Energetic Surface Properties in Crystallization Fouling on Modified Surfaces
close menu
Bookswagon
search
My Account
Book 1
Book 2
Book 3
Book 1
Book 2
Book 3
Book 1
Book 2
Book 3
Book 1
Book 2
Book 3
Home > Art, Film & Photography > Energetic Surface Properties in Crystallization Fouling on Modified Surfaces
Energetic Surface Properties in Crystallization Fouling on Modified Surfaces

Energetic Surface Properties in Crystallization Fouling on Modified Surfaces


     0     
5
4
3
2
1



Out of Stock


Notify me when this book is in stock
X
About the Book

A modern approach to mitigating crystallization (CaSO4) fouling effectively is to modify heat exchanger surfaces with regard to their surface free energy (SFE) properties. Applying DLC (diamond-like carbon) coatings to the surface provides the possibility to design the SFE parameters. Until now the mitigating effect is not fully understood, although the surface modifications proved their functionality in various fouling experiments. It is discussed in literature that a low total SFE and especially high polar interactions are key factors for mitigating fouling propensities. From literature, it is found that altered SFE of DLC coatings can result from various cleaning treatments. Therefore, it was investigated how the SFE of diverse solid substrates reacts to consecutive cleaning acid, base and thermal treatments. The thermal and base treatments resulted in significant increases of SFE, especially for polar components. In most cases three repetitions of the respective treatment resulted in a constant property state, withstanding further treatment. Another focus was put on conditioning procedures to test the extent of altering SFE properties and reproduce the constant SFE state. Two appropriate conditioning procedures could be identified for two DLC modifications. A new investigation procedure is introduced integrating conditioning for fouling determination. In it, surface characterizations were performed, such as analysis for roughness parameters, SFE properties and elemental composition. Hereby, several parameter changes were detected before and after the initial fouling experiment, the conditioning procedure and the consecutive fouling experiments. One type of coating provided excellent fouling mitigation properties after conditioning, which increased the total SFE and polar components significantly. . Further, it could be shown that after conditioning, consecutive fouling experiments altered the SFE parameters, especially the Lewis base polar and acid components and therewith the total SFE. However, fouling propensities could not be correlated to a definite set of SFE parameter, since the SFE altered to no recognizable pattern over the performed investigation procedure. A model needed to be addressed to qualify favorable surface parameters for fouling mitigation. Several models were considered to study the contribution of molecular interactions to adhesion propensities. From classical nucleation theory, it could be determined that the critical nucleus size for stable nucleation forms at nano-scale. The plate-sphere model was considered to assess adhesion propensities resulting from molecular interactions between calcium sulfate particles and solid substrates immersed in water. The evaluation clearly identified Lewis acid-base polar interactions to be the determining factor to achieve repulsive particle-wall interactions. Lifshitz-van der Waals interactions led to attraction in all examined setups. The contribution to the total energy of interaction resulting from electrostatic double layer gained importance at mid-range. Thus, general rules for repulsion could be concluded. Moreover, the plate-sphere model provides the most promising possibility for fouling assessment when SFE properties are considered. Ein Ansatz um Kristallisationsfouling dauerhaft zu mindern, besteht in der oberflachenenergetischen Modifikation von warmeubertragenden Flachen. So genannte DLC (diamond-like carbon) Beschichtungen sind hierfur besonders gunstig, da ihre oberflachenenergetischen Parameter eingestellt werden konnen. Allerdings ist der Wirkmechanismus, den die Oberflachenenergie (OFE) auf den Ablagerungsprozess ausubt, bis heute noch nicht vollends aufgeklart. In der Literatur werden fur die Minderung des Foulingaufkommens insbesondere eine geringe Gesamt-OFE und ein relativ großer polarer Lewis-Base-Anteil als vorteilhaft diskutiert. Wenn die Beschichtungen zyklisc


Best Sellers


Product Details
  • ISBN-13: 9783736996069
  • Binding: Paperback
  • Language: English
  • Width: 249 mm
  • ISBN-10: 3736996063
  • Height: 210 mm
  • Weight: 11 gr


Similar Products

Add Photo
Add Photo

Customer Reviews

REVIEWS      0     
Click Here To Be The First to Review this Product
Energetic Surface Properties in Crystallization Fouling on Modified Surfaces
-
Energetic Surface Properties in Crystallization Fouling on Modified Surfaces
Writing guidlines
We want to publish your review, so please:
  • keep your review on the product. Review's that defame author's character will be rejected.
  • Keep your review focused on the product.
  • Avoid writing about customer service. contact us instead if you have issue requiring immediate attention.
  • Refrain from mentioning competitors or the specific price you paid for the product.
  • Do not include any personally identifiable information, such as full names.

