Saturday, November 21, 2015

Urban Fruit Gleaning



Gleaning (formerly 'leasing') is the act of collecting leftover crops from farmers' fields after they have been commercially harvested or on fields where it is not economically profitable to harvest. Some ancient cultures promoted gleaning as an early form of a welfare system.[1]

 
The Gleaners, Jean-François Millet, 1857

Bible

Old Testament

According to the Holiness Code and the Deuteronomic Code of the Torah, farmers should leave the corners of their fields unharvested, and they should not attempt to pick up that which was dropped or harvest any left-overs that had been forgotten when they had harvested the majority of a field.[2][3][4]

On one of the two occasions that this is mentioned by the Holiness Code, it adds that, in vineyards, some grapes should be left ungathered,[5] an argument made also by the Deuteronomic Code.[6]

These verses additionally argue that olive trees should not be beaten on multiple occasions, and whatever remains from the first set of beatings should be left.[7]

According to the Holiness Code, these things should be left for the poor and for strangers,[3][5] and the Deuteronomic Code commands that it should be left for widows, strangers, and paternal orphans.[4][6][7]

The Book of Ruth features gleaning by the widow Ruth to provide for herself and Naomi, also a widow.[8]

New Testament

Jesus and his disciples practiced a form of gleaning as they walked through grain fields breaking off heads of wheat to eat.[9]

Rabbinical views


Gleaning by Arthur Hughes.
In classical rabbinic literature, it was argued that the biblical regulations concerning left-overs only applied to grain fields, orchards, and vineyards, and not to kitchen gardens;[10] the classical rabbinical writers were much stricter in regard to who could receive the remains.

It was stated that the farmer was not permitted to benefit from the gleanings, and was not permitted to discriminate among the poor, nor try to frighten them away with dogs or lions;[11][12][13] the farmer was not even allowed to help one of the poor to gather the left-overs.[11][12][13]

However, it was also argued that the law was only applicable in Canaan,[14] although many classical rabbinic writers, who were based in Babylon, applied the laws there too;[15][16] it was also seen as only applying to Jewish paupers, but poor non-Jews were allowed to benefit for the sake of civil peace[17]

Modern times


Alawite woman gleaning in 1938
The Shulchan Aruch argues that Jewish farmers are no longer obliged to obey the biblical rule.[18]

Nevertheless, in modern Israel, rabbis of Orthodox Judaism insist that Jews allow gleanings to be consumed by the poor and by strangers, during Sabbatical years.[19]

In eighteenth century England, gleaning was a legal right for cottagers.

In a small village the sexton would often ring a church bell at eight o'clock in the morning and again at seven in the evening to tell the gleaners when to begin and end work.[20]

This legal right effectively ended after a legal case in 1788.

In the modern world, gleaning is practiced by humanitarian groups[21] which distribute the gleaned food to the poor and hungry; in a modern context, this can include the collection of food from supermarkets at the end of the day that would otherwise be thrown away.

There are a number of organizations that practice gleaning to resolve issues of societal hunger; the Society of St. Andrew, for example, is dedicated to the role, as is the Gleaning Network in the UK.

When people glean and distribute food, they may be bringing themselves legal risk; in the Soviet Union, the Law of Spikelets (sometimes translated "law on gleaning")[22] criminalized gleaning, under penalty of death, or 20 years of forced labor in exceptional circumstances.[23]

In the US, the Bill Emerson Good Samaritan Act of 1996 limited the liability of donors to instances of gross negligence or intentional misconduct, alleviating gleaning from much of its definitions of the Good Samaritan Act, to consistently deliver surplus food from restaurants and dining facilities to emergency food centers.[clarification needed]

Gleaning in art

Gleaning was a popular subject in art, especially in the nineteenth century.

Gleaning in rural France has been represented in the paintings Des Glaneuses (1857) by Jean-François Millet and Le rappel des glaneuses (1859) by Jules Breton (image), and explored in a 2000 documentary/experimental film, The Gleaners and I, by Agnes Varda.

