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Research into acetone removal from air by biofiltration using a biofilter with straight structure plates

机译:使用具有直结构板的生物过滤器通过生物过滤从空气中除去丙酮的研究

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摘要

The biological air treatment method is based on the biological destruction of organic compounds using certain cultures of microorganisms. This method is simple and may be applied in many branches of industry. The main element of biological air treatment devices is a filter charge. Tests were carried out using a new-generation laboratory air purifier with a plate structure. This purifier is called biofilter. The biofilter has a special system for packing material humidification which does not require additional energy inputs. In order to extend the packing material's durability, it was composed of thermally treated birch fibre. Pollutant (acetone) biodegradation occurred on thermally treated wood fibre in this research. According to the performed tests and the received results, the process of biodestruction was highly efficient. When acetone was passed through biofilter's packing material at 0.08 m s−1 rate, the efficiency of the biofiltration process was from 70% up to 90%. The species of bacteria capable of removing acetone vapour from the air, i.e. Bacillus (B. cereus, B. subtilis), Pseudomonas (P. aeruginosa, P. putida), Stapylococcus (S. aureus) and Rhodococcus sp., was identified in this study during the process of biofiltration. Their amount in the biological packing material changed from 1.6 × 107 to 3.7 × 1011 CFU g−1.
机译:生物空气处理方法基于使用某些微生物培养物对有机化合物的生物破坏。这种方法很简单,可以应用于许多行业。生物空气处理设备的主要元素是滤料。使用具有平板结构的新一代实验室空气净化器进行测试。这种净化器称为生物过滤器。生物过滤器具有用于包装材料加湿的特殊系统,不需要额外的能量输入。为了延长包装材料的耐用性,它由热处理的桦木纤维组成。在这项研究中,经过热处理的木纤维发生了污染物(丙酮)的生物降解。根据进行的测试和收到的结果,生物破坏的过程非常高效。当丙酮以0.08 m ss -1 的速率通过生物滤池的填充材料时,生物滤池的效率从70%上升到90%。能够从空气中去除丙酮蒸气的细菌种类包括芽孢杆菌(蜡状芽孢杆菌,枯草芽孢杆菌),假单胞菌(铜绿假单胞菌,恶臭假单胞菌),葡萄球菌(金黄色葡萄球菌)和红球菌。这项研究是在生物过滤过程中进行的。它们在生物包装材料中的含量从1.6×10 7 变为3.7×10 11 CFU g -1

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