(Page créée avec « Other references : * [http://universlavie.org/ Universlavie] * [https://www.antenna-france.org/notre-combat/la-spiruline/ Antenna] * [https://fr.wikipedia.org/wiki/Spiruli... ») |
(Mise à jour pour être en accord avec la nouvelle version de la source de la page) |
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(4 révisions intermédiaires par 3 utilisateurs non affichées) | |||
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− | {{ | + | {{Tuto Details |
− | | | + | |Main_Picture=Bassin_de_culture_de_spiruline_bassin_z.jpg |
− | | | + | |Licences=Attribution-ShareAlike (CC BY-SA) |
− | | | + | |Description=Building of a spirulina-growing raised pond |
+ | |Area=Habitat, Food | ||
|Type=Tutorial | |Type=Tutorial | ||
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|Difficulty=Medium | |Difficulty=Medium | ||
+ | |Duration=2 | ||
+ | |Duration-type=day(s) | ||
|Cost=300 | |Cost=300 | ||
|Currency=EUR (€) | |Currency=EUR (€) | ||
− | | | + | |Tags=bassin, spiruline, culture, domestique, Low-tech Tour France, Low-tech Lab France, protéines |
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|SourceLanguage=fr | |SourceLanguage=fr | ||
|Language=en | |Language=en | ||
|IsTranslation=1 | |IsTranslation=1 | ||
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− | {{ | + | {{Introduction |
|Introduction=The construction of a family culture pond makes it possible to produce a large quantity of spirulina in a relative small space. For an ideal production the culture pond must be 20 cm in depth. With less than 20 cm, the pool is not fully exploited, whereas with more spirulina is not sufficiently exposed to light, the production is slowed down. The French Spirulina Federation recommends a consumption of 50 grams a day. It takes 1 m² of pond to produce these 50 grams of micro-algae on a daily basis. The size of the pool is to be adapted according to the number of people wishing to consume spirulina every day. | |Introduction=The construction of a family culture pond makes it possible to produce a large quantity of spirulina in a relative small space. For an ideal production the culture pond must be 20 cm in depth. With less than 20 cm, the pool is not fully exploited, whereas with more spirulina is not sufficiently exposed to light, the production is slowed down. The French Spirulina Federation recommends a consumption of 50 grams a day. It takes 1 m² of pond to produce these 50 grams of micro-algae on a daily basis. The size of the pool is to be adapted according to the number of people wishing to consume spirulina every day. | ||
In our case, we are three, so we will build a pool of 3 m². | In our case, we are three, so we will build a pool of 3 m². | ||
− | The pond presented in this tutorial is raised to allow to work standing, which is more comfortable. It also allows material to be stored under the basin. Starting at the "Culture pond" step offers a more economical and quick alternative. | + | The pond presented in this tutorial is raised to allow to work standing, which is more comfortable. It also allows material to be stored under the basin. Starting at the "Culture pond" step offers a more economical and quick alternative. |
This tutorial is done in collaboration with Enkidou Burtschell, specialist in bioclimatic eco-construction and state-certified spirulina producer. | This tutorial is done in collaboration with Enkidou Burtschell, specialist in bioclimatic eco-construction and state-certified spirulina producer. | ||
Ligne 28 : | Ligne 25 : | ||
See the video [https://youtu.be/kk7um3d8MyQ here] and [http://lab.lowtechlab.org/index.php?title=Culture_de_la_spiruline spirulina culture]. | See the video [https://youtu.be/kk7um3d8MyQ here] and [http://lab.lowtechlab.org/index.php?title=Culture_de_la_spiruline spirulina culture]. | ||
}} | }} | ||
− | {{ | + | {{TutoVideo |
− | | | + | |VideoType=Youtube |
− | | | + | |VideoURLYoutube=https://www.youtube.com/watch?v=kk7um3d8MyQ |
}} | }} | ||
− | {{ | + | {{Materials |
|Material=* 50 to 100 mm long wood screws | |Material=* 50 to 100 mm long wood screws | ||
* 18mm lath | * 18mm lath | ||
Ligne 51 : | Ligne 48 : | ||
* Silicone gun | * Silicone gun | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Pond support structure: low frame | |Step_Title=Pond support structure: low frame | ||
