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Nitrogen removal during summer and winter in a primary facultative waste stabilization pond: preliminary findings from N-15-labelled ammonium tracking techniques

机译:兼性粪便稳定化池夏季和冬季的脱氮:N-15标记铵离子追踪技术的初步发现

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Nitrogen removal mechanisms and pathways within WSP have been the focus of much research over the last 30 years. Debates and theories postulated continue to refine our knowledge regarding the cycling and removal pathways for this important nutrient, but a succinct answer has yet to be provided for holistic nitrogen removal. In this study, two experimental runs using labelled N-15 as a stable isotope tracking technique were conducted on a pilot-scale primary facultative WSP in the UK; one in the summer of 2006, and the other in the winter of 2007. An ammonium chloride ((NHCl)-N-15-Cl-4) spike was prepared as the slug for each experimental run, which also contained rhodamine WT to act as a dye tracer enabling the hydraulic characteristics of the pond to be mapped. initial results from the study are reported here, and findings are compared and contrasted. Preliminary findings reveal that a greater proportion of N-15 is incorporated into the algal biomass by assimilation and subsequent release as soluble organic nitrogen in summer than in winter. N-15 ammonium passes out of the system much sooner and in a much higher proportion in the winter than in summer.
机译:在过去30年中,WSP中的除氮机制和途径一直是许多研究的重点。假设的辩论和理论继续完善我们关于这种重要营养素的循环和清除途径的知识,但是对于整体清除氮尚无一个简洁的答案。在这项研究中,在英国的中试规模初级兼职WSP上进行了两次使用标记N-15作为稳定同位素跟踪技术的实验;一个在2006年夏天,另一个在2007年冬天。每次实验都准备了氯化铵((NHCl)-N-15-Cl-4)峰作为料块,其中还包含若丹明WT作为染料示踪剂,可绘制池塘的水力特征。该研究的初步结果报告在这里,并对发现进行比较和对比。初步发现表明,与冬季相比,夏季通过吸收和随后以可溶性有机氮的形式释放到藻类生物质中的N-15比例更高。 N-15铵从系统中出来的速度要快得多,冬季比夏季高得多。

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