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潜流人工湿地堵塞程度的原位测定研究 被引量:4
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作者 王宇擎 张哿 +2 位作者 王乾 涂海峰 李锋民 《环境科学研究》 EI CAS CSCD 北大核心 2018年第12期2021-2027,共7页
人工湿地因其生态友好、运行费用低廉、处理效果好而被广泛运用于污水处理中,然而潜流人工湿地在运行过程中会发生填料堵塞,导致其利用率下降、寿命缩短,但目前还缺乏简单有效的原位测定人工湿地堵塞程度的方法和仪器.为了客观地评价湿... 人工湿地因其生态友好、运行费用低廉、处理效果好而被广泛运用于污水处理中,然而潜流人工湿地在运行过程中会发生填料堵塞,导致其利用率下降、寿命缩短,但目前还缺乏简单有效的原位测定人工湿地堵塞程度的方法和仪器.为了客观地评价湿地的堵塞程度,以渗透系数法为测定原理构建了人工湿地堵塞程度原位测定法,结合压力探测和数据处理模块开发了人工湿地堵塞程度原位测定仪,并进行了实验室试验和原位测量以检验方法和仪器的可行性.实验室试验中测量了利用砂土和砾石模拟的不同程度的堵塞.结果表明:当填料砂土与砾石的质量比为2∶1、4∶1、8∶1时,堵塞系数分别为0. 69、0. 84、0. 91 km/d,测得的堵塞系数和填料比例显著相关,能够准确地反映堵塞程度.原位测量选择运行了1~5 a的4个潜流人工湿地(A、B、C、D湿地)进行,运行一段时间后,潜流人工湿地入口处、湿地管道破损处和使用时间较长的湿地堵塞系数较高,最高达0. 998 km/d,而运行情况良好的D湿地堵塞系数在0. 5 km/d以下.研究显示,原位测定结果能很好地反映湿地的堵塞情况. 展开更多
关键词 人工湿地 堵塞程度 原位测定仪 堵塞系数
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In-Situ Differentiation of Acidic and Non-Acidic Tundra via Portable X-ray Fluorescence (PXRF) Spectrometry 被引量:4
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作者 Somsubhra CHAKRABORTY David C. WEINDORF +6 位作者 GARY J. MICHAELSON Chien Lu PING Ashok CHOUDHURY Tarek KANDAKJI Autumn ACREE Akriti SHARMA WANG Dandan 《Pedosphere》 SCIE CAS CSCD 2016年第4期549-560,共12页
Frozen soils or those with permafrost cover large areas of the earth's surface and support unique vegetative ecosystems. Plants growing in such harsh conditions have adapted to small niches, which allow them to su... Frozen soils or those with permafrost cover large areas of the earth's surface and support unique vegetative ecosystems. Plants growing in such harsh conditions have adapted to small niches, which allow them to survive. In northern Alaska, USA, both moist acidic and non-acidic tundra occur, yet determination of frozen soil p Hs currently requires thawing of the soil so that electrometric pH methods can be utilized. Contrariwise, a portable X-ray fluorescence(PXRF) spectrometer was used in this study to assess elemental abundances and relate those characteristics to soil pH through predictive multiple linear regressions. Two operational modes, Soil Mode and Geochem Mode, were utilized to scan frozen soils in-situ and under laboratory conditions, respectively, after soil samples were dried and ground. Results showed that lab scanning produced optimal results with adjusted coefficient of determination(R^2) of 0.88 and 0.33 and root mean squared errors(RMSEs) of 0.87 and 0.34 between elemental data and lab-determined pH for Soil Mode and Geochem Mode, respectively. Even though the presence of ice attenuated fluoresced radiation under field conditions, adjusted R^2 and RMSEs between the datasets still provided reasonable model generalization(e.g., 0.73 and 0.49 for field Geochem Mode). Principal component analysis qualitatively separated multiple sampling sites based on elemental data provided by PXRF, reflecting differences in the chemical composition of the soils studied. Summarily, PXRF can be used for in-situ determination of soil pH in arctic environments without the need for sample modification and thawing. Furthermore, use of PXRF for determination of soil pH may provide higher sample throughput than traditional eletrometric-based methods, while generating elemental data useful for the prediction of multiple soil parameters. 展开更多
关键词 frozen soil Gelisols Geochem Mode proximal sensing Soil Mode soil pH determination
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