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Enhancing the total organic carbon measurement efficiency for water samples containing suspended solids using alkaline and ultrasonic pretreatment methods

机译:使用碱性和超声预处理方法提高含有悬浮固体的水样的总有机碳测量效率

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In this study, we investigated the effect of sample pretreatments (ultrasonication and alkaline extraction) on total organic carbon (TOC) measurements for water samples containing suspended solids (SS) of four different origins (algae, soil, sewage sludge, and leaf litter) to more clearly assess the impact of particulate organic carbon (POC) in water. The effects each of ultrasonication (power, pulse, etc.) and alkaline extraction condition (concentration, time, etc.) on the TOC recovery and precision were investigated, and the results were compared with those of a new sample pretreatment method combining both methods. Alkaline treatment (0.01 mol/L NaOH) showed higher precision than ultrasonication (100/5 on/off pulse), and notably, the differences among the measured TOC values in samples of different origins were also further reduced in the alkaline treatment. This suggests that the ultrasonic pretreatment results can be mainly attributed to the increase in POC recovery through particle size reduction, whereas the alkaline treatment results are achieved through the enhancement of POC solubilization. It is also particularly noteworthy that a higher TOC recovery of 87.6% +/- 7.4% with a higher precision of 8.4% could be obtained using the combined method, compared to each treatment (ultrasonic: TOC recovery 34.7%, relative standard deviation 63.1%; alkaline: 49.6% and 23.0%, respectively). Thus, simultaneous pretreatment with ultrasonication and alkaline extraction is expected to increase the oxidation rate of organic matter and the homogeneity of the samples, minimizing the loss of POC measurement values, and thereby improving the reliability of the TOC measurements of water samples containing SS. (C) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:在这项研究中,我们研究了样品预处理(超声和碱性萃取)对含有四种不同起源(藻类,土壤,污水污泥和叶子垃圾)的悬浮固体(SS)的水样上的总机碳(TOC)测量的影响更清楚地评估颗粒有机碳(POC)在水中的影响。研究了关于TOC恢复和精度的超声发生(功率,脉冲等)和碱性提取条件(浓度,时间等)的影响,并将结果与​​组合两种方法的新样品预处理方法的结果进行了比较。碱性处理(0.01mol / L NaOH)显示比超声(100/5 ON / OFF脉冲)的精度更高(100/5开/关脉冲),并且在碱性处理中也进一步降低了不同起源样品中测量的TOC值的差异。这表明超声预处理结果可以主要归因于通过粒度减少的POC回收的增加,而通过增强POC溶解来实现碱性处理结果。对于每种处理相比,可以获得较高的TOC回收率为87.6%+/- 7.4%,以较高的精度为87.6%+/- 7.4%(超声波:TOC恢复34.7%,相对标准偏差63.1%) ;碱性:49.6%和23.0%)。因此,预期具有超声和碱性萃取的同时预处理,增加了有机物质的氧化率和样品的均匀性,最小化PoC测量值的损失,从而提高了含有SS的水样的TOC测量的可靠性。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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