Vincent van Gogh's sketch of a Peasant Woman Gleaning in Nuenen, The Netherlands (1885) is in the Charles Clore collection.[24]

Source: Wikipedia.org


Well I am off; well just a little bit, but I needs to get back to work. I must Keep on Keeping On!
 

The Man Inside the Man
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JMK's Production


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Sunday, August 9, 2015

I Finally Got My First Poetry Book Up On Kindle, It's Live at Amazon.com Right Now!

 


Here It is My First Kindle Book:

Collective Works Sinbad Sailor Man Book [I] "Breakfast Sandwiches"


Author- Self Publishing Poet ~Donald Beres Jr.


The Collective Works of Sinbad the Sailor Man: Book I "Breakfast Sandwiches" 

A collection of some of this Poet's first original works; some from Night School 1981. And some created shortly after his divorce from his wife of ten and half years in 2001. Since 2010 this Poet has been self publishing his work upon the World Wide Web as well as trying to build a Traffic Wheel of passive residual website(s) to produce residual income streams from his works.

Product Details

  • File Size: 1624 KB
  • Simultaneous Device Usage: Unlimited
  • Publisher: Donald Beres Jr - Self Publishing Poet; 1 edition (August 8, 2015)
  • Publication Date: August 8, 2015
  • Sold by: Amazon Digital Services, Inc.
  • Language: English
  • ASIN: B013NFPSEQ
  • Text-to-Speech: Enabled 
  • X-Ray:
  • Word Wise: Not Enabled
  • Lending: Enabled
  • Enhanced Typesetting: Not Enabled


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Author's Bio; Donald Beres Jr./ Sinbad the Sailor Man

Google Search Images for Donnie/ Sinbad the Sailor Man

Who is Sinbad the Sailor Man? Well wouldn't we all like to know, who we really are?

He is nobody special yet, at least not in the writing industry. He was born Donald Beres Jr. in Hammond Indiana,  to Carol Ann (Muskin) Beres and Donald Beres of Pennsylvania.

Donald's Mother divorced his natural father and married Wayne L. Douglas. The couple thought it easier to conceal the fact of his mother's divorce from Donald's natural father.

He was raised in Hobart, Indiana as Donnie Douglas until about the age of sixteen.When he found out that his mother had him by her first husband.

Donnie found this out shortly after attending Hobart Junior High. He took this news in stride but did not realize the damage that this and the lies that followed about his natural father and half sister would eventually unfold later in life.

He attended until his Sophomore year. He Letter in Football and Wrestling during his Freshmen year.

In 1980 he left before graduation to go to Portage Adult Night School so he could join the US Navy with two of his childhood friends; on the Navy's Buddy System.

But because of budget cuts that semester. Donnie was delayed six months and missed going through Boot Camp with his two Buddies.

As a result he would no longer qualify for the twenty yrs and out full retirement. Instead he would need to do thirty years to receive that option. Donnie's two buddies both took full advantage of that option.

On Aug 23rd 1985 Donald was Honorable Discharged from the US Navy.

Donald met Donna L. Se Doris who was seven years his junior in 1998 and in Aug 25th 1990 they were married. They had three children together until their Divorce in  March of 2001.

Donald is still a divorced middle aged man, who has three great kids, one curly headed girl and two boys. Donald is the Grandfather of two one of each a girl and a boy with more on the way. 

He is a US Navy Veteran, a would be Poet, a soon to be freelance writer, he hopes.

He is a dyslectic, he is a dreamer of dreams and an inventor of things, he is a decent pool player, a certified Advanced Open Water SCUBA diver, although he hasn't dove since 1990

He still holds, Certifications in Night diving, Deep diving, Search and Recovery diving, and he is an Underwater Vehicle Specialist, an ex-welder, and a guy who likes to ride Motorcycles. Donald likes to play Eight ball and Nine ball Billiards and has shown a growing interest in One Pocket.

He started writing Poetry way back in Night School 1980. Donald started after a short falling out with his Mother over being lied to about his true identity.  He started writing again, about six months after his divorce. From his wife of ten and a half years.Which he strongly took as a betrayal by his first true love.

