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Solid-Liquid two-phase partitioning bioreactors for the treatment of gas.-phase VOCs

机译:固液两相分配生物反应器,用于处理气相VOC

摘要

[Abstract] Two-Phase Partitioning Bioreactors (TPPBs) consist of a cell-containing aqueous phase and a separate, biocompatible and immiscible phase that partitions toxic substrates to the cells based on their metabolic demand and on maintaining the thermodynamic equilibrium of the system. TPPBs have traditionally used immiscible liquid organic solvents as the substrate delivery phase, however, one of the limitations of organic solvents is their potential bioavailability as substrates, and therefore these TPPB systems have generally been limited to the use of pure strains of organisms incapable of metabolizing the solvent. We have replaced the organic solvent phase in TPPBs with inert polymers (plastic beads). A TPPB employing styrene-butadiene beads as the sequestering phase was used to treat high step change loadings of BTEX in a contaminated air stream. The presence of the polymers allowed the system to effectively capture the incoming VOCs, buffer the cells from high VOC levels and release the VOCs to the cells for biodegradation. The polymer TPPB system demonstrated substantially higher performance than an aqueous phase bioscrubber and comparable performance to a solvent-aqueous TPPB. Also of great interest was the increase in oxygen transfer provided to the system by the addition of polymer beads, which have significant affinity for oxygen. The presence of polymer beads, which are biocompatible and non-bioavailable, provides a simple and effective means of enhancing the bioremediation of toxic organics present in gas streams, and potentially other phases.
机译:[摘要]两相分配生物反应器(TPPB)由一个含细胞的水相和一个单独的,生物相容性和不混溶的相组成,该相根据毒性底物的代谢需求和维持系统的热力学平衡,将有毒底物分配给细胞。 TPPB传统上使用不溶混的液体有机溶剂作为底物输送阶段,但是,有机溶剂的局限性之一是它们作为底物的潜在生物利用度,因此,这些TPPB系统通常仅限于使用无法代谢的纯生物菌株溶剂。我们已经用惰性聚合物(塑料珠)代替了TPPB中的有机溶剂相。使用苯乙烯-丁二烯珠粒作为螯合相的TPPB用于处理受污染气流中BTEX的高阶跃变化负载。聚合物的存在使系统能够有效捕获进入的VOC,从高VOC水平缓冲细胞,并将VOC释放到细胞中进行生物降解。聚合物TPPB系统表现出比水相生物洗涤塔明显更高的性能,并且可与溶剂-水性TPPB相媲美。还引起极大关注的是通过添加对氧气具有显着亲和力的聚合物珠粒,增加了向系统的氧转移。具有生物相容性且不可生物利用的聚合物珠粒的存在提供了一种简单有效的方法,可以增强气流和潜在其他相中存在的有毒有机物的生物修复。

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