Showing posts with label companion planting. Show all posts
Showing posts with label companion planting. Show all posts

Saturday, September 1, 2012

Plant guilds in Vanuatu

"There is an enormous difference in the way we make a design in permaculture and the way an agriculturist would make it.  Really what we are up to is trying to let things function in a natural way."

  - Bill Mollison, Wilton, NH (USA) PDC 1981 -

 

Companion planting, or planting two or more plants who help each other, with each other, is one tool we can use to increase the resilience of our cropping systems. 

For example, planting dill and alliums (onion family) between mounds of potatoes can help attract beneficial insects to the umbrelliferous flowers of the dill, while the allium roots exude antibacterial & antifungal compounds which can protect potato tubers from fungal infection, and give us total yield of three crops from the same space.

Dscn4695
Photo: Fruit & nut trees occupy the understory of this coconut plantation on Malekula Island, while swamp taro & cattle occupy the ground level.

In permaculture design we refer to this as 'guilding'.  We can use it to mimic the diversity found in natural systems and assemble our planting guilds by selecting plants occupying different niches; for example, selecting deep rooted plants to row next to shallow rooted plants, or identifying understory trees which can be planted under our canopy.

We can take this a step further by designing for maximum functional diversity; in other words, seeking to connect elements in our system so that the needs (or 'inputs') of one element are met by the products or behaviors ('outputs') of another element in our system. 

Permaculture_chicken

Photo: Needs / Products / Functions = Functional Analysis.

By using the 'Functional Analysis' tool to map the needs, products & characteristics of our species palette, we can begin to make these connections to create gropings of plants which are mutually beneficial when grown together.  For example, we can grow vines up a taller crop, select an edible ground cover to ramble in an understory, and intercrop nitrogen-fixing species to provide for our soil fertility needs.

Dscn5464

Photo: A guild is a family of plants who work together. At the Department of Agriculture's demonstration plot on Efate, Piper nigrum (back pepper) grows up nitrogen-fixing 'Erythrina varigata' (Indian Coral Tree).

Students were tasked with designing their own localized guilds using these patterns, starting with grouping plant species they are already familiar with in the different niches they occupy, and then looking to re-assemble them by looking for functional relationships between the plants:

Photo: Amsen Wille from the Vanuatu Department of Agriculture presents his group's plant guild designs.

Cimg5033
Photo: 1) Banana, cacao & Island cabbage (Abelmoschus manihot) grow in the understory of a coconut plantation, with Sweet potato (known locally as 'Kumala') as a ground cover.  Glyricidia provides fertility to the system, banana & Island cabbage provide a shorter term crop while cacao is maturing, and sweet potato lends productivity  at ground level while serving as a living mulch to protect topsoils.

2) 'Whitewood' (Endospermum medullosum), a locally prized timber crop, creates a closed canopy which few plants can tolerate.  Swamp taro (Alocasia macrorrhiza) can fill this niche and turn it into a productive space - this guild was expanded further as an alley crop between Glyricidia to provide fertility to the system.

3) Citrus is placed with nitrogen-fixing Pigeon pea (Cajanus cajun) as a nurse crop to protect & feed it in its early stages (and yield an edible crop), while pawpaw (papaya), Island Cabbage, and Chinese cabbage (known locally as 'Whitebone') give additional yields in space & time.

 

Bill Mollison said, "If you do something right, it will do a lot more right itself," and we experienced this phenomenon with this practical exercise.

Students were asked first to group plants according to niche, and then to create guilds by looking for functional relationships between these plants - and in doing so they also managed to stack crops in space, stack yields in time, and increase diversity & fertility.

 

"Our job is to put things in the right place and then let them rip."

  - Bill Mollison, Wilton, NH (USA) PDC 1981 -

 

Wednesday, April 13, 2011

Useful plants of Mongolia: Crowdsourced!

Resource Alert: Scroll down to the end of this post for a downloadable pdf of 'Useful Plants of Monoglia: A Permacultural Perspective'.

You are invited, dear reader, to participate in an open-source, collaborative project to help conduct detailed research on extreme-cold tolerant plant species which have potential for a wide variety of application in cold climates from Mongolia to Canada.

