化工学报 ›› 2020, Vol. 71 ›› Issue (S1): 252-260.DOI: 10.11949/0438-1157.20191063
收稿日期:
2019-09-23
修回日期:
2019-12-17
出版日期:
2020-04-25
发布日期:
2020-04-25
通讯作者:
江燕斌
作者简介:
武君媛(1998—),女,本科,基金资助:
Junyuan WU(),Weizhi HUO,Zhiqiang LI,Jiaheng ZENG,Yanbin JIANG()
Received:
2019-09-23
Revised:
2019-12-17
Online:
2020-04-25
Published:
2020-04-25
Contact:
Yanbin JIANG
摘要:
选用玉米醇溶蛋白(zein)作为鞘层包裹材料、木质素磺酸钠(SLS)作为芯层强化材料,采用同轴电纺技术制备了可有效吸附重金属离子的zein-SLS纤维膜。优化了膜制备工艺条件,确定纺丝电压适宜为14 kV,芯鞘层进料速率比适宜为1∶1。TEM证实,SLS被成功包埋于zein纤维膜中,但其负载量、包埋率和流失率受溶液pH的影响。离子吸附测试结果表明,SLS的加入可强化zein纤维膜对三种金属离子Ni2+、Zn2+、Cd2+的吸附效果,其中对Zn2+吸附能力的强化效果最为显著,上述吸附过程符合准二级吸附动力学模型。同时,在酸性条件下,随着pH的上升,zein纤维膜对Ni2+、Zn2+、Cd2+的吸附能力逐渐提高。
中图分类号:
武君媛, 霍伟智, 李志强, 曾嘉恒, 江燕斌. 电纺zein-SLS纤维膜的制备及其离子吸附性能研究[J]. 化工学报, 2020, 71(S1): 252-260.
Junyuan WU, Weizhi HUO, Zhiqiang LI, Jiaheng ZENG, Yanbin JIANG. Preparation of coaxial electrospun zein nanofiber film embedding sodium lignosulfonate for enhanced adsorption of heavy metal ions[J]. CIESC Journal, 2020, 71(S1): 252-260.
图7 不同pH下zein-SLS纤维膜的负载量和包埋率(a)及流失率(b)
Fig.7 Loading capacity and encapsulation efficiency (a), and loss ratio (b) of electrospun zein-SLS film at different pH
离子种类 | 纤维膜种类 | 相关系数平方R2 | |
---|---|---|---|
准一级模型 | 准二级模型 | ||
Ni2+ | zein-zein | 0.9731 | 0.9962 |
zein-0 | 0.9079 | 0.9948 | |
zein-SLS | 0.8401 | 0.9906 | |
Zn2+ | zein-zein | 0.9129 | 0.9949 |
zein-0 | 0.9709 | 0.9875 | |
zein-SLS | 0.9451 | 0.9895 | |
Cd2+ | zein-zein | 0.9370 | 0.9781 |
zein-0 | 0.8521 | 0.9886 | |
zein-SLS | 0.9097 | 0.9885 |
表1 两种动力学模型的拟合参数
Table 1 Parameters of pseudo-first-order model and pseudo-second-order model
离子种类 | 纤维膜种类 | 相关系数平方R2 | |
---|---|---|---|
准一级模型 | 准二级模型 | ||
Ni2+ | zein-zein | 0.9731 | 0.9962 |
zein-0 | 0.9079 | 0.9948 | |
zein-SLS | 0.8401 | 0.9906 | |
Zn2+ | zein-zein | 0.9129 | 0.9949 |
zein-0 | 0.9709 | 0.9875 | |
zein-SLS | 0.9451 | 0.9895 | |
Cd2+ | zein-zein | 0.9370 | 0.9781 |
zein-0 | 0.8521 | 0.9886 | |
zein-SLS | 0.9097 | 0.9885 |
图9 不同pH下三种纤维膜对Ni2+、Zn2+ 和Cd2+的平衡吸附量
Fig.9 Equilibrium adsorption capacity of Ni2+, Zn2+ and Cd2+ on electrospun films with different core materials at different pH
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