He has been writing off and on ever since. He has had several Back Surgeries and others most on his lower back.  Although he was disabled December 1998  and has been on Disability since. He has made several attempts to return to full duty work, but failed and remains on Disability to this day.

He has a very bad short term memory problem, brought on by almost nine years of prescription drug use, mostly pain killers. He has bouts of depression from time to time and has contemplated and attempted suicide twice.

These attempts were early on in his disability. While he was on strong Pain Killers. The ones that one should also be put on anti-depressants with. Donald was not! He attributes his attempts on his life to this lack of proper medication.

Among these annoying problems he has other small annoying ticks and clicks that keep him from holding down any normal nine to five job for too long.

One of his attempts to return to work was as a semi truck driver. He drove for about five months but, his eyes started to fail due to high blood pressure and now he has severe night blindness, so he can't drive semi truck at night any more. He drove a taxi for about five months after getting New Glasses but has since given up on trying to drive commercially.

While Driving over the road his only daughter was Life flighted to Chicago's Children's Hospital from Indiana by helicopter. Donald dropped a load of rubber and drove from Saint Louis Missouri, He stated to his dispatcher the thing is floored and It wasn't stopping until I got there or It burnt up!

His daughter was later diagnosed with Type One Childhood Diabetes. 

Donald is back to writing poetry short stories, and trying different Inter Net jobs, which he has not yet mastered any of those either.

There you have it! Donald States that he is an average guy. With no place to go but up! Because if he gets any lower, they'll have to put him down and in the ground.

"By The Grace of GOD There Go I"

One of Donald's Favorite Bible Quotes

Another of his favorites is

"Unto Death Do We Part"



Sinbad the Sailor Man/ Donald Beres Jr.
 alias "Donnie Douglas"

 

 

Sources: Amazon.com, Sinbadthesailorman.com, http://sinbadthesailorman.blogspot.com/

Somebody Come and Play Today! Earn as You Learn, Grow as You Go!

 

The Man Inside the Man
from
Sinbad the Sailor Man
A
JMK's Production


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Tuesday, July 28, 2015

TEDxAsheville~ "Eustace Conway" Traditional Lifestyles of the 21st Century




Eustace Conway (born Eustace Robinson Conway IV in 1961 in Columbia, South Carolina) is an American naturalist and the subject of the book The Last American Man by Elizabeth Gilbert.

He has also been the subject of Adventures In the Simple Life by Sarah Vowel on the weekly radio show, This American Life with Ira Glass. He is the owner of 1,000-acre (4.0 km2) Turtle Island Preserve in Boone, North Carolina. He is one of the featured personalities on the History channel show Mountain Men.


Eustace Conway
Eustace Conway.jpg
Born Eustace Robinson Conway IV
1961 (age 53–54)
Columbia, South Carolina, U.S.
Nationality USA
Alma mater Appalachian State University Bachelor's degrees in Anthropology and English
Occupation Naturalist and Educator


Biography

At age 17 Conway left home so that he could live in a tipi in the woods. He has hiked the entire Appalachian Trail and claims to have set the world record for crossing the United States on horseback from the Atlantic to the Pacific.

However, according to the New York Times and Los Angeles Times of the day, as well as the book, Bud & Me, the record for crossing the North American continent on horseback was actually done in 62 days.

This journey was made by Bud and Temple Abernathy, aged 11 and 7, who rode 3,619 miles (5,824 km) from New York to San Francisco on an equestrian journey, which started in August, 1911.[1][2][3][4]

The weekly radio show "This American Life" reported on Conway's cross country journey in the episode "Adventures in the Simple Life", which aired on September 11, 1998.

The show uses recordings that were taped on a hand-held recorder by Conway and his party.[5]
A 2003 documentary film on Conway's life, Full Circle: A Life Story of Eustace Conway, was directed by Jack Bibbo.

Conway is also one of four featured characters in the 2012 documentary film Reconvergence,[6] which was directed by Edward Tyndall.

