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首页> 外文期刊>Journal of Environmental Management >High-pressure jet-induced hydrodynamic cavitation as a pre-treatment step for avoiding cyanobacterial contamination during water purification
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High-pressure jet-induced hydrodynamic cavitation as a pre-treatment step for avoiding cyanobacterial contamination during water purification

机译:作为避免水净化过程中蓝藻污染的预处理步骤,高压喷射诱导的水力空化

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摘要

Due to specific physical properties, hydrodynamic cavitation (HQ is assigned to the powerful technologies for treating the biotic contamination in water including cyanobacteria. Contaminated water stream (CWS) can be cavitated directly by passing through some HC device, or indirectly when high-pressure jet stream (HPJS) is directed against its flow. Relatively small HPJS stream can thus treat a big volume of CWS in a short time or even work in continuous mode. Cyanobacteria floating in the CWS are forced to flow through the mixing cavitation zone. Within 2 h after single HC treatment, cyanobacterial cell suspensions showed disintegration of larger colonies and enhanced biomass sedimentation. Additional pre-treatment of CWS with low amounts of hydrogen peroxide (H_2O_2; 33, 66 and 99 μmol/L) enhanced the effect of HC and led to further inhibition of cyanobacterial photosynthesis (maximum quantum yield of photosystem II decreased by up to 60%). The number of cyanobacterial cells in the treated CWS decreased continuously over 48 and 72 h, though some cells remained alive and were able to recover photosynthetic activity. The technique proposed (direction of a HPJS against a CWS and pre-treatment with low H_2O_2 concentrations) provides (ⅰ) effective removal of cells from the water column, and (ⅱ) reduced contamination by organic compounds released from the cells (especially cyanotoxins) as the cell membranes are not destroyed and the cells remain alive. This process shows potential as an effective pre-treatment step in water purification processes related to cyanobacterial contamination.
机译:由于特殊的物理特性,流体动力空化(HQ被指定为处理包括蓝细菌在内的水中生物污染的强大技术。被污染的水流(CWS)可通过某些HC设备直接空化,或在高压喷射时间接被空化。流(HPJS)针对其流向,因此,相对较小的HPJS流可在短时间内处理甚至是连续模式下的大量CWS,漂浮在CWS中的蓝细菌被迫流过混合空化区。单一HC处理后h,蓝细菌细胞悬液会分解较大的菌落并增加生物量沉降,另外用少量过氧化氢(H_2O_2; 33、66和99μmol/ L)预处理CWS可增强HC的作用并导致进一步抑制蓝细菌的光合作用(光系统II的最大量子产率降低了60%)。尽管一些细胞仍然存活并且能够恢复光合作用,但在48和72小时内,相关的CWS持续下降。提出的技术(HPJS对抗CWS的方向以及用低H_2O_2浓度进行预处理)可提供(ⅰ)从水柱中有效去除细胞,以及(ⅱ)减少从细胞中释放的有机化合物(特别是氰毒素)的污染因为细胞膜没有被破坏,细胞仍然存活。该过程显示出作为与蓝细菌污染有关的水净化过程中有效的预处理步骤的潜力。

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