Tuesday, January 10, 2012

Gulf of Mexico topography played key role in bacterial consumption of Deepwater Horizon spill

Gulf of Mexico topography played key role in bacterial consumption of Deepwater Horizon spill [ Back to EurekAlert! ] Public release date: 9-Jan-2012
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Contact: Cheryl Dybas
cdybas@nsf.gov
703-292-7734
National Science Foundation

Scientists document how geology, biology worked together after oil disaster

When scientist David Valentine and colleagues published results of a study in early 2011 reporting that bacterial blooms had consumed almost all the deepwater methane plumes after the 2010 Gulf of Mexico Deepwater Horizon oil spill, some were skeptical.

How, they asked the University of California at Santa Barbara (UCSB) geochemist, could almost all the gas emitted disappear?

In new results published this week in the journal Proceedings of the National Academy of Sciences (PNAS), Valentine; Igor Mezic, a mechanical engineer at UCSB; and coauthors report that they used an innovative computer model to demonstrate the respective roles of underwater topography, currents and bacteria in the Gulf of Mexico.

This confluence led to the disappearance of methane and other chemicals that spewed from the well after it erupted on April 20, 2010.

The National Science Foundation (NSF) funded the research.

"As scientists continue to peel apart the layers of the Deepwater Horizon microbial story," said Don Rice, director of NSF's chemical oceanography program, "we're learning a great deal about how the ocean's biogeochemical system interacts with petroleum--every day, everywhere, twenty-four/seven. "

The results are an extension of a 2011 study, also funded by NSF, in which Valentine and other researchers explained the role of bacteria in consuming more than 200,000 metric tons of dissolved methane.

"It seemed that we were putting together a lot of pieces," Valentine said. "We would go out, take some samples, and study what was happening in those samples, both during and after the spill.

"There was a transition of the microorganisms and a transition of the biodegradation, and it became clear that we needed to incorporate the movement of the water."

The scientists believed that there was an important component of the physics of the water motion--of where the water went.

Valentine turned to Mezic, who had published results in 2011 forecasting where the oil slick would spread.

"Our work was on the side of: here's where the oil leaked and here's where it went," Mezic said. "We agreed that it would be beautiful if we could put a detailed hydrodynamic model together with a detailed bacterial model."

The resulting computer model has data on the chemical composition of hydrocarbons flowing into the Gulf of Mexico, and is seeded with 52 types of bacteria that consumed the hydrocarbons.

The physical characteristics were based on the U.S. Navy's model of the gulf's ocean currents and on observations of water movements immediately after the spill and for several months after it ended.

The scientists then sought the help of Mezic's former colleagues--engineers at the University of Rijeka in Croatia.

"We needed somebody to build the software," Mezic said. "It was a big task, a mad rush, but they did it.

"The power behind this is a tour de force. A typical study of this kind would take a year, at least. We found a way that led us to answers in three or four months."

The model revealed that one of the key factors in the disappearance of the hydrocarbon plumes was the physical structure of the Gulf of Mexico.

"It's the geography of the gulf," Valentine said. "It's almost like a box canyon. As you go northward, it comes to a head.

"As a result, it's not a river down there; it's more of a bay. And the spill happened in a fairly enclosed area, particularly at the depths where hydrocarbons were dissolving."

When the hydrocarbons were released from the well, bacteria bloomed. In other locations outside the gulf, those blooms would be swept away by prevailing ocean currents.

But in the Gulf of Mexico, they swirled around as if they were in a washing machine, and often circled back over the leaking well, sometimes two or three times.

"What we see is that some of the water that already had been exposed to hydrocarbons at the well and had experienced bacterial blooms, then came back over the well," Valentine said.

"So these waters already had a bacterial community in them, then they got a second input of hydrocarbons."

As the water came back over, he explained, the organisms that had already bloomed and eaten their preferred hydrocarbons immediately attacked and went after certain compounds.

Then they were fed a new influx of hydrocarbons.

"When you have these developed communities coming back over the wellhead, they consume the hydrocarbons much more quickly," Valentine said, "and the bacterial composition and hydrocarbon composition behaves differently. It changes at a different rate than when the waters were first exposed."

The model allowed the scientists to test this hypothesis and to look at some of the factors that had been measured: oxygen deficits and microbial community structure.

"What we found was very good agreement between the two," Valentine said.

