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羟基磷灰石/甘蔗渣生物质炭对水中Cd2+的动态吸附研究
引用本文:张庆,李欢欢,梁美娜,徐水萍,颜利玲.羟基磷灰石/甘蔗渣生物质炭对水中Cd2+的动态吸附研究[J].工业安全与环保,2019,45(7):81-85.
作者姓名:张庆  李欢欢  梁美娜  徐水萍  颜利玲
作者单位:桂林理工大学环境科学与工程学院 广西桂林541004;广西环境污染控制理论与技术重点实验室 广西桂林541004;桂林理工大学环境科学与工程学院 广西桂林541004
基金项目:国家自然科学基金;广西自然科学基金;广西重点实验室研究项目
摘    要:以羟基磷灰石/甘蔗渣生物质炭为吸附剂,对水中重金属镉进行了吸附实验。研究了pH值、Cd2+质量浓度、吸附剂质量、动态流速等对穿透曲线的影响。结果表明,穿透时间随着pH值、吸附剂量的增加而增大,随着Cd2+质量浓度、动态流速的增加而缩短。Thomas模型常数(KTH)随着pH值、吸附剂量的增加而增大,随着初始Cd2+质量浓度、动态流速的增加而减小,由Thomas模型拟合计算获得其对Cd2+的饱和吸附量为43.15 mg/g。Adams-Bohart模型常数(KAB)随着初始Cd2+质量浓度、动态流速增加而减小,随着pH值、吸附剂量增加而增大。

关 键 词:羟基磷灰石  甘蔗渣生物质炭  吸附  

Dynamic Adsorption Characteristics of Cadmium from Water by Hydroxyapatite/Bagasse Biomass Adsorbent
ZHANG Qing,LI Huanhuan,LIANG Meina,XU Shuiping,YAN Liling.Dynamic Adsorption Characteristics of Cadmium from Water by Hydroxyapatite/Bagasse Biomass Adsorbent[J].Industrial Safety and Dust Control,2019,45(7):81-85.
Authors:ZHANG Qing  LI Huanhuan  LIANG Meina  XU Shuiping  YAN Liling
Institution:(College of Environmental Science and Engineering, Guilin university of Technology Guilin, Guangxi 541004)
Abstract:Cadmium in water was adsorbed by hydroxyapatite/bagasse biochar(HAP-BC) as adsorbent. The effects of pH value, Cd 2+ mass concentration, adsorbent mass and dynamic flow rate on the penetration curve were studied. The results show that the variation trend of penetration time increases with the increase of pH value and adsorption dose, the penetration time decreases with the increase of Cd 2+ mass concentration and dynamie flow rate. The Thomas model constant ( K TH ) increases with the increase of pH value and adsorption dose, and decreases with the increase of initial Cd 2+ mass concentration and dynamic flow rate. The saturated adsorption capacity of Cd 2+ is 43.15 mg/g obtained by fitting the Thomas Model. The adams-bohart model constant ( K AB ) decreases with the increase of initial Cd 2+ mass concentration and dynamic flow rate, and increases with the increase of pH value, adsorption dose.
Keywords:hydroxyapatite  bagasse biochar  adsorption  cadmium
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