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Application of an adsorptive-thermocatalytic process for BTX removal from polluted air flow

机译:吸附-热催化工艺在污染空气中去除BTX的应用

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Background Zero valent iron and copper oxide nanoparticles (30-60 nm) were coated on a bed of natural zeolite (Clinoptilolite) with 1-2 mm grains and arranged as a dual filter in a stainless steel cylindrical reactor (I.D 4.5 cm and L?=?30 cm) to investigating the coated bed removal efficiency for BTX. The experiments were conducted in three steps. First, with an air flow of 1.5 L/min and temperature range of 38 (ambient temperature) to 600°C the BTX removal and mineralization was surveyed. Then, in an optimized temperature the effect of flow rate and pollution loading rate were surveyed on BTX removal. Results The BTX removal at 300 and 400°C were respectively up to 87.47% and 94.03%. Also in these temperatures respectively 37.21% and 90.42% of BTX mineralization were achieved. In the retention times of 14.1 s and 7.05 s, respectively 96.18% and 78.42% of BTX was removed. Conclusions According to the results, this adsorptive-thermocatalytic process with using Clinoptilolite as an adsorbent bed and combined Fe0 and Cu2O nanoparticles as catalysts can be an efficient and competitive process in the condition of high flow rate and high pollution loading rate with an adequate process temperature of 350°C.
机译:背景技术将零价铁和氧化铜纳米粒子(30-60 nm)涂覆在具有1-2 mm晶粒的天然沸石(斜发沸石)床上,并作为双重过滤器布置在不锈钢圆柱反应器(ID 4.5 cm和L?)中。 =?30 cm)以研究BTX的涂层床去除效率。实验分三步进行。首先,以1.5 L / min的空气流量和38(环境温度)至600°C的温度范围进行了BTX去除和矿化的调查。然后,在最佳温度下,研究了流速和污染负荷率对BTX去除的影响。结果在300℃和400℃下BTX去除率分别达到87.47%和94.03%。同样在这些温度下,分别实现了37.21%和90.42%的BTX矿化。在14.1 s和7.05 s的保留时间内,分别去除了96.18%和78.42%的BTX。结论根据结果,以斜发沸石为吸附床,并结合Fe0和Cu2O纳米颗粒作为催化剂的吸附-热催化工艺在高流量和高污染负荷率且工艺温度合适的情况下是一种有效而竞争的工艺。 350℃。

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