Energetic Surface Properties in Crystallization Fouling on Modified Surfaces

Required fields are marked with *

Review Title*
Review
    Add Photo Add up to 6 photos
    Would you recommend this product to a friend?
    Tag this Book Read more
    Does your review contain spoilers?
    What type of reader best describes you?
    I agree to the terms & conditions
    You may receive emails regarding this submission. Any emails will include the ability to opt-out of future communications.

    CUSTOMER RATINGS AND REVIEWS AND QUESTIONS AND ANSWERS TERMS OF USE

    These Terms of Use govern your conduct associated with the Customer Ratings and Reviews and/or Questions and Answers service offered by Bookswagon (the "CRR Service").


    By submitting any content to Bookswagon, you guarantee that:
    • You are the sole author and owner of the intellectual property rights in the content;
    • All "moral rights" that you may have in such content have been voluntarily waived by you;
    • All content that you post is accurate;
    • You are at least 13 years old;
    • Use of the content you supply does not violate these Terms of Use and will not cause injury to any person or entity.
    You further agree that you may not submit any content:
    • That is known by you to be false, inaccurate or misleading;
    • That infringes any third party's copyright, patent, trademark, trade secret or other proprietary rights or rights of publicity or privacy;
    • That violates any law, statute, ordinance or regulation (including, but not limited to, those governing, consumer protection, unfair competition, anti-discrimination or false advertising);
    • That is, or may reasonably be considered to be, defamatory, libelous, hateful, racially or religiously biased or offensive, unlawfully threatening or unlawfully harassing to any individual, partnership or corporation;
    • For which you were compensated or granted any consideration by any unapproved third party;
    • That includes any information that references other websites, addresses, email addresses, contact information or phone numbers;
    • That contains any computer viruses, worms or other potentially damaging computer programs or files.
    You agree to indemnify and hold Bookswagon (and its officers, directors, agents, subsidiaries, joint ventures, employees and third-party service providers, including but not limited to Bazaarvoice, Inc.), harmless from all claims, demands, and damages (actual and consequential) of every kind and nature, known and unknown including reasonable attorneys' fees, arising out of a breach of your representations and warranties set forth above, or your violation of any law or the rights of a third party.


    For any content that you submit, you grant Bookswagon a perpetual, irrevocable, royalty-free, transferable right and license to use, copy, modify, delete in its entirety, adapt, publish, translate, create derivative works from and/or sell, transfer, and/or distribute such content and/or incorporate such content into any form, medium or technology throughout the world without compensation to you. Additionally,  Bookswagon may transfer or share any personal information that you submit with its third-party service providers, including but not limited to Bazaarvoice, Inc. in accordance with  Privacy Policy


    All content that you submit may be used at Bookswagon's sole discretion. Bookswagon reserves the right to change, condense, withhold publication, remove or delete any content on Bookswagon's website that Bookswagon deems, in its sole discretion, to violate the content guidelines or any other provision of these Terms of Use.  Bookswagon does not guarantee that you will have any recourse through Bookswagon to edit or delete any content you have submitted. Ratings and written comments are generally posted within two to four business days. However, Bookswagon reserves the right to remove or to refuse to post any submission to the extent authorized by law. You acknowledge that you, not Bookswagon, are responsible for the contents of your submission. None of the content that you submit shall be subject to any obligation of confidence on the part of Bookswagon, its agents, subsidiaries, affiliates, partners or third party service providers (including but not limited to Bazaarvoice, Inc.)and their respective directors, officers and employees.

    Accept


    Inspired by your browsing history


    Your review has been submitted!

    You've already reviewed this product!