|Step_Content=* Make 3x1m frame with half-rafters, | |Step_Content=* Make 3x1m frame with half-rafters, | ||
* Place a bracket of about 30 cm in each corner, | * Place a bracket of about 30 cm in each corner, | ||
* Add two half-rafter stiffeners, one at 1 m, the other at 2 m lengthwise. | * Add two half-rafter stiffeners, one at 1 m, the other at 2 m lengthwise. | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_chassis_bas.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Pond support structure : raising | |Step_Title=Pond support structure : raising | ||
|Step_Content=For ergonomics, it is necessary to adjust the height of the basin to the worker's size. The basin is 30 centimeters high. In our case the bottom of the basin is one meter above the ground. When calculating the height of the legs, the thickness of the low and high frames must also be taken into account. | |Step_Content=For ergonomics, it is necessary to adjust the height of the basin to the worker's size. The basin is 30 centimeters high. In our case the bottom of the basin is one meter above the ground. When calculating the height of the legs, the thickness of the low and high frames must also be taken into account. | ||
Ligne 69 : | Ligne 62 : | ||
* Install four central legs, of a single half-rafter, facing each stiffener of the low frame, | * Install four central legs, of a single half-rafter, facing each stiffener of the low frame, | ||
* Place a bracket about 30 cm between each center leg and its bottom frame stiffener, four in total. | * Place a bracket about 30 cm between each center leg and its bottom frame stiffener, four in total. | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_jambes.jpg | ||
+ | |Step_Picture_01=Bassin_de_culture_de_spiruline_jambes_2.jpg | ||
+ | |Step_Picture_02=Bassin_de_culture_de_spiruline_jambes_3.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Pond support structure : high frame | |Step_Title=Pond support structure : high frame | ||
|Step_Content=The top chassis is a copy of the bottom chassis. | |Step_Content=The top chassis is a copy of the bottom chassis. | ||
Ligne 81 : | Ligne 74 : | ||
* Install two central stiffeners, above the low frame and the central legs ones, | * Install two central stiffeners, above the low frame and the central legs ones, | ||
* Place a bracket of about 30 cm in each corner of the top frame. | * Place a bracket of about 30 cm in each corner of the top frame. | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_chassis_haut.jpg | ||
+ | |Step_Picture_01=Bassin_de_culture_de_spiruline_chassis_haut_2.jpg | ||
+ | |Step_Picture_02=Bassin_de_culture_de_spiruline_chassis_haut_3.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Pond support structure : support floor | |Step_Title=Pond support structure : support floor | ||
|Step_Content=* Install a plywood floor approximately 18 mm thick on the high frame, | |Step_Content=* Install a plywood floor approximately 18 mm thick on the high frame, | ||
* Screw the boards on the stiffeners. | * Screw the boards on the stiffeners. | ||
The raising of the pond is finished. | The raising of the pond is finished. | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_plancher_1.jpg | ||
+ | |Step_Picture_01=Bassin_de_culture_de_spiruline_plancher_2.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Culture pond : pond structure | |Step_Title=Culture pond : pond structure | ||
|Step_Content=For ergonomics, the front is lower than the bottom. 30 cm at the front, 40 at the back of the basin. To improve the production, we isolate the basin, it will keep the heat longer during the day, which is important for spirulina. In our case, an air gap between two planks isolates the culture. | |Step_Content=For ergonomics, the front is lower than the bottom. 30 cm at the front, 40 at the back of the basin. To improve the production, we isolate the basin, it will keep the heat longer during the day, which is important for spirulina. In our case, an air gap between two planks isolates the culture. | ||
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* Place a cleats frame on the floor 18 mm from the edges of the floor. Distance to adapt according to the thickness of the trench used to make the basin, | * Place a cleats frame on the floor 18 mm from the edges of the floor. Distance to adapt according to the thickness of the trench used to make the basin, | ||