Dr Beket (the hero of our 'Reforesting the Barrens of Bayan Ulgii' story) and his research team have spent the last few years researching and compiling a list of 146 plant species (mostly tree crops) that can survive (and even thrive) the extreme, sub -40C winters (and 30C summers) of Bayan Ulgii province.

P1010788
Photo: 'Dictionary of Useful Mongol Plants'

We found the above book 'A Dictionary of Useful Mongol Plants', (Ministry of Nature & Environment and Mongolian State University, 2001) in the ADRA-Mongolia offices during the project consultancy, and used plants listed in this book + selected species from Dr Beket's report to begin the work of compiling a list of our own:

  • 'Useful Plants of Mongolia: A Permacultural Perspective': in which the scientific Latin names are cross-reference with common English names of plant species, while the plants characteristics, funcitions, and possible uses are listed.

Our hope is to create a catalogued database that designers can use to identify suitable plant species for use in their systems - but we need your help.

If you are knowledgeable, or simply want to increase your knowledge of cold-tolerant plant species, and have access to a good internet connection, than you can help to build this database. Choose 10 or more plants from the list below, then download the list we have started compiling (click the 'download' link at the end of this post) to see what information we are compiling, and start your researching & learning! 

Email us at theGreenBackpack [at] gmail [dot] com, with 'MONGOL PLANT DATABASE' in your subject line, and we'll send you an Excel spreadsheet template that you can use to compile your own research.  Don't forget to record the sources of your information, and in return your contribution will be recorded in the published plant list document as it continues to grow and evolve... you can become a Sustainable Overseas Aid & Development Worker (and contribute to the development of Permaculture and Regenerative design in Mongolia) from the comfort of your living room (or favourite local cafe!).

We can change the World, with our own two hands (and a decent internet connection)... one small step at a time.

Useful_Plant_Species_of_Mongolia-_A_Permacultural_Perspective.pdf Download this file
Useful Plants of Mongolia: A Permacultural Perspective', (The Asia-Pacific Center for Regenerative Design, and you, 2011)

Dr Beket's (et al) list of potentially usefully plant species suitable for Bayan Ulgii province:

  1. Abies sibirica.Ldb 
  2. Piciea obovata.Ldb 
  3. Pinus silvestris. L 
  4. Pinus pumla./Pall/ Rge 
  5. Pinus sibirica/Rupr/ Maur  
  6. Larix sibirica.Ldb 
  7. Jiniperus sibirica Burgsd 
  8. Jiniperus Sadina.L 
  9. Jiniperus pseuda sadina 
  10. Jiniperus daurica.Pall 
  11. Epedra guisetina.Rge 
  12. Epedra glausa.Rge 
  13. Epedra monsperma./CA.M/ 
  14. Epedra Prezewalscii.Stapf 
  15. Epedra sinica. Stapf 
  16. Barbaris sibirica.Pall 
  17. Spriaea salicifoli.L 
  18. Spriaea aguilegefolia.Pall 
  19. Spriaea hypericifolia. L 
  20. Spriaea media.Shmidt 
  21. Spriaea sericea. Turcz
  22. Spriaea flexuosa. Fisch 
  23. Spriaea alpina Pall
  24. Spriaea pubescens.Turcz
  25. Cotaneaster melanocapa
  26. Cotaneaster iniflora Bige
  27. Cotaneaster mongolica Posark
  28. Malus pallasina Juz
  29. Sorbus sibirica Hedl
  30. Cratalgus Sanuinea Pall
  31. Cratalgus dauriva pedinculata. Pall
  32. Amugdalus pedinculata Pall 
  33. Amugdalus mongolica maxim
  34. Armenica sibiroca dam
  35. Padus asiatecus kom
  36. Roza albertii Rge
  37. Rosa daurica rall
  38. Rosa kokanica Rge
  39. Rosa okyacantha MB
  40. Rosa Acieularus Linde
  41. Rosa laxa Retz
  42. Ribes nigrum.L
  43. Ribes Altissimum Turcz
  44. Ribes rubrum L 
  45. Ribes atropurpureum C.A.M
  46. Ribes diacantha pall
  47. Ribes  graveolens Bge
  48. Ribes pulchellum Turst 
  49. Ribes nispidulum Pojark 
  50. Ribes procumbens pall
  51. Ribes Pausiflorum Turz 
  52. Ribes Fragrans pall 
  53. Grossularia acicularis /smith/ spash
  54. Cargana arbazescens.Lam
  55. Cargana misrophylla pall
  56. Cargana pygmala/ L/ DS 
  57. Cargana Leucophloea Rojark
  58. Cargana jubata /Pall/ Poir
  59. Cargana stenophulla Rajark 
  60. Cargana bangea LDB
  61. Cargana sinosa /L / DS
  62. Cargana brachypoda Pojark
  63. Cargana Korshinskii kom
  64. Hippophea rhamnoides L
  65. Eleagnus moorcrftii walli
  66. Cornus alba L
  67. Sambucus sibirica Nakai
  68. Lonicera altaica Pall
  69. Lonicera Microphulla Will
  70. Lonicera hispida Pall
  71. Rhododendron aureim
  72. Rhododendron adamsii Rend
  73. Rhododendron Parbifolium Adams 
  74. Rhododendron dauricum L
  75. Rhododendron Ledebaurii
  76. Haloxyon omniodendron
  77. Calligonum mongolicum Turcz
  78. Atraphaxis  frutescen L Eversm
  79. Atraphaxis  pungens Jaub
  80. Atraphaxis Virgata /Rg/ krassn
  81. Atraphaxis compasta hdb 
  82. Tamarix ramosissina Lgb
  83. Tamarix gracifis Willd
  84. Tamarix elongota Ldb
  85. Tamarix karelinii Bge
  86. Tamarix laxa Wiild
  87. Myricaria alopecuroidec. Schrenk
  88. Myricaria daurica /Wiild/ Ehrenk
  89. Myricaria longifolia /Wiild / Ehrenb
  90. Ulmus pumila. L
  91. Ulmus masgosara.Hanse
  92. Ulmus propingua.Koidr
  93. Salix jentanra.L
  94. Salix arbuscula.L
  95. Salix  berberifolia. Pall
  96. salix caspica. Pall
  97. Salix dasycloos.Viim 
  98. Salix rorida.Loksch
  99. Salix tenuifolia.Tucz
  100. Salix microstachya.Tucz
  101. Salix caprea.L
  102. Salix /calsia vill/ glauca.L
  103. Salix dahurica./Tucz/
  104. Salix fumosa.Tucz Lakch
  105. Salix pyrolifolia.Ldb
  106. Salix chlorostachya.Tucz
  107. Salix hastata.L
  108. Salix kochiana.Trautv
  109. Salix myrsinites.L
  110. Salix mongolica. Siuz
  111. Salix nummularia.Anderss
  112. Salix vestita.Pursch
  113. Salix reticulata.L
  114. Salix sibirica. Pall 
  115. Salix caesia.Vill
  116. Salix livida6 Whlbg
  117. Salix xerophila.Floder
  118. Salix divaricata. Pall
  119. Salix rosmarinofolia.L
  120. Salix turczaninovii.Laksch
  121. Salix torulosa.Trautv
  122. Salix myrtilloides.L
  123. Salix ovolifolia.Trautv
  124. Salix viminalis.L
  125. Populus tremula.L
  126. Populus suaveolens.Ficsh
  127. Populus lauripolia.Ldb
  128. Populus diversifolia. Schrenk
  129. Populus pilosa.Pehder 
  130. Populus densa. Kom
  131. Vaccinium myrtillus.L
  132. Vaccinium vitis idaea.L
  133. Vaccinaceae uliginosum.L
  134. Betula hippolytii.Sukacz
  135. Betula gmelinii.Bde
  136. Betula rotundifoolia.Spach
  137. Betula fruticosa. Pall 
  138. Betula mandshurica/Rge/ Nakai
  139. Betula microphulla.Bge
  140. Betula platyphylla.Sukacz
  141. Betula humilis Sukrank
  142. Betula Rezniczenkoona
  143. Betula Tauschii./Rge/ Koidz
  144. Betula exilis. Sukacz
  145. Alnus glutipes.Larm
  146. Alnus fruticosa / Rupr/ Ldb

Useful plants of Mongolia: Crowdsourced!

Resource Alert: Scroll down to the end of this post for a downloadable pdf of 'Useful Plants of Monoglia: A Permacultural Perspective'.

You are invited, dear reader, to participate in an open-source, collaborative project to help conduct detailed research on extreme-cold tolerant plant species which have potential for a wide variety of application in cold climates from Mongolia to Canada.

