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Adsorption performance of standard biochar materials against volatile organic compounds in air: A case study using benzene and methyl ethyl ketone

机译:空气中标准生物炭材料对挥发性有机化合物的吸附性能:用苯和甲基乙基酮的案例研究

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摘要

Recently, biochars have been proposed as highly efficient and low-cost media for the adsorptive removal of various hazardous compounds. However, there is a dearth of literature focusing on adsorption performance of biochars against gaseous volatile organic compounds (VOCs). In light of this limitation, the adsorption performances of 12 standard biochars made of six different raw materials (i.e., Miscanthus straw pellets, oil seed rape straw pellets, rice husk, sewage sludge, soft wood pellets, and wheat straw pellets) at two pyrolysis temperature conditions (i.e., 550 degrees C and 700 degrees C) were investigated against two model gaseous VOCs (i.e., benzene and methyl ethyl ketone (MEK)) at 1 Pa each. The breakthrough volume (BTV) and partition coefficient (PC) of benzene at 10% BTV, when measured for all these biochars, varied from 1.4 to 10 L atm g(-1) and 6.E-04 to 1.4E-02 mol kg(-1) Pa-1, respectively. Similarly, their counterpart values for MEK were 1.8 to 40 L atm g(-1) and 1.E-03 to 2.E03 mol kg(-1) Pa-1, respectively. The largest adsorption capacity values for benzene (2.9 mg g(-1)) and MEK (43 mg g(-1)) were observed from the soft wood pellet biochar prepared at 700 degrees C (SWP700) and rice husk biochar prepared at 550 degrees C (RH550), respectively. The results indicate that most biochars adsorbed MEK preferentially over benzene. The adsorption of MEK appeared to be primarily influenced by surface features and composition of each specific biochar, while that of benzene was proportionate to their surface area. Overall, the results of this investigation are expected to help establish technical standards for effective removal of gaseous VOCs by biochars.
机译:最近,Biochars已被提出为高效和低成本的培养基,用于吸附各种危险化合物。然而,有一种缺乏的文献,重点是对气态挥发性有机化合物(VOC)的Biochars的吸附性能。鉴于这种限制,在两次热解中,由六种不同的原料(即,Miscanthus秸秆颗粒,油籽油秸秆,稻壳,污水污泥,软木颗粒,麦秸粒料和小麦秸秆颗粒)制成的12个标准生物脉冲的吸附性能针对每个模型气体VOC(即,在1Pa的两个模型气体VOC(即苯和甲基乙基酮(MEK))上研究温度条件(即550℃和700℃)。对于所有这些生物脉管测量,苯的突破体积(BTV)和分配系数(PC)在10%BTV时,从1.4到10L ATM G(-1)和6.E-04至1.4E-02Mol变化kg(-1)PA-1分别。类似地,MEK的对应物值分别为1.8至40Latm G(-1)和1.E-03至2.E03 mol kg(-1)PA-1。从700摄氏度(SWP700)和550℃下制备的稻壳生物炭,从软木颗粒生物炭中观察到苯的最大吸附容量值(2.9mg(-1))和MEK(43mg g(-1))分别为C(RH550)。结果表明,大多数生物肢优先吸附在苯上的MEK。 MEK的吸附似乎主要受到每种特异性生物炭的表面特征和组成的影响,而苯的苯是与它们的表面积成比例。总体而言,该调查的结果预计有助于建立通过Biochars有效去除气态VOC的技术标准。

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