"We have about a 70 percent success rate of hitting where those oxygen declines were. It means that not only is the physics model doing a good job of moving the water in the right place, but also that the biology and chemistry results are doing a good job, because you need those to get the oxygen declines. It's really a holistic view of what's going on."

There are valuable lessons to be learned from the study, the scientists believe.

"It tells us that the motion of the water is an important component in determining how rapidly different hydrocarbons are broken down," Valentine said. "It gives us concepts that we can now apply to other situations, if we understand the physics."

Mezic said that this should be a wake-up call for anyone thinking of drilling for oil.

"The general perspective is that we need to pay more attention to where the currents are flowing around the places where we have spills," he said.

"We don't have models for most of those. Why not mandate a model?

"This one worked--three-quarters of the predictions were correct. For almost everything, you can build a model. You build an airplane, you have a model. But you can drill without having a model. It's possible we can predict this. That's what a model is for."

###

The U.S. Department of Energy and the U.S. Office of Naval Research also supported the research.

In addition to Valentine and Mezic, co-authors of the paper are Senka Macesic, Nelida Crnjaric-Zic, and Stefan Ivic, of the University of Rijeka in Croatia; Patrick J. Hogan of the Naval Research Laboratory; Sophie Loire of the Department of Mechanical Engineering at UCSB; and Vladimir A. Fonoberov of Aimdyn, Inc. of Santa Barbara.



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Gulf of Mexico topography played key role in bacterial consumption of Deepwater Horizon spill [ Back to EurekAlert! ] Public release date: 9-Jan-2012
[ | E-mail | Share Share ]

Contact: Cheryl Dybas
cdybas@nsf.gov
703-292-7734
National Science Foundation

Scientists document how geology, biology worked together after oil disaster

When scientist David Valentine and colleagues published results of a study in early 2011 reporting that bacterial blooms had consumed almost all the deepwater methane plumes after the 2010 Gulf of Mexico Deepwater Horizon oil spill, some were skeptical.

How, they asked the University of California at Santa Barbara (UCSB) geochemist, could almost all the gas emitted disappear?

In new results published this week in the journal Proceedings of the National Academy of Sciences (PNAS), Valentine; Igor Mezic, a mechanical engineer at UCSB; and coauthors report that they used an innovative computer model to demonstrate the respective roles of underwater topography, currents and bacteria in the Gulf of Mexico.

This confluence led to the disappearance of methane and other chemicals that spewed from the well after it erupted on April 20, 2010.

The National Science Foundation (NSF) funded the research.

"As scientists continue to peel apart the layers of the Deepwater Horizon microbial story," said Don Rice, director of NSF's chemical oceanography program, "we're learning a great deal about how the ocean's biogeochemical system interacts with petroleum--every day, everywhere, twenty-four/seven. "

The results are an extension of a 2011 study, also funded by NSF, in which Valentine and other researchers explained the role of bacteria in consuming more than 200,000 metric tons of dissolved methane.

"It seemed that we were putting together a lot of pieces," Valentine said. "We would go out, take some samples, and study what was happening in those samples, both during and after the spill.

"There was a transition of the microorganisms and a transition of the biodegradation, and it became clear that we needed to incorporate the movement of the water."

The scientists believed that there was an important component of the physics of the water motion--of where the water went.

Valentine turned to Mezic, who had published results in 2011 forecasting where the oil slick would spread.

"Our work was on the side of: here's where the oil leaked and here's where it went," Mezic said. "We agreed that it would be beautiful if we could put a detailed hydrodynamic model together with a detailed bacterial model."

The resulting computer model has data on the chemical composition of hydrocarbons flowing into the Gulf of Mexico, and is seeded with 52 types of bacteria that consumed the hydrocarbons.

The physical characteristics were based on the U.S. Navy's model of the gulf's ocean currents and on observations of water movements immediately after the spill and for several months after it ended.

The scientists then sought the help of Mezic's former colleagues--engineers at the University of Rijeka in Croatia.

"We needed somebody to build the software," Mezic said. "It was a big task, a mad rush, but they did it.

"The power behind this is a tour de force. A typical study of this kind would take a year, at least. We found a way that led us to answers in three or four months."

The model revealed that one of the key factors in the disappearance of the hydrocarbon plumes was the physical structure of the Gulf of Mexico.

"It's the geography of the gulf," Valentine said. "It's almost like a box canyon. As you go northward, it comes to a head.

