Aquaculture – mankind’s future?

A photograph of a fishery at sunsetAs the world’s fisheries come under ever increasing demand and pressure, many companies and countries around the world are turning to aquaculture, the farming of fish, crustaceans, aquatic plants, and shellfish. But is this method of producing food the “green” answer it is often claimed to be?

Aquaculture is not a new concept by any means, there is evidence that suggests the farming of aquatic life was taking place as early as 6000bc on what could be called a commercial scale.

The modern age has mechanised, computerised, and scaled up this concept of food production into one of truly immense proportions. South America alone produces over a startling one million metric tons of farmed salmon per year, with methods some have described as unsustainable.

Globally, aquaculture has been a very erratic business in the last 40 years, with major outbreaks of disease wiping out hundreds of thousands of tons of fish at a time, and poor practices responsible for localised environmental changes, and pollution on a large scale.

A huge steel or plastic floating structure, anchored in place and powered by massive diesel generators has become the standard sea farm with what is described as a “footprint” devoid of life beneath it, that may extend some distance depending on local currents and conditions.

Fish being caught in Te Pangu BayIs this what Jacques Yves Cousteau envisioned when he made the following famous quote?

“We must plant the sea and herd its animals using the sea as farmers instead of hunters. That is what civilization is all about – farming replacing hunting.”

But then, if one considers the reality of the world we live in, where violent conflict is an everyday occurrence, populations continue to grow and people go hungry …… then I think aquaculture is a step in the right direction.

Aquaculture in New ZealandIt could be argued that most aquacultural products demand a premium and in many countries are beyond the means of the average consumer. And this would be quite correct in many cases, but may in some part be off-set by the direct benefits to the local economy through job creation and a direct boost to the local economy.

The single greatest benefit aquaculture is receiving at the moment is technology. Automated systems deliver pellets to fish in a highly measured manner and consumption is monitored in points of a percentage. Geneticists are carrying out selective breeding programs so only the most efficient of stock are sent to sea and environmental monitoring is carried out using an array of high tech sensors and systems.

Water quality tests and histologies are carried out on site and the training requirements of staff are increasing exponentially in order to keep up. Thousands of scientists are busy scuttling about, working day and night on improving “feed conversion ratios” or the amount of feed in kilograms it takes to grow a kilogram of product.

Swimming fishSomething that possibly started out as an art form has become a science.

New Zealand fisheryWith increased use of technology, coupled with a strong social conscience, aquaculture just may be the answer to many of the world’s problems, which it could be argued are largely driven by increasing population and dwindling resources.

As long as mankind uses this tool as a farmer and not the hunter we have descended from, then I see aquaculture playing a very strong role in mankind’s future.

To Die for Science

This week the weather has been pretty wild here in the USA, with dozens of people killed by tornados in the Oklahoma area. One of those killed is world renowned scientist Tim Samaras. He was killed alongside his son Paul and research assistant Carl Young as they were doing their rather dangerous job.

The Samaras Team

The Samaras Team, Tim, Paul and Carl Young

Samaras was a Severe Storms researcher, much of his funding coming from the National Geographic magazine. He might have just seemed like a storm geek to some, but his pioneering work has helped us to predict and understand these types of storms a lot better.

He and his team worked for decades on how to predict where and when tornados would form, so that they could race to the spot and leave their battery of measuring and photography equipment inside the storm.

They developed a probe that took measurements within the tornado itself, helping forecasters to determine where storms may form and to give warnings to people living in its path. The new generation of this probe measures pressure drops within tornadoes, the very cause of the high winds that characterize these storms, alongside other data that can be used to determine the destructive capability of the storm.

The team has also pioneered storm photography, devising a high speed series of cameras that can take pictures from different angles inside the storm. His photography work around lightening has helped to push scientific understanding of the phenomena.

These were not some reckless guys driving around looking for danger as some might think, Samaras was a scientist, a meteorologist, an adventurer and an engineer. His team were experts in their field, highly educated and determined, and they will be sadly missed within their community.

Their approach seems to hark back to a day of science pioneers, Marie Curie dying of radiation sickness through her work on radiation therapy, or Jean-Francois De Rozier, the first ever air crash death as his balloon crashed to the ground in 1783.

The fruits of their research live on today though, as will those of Samaras and his team.

For more information about their work look up their TWISTEX Facebook page.

Lumix Super Zoom TZ40 camera review

Here’s my overview of the Lumix Super Zoom TZ40 camera.

Housed in an ultra compact body, Lumix have packed into the TZ40 GPS, Near Field Communication, Wi-Fi and 20x Super Zoom.

Panasonix digital cameraThe 24mm ultra wide-angle 20x optical zoom lens is a Leica DC Vario-Elmar, which combines quality and versatility. Furthermore, Intelligent Resolution technology means that, even when using the zoom, deterioration of picture quality is kept to a minimum and is also available whilst in video-recording mode. Meanwhile, flare and ghost are kept to a minimum courtesy of the Nano Surface Coating of Panasonic’s black box technology.

A newly integrated 18.1 MP High Sensitivity MOS sensor provides high speed signal processing and high quality image recording, whilst new noise reduction and edge smoothing technology newly incorporated into the Venus Engine does exactly what it suggests. Meanwhile, a combination of the high-speed digital signal output technology, the light speed and the mechanical shutter realize full resolution 10 frames per second consecutive shooting.

Follow the simple guidance provided and the NFC technology and Wi-Fi connectivity allow you to connect the camera to tablets and smartphones by simply placing them in close vicinity. Then enjoy remote shooting, uploading and transfer.

The camera will also record HD videos which, courtesy of the 5-axis correction technology which can detect and compensate for operator movement, will seem like you shot them using a tripod.

The GPS function detects and records landmark, town, county and country information alongside photos and videos which can then be logged and reached quickly. For more information check out the camera on Panasonic’s website.