Low-temperature one-pot synthesis of Fe-doped hydrotalcite for enhanced boron adsorption and reduced dissolution loss

被引:1
|
作者
Bai, Chun [1 ]
Luo, Qinglong [2 ]
Zhang, Huifang [2 ]
Dong, Mingzhe [2 ]
Li, Jun [2 ]
Wang, Xueying [3 ]
Li, Mingzhen [2 ]
Ma, Fuliang [1 ]
Wu, Zhijian [2 ]
Du, Xiao [4 ]
机构
[1] Qinghai Univ, Coll Chem Engn, Xining 810016, Peoples R China
[2] Chinese Acad Sci, Qinghai Inst Salt Lakes, Key Lab Creen & High end Utilizat Salt Lake Resour, Qinghai Prov Key Lab Resources & Chem Salt Lakes, Xining 810008, Qinghai, Peoples R China
[3] Xinjiang Univ, Coll Chem Engn & Technol, Urumqi 830017, Peoples R China
[4] Taiyuan Univ Technol, Coll Chem Engn & Technol, Taiyuan 030024, Peoples R China
关键词
Layered double hydroxide; Boron adsorption; Fe-LiAl-LDHs; Salt Lake brine; REMOVAL; WATER;
D O I
10.1016/j.desal.2024.118391
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Based on the anion exchangeability between the layers of layered double hydroxides (LDHs) and the properties of metal element doping to reduce the dissolution rate. The synthesis strategies for MgAl-LDHs and Fe-doped LiAlLDHs were obtained by one-step, low temperature (40 degrees C) and rapid synthesis and were used for the separation of boron in brine. It was found that Fe-doped LiAl-LDHs (42.07 mg/g) had the characteristics of promoting boron adsorption compared to MgAl-LDHs (5.38 mg/g). In addition, the adsorption of boron from solution is due to the anion exchange between layers, and pH has a serious influence on boron adsorption by Fe-LiAl-LDHs. According to the DFT calculations, LiAl-LDH/Fe-LiAl-LDH can only adsorb B(OH)4-, and its boron adsorption mechanism is interlayer anion exchange. Furthermore, Fe doping increases LiAl-LDH stability while promoting B(OH)4- adsorption. In addition, Fe-doped LiAl-LDHs (0.446 %) had a low Al dissolution rate compared to LiAl-LDHs (4.359 %) after 10 cycles of adsorption and desorption. The Langmuir and pseudo-second-order kinetic models were consistent with the boron adsorption behavior of Fe-doped LiAl-LDHs, and the boron adsorption benefitted from temperature increased. The weak acid desorption process not only preserved the structural integrity of the Fe-LiAl LDHs but also showed a remarkable adsorption capacity of 32.16 mg/g when applied to the brine of Xiao Qaidam salt lake. These results highlight the potential of using this adsorbent for efficient boron separation in brines.
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页数:9
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