"As a result, it's not a river down there; it's more of a bay. And the spill happened in a fairly enclosed area, particularly at the depths where hydrocarbons were dissolving."

When the hydrocarbons were released from the well, bacteria bloomed. In other locations outside the gulf, those blooms would be swept away by prevailing ocean currents.

But in the Gulf of Mexico, they swirled around as if they were in a washing machine, and often circled back over the leaking well, sometimes two or three times.

"What we see is that some of the water that already had been exposed to hydrocarbons at the well and had experienced bacterial blooms, then came back over the well," Valentine said.

"So these waters already had a bacterial community in them, then they got a second input of hydrocarbons."

As the water came back over, he explained, the organisms that had already bloomed and eaten their preferred hydrocarbons immediately attacked and went after certain compounds.

Then they were fed a new influx of hydrocarbons.

"When you have these developed communities coming back over the wellhead, they consume the hydrocarbons much more quickly," Valentine said, "and the bacterial composition and hydrocarbon composition behaves differently. It changes at a different rate than when the waters were first exposed."

The model allowed the scientists to test this hypothesis and to look at some of the factors that had been measured: oxygen deficits and microbial community structure.

"What we found was very good agreement between the two," Valentine said.

"We have about a 70 percent success rate of hitting where those oxygen declines were. It means that not only is the physics model doing a good job of moving the water in the right place, but also that the biology and chemistry results are doing a good job, because you need those to get the oxygen declines. It's really a holistic view of what's going on."

There are valuable lessons to be learned from the study, the scientists believe.

"It tells us that the motion of the water is an important component in determining how rapidly different hydrocarbons are broken down," Valentine said. "It gives us concepts that we can now apply to other situations, if we understand the physics."

Mezic said that this should be a wake-up call for anyone thinking of drilling for oil.

"The general perspective is that we need to pay more attention to where the currents are flowing around the places where we have spills," he said.

"We don't have models for most of those. Why not mandate a model?

"This one worked--three-quarters of the predictions were correct. For almost everything, you can build a model. You build an airplane, you have a model. But you can drill without having a model. It's possible we can predict this. That's what a model is for."

###

The U.S. Department of Energy and the U.S. Office of Naval Research also supported the research.

In addition to Valentine and Mezic, co-authors of the paper are Senka Macesic, Nelida Crnjaric-Zic, and Stefan Ivic, of the University of Rijeka in Croatia; Patrick J. Hogan of the Naval Research Laboratory; Sophie Loire of the Department of Mechanical Engineering at UCSB; and Vladimir A. Fonoberov of Aimdyn, Inc. of Santa Barbara.



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?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Source: http://www.eurekalert.org/pub_releases/2012-01/nsf-gom010912.php

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Monday, January 9, 2012

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Amnesty warns over continuing repression in Middle East and North Africa

[unable to retrieve full-text content]

Source: current.com --- Monday, January 09, 2012
Human rights charity Amnesty has issued a warning over cosmetic changes and continuing state violence in the Middle East following the downfall of long-standing repressive regimes in the region. In a report titled Year of Rebellion: State of the Human Rights in the Middle East and North Africa, Amnesty details how calls for reform in countries that saw uprisings were met with extreme violence from governments. The report warns of possible repeated abuses in Tunisia, Egypt and Libya while it says governments in some countries will continue to hold onto power, no matter what the cost to citizens? human rights. International Interim Middle East and North Africa Director Philip Luther paid tribute to the bravery of those involved in protests: ?The protest movements across the region, led in many cases by young people and with women playing central roles, have proved astonishingly resilient in the face of sometimes staggering repression.? However, he said demonstrators? efforts had not been satisfactorily acknowledged by governments: ?But persistent attempts by states to offer cosmetic changes, to push back against gains made by protesters or to simply brutalise their populations into submission, betray the fact that for many governments, regime survival remains the aim.? http://www.amnesty.org.uk/news_details.asp?NewsID=19884 added by: CurrentUK ? 0 comments ...

Source: http://current.com/news-and-politics/93610412_amnesty-warns-over-continuing-repression-in-middle-east-and-north-africa.htm?xid=RSSfeed

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Sunday, January 8, 2012

Angry India Kills Goodwill Military Mission to China

India has canceled a military delegation visit to China on a ?confidence building? tour after Chinese authorities refused to give a visa to one member of the delegation.? The rejected officer is a native of Arunachal Pradesh in northeastern India; China claims that most of the territory in question is part of southern Tibet.

