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The possibility on estimation of concentration of heavy metals in coastal waters from remote sensing data

机译:遥感数据沿海水域中重金属浓度估算的可能性

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The heavy metals in waters cannot be decomposed but can be transferred and accumulated with food chains. Many heavy metals are toxic to human beings. It is very important to measure concentration of heavy metals in coastal waters for water quality research, monitoring, and environmental management. On consideration of geochemistry behavior of heavy metals, their distribution is related with water components which determined waters' optical properties. The in-situ remote sensing reflectance data and heavy metal concentration data at 48 sampling points collected from three cruises in the Pearl River estuary were analysed. For single band among all the 57 bands ranging from 365 to 935 nm, the band centered at 711 nm (B711) has highest correlation coefficient (R=0.51) with concentration of both Cu and Zn. The band ratio, B711/B406 has the highest correlation coefficient with Cu (R=0.749), and band ration, B711/B416 has the highest correlation coeficient with Zn (R=0.804). The band and band ratio were employed for algorithm development using the symbolic regression method, and the results showed the possiblity to retrieve concentration of heavy metal from remotely-sensed data.
机译:水中的重金属不能解决,但可以用食物链转移和累积。许多重金属对人类有毒。在沿海水域衡量水质研究,监测和环境管理的重金属浓度非常重要。考虑到重金属的地球化学行为,它们的分布与确定水的水成分有关。分析了从珠江河口三次巡航中收集的48个采样点的原位遥感反射数据和重金属浓度数据。对于从365至935nm的所有57条带中的单带,带有711nm(b 711 )的带具有最高的相关系数(r = 0.51),浓度为Cu和Zn。带比B 711 / b 406 具有CU(r = 0.749)的最高相关系数,带频率,b 711 / B 416 具有与Zn的最高相关性(r = 0.804)。使用符号回归方法使用带和带比用于算法开发,结果显示了从远程感测数据中检索重金属浓度的可能性。

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