Ligne 110 : | Ligne 99 : | ||
'''ATTENTION''' '' For the inner frame, the screws must come from the inside and go outwards otherwise there is a risk of bursting the tarpaulin. '' | '''ATTENTION''' '' For the inner frame, the screws must come from the inside and go outwards otherwise there is a risk of bursting the tarpaulin. '' | ||
'''HINT''' '' Add straw, wool, newspaper or cardboard between the two frames to insulate even better. '' | '''HINT''' '' Add straw, wool, newspaper or cardboard between the two frames to insulate even better. '' | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_bassin_1.jpg | ||
+ | |Step_Picture_01=Bassin_de_culture_de_spiruline_bassin_2.jpg | ||
+ | |Step_Picture_02=Bassin_de_culture_de_spiruline_bassin_3.jpg | ||
+ | |Step_Picture_03=Bassin_de_culture_de_spiruline_bassin_4.jpg | ||
+ | |Step_Picture_04=Bassin_de_culture_de_spiruline_bassin_5.jpg | ||
+ | |Step_Picture_05=Bassin_de_culture_de_spiruline_bassin_6.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Culture pond : hood | |Step_Title=Culture pond : hood | ||
|Step_Content=A translucent cover placed on the basin allows the culture medium's temperature to rise quickly in the morning and to keep its heat at night. A polycarbonate plate acts as a canopy. A film of greenhouse tarpaulin or food film prevents the contact between spirulina and polycarbonate whose health effects are not known. | |Step_Content=A translucent cover placed on the basin allows the culture medium's temperature to rise quickly in the morning and to keep its heat at night. A polycarbonate plate acts as a canopy. A film of greenhouse tarpaulin or food film prevents the contact between spirulina and polycarbonate whose health effects are not known. | ||
Ligne 125 : | Ligne 117 : | ||
* Screw, | * Screw, | ||
* Set the hood aside to proceed to the isolation and sealing steps. | * Set the hood aside to proceed to the isolation and sealing steps. | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_capot_2.jpg | ||
+ | |Step_Picture_01=Bassin_de_culture_de_spiruline_capot.jpg | ||
+ | |Step_Picture_02=Bassin_de_culture_de_spiruline_capot_3.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Insulation | |Step_Title=Insulation | ||
|Step_Content=* Put two or three cardboard layers on the floor inside the pond. | |Step_Content=* Put two or three cardboard layers on the floor inside the pond. | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_isolation.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Sealing | |Step_Title=Sealing | ||
|Step_Content=A geotextile makes it possible to improve the insulation and especially to prevent the tarpaulin from being torn apart. | |Step_Content=A geotextile makes it possible to improve the insulation and especially to prevent the tarpaulin from being torn apart. | ||
Ligne 151 : | Ligne 141 : | ||
* Staple every 20 cm on the outer frame, | * Staple every 20 cm on the outer frame, | ||
* Cut the over-lengths of tarpaulin to 2 cm from the top of the basin, | * Cut the over-lengths of tarpaulin to 2 cm from the top of the basin, | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_geot.jpg | ||
+ | |Step_Picture_01=Bassin_de_culture_de_spiruline_geot_2.jpg | ||
+ | |Step_Picture_02=Bassin_de_culture_de_spiruline_geot_3.jpg | ||
+ | |Step_Picture_03=Bassin_de_culture_de_spiruline_bache.jpg | ||
+ | |Step_Picture_04=Bassin_de_culture_de_spiruline_bache_2.jpg | ||
}} | }} | ||
− | {{ | + | {{Tuto Step |
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|Step_Title=Assembly | |Step_Title=Assembly | ||
|Step_Content=* Put a hinge every meter between the hood and the rear face of the pond, | |Step_Content=* Put a hinge every meter between the hood and the rear face of the pond, | ||
Ligne 162 : | Ligne 154 : | ||
The pond is done ! Now prepare the culture medium, install an aquarium pump and then sow the spirulina. | The pond is done ! Now prepare the culture medium, install an aquarium pump and then sow the spirulina. | ||
+ | |Step_Picture_00=Bassin_de_culture_de_spiruline_charni_re.jpg | ||
+ | |Step_Picture_01=Bassin_de_culture_de_spiruline_couronne.jpg | ||
+ | |Step_Picture_02=Bassin_de_culture_de_spiruline_couronne_2.jpg | ||
}} | }} | ||
− | {{ | + | {{Notes |
