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Impacts of nano-metal oxides on hydrogen production in anaerobic digestion of palm oil mill effluent - A novel approach

机译:棕榈油厂废水厌氧消化中纳米金属氧化物对产氢的影响-一种新方法

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In the present study, hydrogen production from palm oil mill effluent (POME) was investigated with the incorporation of nanoparticles (NPs) comprising of nickel (NiO) and cobalt oxides (CoO). The NPs of NiO and CoO were prepared using hydrothermal method and were further applied to analyse, their effect on hydrogen production. The results demonstrated that, a maxima volumetric hydrogen production rate of 21 ml H-2/L-POME/h with the hydrogen yield of 0.563 L H-2/g-CODremoved was obtained with 1.5 mg/L concentration of NiO NPs. On the other hand, the addition of CoO NPs produced maximum volumetric hydrogen production rate of 18 ml H-2/L-POME/h with a hydrogen yield of 0.487 L H-2/g-CODremoved with 1.0 mg/L of CoO NPs. Results showed that addition of optimal concentration of NiO and CoO NPs to the POME enhances the hydrogen yield by 1.51 and 1.67 fold respectively. Besides, this addition of NiO and CoO enhanced the COD removal efficiency by 15 and 10% respectively as compared to an un-additive NPs POME. The toxicity of NPs was also tested using bacterial viability test, which revealed that application of 3.0 mg/L of NiO and CoO NPs to modified Luria-Bertani (LB) medium had 63% and 83% reduction in bacterial cell growth. The results concluded that supplementation of NiO and CoO NPs under an optimal range to the wastewater can improve the hydrogen productivity. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:在本研究中,通过掺入包含镍(NiO)和氧化钴(CoO)的纳米颗粒(NPs),研究了棕榈油厂废水(POME)的制氢能力。采用水热法制备了NiO和CoO的NPs,并进一步用于分析其对产氢的影响。结果表明,当浓度为1.5 mg / L的NiO NPs时,制氢量最大为21 ml H-2 / L-POME / h,除去的氢气产率为0.563 L H-2 / g-COD。另一方面,添加CoO NP产生的最大体积氢生产率为18 ml H-2 / L-POME / h,除去1.0 mg / L CoO NP后的氢产率为0.487 L H-2 / g-COD 。结果表明,向POME中添加最佳浓度的NiO和CoO NPs可使氢气产率分别提高1.51倍和1.67倍。此外,与无添加剂NPs POME相比,这种NiO和CoO的添加分别将COD去除效率提高了15%和10%。 NPs的毒性也通过细菌生存力测试进行了测试,结果表明,将3.0 mg / L NiO和CoO NPs应用于改良的Luria-Bertani(LB)培养基,细菌细胞生长减少了63%和83%。结果表明,在最佳范围内向废水中添加NiO和CoO NP可以提高制氢效率。由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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