The ability of disputes like this one to disrupt relations between the two Asian giants is cause for concern.? Both countries are likely to become more nationalist and assertive in coming years; governments will not want to antagonize nationalist opinion and risk angry press and internet criticism if they are seen as acting ?soft?.

If the US goal in the region was to isolate and contain China, such incidents might be welcome. But the US prefers the development of a peaceful and integrated Asian system to an angry standoff or a new cold war. Good relations between Japan, India and China are good for the United States; border disputes between nuclear powers are never good news.

Source: http://feedproxy.google.com/~r/WalterRussellMead/~3/VoHCBti7YcE/

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Cancer drugs help the hardest cases of Pompe disease

To date there has been no success in eliminating or suppressing this immune response.

Now research led by Duke University Medical Center, with collaborators at other centers, has resulted in successful enzyme replacement therapy for children who were predicted to have or who had the immune reaction blocking the effects of the enzyme therapy. In the past, children with this immune response died despite treatment.

In an article appearing in Genetics in Medicine, the researchers showed that a very low-dose combination of medicines typically used to treat cancer was successful in eliminating or preventing the immune response.

The drugs were rituximab, methotrexate and gammaglobulins ? a mix of chemotherapeutic drugs and drugs to support the immune system. These drugs were the right mix for children who had Pompe, and who were most likely weren't going to benefit from the enzyme treatment because of their anti-GAA immune response.

"The goal is to get the new combination therapy to the child who is at risk of rejecting the enzyme, before or at the time the enzyme (recombinant human GAA (rhGAA), known as Myozyme) is infused," said senior author Priya Kishnani, M.D., professor of Pediatrics and Medical Genetics at Duke. "If you can get this combination to people early, before they are infused with the enzyme, they will likely have a very good response to the enzyme treatment. Once the body has been exposed to the enzyme treatment, the babies at risk are likely to mount an immune response that blocks the effectiveness of the infused enzyme."

The group at Duke earlier showed the role of the immune response in children with Pompe disease. Once this response occurred, children who were previously doing well failed to benefit from treatment and died.

The researchers in the current study, spread out in centers at Children's Hospitals & Clinics of Minnesota, Medical College of Wisconsin/Children's Hospital of Wisconsin, Sorka Medical Center in Israel and the Evelina Children's Hospital in London, worked together to treat the at-risk babies with the chemotherapy medicines at the time enzyme treatment started or shortly thereafter.

The team at Duke used genetic sequencing to identify the children at risk of enzyme-treatment failure. The experience of the Duke group allowed for identification of these cases early.

Senior author Kishnani said the stakes of failure are very high. "Until now, children with Pompe who make antibodies to the enzyme treatment die or are placed on invasive ventilation by age 27 months," she said. "It is very difficult for families, because some children who initially showed a benefit and were able to walk then started failing once the immune response occurred. It is heartbreaking to watch, not only for family members, but also for the team that cares for the children."

The study examined four children, two who had Pompe and had never been treated and two who were treated, but were failing.

"We have made a difference in the lives of four patients at medical centers around the world," Kishnani said. "All of them have achieved new motor abilities, in distinct contrast with the relentless downhill course of patients who were unable to tolerate the enzyme therapy and would otherwise have died." Some of these children have now been doing well for a number of years, Kishnani said.

Provided by Duke University Medical Center (news : web)

Source: http://www.physorg.com/news245006772.html

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Saturday, January 7, 2012

Women's college basketball roundup: Georgia loses to Tennessee; Auburn beats Alabama

KNOXVILLE, Tenn. -- Glory Johnson had 22 points and 13 rebounds as No. 6 Tennessee pulled away from No. 16 Georgia 80-51 on Thursday night.

Ariel Massengale scored 15 of her 19 points before halftime, while Johnson did most of her work after the break. Johnson now has 1,331 career points and is four rebounds shy of 1,000.

Johnson hit the first basket of the second half to give Tennessee a 38-27 lead, but Lady Bulldogs scored the next five points to cut the margin to six points. The Lady Vols (10-3, 2-0 SEC) answered with a 14-4 run to pull away.

Meredith Mitchell led the Lady Bulldogs (12-3, 1-1) with 14 points.

The Lady Vols held advantages of 52-32 rebounding and 42-12 in the paint and finished 20 of 28 at the line.

