Boğaziçi University, Institute of Environmental Sciences, Bebek, İstanbul 34342, Turkey.
DISAT, Dept. of Applied Science and Technology, Politecnico di Torino, Torino 10129, Italy.
Waste Manag. 2017 May;63:18-26. doi: 10.1016/j.wasman.2017.01.017. Epub 2017 Jan 23.
Extensive use of nanomaterials in commercial consumer products and industrial applications eventually leads to their release to the waste streams and the environment. Nano-ZnO is one of the most widely-used nanomaterials (NMs) due to its unique properties. It is also known to impact biological processes adversely. In this study, the effect of nano-ZnO on biogas generation from sanitary landfills was investigated. Two conventional and two bioreactor landfills were operated using real MSW samples at mesophilic temperature (35°C) for a period of about 1year. 100mg nano-ZnO/kg of dry waste was added to the simulated landfill reactors. Daily gas production, gas composition and leachate Zn concentrations were regularly monitored. A model describing the fate of the nano-ZnO was also developed. The results obtained indicated that as much as 99% of the nano-ZnO was retained within the waste matrix for both reactor operation modes. Waste stabilization was faster in simulated landfill bioreactors with and without the addition of nano-ZnO. Moreover, the presence of the nano-ZnO within the waste led to a decrease in biogas production of about 15%, suggesting that the nano-ZnO might have some inhibitory effects on waste stabilization. This reduction can have potentially significant implications on waste stabilization and the use of biogas from landfills as a renewable energy source.
纳米材料在商业消费品和工业应用中的广泛使用最终导致它们被释放到废物和环境中。纳米氧化锌(nano-ZnO)因其独特的性质而成为最广泛使用的纳米材料(NMs)之一。它也被认为会对生物过程产生不利影响。在这项研究中,研究了纳米氧化锌对卫生填埋场沼气生成的影响。使用实际的 MSW 样本在中温(35°C)下运行了两个传统和两个生物反应器填埋场,为期约 1 年。将 100mg/kg 纳米氧化锌添加到模拟的填埋场反应器中。定期监测每日产气量、气体成分和浸出液 Zn 浓度。还开发了一个描述纳米氧化锌归宿的模型。结果表明,对于两种反应器操作模式,高达 99%的纳米氧化锌保留在废物基质中。在添加和不添加纳米氧化锌的模拟填埋场生物反应器中,废物稳定化更快。此外,纳米氧化锌在废物中的存在导致沼气产量减少了约 15%,表明纳米氧化锌可能对废物稳定化有一些抑制作用。这种减少可能对废物稳定化和利用填埋场沼气作为可再生能源产生潜在的重大影响。