Swette Center for Environmental Biotechnology, Biodesign Institute, Arizona State University , Tempe, Arizona 85287, United States.
Department of Water Engineering and Science, College of Civil Engineering, Hunan University , Changsha, China.
Environ Sci Technol. 2016 Mar 1;50(5):2546-55. doi: 10.1021/acs.est.5b05318. Epub 2016 Feb 17.
Recovering palladium (Pd) from waste streams opens up the possibility of augmenting the supply of this important catalyst. We evaluated Pd reduction and recovery as a novel application of a H2-based membrane biofilm reactor (MBfR). At steady states, over 99% of the input soluble Pd(II) was reduced through concomitant enzymatic and autocatalytic processes at acidic or near neutral pHs. Nanoparticulate Pd(0), at an average crystallite size of 10 nm, was recovered with minimal leaching and heterogeneously associated with microbial cells and extracellular polymeric substances in the biofilm. The dominant phylotypes potentially responsible for Pd(II) reduction at circumneutral pH were denitrifying β-proteobacteria mainly consisting of the family Rhodocyclaceae. Though greatly shifted by acidic pH, the biofilm microbial community largely bounced back when the pH was returned to 7 within 2 weeks. These discoveries infer that the biofilm was capable of rapid adaptive evolution to stressed environmental change, and facilitated Pd recovery in versatile ways. This study demonstrates the promise of effective microbially driven Pd recovery in a single MBfR system that could be applied for the treatment of the waste streams, and it documents the role of biofilms in this reduction and recovery process.
从废物流中回收钯 (Pd) 为增加这种重要催化剂的供应提供了可能性。我们评估了基于 H2 的膜生物膜反应器 (MBfR) 的一种新应用,即 Pd 还原和回收。在稳定状态下,超过 99%的输入可溶性 Pd(II) 通过在酸性或接近中性 pH 值下的协同酶促和自催化过程被还原。纳米 Pd(0),平均晶粒尺寸为 10nm,以最小的浸出量回收,并与生物膜中的微生物细胞和细胞外聚合物物质不均匀地相关。在近中性 pH 值下负责 Pd(II)还原的主要优势菌群是反硝化β-变形菌,主要由红环菌科组成。尽管酸性 pH 值有很大的影响,但当 pH 值在 2 周内恢复到 7 时,生物膜微生物群落基本上恢复了原状。这些发现推断出生物膜能够快速适应环境变化的压力,并以多种方式促进 Pd 的回收。本研究证明了在单个 MBfR 系统中进行有效的微生物驱动 Pd 回收的前景,该系统可应用于处理废物流,并记录了生物膜在这种还原和回收过程中的作用。