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Electrical conductance - a versatile guide in freshwater science

机译:电导率-淡水科学通用指南

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Attention is directed to the many potential uses of specific electrical conductance ('conductivity') in the study of inland waters. Its measurement is capable of a precision useful in the detection of differences in a standing or flowing water-mass, but cannot be translated into measures of chemical concentration with equivalent absolute accuracy. Reasons - not infrequently neglected - include approximations in temperature correction, in allowance for a depression effect at higher ionic strength (salinity), and especially in the differences of specific conductance of chemically different ions. The last can be reduced by treating ionic concentration in chemical equivalents (e.g. meq L~(-1)) rather than the usual units of mass (e.g. mgL~(-1)) or molarity (e.g. mmol L~(-1)); also by making allowance for the exceptionally high equivalent conductance of H~+and OH~- ions of significance in markedly acid and alkaline waters. Measurement in the field has been helped by the development of small portable instruments with inbuilt temperature compensation, flow-through electrode systems and electrical output. Examples of both field and laboratory measurements, for the charting and interpretation of various field situations, are illustrated chiefly from the author's experience. They include broad chemical surveys; interrelation with normal chemical analysis; longitudinal change, water travel and nutrient uptake in river and stream systems; ionic reversible particulate conversion; horizontal and vertical differentiation in lakes; and ionic changes induced by photosynthesis.
机译:注意内陆水域研究中特定电导(“电导率”)的许多潜在用途。它的测量精度可用于检测静水量或流动水量中的差异,但不能转换为具有绝对绝对精度的化学浓度量度。原因-经常被忽略-原因包括温度校正的近似值,允许在较高的离子强度(盐度)下产生抑制效果的近似值,尤其是化学上不同的离子的比电导的差异。可以通过以化学当量(例如meq L〜(-1))而不是通常的质量单位(例如mgL〜(-1))或摩尔浓度(例如mmol L〜(-1))处理离子浓度来减少最后一个离子。 ;还应考虑到在明显的酸性和碱性水中重要的H〜+和OH〜-离子的极高的等效电导。带有内置温度补偿,流通电极系统和电输出的小型便携式仪器的开发有助于现场测量。主要根据作者的经验说明了用于绘制和解释各种现场情况的现场和实验室测量示例。其中包括广泛的化学调查;与正常化学分析的相互关系;河流和溪流系统中的纵向变化,水流和养分吸收;离子可逆颗粒转化;湖泊的水平和垂直分化;和光合作用引起的离子变化。

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