Tennessee hasn?t dropped an SEC game since a 53-50 loss at Georgia on Jan. 21, 2010.

@BR Scoreline:Auburn 65, Alabama 55

TUSCALOOSA, Ala. -- Auburn beat Alabama at Foster Auditorium as sophomore forward Tyrese Tanner scored a game-high 20 points for the Tigers.

Freshman guard Hasina Muhammad added 12 points, and junior forward Blanche Alverson chipped in 11 points for Auburn.

Sophomore guard Shafontaye Myers led the Tide with 13 points, while senior guard Ericka Russell added 12 points for Alabama. Junior forward Erin Hogue grabbed nine boards to lead the Tide in rebounding. Auburn was Alverson and senior center Chantel Hilliard were the leading rebounders for the Tigers, each grabbing seven boards.

With the loss, Alabama falls to 10-6 on the season, 0-2 in Southeastern Conference play. Auburn improves to 9-6 overall and 1-1 in the league. Alabama returns to action Sunday, January 8, when it faces LSU in Baton Rouge. Tipoff is scheduled for 2p.m., and the game will be televised regionally by the SEC Network.

@BR Scoreline:Kentucky 84, Arkansas 72

LEXINGTON, Ky. -- A?dia Mathies scored 21 points and had six assists as No. 11 Kentucky used a late surge to beat Arkansas.

Mathies started the game strong, scoring 14 points in the first eight minutes for the Wildcats (13-2, 2-0). Arkansas then found a way to shut her down, forcing her to miss her next eight shots over a 20-minute span.

The Razorbacks (11-3, 0-2) trailed by as many as 15 in the first half but used strong shooting to take their first lead, 46-44, with 16:18 left in the game on Dominique Robinson?s 3-pointer.

The Wildcats regained the lead and created space once Mathies got going again.

The junior finished 8 for 18 from the field and 5 for 9 on 3-pointers.

@BR Scoreline:South Carolina 65, Vanderbilt 55

COLUMBIA, S.C. -- Aleighsa Welch had a career high 19 points and South Carolina won its seventh straight game with a victory over No. 24 Vanderbilt.

The Gamecocks (13-2) opened 2-0 in the Southeastern Conference for the first time in 10 years, disrupting the Commodores (12-2, 0-1) with their pressure defense. Vanderbilt was held to its fewest points of the season and committed 26 turnovers.

South Carolina broke open a tie game with a 10-0 run to close the first half. Vanderbilt did not get closer than six points as it lost its league opener for the first time in six years.

Tiffany Clarke led Vanderbilt with 13 points. Christina Foggie, the team?s top scorer at 17 points a game, was held to nine.

@BR Scoreline:ACC Miami 78, N.C. State 68

CORAL GABLES, Fla. -- Riquna Williams scored 22 points to lead No. 12 Miami to a victory over North Carolina State.

Williams hit consecutive 3-pointers late in the second half as the Hurricanes (12-3, 1-1 Atlantic Coast Conference) withstood a rally by the Wolfpack and expanded a 66-61 lead with a 12-0 run. Maria Brown?s layup with 1:45 remaining ended the surge and gave Miami a 78-61 lead.

The Wolfpack (10-5, 0-2) rallied from a 49-29 deficit early in the second half with 13 straight points. Krystal Barrett scored 10 points during the run and her two free throws with 13:27 remaining cut Miami?s lead to 49-42.

Williams? putback with 10:01 left increased Miami?s lead to 55-46. North Carolina State got within 55-52 with 8:16 left.

Barrett scored 14 points to lead the Wolfpack.

Source: http://www.ledger-enquirer.com/2012/01/06/1882476/womens-college-basketball-roundup.html

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EnGenius ESR300H High Power 300Mbps Wireless N Router


Sometimes you just don't need a dual-band, high-end and expensive router. For those with light wireless needs or light budgets; a cheaper, single-band router is fine for web surfing and sharing Internet access and resources across a small wireless network. EnGenius' ESR300H High Power 300 Mbps Wireless N Router is a small, simple single-band router that sells for about $45. It's cheap, it has a surprising number of features, and it's fairly easy to set up. Unfortunately, abysmal throughput in 802.11b/g/n Mixed Mode and some buggy behavior with the software leads me to rate it well below other single-band routers I've tested.

