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1.
This study investigated the bacterial regrowth in drinking water distribution systems receiving finished water from an advanced drinking water treatment plant in one city in southem China. Thirteen nodes in two water supply zones with different aged pipelines were selected to monitor water temperature, dissolved oxygen (DO), chloramine residual, assimilable organic carbon (AOC), and heterotrophic plate counts (HPC). Regression and principal component analyses indicated that HPC had a strong correlation with chloramine residual. Based on Chick-Watson's Law and the Monod equation, biostability curves under different conditions were developed to achieve the goal of HPC 100 CFU/mL. The biostability curves could interpret the scenario under various AOC concentrations and predict the required chloramine residual concentration under the condition of high AOC level. The simulation was also carded out to predict the scenario with a stricter HPC goal (≤50 CFU/mL) and determine the required chloramine residual. The biological regrowth control strategy was assessed using biostability curve analysis. The results indicated that maintaining high chloramine residual concentration was the most practical way to achieve the goal of HPC ≤ 100 CFU/mL. Biostability curves could be a very useful tool for biostability control in distribution systems. This work could provide some new insights towards biostability control in real distribution systems.  相似文献   
2.
氯对模拟管壁生物膜的氧化特性研究   总被引:2,自引:2,他引:0  
以载片上培养的大肠杆菌生物膜为对象,研究了氯对模拟管壁生物膜中大肠杆菌的灭活效果,同时考察氯氧化生物膜后水中生物可同化有机碳(AOC)、生物可利用磷(MAP)和细菌生长潜能(BRP)的变化情况.结果表明,氯可以有效灭活悬浮态的大肠杆菌,而对生物膜中的大肠杆菌的灭活效率远低于悬浮菌;在相同CT值下,较高浓度的氯对悬浮态和生物膜中大肠杆菌的灭活效果要高于低浓度的氯.氯对生物膜的氧化作用会使生物膜中物质溶出,增加了水中AOC和MAP浓度,如当氯的浓度为1.0 mg/L(CT值为100 mg·min/L)时,水中AOC由20.78 μg/L增加到120.17 μg/L,MAP含量由0.11 μg/L增加到0.17 μg/L;氯的氧化作用会增加水的细菌生长潜能(BRP),BRP随着CT值的增加而增加,如当氯投量为1.0 mg/L(CT值为100 mg·min/L)时,BRP可达到1.10×107 CFU/mL.  相似文献   
3.
上海市供水管网中异养菌生长水平及相关指标变化   总被引:1,自引:0,他引:1  
白晓慧  张晓红  张玲  朱斌  王海亮 《环境科学》2006,27(11):2350-2353
以上海市某水厂实际供水管网为研究对象,对其管网水中异养菌生长水平和其它相关物理、化学指标的变化规律进行了检测分析.结果表明,在所研究供水管段中,悬浮水中所含细菌主要是以有机物为营养的异养菌;随着供水距离延长,悬浮水中BDOC逐渐增加,伴随异养菌数量和浊度呈增加趋势;在研究管段中,悬浮水中各形态氮的变化表明水中存在一定的亚硝化作用,而且亚硝酸盐含量同异养菌具有相同的升高变化趋势;管网水中总磷含量与异养菌数量也随供水距离延长同时增加.  相似文献   
4.
Abstract: In recent decades the rate and geographic extent of land‐use and land‐cover change has increased throughout the world's humid tropical forests. The pan‐tropical geography of forest change is a challenge to assess, and improved estimates of the human footprint in the tropics are critical to understanding potential changes in biodiversity. We combined recently published and new satellite observations, along with images from Google Earth and a literature review, to estimate the contemporary global extent of deforestation, selective logging, and secondary regrowth in humid tropical forests. Roughly 1.4% of the biome was deforested between 2000 and 2005. As of 2005, about half of the humid tropical forest biome contained 50% or less tree cover. Although not directly comparable to deforestation, geographic estimates of selective logging indicate that at least 20% of the humid tropical forest biome was undergoing some level of timber harvesting between 2000 and 2005. Forest recovery estimates are even less certain, but a compilation of available reports suggests that at least 1.2% of the humid tropical forest biome was in some stage of long‐term secondary regrowth in 2000. Nearly 70% of the regrowth reports indicate forest regeneration in hilly, upland, and mountainous environments considered marginal for large‐scale agriculture and ranching. Our estimates of the human footprint are conservative because they do not resolve very small‐scale deforestation, low‐intensity logging, and unreported secondary regrowth, nor do they incorporate other impacts on tropical forest ecosystems, such as fire and hunting. Our results highlight the enormous geographic extent of forest change throughout the humid tropics and the considerable limitations of the science and technology available for such a synthesis.  相似文献   
5.
