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Toxicity of domestic wastewater pH to key species within an innovative decentralised vermifiltration system

机译:在创新的分散式渗透过滤系统中,生活废水pH值对关键物种的毒性

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The development of innovative decentralised wastewater treatment systems is pertinent to environmental sustainability. However for their appropriate use they require significant research and design to ensure they can be relied upon in the future and in most cases they have received less attention and research than large-scale sewage systems. This study assessed the likelihood of biological inhibition and disruption from pH to key species for vermifiltration. The test firstly assessed the buffer capacity of a vermicompost+manure media finding it had a relatively high buffering capacity for pH. The toxicity after the buffer capacity experiment showed that the species would survive between pH levels of 6.2 and 9.7. At the higher and lower pH levels however the survival of juveniles was impaired, probably due to their ability to uptake greater amounts of soluble salts and inability to regulate them. Overall the study showed that the tolerance of the key vermifiltration species to pH was far less than their survival as previously proposed and further research assessing their long-term population dynamics in a vermifiltration system with pH is warranted.
机译:创新的分散式废水处理系统的开发与环境的可持续性有关。但是,对于它们的正确使用,需要进行大量的研究和设计,以确保将来可以使用它们,并且在大多数情况下,与大规模的污水处理系统相比,它们受到的关注和研究较少。这项研究评估了生物抑制和从pH值到关键物质的渗透的可能性。该测试首先评估了com粪+粪肥培养基的缓冲能力,发现其对pH具有相对较高的缓冲能力。缓冲容量实验后的毒性表明,该物种将在6.2至9.7的pH值之间存活。但是,在较高和较低的pH值下,幼鱼的生存能力受到损害,这可能是由于它们摄取大量可溶性盐的能力以及无法对其进行调节的缘故。总体而言,该研究表明,关键的渗透过滤物质对pH的耐受性远小于先前提出的生存率,因此有必要进行进一步的研究以评估它们在带有pH的渗透过滤系统中的长期种群动态。

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