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首页> 外文期刊>Journal of limnology >Development of a flexible dialysis pore water sampler placement system: easy handling and related error sources
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Development of a flexible dialysis pore water sampler placement system: easy handling and related error sources

机译:灵活的透析孔水采样器放置系统的开发:易于处理和相关的错误源

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Investigations in the context of greenhouse gas production measurements in sub-tropical reservoirs brought up the necessity to survey the in situ pore water gas and ion concentrations at many positions within a relatively short time. As several sediment cores were taken, the interest in analyzing the pore water at the same time and at the same positions forced us to develop a cost- and time saving method for the placement of dialysis pore water samplers (DPS). General prerequisites were the ability to place several DPS per day, within a flexible depth range of up to 40 m and with a low cost budget. To meet these requirements, a DPS placing system (DPSPS) was developed, which would allow the precise placement of DPS in water with a depth of up to 40 m and assessing the biases of on-board measurements and possible methodological improvements. The DPSPS was transported to Brazil and tested in a measurement campaign for 10 days. The measurements were carried out during two campaigns in December 2012 and March 2013 in the Capivari Reservoir north-east of Curitiba in the State of Paraná. The system worked properly and several DPS could be placed from a 5 m class aluminum boat. The placement was performed with high accuracy regarding the positioning as well as the penetration depth of the DPS. After the recovery of the DPS, the possible biases during sampling were analyzed. Possible back-diffusion was investigated, taking oxygen concentration as one representative parameter for estimation of the sample behavior. Laboratory as well as field results showed that special care has to be taken to minimize the influence of diffusion processes during post-recovery sampling. The results also suggested that the used membranes are affected by clogging which is likely to influence the diffusion times of various ions and gases. It can be stated that the DPSPS was developed successfully as the demands in terms of handling as well as monitoring efficiency and sample quality were met. With this deployment and measurement technique, a valuable part in the assessment of greenhouse gas emissions from surface water bodies could be achieved.
机译:在亚热带水库进行温室气体生产测量的背景下进行的调查提出了在相对较短的时间内调查许多位置的原位孔隙水气体和离子浓度的必要性。由于采用了多个沉积物岩心,因此对在同一时间和相同位置分析孔隙水的兴趣迫使我们开发一种节省成本和时间的方法来放置透析孔隙水采样器(DPS)。一般的前提条件是每天能够在高达40 m的灵活深度范围内以低成本预算放置多个DPS。为了满足这些要求,开发了DPS放置系统(DPSPS),该系统可以将DPS精确地放置在深度最大为40 m的水中,并评估车载测量的偏差和可能的方法学改进。 DPSPS被运送到巴西,并在一次测量活动中测试了10天。这些测量是在2012年12月和2013年3月在巴拉那州库里蒂巴东北的卡皮瓦里水库的两次运动中进行的。该系统运行正常,可以从5 m级铝制船上放置多个DPS。关于DPS的定位以及穿透深度,以高精度进行了放置。 DPS恢复后,分析采样期间可能存在的偏差。研究了可能的反向扩散,将氧气浓度作为评估样品行为的一个代表性参数。实验室以及现场结果表明,在回收后的采样过程中,必须采取特殊措施以最大程度地减少扩散过程的影响。结果还表明,用过的膜会受到堵塞的影响,这很可能会影响各种离子和气体的扩散时间。可以说,DPSPS开发成功是因为满足了处理,监控效率和样品质量方面的要求。通过这种部署和测量技术,可以实现评估地表水体温室气体排放的宝贵部分。

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