Spatially explicit models of land abandonment in the Amazon   总被引:2,自引:0,他引:2  
Given growing concerns about biodiversity loss and carbon emissions stemming from tropical deforestation, it is important to identify the factors associated with land abandonment as they might indicate areas that were deforested but are unsuitable for long-term cultivation. This article utilizes a high-resolution, Landsat-based data-set called TerraClass to relate land abandonment to precipitation, slope, farmgate price of beef, market access, soil quality, and land tenure characteristics in the Brazilian Amazon. The spatially explicit statistical models reveal that rates of land abandonment increase with higher rainfall and slope values, even when controlling for distance to roads, farmgate prices, type of settlement, and soil quality. Moreover, land adjacent to a major road is more likely to be consistently cultivated, but land near large rivers and far from highways is more likely to be abandoned. Land ownership type also influences the likelihood of land abandonment as settlements based on communal property rights have higher rates of land abandonment than settlements with private lots. These results suggest that policies aimed at occupying tropical forests such as the Amazon must consider these biophysical and socioeconomic factors in order to foster human development aligned with sustainability principles.  相似文献   
6.
外加磷提高生物预处理效果的试验研究   总被引:2,自引:0,他引:2  
利用国内研究较多的生物陶粒滤池预处理工艺,在我国北方某水库原水中添加微量的磷,考察磷对生物预处理的促进作用通过生物分析方法,发现在原水水样中添加50μg/L的PO43--P(NaH2PO4)后,可以促进原水中细菌的生长,BDOC也有所增加,证明了原水中磷对细菌生长的限制因子作用陶粒滤池的实际运行结果表明,对于本试验所用原水,添加25μg/L的PO43--P(H3PO4)后,生物陶粒滤池对水中CODMn的去除率平均提高4.7个百分点,UV254和TOC的去除率分别提高3.6和5.7个百分点.由此为提高生物预处理的运行效果提供了一个新的思路,也说明磷在饮用水中的作用需要引起重视.  相似文献   
7.
饮用水中磷与细菌再生长的关系   总被引:3,自引:0,他引:3  
采用改进的可同化有机碳(AOC)和微生物可利用磷(MAP)方法,针对T市J水厂水源水、处理工艺以及一条配水干管中磷对细菌生长的限制作用进行了研究.结果表明:①水源水与处理工艺中MAP较高(5~38μg/L),配水管网中MAP较低(<5μg/L),且管网水中的MAP随着管线的延长基本保持不变.②常规处理工艺能够有效地去除水中的MAP(去除率为34.0%~83.7%).③在水源水和处理工艺中,水样的AOCpotential<、sub>、AOCP与AOCnative没有显著差别,说明AOC是微生物生长繁殖的决定因素.该研究配水干管中,水样的AOCpotential、AOCP为AOCnative的2~8.7倍,磷成为细菌再生长的限制因子.  相似文献   
8.
饮用水净化工艺中磷的去除研究   总被引:8,自引:0,他引:8       下载免费PDF全文
利用一种新的微生物学分析方法,研究了原水中微生物可利用磷(MAP)以及总磷(TP)、溶解性正磷酸盐(SRP)在净水工艺中的去除情况.结果表明,生物预处理、生物活性炭及常规的混凝沉淀砂滤工艺均使水中的MAP、TP及SRP大大降低;生物预处理和生物活性炭对水中MAP的去除效率高于对TP的去除效率;常规处理对原水中MAP的去除率超过90%,TP的去除率在80%以上.臭氧氧化对水中TP和SRP的影响不大,但是使MAP增加.试验原水经过净水处理后,水中可供细菌利用的磷源降低到很低的水平,说明处理后的水中磷源可能成为水中细菌生长的限制因子.  相似文献   
9.
Disinfection of reclaimed water prior to reuse is important to prevent the transmission of pathogens. Chlorine is a widely utilized disinfectant and as such is a leading contender for disinfection of reclaimed water. To understand the risks of chlorination resulting from the potential selection of pathogenic bacteria, the inactivation, reactivation and regrowth rates of indigenous bacteria were investigated in reclaimed water after chlorine disinfection. Inactivation of total coliforms, Enterococcus and Salmonella showed linear correlations, with constants of 0.1384, 0.1624 and 0.057 L/(mg·min) and R2 of 0.7617, 0.8316 and 0.845, respectively. However, inactivation of total viable cells by measurement of metabolic activity typically showed a linear correlation at lower chlorine dose (0-22 (mg·min)/L), and a trailing region with chlorine dose increasing from 22 to 69 (mg·min)/L. Reactivation and regrowth of bacteria were most likely to occur after exposure to lower chlorine doses, and extents of reactivation decreased gradually with increasing chlorine dose. In contrast to total coliforms and Enterococcus, Salmonella had a high level of regrowth and reactivation, and still had 2% regrowth even after chlorination of 69 (mg·min)/L and 24 hr storage. The bacterial compositions were also significantly altered by chlorination and storage of reclaimed water, and the ratio of Salmonella was significantly increased from 0.001% to 0.045% after chlorination of 69 (mg·min)/L and 24 hr storage. These trends indicated that chlorination contributes to the selection of chlorine-resistant pathogenic bacteria, and regrowth of pathogenic bacteria after chlorination in reclaimed water with a long retention time could threaten public health security during wastewater reuse.  相似文献   
10.
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