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Can phosphate help acidified lakes to recover?

机译:磷酸盐可以帮助酸化湖泊恢复吗?

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Experimental addition of phosphate to enclosures in an acidified lake in Southern Norway was performed to study the effect on nitrate, pH and labile aluminium along a gradient of phosphate from 4-19μg P L{sup}(-1). Nitrate decreased from 180 tag U1 to below detection limit after three weeks at P-concentrations > 17μg L{sup}(-1), due to phytoplankton uptake. pH increased from 4.9 to 5.2, corresponding to a 50% decrease of H{sup}+-equivalents from 12 to 6μeq L{sup}(-1) due to algal uptake of H+-ions when assimilating NO{sub}3{sup}--ions. Due to the increased pH and probably also precipitation with phosphate, concentrations of labile aluminium decreased from 150 to 100μg L{sup}(-1) within the P-interval 4-19μg L{sup}(-1). Algal biomass increased from 0.5 to 6 tag chlorophyll a L{sup}(-1) along the same P-gradient. The results suggest that moderate P-addition (< 15μg P L{sup}(-1) to avoid eutrophication problems) can improve water quality in moderately acidified lakes, and also increase nitrate retention in strongly acidified lakes. In humic lakes, the treatment will be less efficient due to light limitation of primary production and the presence of organic acids.
机译:进行磷酸盐在挪威南部酸化湖中的磷酸盐的实验添加,以研究沿4-19μgp1}( - 1)的磷酸盐梯度对硝酸盐,pH和不稳定铝的影响。由于Phytoplankton的摄取,在p浓度>17μgl{sup}( - 1)以后,硝酸盐从180标签U1降至低于检测限。 pH从4.9增加到5.2,相当于12至6μql{sup}( - 1)的H {sup} + - 当量减少50%,因为在同化NO {sub} 3 {sup {sup } - 离子。由于pH增加并且可能还用磷酸盐沉淀,不稳定铝的浓度在p-interval4-19μgl{sup}( - 1)内从150-100μg}( - 1)降低。藻类生物量沿相同的p梯度增加0.5至6标签叶绿素A L {sup}( - 1)。结果表明,适度的P-A1加(<15μgpl{sup}( - 1)以避免富营养化问题)可以在适度酸化的湖泊中提高水质,并在强烈酸化的湖泊中增加硝酸盐保留。在腐殖湖中,由于初级生产的光限制和有机酸存在,治疗将减少有效。

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