε σε κατάλληλη πειραματική διάταξη που σχεδιάστηκε και υλοποιήθηκε για το σκοπό αυτό. Η διάταξη αυτή επέτρεπε τον πλήρη έλεγχο και τη σωστή ρύθμιση της διεργασίας. Η ολοκλήρωση των πειραμάτων της λιπασματοποίησης έδειξε ότι η διεργασία αυτή μπορεί να εφαρμοσθεί ως μέθοδος επεξεργασίας και σταθεροποίησης της ιλύος, αρκεί να ρυθμιστούν κατάλληλα καθοριστικές φυσικές και χημικές παράμετροι. Τα αποτελέσματα έδειξαν, επίσης, ότι η διεργασία δεν παρεμποδίζεται από την παρουσία υψηλών αρχικών συγκεντρώσεων ξενοβιοτικών ουσιών στην ιλύ, ενώ αντίθετα οδηγεί στην απομάκρυνσή τους. Τα ποσοστά απομάκρυνσης ήταν ιδιαίτερα υψηλά προκειμένου για τις επιφανειοδραστικές ενώσεις και αρκετά σημαντικά για το φθαλικό εστέρα και τους πολυκυκλικούς αρωματικούς υδρογονάνθρακες. Φαίνεται, λοιπόν, ο πολυποίκιλος μικροβιακός πληθυσμός της βιοσταθεροποίησης να συμβάλλει στην ουσιαστική, αν όχι πλήρη, απομάκρυνση των ξενοβιοτικών ουσιών κατά τη διάρκεια της διεργασίας και να οδηγεί στην παραγωγή σταθερού και ασφαλούς τελικού προϊόντος.
Ωστόσο, υψηλά ποσοστά απομάκρυνσης των παραπάνω ξενοβιοτικών ουσιών κατέδειξαν και τα πειράματα που πραγματοποιήθηκαν σε αερόβιες υγρές μικτές καλλιέργειες. Ενδεχομένως, η μικροβιακή συνεργασία να παίζει τον καθοριστικό ρόλο στη βιοαποδόμηση αυτών των ουσιών.
Η παρούσα μελέτη θα μπορούσε να συνεισφέρει αποτελεσματικά στην ανάπτυξη μιας αξιόπιστης μεθόδου για τη διαχείριση της ιλύος. Συνολικά, η λιπασματοποίηση μπορεί να αποδειχθεί ένα χρήσιμο εργαλείο για την επιθυμητή βιώσιμη ανάπτυξη της κοινωνίας μας, αφού αφ’ ενός μπορεί να συμβάλλει στη λύση του περιβαλλοντικού προβλήματος της διαχείρισης της ιλύος που παράγεται από τις εγκαταστάσεις επεξεργασίας λυμάτων, που την απασχολεί έντονα, και αφ’ ετέρου μπορεί να εξουδετερώσει το παθογόνο περιεχόμενο και να εξαλείψει τις τοξικές ξενοβιοτικές ουσίες. / The continuously increased human activity of the last few decades, because of the intense urbanization and industrialization, has resulted in the production of a serious amount of wastes. Among these is sewage sludge, which is the semi-solid residue produced by municipal and industrial waste treatment plants. Although sludge is considered as a waste product which must be disposed, it is actually an underestimated resource. Specifically, sludge contains valuable nutrients and high thermal value making sludge appropriate for a wide range of uses. Nevertheless, the existence of pathogens and xenobiotics in sludge has attracted the interest of scientific community. Among various methods that have been used for sludge treatment, as well as the removal of xenobiotics from environmental systems, biological methods are advantageous.
The aim of the present work was to assess the sewage sludge treatment by a biological process, which is closed-vessel composting. This study involved also the development of a mathematical model capable of describing the composting process. The efficiency of bioremediation of xenobiotics content during sludge composting was also studied. Finally, the xenobiotics removal was investigated through biodegradation using sludge indigenous microbial populations in other aerobic environments.
A suitable experimental configuration was designed and constructed in order to study the composting process. The composting system was designed for complete control and regulation of the process. Based on the results of the composting experiments, it can be concluded that composting is an efficient method allowing for treating and stabilization of sewage sludge, provided that critical physicochemical parameters are adjusted. Results revealed also that composting process is not inhibited by the presence of high initial concentration of xenobiotics. On the contrary, composting results in removal of xenobiotics. With reference to surfactants (LAS.NP and NPEO), the removal percentages were particularly high, while the relevant percentages for phthalate ester and polycyclic aromatics hydrocarbons were also significant. It seems, then, that the variable microbial population of the composting mixture contributes to the elimination of xenobiotic compounds and results in a safe and stable final product.
The experiments which were conducted in aerobic mixed liquid cultures showed also high xenobiotic removal percentages. Probably, the microbial consortium could play a significant part in biodegradation of xenobiotic compounds.
The present study contributes to the development of a reliable method of sewage sludge treatment. The composting process, totally complies with the desirable sustainable growth for our society by the treatment of sludge produced in waste water treatment plants and by the elimination of the xenobiotic compounds that limit its valorisation.
|
Page generated in 0.0621 seconds