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cauchy1207

铜虫 (初入文坛)

[交流] 求英文会议论文一篇~~(10金币)

作者:Pijuan, M. and Yuan, Z. (2007)

篇名:Inhibition of Free Nitrous Acid on Aerobic P-uptake by Poly-phosphate Accumulating Organisms.

会议:2nd IWA Asia-pacific regional group conference & exhibition, 28 October - 1 November 2007, Perth, Australia.
  
若搜到请发到:tomamily@163.com 核实后发金币哦  万分感谢~~~

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titileaf

金虫 (小有名气)

你的第二作者是中国人,北京的,这个就更好说了。
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5楼2009-06-16 18:04:00
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titileaf

金虫 (小有名气)

很多时候你直接找作者要文章,他们会很乐意给的,倒不如直接找到作者的E-mail,然后写封信要呢。

一般我是在EI或者SCI上搜作者,搜到之后,有些文章上会附上E-mail,然后发邮件,一般都给我回复了,有的及时不回的,我也会再写,然后说明情况。

Pijuan, M: maite@awmc.uq.edu.au

Advanced Wastewater Management Centre, University of Queensland, St. Lucia, QLD 4072, Australia
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3楼2009-06-16 18:01:08
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titileaf

金虫 (小有名气)

引用回帖:
Originally posted by titileaf at 2009-6-16 18:01:
很多时候你直接找作者要文章,他们会很乐意给的,倒不如直接找到作者的E-mail,然后写封信要呢。

一般我是在EI或者SCI上搜作者,搜到之后,有些文章上会附上E-mail,然后发邮件,一般都给我回复了,有的及时不 ...

打错字了,不给的会回信说自己只有草稿,然后我就继续写信,说草稿也行,然后说明情况,都给了。
我的眼中始终闪动着我要征服的顶峰!
4楼2009-06-16 18:02:31
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harrychen8112

金虫 (正式写手)

Free nitrous acid inhibition on anoxic phosphorus uptake and denitrification by poly-phosphate accumulating organisms

References: 39       Times Cited: 0
Author(s):

    * Zhou Y Univ Queensland, Adv Wastewater Management Ctr, St Lucia, Qld 4072, Australia

    * Pijuan M

    * Yuan ZG

Abstract:

Nitrite has been found in previous research an inhibitor on anoxic phosphorus uptake in enhanced biological phosphorus removal systems (EBPR). However, the inhibiting nitrite concentration reported varied in a large range. This study investigates the nitrite inhibition on anoxic phosphorus uptake by using four different mixed cultures performing FBPR with PH considered an important factor. The results showed that the protonated species of nitrite, HNO2 (or free nitrous acid, FNA), rather than nitrite, is likely the actual inhibitor on the anoxic phosphorus uptake, as revealed by the much stronger correlation of the phosphorus uptake rate with the FNA than with the nitrite concentration. All the four EBPR sludges showed decreased anoxic phosphorus uptake rates with increased FNA concentrations in the studied range of 0.002-0.02 mg HNO2-N/ L. The phosphorus uptake by all four cultures was completely inhibited at 0.02 mg HNO2-N/L. Granular sludge appeared to be more tolerant to HNO2 than flocular sludge likely due to its stronger resistance to the transfer of nitrite into the bacterial aggregates. Furthermore, denitrification by the phosphorus-accumulating organisms (PAOs) was also found to be inhibited by HNO2. The denitrification rate decreased by approximately 40% when the FNA concentration was increased from 0.002 to 0.02 mg HNO2-N/L.
Source:

Biotechnology and Bioengineering , 2007, 98 (4) : 903-912
ISSN:

0006-3592
Language:

English
Keywords:

denitrification ; enhanced biological phosphorus removal ; free nitrous acid ; inhibition ; polyphosphate accumulating organisms ; P-uptake ; REMOVAL ACTIVATED-SLUDGE ; NITRITE INHIBITION ; WASTE-WATER ; PSEUDOMONAS-FLUORESCENS ; POLYPHOSPHATE KINASE ; IDENTIFICATIO
6楼2009-06-20 20:32:13
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