2016
DOI: 10.1007/s40808-016-0219-2
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Application of nanochitosan and chitosan particles for adsorption of Zn(II) ions pollutant from aqueous solution to protect environment

Abstract: Existence of heavy metals like zinc within water source is considered as one of the most important environmental problems. Accumulating within alive tissues, zinc raises various diseases and disorders. Chitosan is a hydrophilic polymer which is raised from acetyl groups of chitin from alkaline solution: it is employed widely as a well-known adsorbent for removing heavy metal ions. Present study aimed at optimizing the production of chitosan nano size particles by method of calvo and compared the adsorption of … Show more

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Cited by 29 publications
(13 citation statements)
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“…As the temperature increases, the velocity of the chitosan molecules in the solution increases, which promotes chitosan desorption and reduces the loading. This trend also indicates that the loading of chitosan onto the bentonite surface is an exothermic reaction [21].…”
Section: Chitosan Loading Parametersmentioning
confidence: 68%
“…As the temperature increases, the velocity of the chitosan molecules in the solution increases, which promotes chitosan desorption and reduces the loading. This trend also indicates that the loading of chitosan onto the bentonite surface is an exothermic reaction [21].…”
Section: Chitosan Loading Parametersmentioning
confidence: 68%
“…Thus, it is more efficient to supplement fishmeal-based diet with CSNP that has higher effective chelation capacity for heavy metal compared to CS. Small size, large surface and high stability may be the reasons for CSNP high ability of chelation (Seyedmohammadi et al, 2016;Zareie et al, 2019). The higher density of adsorption sites of CSNP increases the probability of coordinate bond formation between the CSNP functional group and heavy metals compared to CS (Yu et al, 2013).…”
Section: Ismaiel Et Al (2015)mentioning
confidence: 99%
“… Chitosan and nanochitosan -pH 7 and 5 as optimum. -Nanochitosan compared to Chitosan particles had higher removal efficiency for Zinc metal ions due to nano-size and larger surfaces area Zn 2+ [ 34 ] −90.80% and 99.10 % adsorption observed. -Utmost adsorption capacities to adsorb of 196.07 and 370.37 mg g −1 , respectively.…”
Section: Carbohydrate Biopolymers Based Adsorbentsmentioning
confidence: 99%
“…Adsorption kinetics followed a pseudo second order model. Nanochitosan compared to chitosan particles had a higher removal efficiency for Zinc metal ions due to the nano -sized particles, larger adsorption surfaces and more functional groups [ 34 ].…”
Section: Carbohydrate Biopolymers Based Adsorbentsmentioning
confidence: 99%