School of Biosciences, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.
School of Chemical Engineering, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.
Microb Biotechnol. 2018 Mar;11(2):359-368. doi: 10.1111/1751-7915.13030. Epub 2017 Dec 28.
Bacteria can fabricate platinum group metal (PGM) catalysts cheaply, a key consideration of industrial processes and waste decontaminations. Biorecovery of PGMs from wastes is promising but PGM leachates made from metallic scraps are acidic. A two-step biosynthesis 'pre-seeds' metallic deposits onto bacterial cells benignly; chemical reduction of subsequent metal from acidic solution via the seeds makes bioscaffolded nanoparticles (NPs). Cells of Escherichia coli were seeded using Pd(II) or Pt(IV) and exposed to a mixed Pd(II)/Pt(IV) model solution under H to make bimetallic catalyst. Its catalytic activity was assessed in the reduction of Cr(VI), with 2 wt% or 5 wt% preloading of Pd giving the best catalytic activity, while 1 wt% seeds gave a poorer catalyst. Use of Pt seeds gave less effective catalyst in the final bimetallic catalyst, attributed to fewer and larger initial seeds as shown by electron microscopy, which also showed a different pattern of Pd and Pt deposition. Bimetallic catalyst (using cells preloaded with 2 wt% Pd) was used in the hydrogenation of soybean oil which was enhanced by ~fourfold using the bimetallic catalyst made from a model waste solution as compared to 2 wt% Pd preloaded cells alone, with a similar selectivity to cis C18:1 product as found using a Pd-Al O commercial catalyst.
细菌可以廉价地制造铂族金属 (PGM) 催化剂,这是工业过程和废物净化的关键考虑因素。从废物中生物回收 PGM 很有前景,但来自金属废料的 PGM 浸出液是酸性的。两步生物合成“预种”将金属沉积物温和地沉积在细菌细胞上;随后通过种子将酸性溶液中的金属进行化学还原,生成生物支架纳米颗粒 (NPs)。使用 Pd(II) 或 Pt(IV) 对大肠杆菌细胞进行接种,并在 H 下暴露于混合 Pd(II)/Pt(IV) 模型溶液中以制备双金属催化剂。评估了其在 Cr(VI) 还原中的催化活性,2 wt%或 5 wt%的 Pd 预加载给出了最佳的催化活性,而 1 wt%的种子则给出了较差的催化剂。Pt 种子的使用在最终的双金属催化剂中产生了效果较差的催化剂,这归因于电子显微镜显示的初始种子数量较少且较大,这也显示了 Pd 和 Pt 沉积的不同模式。使用 2 wt% Pd 预加载的细胞制备的双金属催化剂用于大豆油的加氢,与单独使用 2 wt% Pd 预加载的细胞相比,使用来自模型废物溶液的双金属催化剂将加氢增强了约四倍,与使用 Pd-Al O 商业催化剂时发现的 cis C18:1 产物的选择性相似。