Conway appeared in Mountain Men, a reality television series on the History channel.[7]

The series focused on his daily life of performing his chores and preparing food for the coming winter.[8]

Threatened by a lien against his land Conway fights to maintain ownership.[9]

In November, 2012, Turtle Island was forced to shut down public access because its traditional buildings violated building codes.[10]

In mid-December, 2012 Conway appeared to make progress toward reaching a resolution with the North Carolina Building Code Council.[11]

However, immediately following this apparent progress with the code council, Conway was arrested for trespassing on a neighbor's property in a dispute over the property border, continuing the legal challenges to Turtle Island.[12]

Conway's problems with the North Carolina Building Code Council quickly gained notice of state officials. The North Carolina General Assembly[13] stepped in, proposing an exemption to building code requirements for primitive structures.[14]

Both the state's House and Senate voted unanimously to pass H774.[15] The bill was signed into law by Governor Pat McCrory on June 12, 2013.

This ordeal was described in a Fox News special War on the Little Guy, hosted by John Stossel.

Conway has three siblings: Walton, Judson, and Martha.

Source: Wikipedia.org 

 

Somebody Come and Play Today! Earn as You Learn, Grow as You Go!

 

The Man Inside the Man
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JMK's Production


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Simple "U" Auto-siphon for Aquaponics (Bell-less)



Aquaponics /ˈækwəˈpɒnɨks/, is a food production system that combines conventional aquaculture (raising aquatic animals such as snails, fish, crayfish or prawns in tanks) with hydroponics (cultivating plants in water) in a symbiotic environment.

In normal aquaculture, excretions from the animals being raised can accumulate in the water, increasing toxicity. In an aquaponic system, water from an aquaculture system is fed to a hydroponic system where the by-products are broken down by nitrification bacteria into nitrates and nitrites, which are utilized by the plants as nutrients. The water is then recirculated back to the aquaculture system.

As existing hydroponic and aquaculture farming techniques form the basis for all aquaponics systems, the size, complexity, and types of foods grown in an aquaponics system can vary as much as any system found in either distinct farming discipline.[1]

 

A small, portable aquaponics system. The term aquaponics is a portmanteau of the terms aquaculture and hydroponic.


History

Further information: Historical hydroculture
Aquaponics has ancient roots, although there is some debate on its first occurrence:
  • Aztec cultivated agricultural islands known as chinampas in a system considered by some to be the first form of aquaponics for agricultural use[2][3] where plants were raised on stationary (and sometime movable) islands in lake shallows and waste materials dredged from the Chinampa canals and surrounding cities were used to manually irrigate the plants.[2][4]
  • South China, Thailand, and Indonesia who cultivated and farmed rice in paddy fields in combination with fish are cited as examples of early aquaponics systems.[5] These polycultural farming systems existed in many Far Eastern countries and raised fish such as the oriental loach (泥鳅, ドジョウ),[6] swamp eel (黄鳝, 田鰻), Common (鯉魚, コイ) and crucian carp (鯽魚) [7] as well as pond snails (田螺) in the paddies.[8][9]

Floating aquaponics systems on polycultural fish ponds were installed in China in more recent years on a large scale growing rice, wheat and canna lily and other crops,[10] with some installations exceeding 2.5 acres (10,000 m2).[11]



Diagram of the University of the Virgin Islands commercial aquaponics system designed to yield 5 metric tons of Tilapia per year.[12]
The development of modern aquaponics is often attributed to the various works of the New Alchemy Institute and the works of Dr. Mark McMurtry et al. at the North Carolina State University.[13]

Inspired by the successes of the New Alchemy Institute, and the reciprocating aquaponics techniques developed by Dr. Mark McMurtry et al., other institutes soon followed suit. Starting in 1997, Dr. James Rakocy and his colleagues at the University of the Virgin Islands researched and developed the use of deep water culture hydroponic grow beds in a large-scale aquaponics system.[12]

The first aquaponics research in Canada was a small system added onto existing aquaculture research at a research station in Lethbridge, Alberta. Canada saw a rise in aquaponics setups throughout the ’90s, predominantly as commercial installations raising high-value crops such as trout and lettuce.