Dr Beket (the hero of our 'Reforesting the Barrens of Bayan Ulgii' story) and his research team have spent the last few years researching and compiling a list of 146 plant species (mostly tree crops) that can survive (and even thrive) the extreme, sub -40C winters (and 30C summers) of Bayan Ulgii province.

P1010788
Photo: 'Dictionary of Useful Mongol Plants'

We found the above book 'A Dictionary of Useful Mongol Plants', (Ministry of Nature & Environment and Mongolian State University, 2001) in the ADRA-Mongolia offices during the project consultancy, and used plants listed in this book + selected species from Dr Beket's report to begin the work of compiling a list of our own:

  • 'Useful Plants of Mongolia: A Permacultural Perspective': in which the scientific Latin names are cross-reference with common English names of plant species, while the plants characteristics, funcitions, and possible uses are listed.

Our hope is to create a catalogued database that designers can use to identify suitable plant species for use in their systems - but we need your help.

If you are knowledgeable, or simply want to increase your knowledge of cold-tolerant plant species, and have access to a good internet connection, than you can help to build this database. Choose 10 or more plants from the list below, then download the list we have started compiling (click the 'download' link at the end of this post) to see what information we are compiling, and start your researching & learning! 

Email us at theGreenBackpack [at] gmail [dot] com, with 'MONGOL PLANT DATABASE' in your subject line, and we'll send you an Excel spreadsheet template that you can use to compile your own research.  Don't forget to record the sources of your information, and in return your contribution will be recorded in the published plant list document as it continues to grow and evolve... you can become a Sustainable Overseas Aid & Development Worker (and contribute to the development of Permaculture and Regenerative design in Mongolia) from the comfort of your living room (or favourite local cafe!).

We can change the World, with our own two hands (and a decent internet connection)... one small step at a time.

Useful_Plant_Species_of_Mongolia-_A_Permacultural_Perspective.pdf Download this file
Useful Plants of Mongolia: A Permacultural Perspective', (The Asia-Pacific Center for Regenerative Design, and you, 2011)

Dr Beket's (et al) list of potentially usefully plant species suitable for Bayan Ulgii province:

  1. Abies sibirica.Ldb 
  2. Piciea obovata.Ldb 
  3. Pinus silvestris. L 
  4. Pinus pumla./Pall/ Rge 
  5. Pinus sibirica/Rupr/ Maur  
  6. Larix sibirica.Ldb 
  7. Jiniperus sibirica Burgsd 
  8. Jiniperus Sadina.L 
  9. Jiniperus pseuda sadina 
  10. Jiniperus daurica.Pall 
  11. Epedra guisetina.Rge 
  12. Epedra glausa.Rge 
  13. Epedra monsperma./CA.M/ 
  14. Epedra Prezewalscii.Stapf 
  15. Epedra sinica. Stapf 
  16. Barbaris sibirica.Pall 
  17. Spriaea salicifoli.L 
  18. Spriaea aguilegefolia.Pall 
  19. Spriaea hypericifolia. L 
  20. Spriaea media.Shmidt 
  21. Spriaea sericea. Turcz
  22. Spriaea flexuosa. Fisch 
  23. Spriaea alpina Pall
  24. Spriaea pubescens.Turcz
  25. Cotaneaster melanocapa
  26. Cotaneaster iniflora Bige
  27. Cotaneaster mongolica Posark
  28. Malus pallasina Juz
  29. Sorbus sibirica Hedl
  30. Cratalgus Sanuinea Pall
  31. Cratalgus dauriva pedinculata. Pall
  32. Amugdalus pedinculata Pall 
  33. Amugdalus mongolica maxim
  34. Armenica sibiroca dam
  35. Padus asiatecus kom
  36. Roza albertii Rge
  37. Rosa daurica rall
  38. Rosa kokanica Rge
  39. Rosa okyacantha MB
  40. Rosa Acieularus Linde
  41. Rosa laxa Retz
  42. Ribes nigrum.L
  43. Ribes Altissimum Turcz
  44. Ribes rubrum L 
  45. Ribes atropurpureum C.A.M
  46. Ribes diacantha pall
  47. Ribes  graveolens Bge
  48. Ribes pulchellum Turst 
  49. Ribes nispidulum Pojark 
  50. Ribes procumbens pall
  51. Ribes Pausiflorum Turz 
  52. Ribes Fragrans pall 
  53. Grossularia acicularis /smith/ spash
  54. Cargana arbazescens.Lam
  55. Cargana misrophylla pall
  56. Cargana pygmala/ L/ DS 
  57. Cargana Leucophloea Rojark
  58. Cargana jubata /Pall/ Poir
  59. Cargana stenophulla Rajark 
  60. Cargana bangea LDB
  61. Cargana sinosa /L / DS
  62. Cargana brachypoda Pojark
  63. Cargana Korshinskii kom
  64. Hippophea rhamnoides L
  65. Eleagnus moorcrftii walli
  66. Cornus alba L
  67. Sambucus sibirica Nakai
  68. Lonicera altaica Pall
  69. Lonicera Microphulla Will
  70. Lonicera hispida Pall
  71. Rhododendron aureim
  72. Rhododendron adamsii Rend
  73. Rhododendron Parbifolium Adams 
  74. Rhododendron dauricum L
  75. Rhododendron Ledebaurii
  76. Haloxyon omniodendron
  77. Calligonum mongolicum Turcz
  78. Atraphaxis  frutescen L Eversm
  79. Atraphaxis  pungens Jaub
  80. Atraphaxis Virgata /Rg/ krassn
  81. Atraphaxis compasta hdb 
  82. Tamarix ramosissina Lgb
  83. Tamarix gracifis Willd
  84. Tamarix elongota Ldb
  85. Tamarix karelinii Bge
  86. Tamarix laxa Wiild
  87. Myricaria alopecuroidec. Schrenk
  88. Myricaria daurica /Wiild/ Ehrenk
  89. Myricaria longifolia /Wiild / Ehrenb
  90. Ulmus pumila. L
  91. Ulmus masgosara.Hanse
  92. Ulmus propingua.Koidr
  93. Salix jentanra.L
  94. Salix arbuscula.L
  95. Salix  berberifolia. Pall
  96. salix caspica. Pall
  97. Salix dasycloos.Viim 
  98. Salix rorida.Loksch
  99. Salix tenuifolia.Tucz
  100. Salix microstachya.Tucz
  101. Salix caprea.L
  102. Salix /calsia vill/ glauca.L
  103. Salix dahurica./Tucz/
  104. Salix fumosa.Tucz Lakch
  105. Salix pyrolifolia.Ldb
  106. Salix chlorostachya.Tucz
  107. Salix hastata.L
  108. Salix kochiana.Trautv
  109. Salix myrsinites.L
  110. Salix mongolica. Siuz
  111. Salix nummularia.Anderss
  112. Salix vestita.Pursch
  113. Salix reticulata.L
  114. Salix sibirica. Pall 
  115. Salix caesia.Vill
  116. Salix livida6 Whlbg
  117. Salix xerophila.Floder
  118. Salix divaricata. Pall
  119. Salix rosmarinofolia.L
  120. Salix turczaninovii.Laksch
  121. Salix torulosa.Trautv
  122. Salix myrtilloides.L
  123. Salix ovolifolia.Trautv
  124. Salix viminalis.L
  125. Populus tremula.L
  126. Populus suaveolens.Ficsh
  127. Populus lauripolia.Ldb
  128. Populus diversifolia. Schrenk
  129. Populus pilosa.Pehder 
  130. Populus densa. Kom
  131. Vaccinium myrtillus.L
  132. Vaccinium vitis idaea.L
  133. Vaccinaceae uliginosum.L
  134. Betula hippolytii.Sukacz
  135. Betula gmelinii.Bde
  136. Betula rotundifoolia.Spach
  137. Betula fruticosa. Pall 
  138. Betula mandshurica/Rge/ Nakai
  139. Betula microphulla.Bge
  140. Betula platyphylla.Sukacz
  141. Betula humilis Sukrank
  142. Betula Rezniczenkoona
  143. Betula Tauschii./Rge/ Koidz
  144. Betula exilis. Sukacz
  145. Alnus glutipes.Larm
  146. Alnus fruticosa / Rupr/ Ldb

Wednesday, March 23, 2011

Permaculture and Passive solar greenhouses in Ulaanbaatar (Day 21)

Note: All photos on this post are Copyright Pierre Thiriet 2010 and appear with permission of Pierre Thiriet.

