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Equilibrium and kinetic studies on biosorption potential of charophyte biomass to remove heavy metals from synthetic metal solution and municipal wastewater

机译:藻类生物质从合成金属溶液和市政废水中去除重金属的生物吸附潜力的平衡和动力学研究

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摘要

The risk of heavy metal contamination in domestic water causes serious health and environmental problems. Biosorption has been considered as an efficient and alternative way for treatment of heavy metal-contaminated wastewater. The potentials of dried charophytes, Chara aculeolata and Nitella opaca, to biosorb lead (Pb), cadmium (Cd), and zinc (Zn) from synthetic solutions and municipal wastewater were investigated. The efficiency of metal removal was studied under varied conditions in different sorbent dosages, pH, and contact times. Biosorption isotherm and kinetics were used to clarify heavy metal preference and biosorption mechanism. C. aculeolata and N. opaca performed well in the biosorption of all three metal ions, with preference towards Pb, followed by Cd and Zn, in the single-metal solutions. Pb adsorption onto algal biomass followed first-order rate kinetics (N. opaca) and intraparticle diffusion (C. aculeolata and N. opaca). These results indicated physical adsorption process between Pb ions and both algal biomasses. Cd and Zn biosorption kinetics fitted the second-order rate model, indicating chemical adsorption between metal ions and both algae. The experimental data of three-metal biosorption fitted well to Langmuir isotherm model, suggesting that the metal ion adsorption occurred in a monolayer pattern on a homogeneous surface. C. aculeolata exhibited slightly higher maximum uptake of Pb, Cd, and Zn (105.3mgPb/g, 23.0mgCd/g, 15.2mgZn/g) than did N. opaca (104.2mgPb/g, 20.5mgCd/g, 13.4mgZn/g). In multi-metal solutions, antagonistic effect by metal competition was observed. The ability of charophytes to remove Pb and Zn was high in real municipal water (81-100%). Thus, the charophytic biomass may be considered for the treatment of metal contamination in municipal wastewater.
机译:生活用水中重金属污染的风险会导致严重的健康和环境问题。生物吸附被认为是处理重金属污染废水的一种有效的替代方法。研究了干燥的佛手藻,小球藻Chara aculeolata和Nitella opaca从合成溶液和城市废水中生物吸附铅(Pb),镉(Cd)和锌(Zn)的潜力。在不同的吸附剂剂量,pH和接触时间的不同条件下研究了金属去除效率。使用生物吸附等温线和动力学来阐明重金属的偏爱和生物吸附机理。 C. aculeolata和N. opaca在所有三种金属离子的生物吸附方面均表现出色,在单金属溶液中对Pb优先,其次为Cd和Zn。铅在藻类生物质上的吸附遵循一级速率动力学(N. opaca)和颗粒内扩散(C. aculeolata和N. opaca)。这些结果表明Pb离子和两种藻类生物质之间的物理吸附过程。镉和锌的生物吸附动力学符合二阶​​速率模型,表明金属离子与两种藻类之间的化学吸附。三金属生物吸附的实验数据很好地拟合了朗缪尔等温线模型,表明金属离子吸附以单层模式发生在均匀表面上。与小叶猪笼草(104.2mgPb / g,20.5mgCd / g,13.4mgZn / g)相比,小球藻的Pb,Cd和Zn最大吸收量(105.3mgPb / g,23.0mgCd / g,15.2mgZn / g)略高。 G)。在多金属溶液中,观察到金属竞争产生的拮抗作用。在实际的市政用水中,藻类植物去除Pb和Zn的能力很高(81-100%)。因此,可以考虑将有碱性的生物质用于处理城市废水中的金属污染。

著录项

  • 来源
    《Bioremediation journal》 |2016年第3期|240-251|共12页
  • 作者单位

    Rajamangala Univ Technol Tawan Ok, Fac Agr & Nat Resources, Dept Agr Engn & Technol, Chon Buri, Thailand|Mahidol Univ, Dept Biol, Fac Sci, Rama 6 Rd, Bangkok 10400, Thailand;

    Mahidol Univ, Dept Biol, Fac Sci, Rama 6 Rd, Bangkok 10400, Thailand|Minist Educ, CHE, Ctr Excellence Environm Hlth & Toxicol EHT, Bangkok, Thailand;

    Mahidol Univ, Dept Biol, Fac Sci, Rama 6 Rd, Bangkok 10400, Thailand|Minist Educ, CHE, Ctr Excellence Environm Hlth & Toxicol EHT, Bangkok, Thailand;

    Mahidol Univ, Dept Biol, Fac Sci, Rama 6 Rd, Bangkok 10400, Thailand|Minist Educ, CHE, Ctr Excellence Environm Hlth & Toxicol EHT, Bangkok, Thailand;

    Minist Educ, CHE, Ctr Excellence Environm Hlth & Toxicol EHT, Bangkok, Thailand|Mahidol Univ, Fac Publ Hlth, Dept Environm Hlth Sci, Bangkok, Thailand;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosorption; Chara aculeolata; charophyte; heavy metal; Nitella opaca; wastewater;

    机译:生物吸附;小球藻(Chara aculeolata);叶藻;重金属;黑暗的尼特拉(Nitella);废水;废水;
  • 入库时间 2022-08-18 01:09:36

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