A setup based on the deep water system developed at the University of Virgin Islands was built in a greenhouse at Brooks, Alberta where Dr. Nick Savidov and colleagues researched aquaponics from a background of plant science.

The team made findings on rapid root growth in aquaponics systems and on closing the solid-waste loop, and found that owing to certain advantages in the system over traditional aquaculture, the system can run well at a low pH level, which is favoured by plants but not fish.



Vegetable production part of the low-cost Backyard Aquaponics System developed at Bangladesh Agricultural University
The Caribbean island of Barbados created an initiative to start aquaponics systems at home, with revenue generated by selling produce to tourists in an effort to reduce growing dependence on imported food.

In Bangladesh, the world's most densely populated country, most farmers use agrochemicals to enhance food production and storage life, though the country lacks oversight on safe levels of chemicals in foods for human consumption.[14]

To combat this issue a team led by Professor Dr. M.A. Salam at the Department of Aquaculture of Bangladesh Agricultural University, Mymensingh has created plans for a low-cost aquaponics system to provide chemical-free produce and fish for people living in adverse climatic conditions such as the salinity-prone southern area and the flood-prone haor area in the eastern region.[15][16]

Dr. Salam's work innovates a form of subsistence farming for micro-production goals at the community and personal levels whereas design work by Chowdhury and Graff was aimed exclusively at the commercial level, the latter of the two approaches take advantage of economies of scale.

With more than a third of Palestinian agricultural lands in the Gaza Strip turned into a buffer zone by Israel, an aquaponic gardening system is developed appropriate for use on rooftops in Gaza City.[17]

There has been a shift towards community integration of aquaponics, such as the nonprofit foundation Growing Power that offers Milwaukee youth job opportunities and training while growing food for their community.

The model has spawned several satellite projects in other cities, such as New Orleans where the Vietnamese fisherman community has suffered from the Deepwater Horizon oil spill, and in the South Bronx in New York City.[18]

Whispering Roots is a non-profit organization in Omaha, Nebraska that provides fresh, locally grown, healthy food for socially and economically disadvantaged communities by using aquaponics, hydroponics and urban farming.[19]

In addition, aquaponic gardeners from all around the world have gathered in online community sites and forums to share their experiences and promote the development of this form of gardening[20] as well as creating extensive resources on how to build home systems.

Recently, aquaponics has been moving towards indoor production systems. In cities like Chicago, entrepreneurs are utilizing vertical designs to grow food year round. These systems can be used to grow food year round with minimal to no waste. [21]

Components


A commercial aquaponics system. An electric pump moves effluent rich water from the fish tank through a solids filter to remove particles the plants above cannot absorb. 
The water then provides nutrients for the plants and is cleansed before returning to the fish tank below where the process repeats.

Aquaponics consists of two main parts, with the aquaculture part for raising aquatic animals and the hydroponics part for growing plants.[22][23]

Aquatic effluents, resulting from uneaten feed or raising animals like fish, accumulate in water due to the closed-system recirculation of most aquaculture systems. The effluent-rich water becomes toxic to the aquatic animal in high concentrations but this contain nutrients essential for plant growth.[22]

 Although consisting primarily of these two parts, aquaponics systems are usually grouped into several components or subsystems responsible for the effective removal of solid wastes, for adding bases to neutralize acids, or for maintaining water oxygenation.[22]

Typical components include:
  • Rearing tank: the tanks for raising and feeding the fish;
  • Settling basin: a unit for catching uneaten food and detached biofilms, and for settling out fine particulates;
  • Biofilter: a place where the nitrification bacteria can grow and convert ammonia into nitrates, which are usable by the plants;[22]
  • Hydroponics subsystem: the portion of the system where plants are grown by absorbing excess nutrients from the water;
  • Sump: the lowest point in the system where the water flows to and from which it is pumped back to the rearing tanks.

Depending on the sophistication and cost of the aquaponics system, the units for solids removal, biofiltration, and/or the hydroponics subsystem may be combined into one unit or subsystem,[22] which prevents the water from flowing directly from the aquaculture part of the system to the hydroponics part.

