Lityum Kazanımı ve Ön-Deriştirme İşlemleri için Partikül Formunda Sorbentlerin Geliştirilmesi
Göster/ Aç
Tarih
2020-09Yazar
Durdu Aydın, Aysun
Ambargo Süresi
Acik erisimÜst veri
Tüm öğe kaydını gösterÖzet
Within the scope of the thesis, development of particle-shaped titanium-based sorbents for
lithium recovery and preconcentration has been studied. For this purpose, it is aimed to use
Ti(OH)4–polymer composite microspheres, synthesized by a newly developed sol-gel
templating method, in the sorbent synthesis. Ti(OH)4–polymer composite microspheres
were reacted with both Li2CO3 and LiOH compounds at 700°C for 5 hours to synthesize
Li2TiO3 precursor. The resulting dilithium titanate precursor has a spherical form and a
porous structure. H2TiO3 ion sieve (sorbent) was obtained by treating Li2TiO3 particles
with a solution of HCl at 70°C. Li+ recovery of these sorbents from the aqueous solution
medium with porous spherical adsorbent, which is not available in the literature, was
investigated in batch system. In adsorption experiments, the effect of sorbent
concentration, Li initial concentration in the medium and the change in ambient pH value
on equilibrium Li adsorption of the sorbent used was investigated. Eti Mine Works General
Directorate Kırka Boron Operation Directorate Factory Weak solution was used as
adsorption medium containing lithium, different from the literature. Sorbent adsorbed only
B and Na ions from ions such as B, Na, Mg, Ca and K, found in media other than lithium.
iv
The separation coefficients (α) of B and Na ions relative to Li ion were calculated as 3.6
and 12, respectively.
The reusability of the prepared sorbent was studied and it was observed that the amount of
17.15 mg Li+/ g particle adsorption has decreased to 14 mg Li+/g particle adsorption as a
result of 5 consecutive usage. While the initial lithium concentration of the synthesized ion
sieve was in the range of 70-1700 mg/l, the amount of lithium adsorption was followed and
it was found that the adsorption value at the concentration of 1700 mg/l was 92.59 mg
Li+/g particles. The prepared titanium-based sorbent was compared with materials of
similar form used in the literature.
Bağlantı
http://hdl.handle.net/11655/23177Koleksiyonlar
Aşağıdaki lisans dosyası bu öğe ile ilişkilidir: