82
LOVE, David C. et al (2014). An international survey of aquaponics practitioners. In :
PLoS ONE. Vol. 9, n° 7, pp. 102-112.
MARKLIN, Richard William (2013). Aquaponics : a sustainable food production system
that provides research projects for undergraduate engineering students. In : WEEF 2013
Cartagena
[en ligne].
[Consulté le 14 mai 2017].
Disponible
à
l’adresse :
.
MCEACHERN, Travis (2016). Determining the most efficient type of growth light for an
aquaponics system using yellow lantern chilies (Capsicum chinense) [en ligne].
[Consulté le 12 juin 2017].
Disponible
à
l’adresse :
.
MCGUIRE, Thomas Malachi, POPKEN, Geoffrey Addison (2015). Comparative
Analysis of Aquaponic Grow Beds. In : [en ligne]. [Consulté le 15 mai 2017]. Disponible
à l’adresse :.
MOLLEDA, Mercedes Isla, THORARENSEN, Helgi, JOHANNSSON, Ragnar (2007).
Water quality in recirculating aquaculture systems for arctic charr (Salvelinus alpinus L.)
Culture. UNU-fishries training programme. Final project. Vol. 5, n° 2, pp. 102-112.
NURAIN, Abu Hasan (2014). Aquaponics system for treat a catfish wastewater. In :
[en ligne].
[Consulté le 12 juin 2017].
Disponible
à
l’adresse :
.
PALM, Harry W., BISSA, Karl, KNAUS, Ulrich (2014). Significant factors affecting the
economic sustainability of closed aquaponic systems. Part II: fish and plant growth. In :
Aquaculture, aquarium, conservation & legislation. Vol. 7, n° 3, pp. 162‑ 175.
PALM, Harry W. et al (2014). Significant factors affecting the economic sustainability of
closed aquaponic systems. Part I: system design, chemo-physical parameters and general
aspects. In : Aquaculture, aquarium, conservation & legislation. Vol. 7, n° 1, pp. 20‑ 32.
PETREA, Stefan. et al (2013). Vegetable production in an integrated aquaponic system
with rainbow trout and spinach. In : Bulletin of university of agricultural sciences and
veterinary medicine Cluj-Napoca. Animal science and biotechnologies. [en ligne].
[Consulté le 15 mai 2017].
Disponible
à
l’adresse :
.
LOVE, David C. et al (2014). An international survey of aquaponics practitioners. In :
PLoS ONE. Vol. 9, n° 7, pp. 102-112.
MARKLIN, Richard William (2013). Aquaponics : a sustainable food production system
that provides research projects for undergraduate engineering students. In : WEEF 2013
Cartagena
[en ligne].
[Consulté le 14 mai 2017].
Disponible
à
l’adresse :
MCEACHERN, Travis (2016). Determining the most efficient type of growth light for an
aquaponics system using yellow lantern chilies (Capsicum chinense) [en ligne].
[Consulté le 12 juin 2017].
Disponible
à
l’adresse :
MCGUIRE, Thomas Malachi, POPKEN, Geoffrey Addison (2015). Comparative
Analysis of Aquaponic Grow Beds. In : [en ligne]. [Consulté le 15 mai 2017]. Disponible
à l’adresse :
MOLLEDA, Mercedes Isla, THORARENSEN, Helgi, JOHANNSSON, Ragnar (2007).
Water quality in recirculating aquaculture systems for arctic charr (Salvelinus alpinus L.)
Culture. UNU-fishries training programme. Final project. Vol. 5, n° 2, pp. 102-112.
NURAIN, Abu Hasan (2014). Aquaponics system for treat a catfish wastewater. In :
[en ligne].
[Consulté le 12 juin 2017].
Disponible
à
l’adresse :
PALM, Harry W., BISSA, Karl, KNAUS, Ulrich (2014). Significant factors affecting the
economic sustainability of closed aquaponic systems. Part II: fish and plant growth. In :
Aquaculture, aquarium, conservation & legislation. Vol. 7, n° 3, pp. 162‑ 175.
PALM, Harry W. et al (2014). Significant factors affecting the economic sustainability of
closed aquaponic systems. Part I: system design, chemo-physical parameters and general
aspects. In : Aquaculture, aquarium, conservation & legislation. Vol. 7, n° 1, pp. 20‑ 32.
PETREA, Stefan. et al (2013). Vegetable production in an integrated aquaponic system
with rainbow trout and spinach. In : Bulletin of university of agricultural sciences and
veterinary medicine Cluj-Napoca. Animal science and biotechnologies. [en ligne].
[Consulté le 15 mai 2017].
Disponible
à
l’adresse :
