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用于太阳能光催化灭活嗜水气单胞菌的薄膜固定床反应器:水质的影响。

Thin-film fixed-bed reactor for solar photocatalytic inactivation of Aeromonas hydrophila: influence of water quality.

机构信息

Centre for Plant and Water Sciences, Central Queensland University, Rockhampton, QLD 4701, Australia.

出版信息

BMC Microbiol. 2012 Nov 29;12:285. doi: 10.1186/1471-2180-12-285.

Abstract

BACKGROUND

Controlling fish disease is one of the major concerns in contemporary aquaculture. The use of antibiotics or chemical disinfection cannot provide a healthy aquaculture system without residual effects. Water quality is also important in determining the success or failure of fish production. Several solar photocatalytic reactors have been used to treat drinking water or waste water without leaving chemical residues. This study has investigated the impact of several key aspects of water quality on the inactivation of the pathogenic bacterium Aeromonas hydrophila using a pilot-scale thin-film fixed-bed reactor (TFFBR) system.

RESULTS

The level of inactivation of Aeromonas hydrophila ATCC 35654 was determined using a TFFBR with a photocatalytic area of 0.47 m(2) under the influence of various water quality variables (pH, conductivity, turbidity and colour) under high solar irradiance conditions (980-1100 W m(-2)), at a flow rate of 4.8 L h(-1) through the reactor. Bacterial enumeration were obtained through conventional plate count using trypticase soy agar media, cultured in conventional aerobic conditions to detect healthy cells and under ROS-neutralised conditions to detect both healthy and sub-lethally injured (oxygen-sensitive) cells. The results showed that turbidity has a major influence on solar photocatalytic inactivation of A. hydrophila. Humic acids appear to decrease TiO(2) effectiveness under full sunlight and reduce microbial inactivation. pH in the range 7-9 and salinity both have no major effect on the extent of photoinactivation or sub-lethal injury.

CONCLUSIONS

This study demonstrates the effectiveness of the TFFBR in the inactivation of Aeromonas hydrophila under the influence of several water quality variables at high solar irradiance, providing an opportunity for the application of solar photocatalysis in aquaculture systems, as long as turbidity remains low.

摘要

背景

控制鱼类疾病是当代水产养殖的主要关注点之一。抗生素或化学消毒的使用不能提供没有残留效应的健康水产养殖系统。水质也是决定鱼类生产成败的重要因素。已经有几个太阳能光催化反应器被用于处理饮用水或废水,而不会留下化学残留物。本研究调查了水质的几个关键方面对致病性细菌嗜水气单胞菌的灭活的影响,使用了一个中试规模的薄膜固定床反应器(TFFBR)系统。

结果

在高太阳辐照度条件(980-1100 W m(-2)) 下,通过一个具有 0.47 m(2) 的光催化面积的 TFFBR,在流量为 4.8 L h(-1) 通过反应器的情况下,使用具有传统好氧条件的胰蛋白酶大豆琼脂培养基进行常规平板计数,来确定在不同水质变量(pH 值、电导率、浊度和颜色)影响下,ATCC 35654 嗜水气单胞菌的灭活水平。为了检测健康细胞和亚致死损伤(氧敏感)细胞,在 ROS 中和条件下培养,获得了细菌计数。结果表明,浊度对太阳能光催化嗜水气单胞菌的灭活有很大的影响。腐殖酸似乎在全阳光下降低了 TiO(2) 的有效性,并减少了微生物的失活。pH 值在 7-9 范围内和盐度对光灭活或亚致死损伤的程度都没有主要影响。

结论

本研究表明,在高太阳辐照度下,TFFBR 在几种水质变量的影响下对嗜水气单胞菌的灭活效果显著,为太阳能光催化在水产养殖系统中的应用提供了机会,只要浊度保持较低水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d68b/3556150/6eb2d65e92e7/1471-2180-12-285-1.jpg

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