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首页> 外文期刊>Journal of the air & waste management association >Biotrickling filtration of airborne styrene: A comparison of filtration media
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Biotrickling filtration of airborne styrene: A comparison of filtration media

机译:空气苯乙烯的生物滴流过滤:过滤介质的比较

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摘要

This study compares the performances of fern and plastic chips as packing media for the biofiltration of a styrene-laden waste gas stream emitted in a plant for the manufacture of plastic door plates. Fern chips (with a specific surface area of 1090 m~2 m~(-3)) and plastic chips (with a specific surface area of 610 m~2 m~(-3)) were packed into a pilot-scale biotrickling filter with a total medium volume of 50 L for the performance test. Field waste gas with styrene concentrations in the range of 161-2390 mg Am~(-3) at 28-30 ℃) was introduced to the bed and a fixed empty-bed retention time (EBRT) of 21 sec, a volumetric gas flow rate of 8.57 m~3 hr~(-1), and superficial gas velocity of 53.6 m hr~(-1) were maintained throughout the experimental period. Nutrients containing metal salts, nitrogen, phosphorus, and milk were supplemented to the filters for maintaining the microbial activities. Results reveal that the biotrickling filter developed in this study had the highest styrene monomer (SM) elimination capacities (170 g m~(-3) hr~(-1) for fern-chip packing and 300 g m~(-3) hr~(-1) for plastic-chip packing) among those cited in the literature. The plastic medium is a favorable substitute for endangered fern chips. The thermal-setting nature of plastic chips limits their recycle and reuse as raw materials, and the study provides an opportunity for the utilization of the materials. Implications: Biotreatment of contaminants in air streams offers an inexpensive and efficient alternative to conventional technologies. Biofiltration has a great potential for the degradation of gas-borne styrene and total hydrocarbon (THC) removal efficiency of around 80%. The objective of this research was to compare the performances of fern chips and a kind of plastic chips as packing media for biofiltration of the styrene-laden waste gas stream emitted from cutting operations of stripes of premixed unsaturated polyester (UP) and styrene paste before hot-pressing operations for making plastic door plates. From a practical point of view, the plastic medium can be a good substitute medium for fern chips, which has been declared as a protected plant. This study provides an experimentally verified model for the design and operation of such biotreatment systems.
机译:这项研究比较了蕨类植物和塑料碎片作为包装介质的性能,这些填料用于工厂生产塑料门板的工厂中排放的含苯乙烯的废气流的生物过滤。将蕨屑(比表面积为1090 m〜2 m〜(-3))和塑料屑(比表面积为610 m〜2 m〜(-3))装入中试规模的生物滴滤池中性能测试的总培养基容量为50L。将苯乙烯浓度在28-30℃下在161-2390 mg Am〜(-3)范围内的现场废气引入床中,固定空床保留时间(EBRT)为21秒,气体体积流量在整个实验过程中,气体流速保持在8.57 m〜3 hr〜(-1),表观气体速度保持在53.6 m hr〜(-1)。将含有金属盐,氮,磷和牛奶的营养物添加到过滤器中,以保持微生物活性。结果表明,本研究开发的生物滴滤滤池具有最高的苯乙烯单体(SM)消除能力(用于蕨类碎片包装的170 gm〜(-3)hr〜(-1)和300 gm〜(-3)hr〜( -1)用于塑料片包装)。塑料介质是濒临灭绝的蕨类碎片的有利替代品。塑料芯片的热固性限制了它们作为原材料的循环利用和再利用,这项研究为利用这些材料提供了机会。含义:对空气中污染物的生物处理提供了一种廉价而有效的替代传统技术的方法。生物滤池具有巨大的潜力,可降解气体传播的苯乙烯,去除总烃(THC)的效率约为80%。这项研究的目的是比较蕨木屑和一种塑料屑作为填充介质的性能,该介质用于热过滤从预混合的不饱和聚酯(UP)和苯乙烯糊状物的条纹在热前切割操作排放的含苯乙烯的废气流。塑料门板的压制操作。从实用的角度来看,塑料介质可以作为蕨类薯片的良好替代介质,蕨类薯片已被宣布为受保护植物。这项研究为此类生物处理系统的设计和运行提供了经过实验验证的模型。

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    Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan, Republic of China;

    Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan, Republic of China;

    Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, Taiwan, Republic of China;

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