Plants: hydroponics

Main article: Hydroponics
Further information: Rhizofiltration

A Deep Water Culture hydroponics system where plant grow directly into the effluent rich water without a soil medium. 
Plants can be spaced closer together because the roots do not need to expand outwards to support the weight of the plant.


Plant placed into a nutrient rich water channel in a Nutrient film technique (NFT) system

Plants are grown as in hydroponics systems, with their roots immersed in the nutrient-rich effluent water. This enables them to filter out the ammonia that is toxic to the aquatic animals, or its metabolites.

After the water has passed through the hydroponic subsystem, it is cleaned and oxygenated, and can return to the aquaculture vessels. This cycle is continuous. Common aquaponic applications of hydroponic systems include:
  • Deep-water raft aquaponics: styrofoam rafts floating in a relatively deep aquaculture basin in troughs.
  • Recirculating aquaponics: solid media such as gravel or clay beads, held in a container that is flooded with water from the aquaculture. This type of aquaponics is also known as closed-loop aquaponics.
  • Reciprocating aquaponics: solid media in a container that is alternately flooded and drained utilizing different types of siphon drains. This type of aquaponics is also known as flood-and-drain aquaponics or ebb-and-flow aquaponics.
  • Other systems use towers that are trickle-fed from the top, nutrient film technique channels, horizontal PVC pipes with holes for the pots, plastic barrels cut in half with gravel or rafts in them. Each approach has its own benefits.[24]

Most green leaf vegetables grow well in the hydroponic subsystem, although most profitable are varieties of chinese cabbage, lettuce, basil, roses, tomatoes, okra, cantaloupe and bell peppers.[23]

Other species of vegetables that grow well in an aquaponic system include beans, peas, kohlrabi, watercress, taro, radishes, strawberries, melons, onions, turnips, parsnips, sweet potato and herbs.
[citation needed]

Since plants at different growth stages require different amounts of minerals and nutrients, plant harvesting is staggered with seedings growing at the same time as mature plants. This ensures stable nutrient content in the water because of continuous symbiotic cleansing of toxins from the water.[25]

Animals: aquaculture

 


Filtered water from the hydroponics system drains into a catfish tank for re-circulation.
Main article: Aquaculture

 
Freshwater fish are the most common aquatic animal raised using aquaponics, although freshwater crayfish and prawns are also sometimes used.[26]

In practice, tilapia are the most popular fish for home and commercial projects that are intended to raise edible fish, although barramundi, silver perch, eel-tailed catfish or tandanus catfish, jade perch and Murray cod are also used.[23]

For temperate climates when there isn't ability or desire to maintain water temperature, bluegill and catfish are suitable fish species for home systems. Koi and goldfish may also be used, if the fish in the system need not be edible.

Bacteria

 

Further information: Nitrogen Cycle
Nitrification, the aerobic conversion of ammonia into nitrates, is one of the most important functions in an aquaponics system as it reduces the toxicity of the water for fish, and allows the resulting nitrate compounds to be removed by the plants for nourishment.[22]

Ammonia is steadily released into the water through the excreta and gills of fish as a product of their metabolism, but must be filtered out of the water since higher concentrations of ammonia (commonly between 0.5 and 1 ppm)[citation needed] can kill fish.

Although plants can absorb ammonia from the water to some degree, nitrates are assimilated more easily,[23] thereby efficiently reducing the toxicity of the water for fish.[22]

Ammonia can be converted into other nitrogenous compounds through healthy populations of:

In an aquaponics system, the bacteria responsible for this process form a biofilm on all solid surfaces throughout the system that are in constant contact with the water. The submerged roots of the vegetables combined have a large surface area where many bacteria can accumulate.

Together with the concentrations of ammonia and nitrites in the water, the surface area determines the speed with which nitrification takes place. Care for these bacterial colonies is important as to regulate the full assimilation of ammonia and nitrite.