Met with Anne Randall today, Agronomist/Technical Advisor at the French NGO Group for the Environment, Renewable Energy and Solidarity (GERES - pronounced 'jheh-rehz', not 'Gee-reez' - it's French after all!) to compare notes and share information between projects.

It's one of the simplest, most important things an NGO can do - share information with other NGOs working in the same area - so that learning curves can be accelerated (mistakes don't have to be made twice if shared), and projects can grow to flourish and complement each other.  Based upon our meeting today and the information shared from both sides, the potential for this to occur between the GERES and ADRA projects is significant.

Rd_center

Photo: GERES Research & Development Center in Ulaanbaatar.

GERES are the good folks that brought us the Passive Solar Greenhouse design in Ladakh which have achieved year-round vegetable production down to minus 25C at approximately 3,000 meters above sea level (and which we modeled during the Permaculture Design Training for the classes on passive solar greenhouse design).

Anne picked up on theGreenBackpack doing further research for her current project, which is to develop & implement a passive solar greenhouse design which can achieve year-round production in Mongolian conditions (illustrating, by the way, another permaculture principle: Multifunction, in which this daily log also functions as an informational resource, a networking tool, and a historical record for future volunteers and aid/development workers to build upon in Mongolia).

Since operating in Mongolian conditions from only August of last year, GERES has already achieved a 3-seasons greenhouse design, using a double-layered, concrete block / brick clad walls insulated with polystyrene (floor must be insulated too), single-sheet polyurethane plastic sheeting (imported from Korea, expected 2-year lifespan), a reflective 'solar blanket' type insulative layer for nighttime, and specially calculated steep-angled 'glass' (plastic) wall to maximize solar gain for Mongolia's latitude.

3_seasons_greenhouse
Photo: GERES 3-Season Greenhouse in Ulaanbaatar.

We shared and discussed challenges, mistakes, and lessons learned about our respective projects, and spent the next two hours brainstorming possible solutions for achieving year-round production within the greenhouse in Monoglian conditions.  Here's a quick list of some of the solutions we came up with:

  • Build coldframes within greenhouses to create an even warmer microclimate within the coldframe.
  • Use repurposed waste plastic bottles as inexpensive, readily available and durable cloches within the greenhouse to protect seedlings.
  • Explore plastic bottle wall construction options for 'glass' wall to create 'double-glazing' effect with air tapped inside bottles.
  • Re-using plastic bottles could help keep plastic out of waste stream (and prevent them from being burnt as winter fuel).
  • Improved ger stove design will decrease pressure on fuel requirements and the family budget.
  • Build root cellar under ger/house to maximize heating/cooling efficiency and security (root cellar must be dug deep enough to perform effectively).
  • Household heating system could potentially be extended to heat root cellar and/or greenhouse.
  • Establish windbreak/suntrap behind north wall using  fast-growing Populus laurifolia (Laurel-leafed poplar)  + Caragana (Siberian peashrub) species (keeping harsh Mongolian winds off greenhouse could help increase heat retention).
  • Organic matter dropped from living windbreak can then be used to build soils within the greenhouse and hasha.
  • Organic matter dropped from living windbreak can be used as cover material for pit latrines, for potential future use as 'humanure' (not currently culturally appropriate) .
  • Build hot compost heaps (using dungs (such as chicken or goat) which are not used for fuel) inside the greenhouse to add heat biologically and relieve potential conflicts on precious 'fuel'-dungs.
  • Chickens could be a valuable addition to a small-scale-intensive, passive solar greenhouse system, conditioning and building soil during winter season in a 3 or 4-season greenhouse, providing nutritionally and financially valuable eggs from March - October, plus meat and/or more chickens when needed.
  • Drip-irrigation systems maximize water efficiency and increase thermal mass within greenhouse.
  • Human urine from households can be diluted into drip-irrigation system to be used as a free and safe liquid fertilizer (provided all members of household are healthy).
  • Raised beds within greenhouse make management and harvesting easier; line paths with dark rocks to increase thermal mass.
  • Use planting guilds to maximize production from small-scale-intensively farmed space.
  • Plant potatoes in stacks to maximize production and create more space for other crops.
  • Cucumbers, squash, and other climbing/rambling crops can be trained up walls or across roofs to maximize growing space for other crops. 
  • Alfalpha, oats, or a native 'green manure' species (such as vetch) can be planted around hasha perimeter to help build soils within hasha walls (and provide backup animal fodder).
  • Local varieties of seabuckthorn and currants can be planted within windbreak of hasha walls to boost family nutrition. 
  • Research cold-climate species native to comparable climates to maximize productivity (eg Lonicera caerulea edulis, or Blue honeysuckle is a highly nutritious, climbing berry native to Siberia that will tolerate minus 40C and produce down to minus 7C).
  • Low-grade animal furs not suitable for commercial use may be a locally and readily available insulative material for floor that will break down and build soil over time.
  • Coal ash may be a locally and readily available insulative material that could be substituted for polystyrene within the walls, though further research into how safe this material is must be conducted before being implemented.

Ideas were flying so fast & furious that I am sure there are a few things I've missed; the point is that when like minds collaborate towards a common goal,  

1 + 1 can = 3.

In other words:

None of us
Is as smart
As ALL of us.

Best wishes to Anne and the rest of the team at GERES-Mongolia, we hope to continue to support and collaborate with them towards achieving their project goal of building 180 passive solar greenhouse for family beneficiaries throughout Mongolia over the next two years.

A bientôt!

12_months_research_greenhouse
Photo: Inside GERES' research greenhouse.

 

List of useful web resources from Anne Randall (merci beaucoup!) to help you with your passive solar greenhouse design:

 

 

Saturday, March 19, 2011

Altaitsudz soum: Large-scale fruit & vegetable production plot (Day 20)

Altaitsudz means 'Golden' ('altai') 'Cup' ('tsudz'), and as we descend from the rocky grey hillsides into the basin below, the reason for its name becomes obvious.

Photo: Entering Altaitsudz foodbowl.

Around 60km away from, and 300m below Ulgii City's average elevation (1,600m above sea level), it is considerably warmer here during the summer (so much so that mosquitoes can be a problem), providing better growing conditions (provided you can withstand the mosquito hordes), and as such is a veggie food bowl for the province ('agricultural' usually means livestock production in Mongolia).

The riverflats are thick with skeletal white trees (Populus laurifolia (Laurel-leafed Poplar), and varieties of Salix (Willow)), and the gently sloping river plains around are carpeted with golden winter grasses, and dotted with hardy red Caragana shrubs(i).  Bactrian camels, horse, and cattle browse the autumn-coloured palette nonchalantly, and closer to the soum, irrigation channels criss-cross the landscape around growing plots.

Our mission today: to visit the large-scale vegetable growing plot owned by retired Gold-Medalist-Mongol-Kazakh boxing star Beket (who must be somehow related to Dr. Beket, though I was unable to find out how), who is a friend of Guliya (our student from World Vision). 

The plot is approximately 5,000 square meters, and is nestled against the edge of a basin about 45 minutes' drive from Altaitsudz soum (which, in turn, is about an hour-and-a-half from Ulgii City) - seemingly in the middle of nowhere (I might have mentioned that distance is relative to Monoglians). 

Photos: The plot.

 The tightly wound slate-post-and-wire fence (slate posts! ...I winced as I remembered how expensive the slate floors in my old bathroom was... this slate was likely harvested from the surrounding hills, where it flakes off in large slabs) surrounding the plot announces the abundance of the owner's resources, which we confirm when we are shown to two artesian wells (dug 18 meters down to reach the water table), a greenhouse built upon concrete foundations, and later, a dam built 5 km away to divert a small river 2.5 km closer to the plot (made from old car frames, rubble, and sandbags).

Photos: Very expensive water harvesting.

250 seabuckthorn trees have been planted along the northwestern section, the innermost of which bore their first fruit last season.  A small experimental plot of oats and alfalpha sit next to the seabuckthorn plantation, with carrot and melon plots above that.

 

Photos: Seabuckthorn orchard.

'What', he asks, 'does the guy from Australia suggest we do to improve?'

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Photo: Me and the (very) Big Guy  

 It takes a few moments to thaw my brain enough to formulate an answer, and I rub my nose with my frozen fingers to see if it is still on my face (it went numb shortly after arriving).  Well, I chatter, we might start by getting some of this wind off your crops.  It might help.

