Lürling Miquel, Meng Debin, Faassen Elisabeth J
Aquatic Ecology and Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47, 6700 AA Wageningen, The Netherlands.
Toxins (Basel). 2014 Dec 10;6(12):3260-80. doi: 10.3390/toxins6123260.
Cyanobacterial blooms are expected to increase, and the toxins they produce threaten human health and impair ecosystem services. The reduction of the nutrient load of surface waters is the preferred way to prevent these blooms; however, this is not always feasible. Quick curative measures are therefore preferred in some cases. Two of these proposed measures, peroxide and ultrasound, were tested for their efficiency in reducing cyanobacterial biomass and potential release of cyanotoxins. Hereto, laboratory assays with a microcystin (MC)-producing cyanobacterium (Microcystis aeruginosa) were conducted. Peroxide effectively reduced M. aeruginosa biomass when dosed at 4 or 8 mg L-1, but not at 1 and 2 mg L-1. Peroxide dosed at 4 or 8 mg L-1 lowered total MC concentrations by 23%, yet led to a significant release of MCs into the water. Dissolved MC concentrations were nine-times (4 mg L-1) and 12-times (8 mg L-1 H2O2) higher than in the control. Cell lysis moreover increased the proportion of the dissolved hydrophobic variants, MC-LW and MC-LF (where L = Leucine, W = tryptophan, F = phenylalanine). Ultrasound treatment with commercial transducers sold for clearing ponds and lakes only caused minimal growth inhibition and some release of MCs into the water. Commercial ultrasound transducers are therefore ineffective at controlling cyanobacteria.
蓝藻水华预计会增加,其产生的毒素威胁人类健康并损害生态系统服务。减少地表水的营养负荷是预防这些水华的首选方法;然而,这并不总是可行的。因此,在某些情况下,快速的治疗措施更为可取。其中两项提议的措施,即过氧化氢和超声波,针对它们在减少蓝藻生物量以及蓝藻毒素潜在释放方面的效率进行了测试。为此,对一种产微囊藻毒素(MC)的蓝藻(铜绿微囊藻)进行了实验室检测。当以4或8 mg/L的剂量添加过氧化氢时,能有效降低铜绿微囊藻的生物量,但在1和2 mg/L的剂量下则无效。以4或8 mg/L的剂量添加过氧化氢可使总MC浓度降低23%,但却导致大量MC释放到水中。溶解态MC浓度比对照组高出9倍(4 mg/L)和12倍(8 mg/L过氧化氢)。此外,细胞裂解增加了溶解态疏水性变体MC-LW和MC-LF(其中L = 亮氨酸,W = 色氨酸,F = 苯丙氨酸)的比例。使用用于清理池塘和湖泊的商用换能器进行超声处理仅引起了最小程度的生长抑制,并导致一些MC释放到水中。因此,商用超声换能器在控制蓝藻方面无效。