Specs

The ESR300H is a tiny router, much smaller than competing single-band routers on the market (besides most travel routers, that is). It weighs about a pound and measures 9 by 7.8 by 3 inches (HWD). The diminutive device has a WPS (Wi-Fi Protected Setup) button on top, along with seven tiny LED lights with labels that those with less-than-perfect eyesight may need a magnifying glass to read.

The LEDs represent power, wireless and WAN status. There's also a corresponding LED for each of the LAN ports. The four LAN ports on the back panel are only Fast Ethernet 10/100?no Gigabit support. The router also has dual external 2DBi antennas. ?The vendor reports maximum throughput at 300 Mbps.

The most interesting physical characteristic of this router is how small it is. Overall, it's an innocuous-looking little plastic black box with two antennas sticking out. Since current routers tend to have internal antennas, the EHR300H looks dated.

Setup

The router ships with a CD, although you can set up the device manually without the disc. Setup is not wireless; a computer hard-wired to the router is required. The EnGenius Smart Wizard interface launches from the CD. The interface is sharp and helpful enough to walk a user through the preliminary setup steps: connecting cables, powering up the router, and getting to the configuration page.

The problem is that once you first get to the router's configuration page it is not clear in the interface what you should do next. At this point of setup, the router was connected to the Internet and up and running but I still had not configured an SSID, security or any other wireless settings. The interface gives several options: "Home," "Wizard," "Network Settings," and "Logout." I selected "Wizard" because the router still needed to be configured, but I can imagine this confusing users who already launched the EnGenius Smart Wizard.

Selecting "Wizard" within the interface did take me to the wireless configuration screen. A feature I found bothersome was security setup. Instead of displaying the usual security choices like WEP, WPA, WPA2 , the ESR300H's interface allows users to set security levels as "None," "Medium," or "High." It is not clear which level of encryption you are selecting until after you make the choice. For instance, in the interface I selected "High." Once I clicked "Next" to apply the setting, I then saw in the status screen area of the interface that my security was set to "WPA2-PSK." I want to know exactly what security level I am applying before I apply it.

Features, Performance and Some Testing Road Bumps

EnGenius certainly packs a lot of functionality into the device, but not all of the features work well. Setting parental controls, which really is just an Access Control List, proved to be messy. Even worse, once I defined a URL or keyword to block for a specific machine connected to the routers, that machine was not blocked from accessing the URL or keyword from a browser. Parental controls did not work even after a browser cache flush.

I ran into another issue attempting to login to the interface from the computer I used to set up the router. The computer was now connected wirelessly to the router rather than wired, so it had a new IP address. When I attempted to get into the administrator interface the system flashed the message, "Duplicate administrator. If you want to login from this PC, please logout or wait for timeout." I waited about ten minutes and still got the message. Reopening my browser session enabled me to login. I suppose this is a security measure, but it seems flaky in operation.

The router can run in AP or WDS (repeater) mode. It supports up to 4 SSIDs, firewall mapping, DMZ and VPN Pass-through. QoS, NAT, Wake Up on LAN and UPnP are some additional features. The QoS is actually one of the more straight-forward and easy to configure modules within the interface.

The router delivered terrible performance in Mixed Mode, among the worst we've seen for single-band routers in the last two years:

As you can see, Engenius' own ESR9855G Multimedia Enhanced Wireless 300N Gaming Router router had far superior throughput results.

Here are the throughput results in 802.11N-only mode:

The results in 802.11n-only mode are much better. However, most users of single-band routers often have legacy devices that do not connect at the 802.11n standard. Preferable, a single-band router will have its best results in Mixed Mode.

The ESR300H Verdict: Skip It

Engenius' ESR300H is a router at a great price. Yet that low price point comes with other costs: abysmal performance in Mixed Mode and wonky software. A better choice for an affordable, single-band router is Engenius' ESR9855G or our Editors' Choice, the Cisco Linksys E1200 Wireless-N Router.

More Router Reviews:
??? EnGenius ESR300H High Power 300Mbps Wireless N Router
??? Cisco Linksys E4200 v2 Maximum Performance Dual-Band N900
??? D-Link Amplifi HD Media Router 2000 (DIR-827)
??? Netgear N900 Wireless Dual Band Gigabit Router WNDR4500
??? Cisco Linksys E3200 High Performance Dual-Band N Router
?? more

Source: http://feedproxy.google.com/~r/ziffdavis/pcmag/~3/JZCVfkDQgP8/0,2817,2398239,00.asp

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