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Arsenate Adsorption from Aqueous Solution onto Fe(Ⅲ)-Modified Crop Straw Biochars

机译:将从水溶液吸附到Fe(Ⅲ)制定的作物秸秆生物谱中的吸附

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摘要

Biochars generated from peanut straw (PS) and rice straw (RS) were modified using Fe(III), which were then evaluated for As(V) adsorption in batch experimental systems. Results indicated that noncrystalline Fe hydroxides formed on the biochars during modification, reducing the negative charge on the biochar surface, and consequently the electrostatic repulsion to As(V) adsorption. Adsorption capacities of unmodified biochars for As(V) were low, but Fe(III) modification considerably enhanced As(V) adsorption by the biochars. The Langmuir isotherm fit the adsorption data well and could be used to describe As(V) adsorption by the Fe(III)-modified biochars. Maximum adsorption capacities for As(V), calculated using the Langmuir equation, were 33.7g/kg for Fe(III)-modified PS biochar and 27.0g/kg for Fe(III)-modified RS biochar at pH 5.0. As(V) adsorption capacities of both Fe(III)-modified biochars were much greater than that for goethite (13.1g/kg) at pH 5.0. As(V) was mainly adsorbed by the Fe(III)-modified biochars through the formation of inner-sphere complexes on the surfaces of the biochars. Adsorption of As(V) by the Fe(III)-modified biochars increased as the solution pH fell, meaning that they could be efficient adsorbents to remove As(V) from acidic water. Fe(III)-modified PS biochar was more efficient than Fe(III)-modified RS biochar for adsorption of As(V). This is the first report of Fe(III)-modified crop straw biochars as adsorbents for As(V). The findings obtained in the present study are of practical significance in developing new low-cost adsorbents to remove arsenate and other anion pollutants from water.
机译:使用Fe(III)改性从花生秸秆(PS)和稻草(RS)产生的生物脉,然后在分批实验系统中评估其作为(v)吸附。结果表明,在改性期间在生物脉冲中形成的非晶氢氢氧化物,从而降低生物炭表面上的负电荷,从而使静电排斥为(V)吸附。由于(v)的未经修改的生物脉的吸附容量低,但Fe(iii)修饰显着增强了Biochars的(v)吸附。 Langmuir等温机良好地适合吸附数据,可用于描述Fe(III)制定的Biochars的(v)吸附。使用Langmuir方程计算的(v)的最大吸附容量为Fe(III)-modified的PS Biochar和27.0g / kg用于pH 5.0的Fe(III)的27.0g / kg。作为(v)Fe(III)制型生物脉的吸附能力远大于pH 5.0的霉菌(13.1g / kg)。由于(v)主要由Fe(III) - 通过形成生物脉内的表面上形成内球络合物来吸附Fe(III)的生物脉。随着溶液pH下降,Fe(III)级化的Biochars的吸附(v)的吸附增加,这意味着它们可以是高效的吸附剂,以从酸性水中除去(v)。 Fe(iii)-modied ps Biochar比Fe(III)的含量更有效,用于吸附AS(v)。这是Fe(III)制型作物秸秆生物稻草作为(v)的吸附剂的第一个报告。在本研究中获得的发现对于开发新的低成本吸附剂以除去水中的砷酸盐和其他阴离子污染物,具有实际意义。

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  • 来源
    《Environmental Engineering Science》 |2015年第11期|922-929|共8页
  • 作者单位

    Chinese Acad Sci Inst Soil Sci State Key Lab Soil & Sustainable Agr Nanjing 210008 Jiangsu Peoples R China|Nanjing Agr Univ Coll Resource & Environm Nanjing Jiangsu Peoples R China|Beijing Larkworld Environm Technol Co Ltd East Branch Nanjing Jiangsu Peoples R China;

    Chinese Acad Sci Inst Soil Sci State Key Lab Soil & Sustainable Agr Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci Inst Soil Sci State Key Lab Soil & Sustainable Agr Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci Inst Soil Sci State Key Lab Soil & Sustainable Agr Nanjing 210008 Jiangsu Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    As(V) adsorption; crop straw; Fe(III)-modified biochar; zeta potential;

    机译:AS(v)吸附;作物吸管;FE(III) - 制定的生物炭;Zeta潜力;

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