If distance is relative in Mongolia, than 'wind-chill-factor' is something locals notice only when a gale-force blizzard kicks up: 'Bit windy out today, tzaaaa...!?'

We noticed this last year in The Gobi, when we -asked- howled through the wind 'DO YOU FIND THE WIND TO BE A PROBLEM?', to be met with indifferent shrugs through the stinging sandblast we were copping.  Like fish who do not realize they are in the water (until taken out of it), it so often is with locals in their enviornment (wherever in the world you may be); because they live in these conditions every day, the obvious can go overlooked.

And this, perhaps, is where an outsider's perspective can add value.

But only if his brain thaws out in time.

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Photo: (L to R: Bek, Beket, Dr Beket, Doc, and Matt.)

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(i) a hardy, nitrogen-fixing pioneer species occurring throughout the region in various incarnations, from ground cover to large hedging tree-shrub.

Wednesday, March 16, 2011

Plant guilds and food forest (Day 16)

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Students were assigned the task of creating plant guilds (in their design teams) of at least three mutually beneficial species, for three separate applications: tree-cropping / food-forest, broad-acre wheat / animal fodder production, and small-scale-intensive cropping system.  The teams presented their guilds to each other, and explained why individual species were selected to be planted together.

Each group came up with far more than they were asked to - here's what they came up with:


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Photo: Small-scale intensive intercropping garden design including multiple potato stacks using old car tyres.

1. Small-scale-intensive -

          I)  Potatoes + Peas/Beans + Dill:  Peas/beans fix nitrogen, which feed potatoes (heavy feeders), while dill is grown as predatory insect attractor / strong-scented mask from potatoes' pest insects, and as an additional crop.  This design is experimenting with various potato stack configurations, to see if peas & dill can be grown successfully  in a potato stack, and to figure out which mulching material is most effective for potatoes to grow in within the stack.

          II)  Onions + daisy flowers + dill + potatoes + cabbages + turnips + cabbages:  Planted together in design shown (cabbages, shown in orange colour, surrounding central keyhole) as integrated pest management intercropping system for use in family hasha.  Time and further experimentation will tell which plants work best next to each other, and if any companion plantings are antagonistic.


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Photo:Preliminary design concept for broadacre wheat cropping guild.

2. Wheat cropping guild for broadacre production -

          I)  "Fast White" Laurel-leafed poplar (Populus laurifolia, known locally as 'Fast White') + Siberian peashrub (Caragana arborescens) + local apple Variety + wheat + oats + alfalpha: students came up with this guild in an attempt to protect the wheatcrop from the constant cold winds. 

This preliminary design was extended to improve the windbreak design by adding Siberian peashrub, a vigorously growing, very hardy, nitrogen-fixing legume, and the small nitrogen-fixing shrub we observed on the hillsides (species yet to be identified by our team) on the outside of the windbreak to form a layered edge that is more wind-resistant.  Furthermore, the wheat plot itself could be intercropped with rows of alfalpha or oats (or both), which provide human and animal fodder, in addition to making a beautiful green manure to support the wheat crop.

 

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Photo: Detail from extensive food-forest guild system created by Dr Beket's design team.

3. Tree-cropping guild for Bastama School Gardens -

          I)  This was a multi-layered design, which we are still unwravelling!  Dr Beket has an extensive knowledge and body of research informing his design team, and the tree-cropping guild they came up with was loaded with the following species (which we continue to research). 

Species included:

  •           Ulmus pumila (Siberian Elm) 
  •           Caragana aboroscens (Siberian peashrub)
  •           Caragana spinosa (English name not yet known)
  •           Rosa acicularis (Arctic rose)
  •           Salix caspica (Willow)
  •           Populus laurifolia (Laurel-leaf poplar)
  •           Populus pilosa (English name not yet known)
  •           Larix siberica (Siberian larch)
  •           Picea obovata (Siberian spruce)
  •           Pinus sylvestris (Scots Pine)
  •           Haloxylon ammodredion (Sauxal)
  •           Ribes nigrum (Blackcurrant)
  •           Ribes altissimum (Mountain blackcurrant)
  •           Amygdalus pedunculata (English name not yet known)
  •           Malus asiatica (Central asian apple). 

 

You could build quite a food forest with that list of species!