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Relative Contribution of Phosphorus from Various Sources to the Upper Lake, Bhopal

机译:磷从各种来源与上湖,博巴尔相对贡献

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An investigation on phosphorus loading from the point and non point sources to the Upper Lake, Bhopal and its contribution on eutrophication was undertaken at Indian Institute of Soil Science, Bhopal. Geo-referenced water samples from different entrypoints (15 locations), where water from different sources (agriculture and municipal water) enters to the Upper Lake, were collected and analyzed for various P fractions. The results showed that the total phosphorus (TP) content varied from 0.30 to 0.73mg/L with a mean value of 0.47 mg/L having lowest and highest content from Kholukhedi (agriculture source) and Bhadbada (domestic wastewater), respectively. Among the P fractions, the bioavailable P fraction (total dissolved phosphorus-TDP) was highest in the water sample from the domestic source, whereas, the dominant P fractions in the water samples from agricultural source was particulate P (PP). The results shows that the total P in the sediment of post-monsoon stage samples ranges from 0.03 to 0.07% with a mean value of 0.04%. The mean sediment inorganic phosphorus (SIP) and the sediment organic phosphorus (SOP) is 68.01 and 31.98% of total phosphorus (TP), respectively. Among the inorganic P fractions in the sediment, Ca bound P was maximum and found to be in the range of 86.32-96.97% of total sediment inorganic P followed by Fe bound P (2.10-11.51%) and loosely sorbed P (LSP) (0.39-5.66%). To summarize, the source of water from the city (domestic wastewater) and at idol immersion location contains relatively higher total phosphorus (TP) and dissolved reactive phosphorus (DRP).
机译:博帕尔印度土壤科学研究所对上湖,博帕尔及其对富营养化贡献的点和非点源磷荷载调查。从不同的入口点(15个位置)的地理参考水样,其中收集来自不同来源(农业和市水)的水进入上湖的水,并分析各种P馏分。结果表明,总磷(TP)含量从0.30〜0.73mg / L不同,平均值为0.47mg / L,分别具有Kholukhedi(农业来源)和Bhadbada(国内废水)的最低和最高含量。在P级分中,来自国内来源的水样中的生物可利用的P级分(总溶解的磷-TDP)最高,而来自农业来源的水样中的显性P分数是颗粒状P(PP)。结果表明,季后期阶段样品沉积物中的总P为0.03〜0.07%,平均值为0.04%。平均沉积物无机磷(SIP)和沉积物有机磷(SOP)分别为总磷(TP)的68.01和31.98%。在沉积物中的无机P馏分中,Ca结合P最大,发现在总沉积物无机P的86.32-96.97%的范围内,然后用Fe结合P(2.10-11.51%)和松散吸附的P(LSP)( 0.39-5.66%)。总而言之,来自城市(国内废水)和偶像浸泡位置的水源含有相对较高的总磷(TP)和溶解的活性磷(DRP)。

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