by
Cihanoğlu, Aydın, author.
Format:
El Yazması
Alıntı:
Development of antifouling nanofiltration and antibiofouling ultrafiltration polymeric membranes
by
Güngörmüş Deliismail, Elif, author.
Format:
El Yazması
Alıntı:
Development of innovative polymeric membranes using green approaches for water and energy
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by
Çağlar, Nağahan, author.
Format:
El Yazması
Alıntı:
Polymeric membranes.
by
Erdem, İlker.
Format:
El Yazması
Alıntı:
asymmetric multilayer ceramic membranes. Support is the layer responsible for mechanical stability while top
by
Çetin, Pınar, author.
Format:
El Yazması
Alıntı:
/purification. The aim of this MSc study was to produce tubular ceramic micro/ultrafiltration membranes for the
by
Odabaşı, İklima, author.
Format:
El Yazması
Alıntı:
analysis was conducted. The performances of the membranes were determined through the characterization of
by
Yücel, Müge, author.
Format:
El Yazması
Alıntı:
) polymeric membranes and ii) conducting layer. Poly(vinylidene fluoride) (PVDF), polystyrene (PS), and poly
by
Yaldız, Safiye, author.
Format:
El Yazması
Alıntı:
. Desalination performances of the ceramic NF membranes depend on the concentration and chemical structure of the
by
Yaltrık, Kaan, author.
Format:
El Yazması
Alıntı:
membranes which would be prepared by using these polymeric sols in the near future may generate valuable
by
Yılmaz, Kenan, author.
Format:
El Yazması
Alıntı:
Membrane applications in the industry currentlyis dominated by polymeric membranes, however, in
by
Berber, Emine, author.
Format:
El Yazması
Alıntı:
membranes with high surface to volume ratio. Besides the large surface area of the fibrous membranes, their
by
Ebil, Özgenç.
Format:
El Yazması
Alıntı:
an increasing interest in polymeric composite membranes, most of the previous work concentrated on
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