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Biodegradation of the Alkaline Cellulose Degradation Products Generated during Radioactive Waste Disposal

机译:放射性废物处置过程中产生的碱性纤维素降解产物的生物降解

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摘要

The anoxic, alkaline hydrolysis of cellulosic materials generates a range of cellulose degradation products (CDP) including α and β forms of isosaccharinic acid (ISA) and is expected to occur in radioactive waste disposal sites receiving intermediate level radioactive wastes. The generation of ISA's is of particular relevance to the disposal of these wastes since they are able to form complexes with radioelements such as Pu enhancing their migration. This study demonstrates that microbial communities present in near-surface anoxic sediments are able to degrade CDP including both forms of ISA via iron reduction, sulphate reduction and methanogenesis, without any prior exposure to these substrates. No significant difference (n = 6, p = 0.118) in α and β ISA degradation rates were seen under either iron reducing, sulphate reducing or methanogenic conditions, giving an overall mean degradation rate of 4.7×10−2 hr−1 (SE±2.9×10−3). These results suggest that a radioactive waste disposal site is likely to be colonised by organisms able to degrade CDP and associated ISA's during the construction and operational phase of the facility.
机译:纤维素材料的缺氧,碱性水解会产生一系列的纤维素降解产物(CDP),包括α和β形式的异糖精酸(ISA),并且预计会在接收中等水平放射性废物的放射性废物处置场所发生。 ISA的产生与这些废物的处理特别相关,因为它们能够与放射性元素(例如Pu)形成复合物,从而增强其迁移能力。这项研究表明,近地表缺氧沉积物中存在的微生物群落能够通过铁还原,硫酸盐还原和产甲烷作用降解包括两种形式的ISA在内的CDP,而无需事先暴露于这些底物。在铁还原,硫酸盐还原或产甲烷条件下,α和βISA的降解率均无显着差异(n = 6,p = 0.118),总体平均降解率为4.7×10 −2 hr -1 (SE±2.9×10 -3 )。这些结果表明,在设施的建设和运营阶段,放射性废物处置场所很可能会被能够降解CDP和相关ISA的生物殖民。

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