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Comprehensive modeling of mat density effect on duckweed (Lemna minor) growth under controlled eutrophication

机译:富营养化条件下垫密度对浮萍(Lemna minor)生长影响的综合模型

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The effect of mat density on duckweed (Lemna minor) growth was studied under controlled conditions: 12.5 h a day light exposure and 342 mol m~(-2) s~(-1) light intensity at 20℃. The plant growth was carried out in Hoagland medium for 7 days without harvesting. The results revealed a maximal biomass growth rate of 88 g-dry m~(-2) (1470 g-wet m~(-2)) at an optimal initial mat density of 45 g-dry m~(-2) (750 g-wet m~(-2)), with removal rates for nitrogen (N) and phosphorus (P) of 483 mg-N m~(-2) d~(-1) and 128 mg-Pm~(-2)d~(-1), respectively. A mathematical model that takes into account the mat density was developed in order to simulate the growth of Lemna minor under controlled eutrophication. Based on experiments carried out, the model exhibits a reliability of 89% . The model remains to be validated at the full-scale level.
机译:在受控条件下研究了垫密度对浮萍(Lemna minor)生长的影响:在每天12.5小时的光照下和在20℃下342 mol m〜(-2)s〜(-1)的光照强度。在Hoagland培养基中将植物生长7天而不收获。结果表明,最佳初始垫密度为45 g-干m〜(-2)(750)时,最大生物量增长率为88 g-干m〜(-2)(1470 g-湿m〜(-2)) g-wet m〜(-2)),其中氮(N)和磷(P)的去除率分别为483 mg-N m〜(-2)d〜(-1)和128 mg-Pm〜(-2 )d〜(-1)。建立了一个考虑垫密度的数学模型,以模拟在富营养化条件下小Lemna的生长。根据进行的实验,该模型显示出89%的可靠性。该模型仍有待全面验证。

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