Estão oferecendo um prêmio de U$ 15.000,00 ( quase 30.000,00 reais?) para quem fornecer uma idéia teórica de algo para eliminar o lixo e dejetos humanos de áreas/acampamentos feitos para pessoas desalojadas. É nuito fácil participar e enviar a idéia. A seguir registramos algo do projeto e abaixo mostramos a nossa sugestão que foi enviada.
Safe Containment or Processing of Human Waste in Emergency Situations
Rapid onset natural disasters such as earthquakes and flooding result in displaced populations gathering at aid sites. It is very often the case that no formal sewage network exists and it can often be that the ground is unsuitable for creating pit latrines (e.g. rocky ground or paved urban environments). In such situations, accumulation of human waste rapidly leads to contamination of sites and outbreaks of enteric disease. In emergency situations, enteric disease can cause more fatalities than the primary disaster.
The Seeker requires waste management solutions that will reduce the health risks related to inadequate containment or decontamination of human excrement during disaster response situations, especially those where conventional latrine solutions are not tenable.
Sugestão enviada pela Matrix/DNA:
Inocentive Challenge Human Waste
Safe Containment or Processing of Human Waste in Emergency Situations
AWARD: $15,000 USD | DEADLINE: 7/03/12 | ACTIVE SOLVERS: 308 | POSTED: 5/03/12
Source: InnoCentive Challenge ID: 9933003 Type: Theoretical-licensing
My idea is that we can copy the way Nature makes it, when discarding its waste. How Nature do that? See in the diagram below:
We can see better in the following diagram (clique na figura para ver maior):
The feces inside the latrine is in the place of Function 4. When this formula is applied at an astronomic system, the body in this function (planets and pulsars) contains matter in solid and liquid state. Then the body is exposed in orbit around a star, whose heat evaporates the liquid matter. When this formula is applied at cell system, the body in this function (mitochondria) are fragmented and driven to vesicles, going out of cell. At function 6, the bodies (stars) are expelling its energy. At function 7 the body is fragmented and transformed in dust, dried dust, and then, sent to a vortex at F1.
How we could imitate something of this in a latrine? First: how to evaporate the liquid in the feces? Is it already made? The gases could be dangerous to humans around? We must think about this.
Second: How to do the fragmentation of solid pieces into tiny dust? Well, nature creates a rotative vortex for doing it. We can do it if has wind and putting “helices” over the latrine. The rotation of helices could make the rotation of solid pieces in a box.
Third: Nature puts energy into the dust, because its goal is to reproduce a new astro. Our goal should be to incinerate the dried dust inside the box. Are there some technologies for that? I am having some ideas but need more time.
Now we will need to think about the waste at free air. Maybe the formula could do good suggestions…
By the way, I hope that my contribution could be inspiration for someone else. Cheers… Louis Morelli ( fone: 973-477-0260 – e-mail: email@example.com – Newark – NJ – USA.)
(Explanations about how the Matrix/DNA formula and diagram works are in my website: http://theuniversalmatrix.com )
Thank you for your solution submission! Your solution to INNOCENTIVE CHALLENGE 9933003 – Safe Containment or Processing of Human Waste in Emergency Situations has been successfully submitted to InnoCentive. We are in the process of evaluating your submission and comparing it to the criteria outlined by the Seeker in the posted InnoCentive Challenge (TM). As a reminder, if your submission is deemed a winner by the Seeker, you may be required to sign two additional documents. They are:
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The submitted proposal should include the following:
A detailed description of the structure, method or process, including:
A discussion of the core principals of the solution, including reference to literature if applicable
Annotated drawings and diagrams, as appropriate
Descriptions of required materials or reagents
Calculations of containment capacity or efficiency of decontamination
Estimates regarding the operation and maintenance required to maintain the proposed solution in emergency environments
A discussion of any limitations of the proposal e.g. environmental temperature, user compliance, cultural acceptance etc.
A clear indication of how long the system could operate as an emergency response measure and the ease in which it could be modified for a longer term solution
If designed as a kit to be assembled on site calculate the dimensions and weight for air freight of the kit.
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