This is why most aquaponics systems include a biofiltering unit, which helps facilitate growth of these microorganisms. Typically, after a system has stabilized ammonia levels range from 0.25 to 2.0 ppm; nitrite levels range from 0.25 to 1 ppm, and nitrate levels range from 2 to 150 ppm.[citation needed]

During system startup, spikes may occur in the levels of ammonia (up to 6.0 ppm) and nitrite (up to 15 ppm), with nitrate levels peaking later in the startup phase.[citation needed]

Since the nitrification process acidifies the water, non-sodium bases such as potassium hydroxide or calcium hydroxide can be added for neutralizing the water's pH[22] if insufficient quantities are naturally present in the water to provide a buffer against acidification.

In addition, selected minerals or nutrients such as iron can be added in addition to the fish waste that serves as the main source of nutrients to plants.[22]

A good way to deal with solids buildup in aquaponics is the use of worms, which liquefy the solid organic matter so that it can be utilized by the plants and/or other animals in the system. For a worm-only growing method, please see Vermiponics.

Operation

 

The five main inputs to the system are water, oxygen, light, feed given to the aquatic animals, and electricity to pump, filter, and oxygenate the water.

Spawn or fry may be added to replace grown fish that are taken out from the system to retain a stable system. In terms of outputs, an aquaponics system may continually yield plants such as vegetables grown in hydroponics, and edible aquatic species raised in an aquaculture.

Typical build ratios are .5 to 1 square foot of grow space for every 1 US gal (3.8 L) of aquaculture water in the system. 1 US gal (3.8 L) of water can support between .5 lb (0.23 kg) and 1 lb (0.45 kg) of fish stock depending on aeration and filtration.[27]

Ten primary guiding principles for creating successful aquaponics systems were issued by Dr. James Rakocy, the director of the aquaponics research team at the University of the Virgin Islands, based on extensive research done as part of the Agricultural Experiment Station aquaculture program.[28]

 

Feed source

 

As in all aquaculture based systems, stock feed usually consists of fish meal derived from lower-value species. Ongoing depletion of wild fish stocks makes this practice unsustainable.

Organic fish feeds may prove to be a viable alternative that relieves this concern. Other alternatives include growing duckweed with an aquaponics system that feeds the same fish grown on the system,[29] excess worms grown from vermiculture composting, using prepared kitchen scraps,[30] as well as growing black soldier fly larvae to feed to the fish using composting grub growers.[31]

Water usage

 

Aquaponic systems do not typically discharge or exchange water under normal operation, but instead recirculate and reuse water very effectively. The system relies on the relationship between the animals and the plants to maintain a stable aquatic environment that experience a minimum of fluctuation in ambient nutrient and oxygen levels.

Water is added only to replace water loss from absorption and transpiration by plants, evaporation into the air from surface water, overflow from the system from rainfall, and removal of biomass such as settled solid wastes from the system.

As a result, aquaponics uses approximately 2% of the water that a conventionally irrigated farm requires for the same vegetable production.[citation needed] This allows for aquaponic production of both crops and fish in areas where water or fertile land is scarce.

Aquaponic systems can also be used to replicate controlled wetland conditions. Constructed wetlands can be useful for biofiltration and treatment of typical household sewage.[32]

The nutrient-filled overflow water can be accumulated in catchment tanks, and reused to accelerate growth of crops planted in soil, or it may be pumped back into the aquaponic system to top up the water level.

Energy usage

 

Aquaponic installations rely in varying degrees on man-made energy, technological solutions, and environmental control to achieve re-circulation and water/ambient temperatures.

However, if a system is designed with energy conservation in mind, using alternative energy and a reduced number of pumps by letting the water flow downwards as much as possible, it can be highly energy efficient.

While careful design can minimize the risk, aquaponics systems can have multiple 'single points of failure' where problems such as an electrical failure or a pipe blockage can lead to a complete loss of fish stock.

See also


 

Source: Wikipedia.org 

Somebody Come and Play Today! Earn as You Learn, Grow as You Go!

 

The Man Inside the Man
from
Sinbad the Sailor Man
A
JMK's Production


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CYA Later Taters!
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