|Notes=For more informations on the family spirulina culture : | |Notes=For more informations on the family spirulina culture : | ||
[http://lab.lowtechlab.org/index.php?title=Culture_de_la_spiruline The tutorial] | [http://lab.lowtechlab.org/index.php?title=Culture_de_la_spiruline The tutorial] | ||
Ligne 170 : | Ligne 165 : | ||
* [http://spiruviecian.wixsite.com/site Spiruviecian] | * [http://spiruviecian.wixsite.com/site Spiruviecian] | ||
* [https://www.facebook.com/groups/spiruvie Facebook page of Spiruvie] | * [https://www.facebook.com/groups/spiruvie Facebook page of Spiruvie] | ||
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For materials and products necessary to spirulina culture : | For materials and products necessary to spirulina culture : | ||
Ligne 180 : | Ligne 174 : | ||
* [https://fr.wikipedia.org/wiki/Spiruline Wikipedia] | * [https://fr.wikipedia.org/wiki/Spiruline Wikipedia] | ||
− | * Documentation | + | * Documentation made by Amandine Garnier, Camille Duband & Clément Chabot, Aug 2017 |
+ | }} | ||
+ | {{PageLang | ||
}} | }} | ||
− | {{ | + | {{Tuto Status |
− | |Complete= | + | |Complete=Published |
}} | }} | ||
+ | {{Separator}} |
Tutorial de Low-tech Lab | Catégories : Habitat, Alimentation
Building of a spirulina-growing raised pond
Building of a spirulina-growing raised pond
bassin, spiruline, culture, domestique, Low-tech Tour France, Low-tech Lab France, protéines en fr 1
The construction of a family culture pond makes it possible to produce a large quantity of spirulina in a relative small space. For an ideal production the culture pond must be 20 cm in depth. With less than 20 cm, the pool is not fully exploited, whereas with more spirulina is not sufficiently exposed to light, the production is slowed down. The French Spirulina Federation recommends a consumption of 50 grams a day. It takes 1 m² of pond to produce these 50 grams of micro-algae on a daily basis. The size of the pool is to be adapted according to the number of people wishing to consume spirulina every day. In our case, we are three, so we will build a pool of 3 m².
The pond presented in this tutorial is raised to allow to work standing, which is more comfortable. It also allows material to be stored under the basin. Starting at the "Culture pond" step offers a more economical and quick alternative.
This tutorial is done in collaboration with Enkidou Burtschell, specialist in bioclimatic eco-construction and state-certified spirulina producer.
See the video here and spirulina culture.
Youtube
For ergonomics, it is necessary to adjust the height of the basin to the worker's size. The basin is 30 centimeters high. In our case the bottom of the basin is one meter above the ground. When calculating the height of the legs, the thickness of the low and high frames must also be taken into account.
The top chassis is a copy of the bottom chassis.
TIP Start by screwing the half-chevrons on the corner legs and then on the central legs
The raising of the pond is finished.
For ergonomics, the front is lower than the bottom. 30 cm at the front, 40 at the back of the basin. To improve the production, we isolate the basin, it will keep the heat longer during the day, which is important for spirulina. In our case, an air gap between two planks isolates the culture.
ATTENTION For the inner frame, the screws must come from the inside and go outwards otherwise there is a risk of bursting the tarpaulin. HINT Add straw, wool, newspaper or cardboard between the two frames to insulate even better.
A translucent cover placed on the basin allows the culture medium's temperature to rise quickly in the morning and to keep its heat at night. A polycarbonate plate acts as a canopy. A film of greenhouse tarpaulin or food film prevents the contact between spirulina and polycarbonate whose health effects are not known.
A geotextile makes it possible to improve the insulation and especially to prevent the tarpaulin from being torn apart.
The pond is done ! Now prepare the culture medium, install an aquarium pump and then sow the spirulina.
For more informations on the family spirulina culture : The tutorial
For ponds construction :
For materials and products necessary to spirulina culture :
Other references :
Published
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