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Recirculating Water Treatment in Closed Hydroponic Systems: Assessment of Granular Activated Carbon and Soft Templated Mesoporous Carbon for Adsorptive Removal of Root Exudates

机译:封闭水培系统中的循环水处理:评估颗粒活性炭和软模板中孔碳对根系分泌物的吸附去除

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摘要

The present study deals with the characterization of reused nutrient solution (RNS) from a hydroponic farm (lettuce). Chemical analysis with GC-MS revealed the presence of eleven individual organic acids as a part of root exudates (acetic, acrylic, maleic, succinic, benzoic, phthalic, sebacic, myristic, palmitic, oleic and stearic acid). Based on these results, first batch tests were developed to determine the breakthrough time and the best kinetic model for adsorption of benzoic acid (as an indicator of these 11 organic acids) on two different types of carbon based adsorbents (granular activated carbon-GAC and soft templated mesoporous carbon-SMC). In order to evaluate the adsorption kinetics, four different kinetic models were fit to the experimental data. The pseudo-second-order best represented the experimental data for both adsorbents at all dosages, exhibiting high linear correlation coefficients (R~2≥0.98). Second, to gain a better understanding of the adsorption efficiency during the batch experiments, several parameters were measured (i.e., COD, UV_(254), pH and EC) and the effect of adsorbent dosages on these parameters was studied. Third, the effect of different flow rates and bed heights on the breakthrough curve was studied during column tests. These curves were fitted to four well-known fixed-bed adsorption models, namely Thomas, Bohart-Adams, Yoon-Nelson and BDST models. The latter model was found to be most suitable (R~2≥0.88) to predict the breakthrough curve for benzoic acid uptake on GAC in fixed bed column. Scale up analysis revealed that approximately 72 kg GAC is required to treat RNS during 27 days for a typical flow rate of 360 L h~(-1) (3200 kg L~(-1)).
机译:本研究处理了水培农场(生菜)中重复利用的营养液(RNS)的表征。用GC-MS进行的化学分析表明,有11种有机酸作为根系分泌物的一部分(乙酸,丙烯酸,马来酸,琥珀酸,苯甲酸,邻苯二甲酸,癸二酸,肉豆蔻酸,棕榈酸,油酸和硬脂酸)。根据这些结果,进行了第一批测试,以确定在两种不同类型的碳基吸附剂(颗粒活性炭-GAC和四氯化碳)上吸附苯甲酸(作为这11种有机酸的指示剂)的突破时间和最佳动力学模型。软模板介孔碳-SMC)。为了评估吸附动力学,将四个不同的动力学模型拟合到实验数据。伪二级数最能代表所有剂量下两种吸附剂的实验数据,具有较高的线性相关系数(R〜2≥0.98)。其次,为了更好地理解批处理实验中的吸附效率,测量了几个参数(即COD,UV_(254),pH和EC),并研究了吸附剂量对这些参数的影响。第三,在柱测试中研究了不同流速和床高对穿透曲线的影响。这些曲线拟合了四个著名的固定床吸附模型,即Thomas,Bohart-Adams,Yoon-Nelson和BDST模型。发现后一种模型最适合(R〜2≥0.88)预测固定床色谱柱中GAC吸收苯甲酸的穿透曲线。放大分析表明,在27天内,典型流量为360 L h〜(-1)(3200 kg L〜(-1)),需要大约72 kg GAC来处理RNS。

著录项

  • 来源
    《Environmental Processes》 |2019年第1期|1-23|共23页
  • 作者单位

    LIWET, Department of Industrial Biological Sciences, Ghent University, Campus Kortrijk, Graaf Karel De Goedelaan 5, B-8500 Kortrijk, Belgium;

    LIWET, Department of Industrial Biological Sciences, Ghent University, Campus Kortrijk, Graaf Karel De Goedelaan 5, B-8500 Kortrijk, Belgium;

    LIWET, Department of Industrial Biological Sciences, Ghent University, Campus Kortrijk, Graaf Karel De Goedelaan 5, B-8500 Kortrijk, Belgium;

    LIWET, Department of Industrial Biological Sciences, Ghent University, Campus Kortrijk, Graaf Karel De Goedelaan 5, B-8500 Kortrijk, Belgium;

    Industrial Catalysis and Adsorption Technology (INCAT), Department of Materials, Textiles and Chemical Engineering, Faculty of Engineering and Architecture, Ghent University, Valentin Vaerwyckweg 1, 9000 Ghent. Belgium;

    Industrial Catalysis and Adsorption Technology (INCAT), Department of Materials, Textiles and Chemical Engineering, Faculty of Engineering and Architecture, Ghent University, Valentin Vaerwyckweg 1, 9000 Ghent. Belgium;

    LIWET, Department of Industrial Biological Sciences, Ghent University, Campus Kortrijk, Graaf Karel De Goedelaan 5, B-8500 Kortrijk, Belgium;

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

    Closed hydroponics; Root exudates; Water treatment; Sustainability; Granular activated carbon (GAC); Soft templated mesoporous carbon (SMC);

    机译:封闭的水培;根渗出物;水处理;可持续性;粒状活性炭(GAC);软模板化介孔碳(SMC);

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