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首页> 外文期刊>Water, Air, and Soil Pollution >RELATIVE EFFECT OF TEMPERATURE AND pH ON DIEL CYCLING OF DISSOLVED TRACE ELEMENTS IN PRICKLY PEAR CREEK, MONTANA
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RELATIVE EFFECT OF TEMPERATURE AND pH ON DIEL CYCLING OF DISSOLVED TRACE ELEMENTS IN PRICKLY PEAR CREEK, MONTANA

机译:温度和pH值对蒙大拿州花椒小溪中溶解态微量元素的Diel循环的影响

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Diel (24 hr) cycles in dissolved metal and As concentrations have been documented in many northern Rocky Mountain streams in the U.S.A. The cause(s) of the cycles are unknown, although temperature- and pH-dependent sorption reactions have been cited as likely causes. A light/dark experiment was conducted to isolate temperature and pH as variables affecting diel metal cycles in Prickly Pear Creek, Montana. Light and dark chambers containing sediment and a strand of macrophyte were placed in the stream to simulate instream temperature oscillations. Photosynthesis-induced pH changes were allowed to proceed in the light chambers while photosynthesis was prevented in the dark chambers. Water samples were collected periodically for 22 hr in late July 2001 from all chambers and the stream. In the stream, dissolved Zn concentrations increased by 300% from late afternoon to early morning, while dissolved As concentrations exhibited the opposite pattern, increasing 33% between early morning and late afternoon. Zn and As concentrations in the light chambers showed similar, though less pronounced, diel variations. Conversely, Zn and As concentrations in the dark chambers had no obvious diel variation, indicating that light, or light-induced reactions, caused the variation. Temperature oscillations were nearly identical between light and dark chambers, strongly suggesting that temperature was not controlling the diel variations. As expected, pH was negatively correlated (P < 0.01) with dissolved Zn concentrations and positively correlated with dissolved As concentrations in both the light and dark chambers. From these experiments, photosynthesis-induced pH changes were determined to be the major cause of the diel dissolved Zn and As cycles in Prickly Pear Creek. Further research is necessary in other streams to verify that this finding is consistent among streams having large differences in trace-element concentrations and mineralogy of channel substrate.
机译:在美国许多落基山溪流中,已证明了在溶解金属和As浓度中进行Diel(24小时)循环的原因尽管存在温度和pH依赖的吸附反应,但可能是循环的原因尚不清楚。 。在蒙大拿州的Prickly Pear Creek,进行了明暗实验以分离温度和pH值作为影响diel金属循环的变量。将装有沉淀物和一串大型植物的明暗室放置在溪流中,以模拟溪流温度波动。光合作用引起的pH值变化允许在亮室中进行,而防止光合作用在黑暗室中进行。在2001年7月下旬,从所有舱室和溪流定期收集水样22小时。在溪流中,从午后到清晨,溶解的Zn浓度增加了300%,而溶解的As浓度表现出相反的规律,从清晨到午后增加了33%。光室中的Zn和As浓度显示出相似但较不明显的diel变化。相反,暗室中的Zn和As浓度没有明显的diel变化,表明光或光诱导的反应引起了变化。暗室和暗室之间的温度振荡几乎相同,强烈表明温度不能控制diel的变化。正如预期的那样,在暗室和暗室中,pH与溶解的Zn浓度呈负相关(P <0.01),与溶解的As浓度呈正相关。通过这些实验,确定了光合作用引起的pH值变化是花椒溪中diel溶解的Zn和As循环的主要原因。有必要在其他流中进行进一步研究,以验证这一发现在痕量元素浓度和通道底物矿物学差异较大的流中是否一致。

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