Sunday, October 21, 2018

Haber–Bosch process

How the Earth's Population Exploded > ..Fritz Haber - Nobel Laureate Who Killed Millions and Saved Billions - Veritasium > .

The Haber process, also called the Haber–Bosch process, is an artificial nitrogen fixation process and is the main industrial procedure for the production of ammonia today. It is named after its inventors, the German chemists Fritz Haber and Carl Bosch, who developed it in the first decade of the 20th century. The process converts atmospheric nitrogen (N2) to ammonia(NH3) by a reaction with hydrogen (H2) using a metal catalyst under high temperatures and pressures:
Before the development of the Haber process, ammonia had been difficult to produce on an industrial scale, with early methods such as the Birkeland–Eyde process and Frank–Caro process all being highly inefficient.

Although the Haber process is mainly used to produce fertilizer today, during WW1 it provided Germany with a source of ammonia for the production of explosives, compensating for the Allied Powers' trade blockade on Chilean saltpeter.

Throughout the 19th century the demand for nitrates and ammonia for use as fertilizers and industrial feedstocks had been steadily increasing. The main source was mining niter deposits. At the beginning of the 20th century it was being predicted that these reserves could not satisfy future demands and research into new potential sources of ammonia became more important. The obvious source was atmospheric nitrogen (N2), comprising nearly 80% of the air, however N2 is exceptionally stable and will not readily react with other chemicals. Converting N2 into ammonia posed a challenge for chemists globally.

Haber, with his assistant Robert Le Rossignol, developed the high-pressure devices and catalysts needed to demonstrate the Haber process at laboratory scale. They demonstrated their process in the summer of 1909 by producing ammonia from air, drop by drop, at the rate of about 125 ml (4 US fl oz) per hour. The process was purchased by the German chemical company BASF, which assigned Carl Bosch the task of scaling up Haber's tabletop machine to industrial-level production. He succeeded in 1910. Haber and Bosch were later awarded Nobel prizes, in 1918 and 1931 respectively, for their work in overcoming the chemical and engineering problems of large-scale, continuous-flow, high-pressure technology.

Ammonia was first manufactured using the Haber process on an industrial scale in 1913 in BASF's Oppau plant in Germany, reaching 20 tonnes per day the following year. During World War I, the production of munitions required large amounts of nitrate. The Allies had access to large sodium nitrate deposits in Chile (Chile saltpetre) controlled by British companies. Germany had no such resources, so the Haber process proved essential to the German war effort. Synthetic ammonia from the Haber process was used for the production of nitric acid, a precursor to the nitrates used in explosives.
....
The Haber process now produces 450 million tonnes of nitrogen fertilizer per year, mostly in the form of anhydrous ammonia, ammonium nitrate, and urea. Three to five percent of the world's natural gas production is consumed in the Haber process (around 1–2% of the world's energy supply). In combination with pesticides, these fertilizers have quadrupled the productivity of agricultural land:

With average crop yields remaining at the 1900 level the crop harvest in the year 2000 would have required nearly four times more land and the cultivated area would have claimed nearly half of all ice-free continents, rather than under 15% of the total land area that is required today.

Due to its dramatic impact on the human ability to grow food, the Haber process served as the "detonator of the population explosion", enabling the global populationto increase from 1.6 billion in 1900 to 7.7 billion by November 2018. Nearly 50% of the nitrogen found in human tissues originated from the Haber-Bosch process. Since nitrogen use efficiency is typically less than 50%farm runoff from heavy use of fixed industrial nitrogen disrupts biological habitats. The Haber-Bosch process is one of the largest contributors to a buildup of Reactive nitrogen in the biosphere, causing an anthropogenic disruption to the Nitrogen cycle.
https://www.youtube.com/watch?v=U7l8imwtMkY

Hemp, Fibres


Carbon uptake & storage
Hemp 

Horse Ploughing

Ploughing with Oxen > .
Power - Animal - treadwheel crane, ox, horse, goat, dog >> .
Horses, old tractors, ploughing

Thursday, October 18, 2018

Kew Gardens & Chelsea Physic Garden

Kew Gardens

The role of Kew Gardens during World War 2
http://www.landscapejuice.com/2014/06/the-role-of-kew-gardens-during-world-war-2.html

http://www.kew.org/files/story-kew-gardens-photographs-kew-world-war-ii

http://www.kew.org/science-conservation

http://www.bbc.co.uk/history/ww2peopleswar/stories/52/a2504152.shtml

http://www.telegraph.co.uk/gardening/gardenstovisit/11484731/7-things-you-never-knew-about-Kew-Gardens.html

Kew spring: magnolias, tulips, daffodils, bluebells and blossom trees
https://www.youtube.com/watch?v=bSBhXgJ6z5Y

World Garden - Kew
The Botanical Gardens at Kew
'A picture of springtime in Kew Gardens, of daffodils, bluebells, cherry blossom, of those exotic flowers from the tropics, the Andes, the Himalayas. In these lovely surroundings, Londoners find peace and serenity, while their children play. Rare plants are classified in the Herbarium; crop growers throughout the world are aided in their battle against pests and disease by Kew research.'
(Films of Britain - British Council Film Department Catalogue - 1942-43)
http://film.britishcouncil.org/world-garden
The Green Girdle

In a bid to encourage city-dwellers to leave behind the restrictions of war, 'The Green Girdle' escapes from the austere urban landscape of inner-city London and savours the natural delights of the capital’s rural surroundings.
British Council Film: The Green Girdle


Seasonal Change = Tree Identification
https://www.youtube.com/playlist?list=PL9eARwl3qbFDpDqk1o9pnOlzvqrPwEZsD

Tree Identification playlist page

Keyline, swales, permaculture

P A Yeomans-Keyline in the Kiewa Valley (13 min) 1981 > .
Joel Salatin on Pasture Management and Keyline Design for Grassfed Cattle
https://www.youtube.com/watch?v=UCu9S1AwEwA

Swale - Keypoint - Keyline - clarification > .
https://www.youtube.com/watch?v=IH3x4j_sifA

Keyline design is a technique for maximizing beneficial use of water resources of a piece of land. The Keyline refers to a specific topographic feature linked to water flow. Beyond that however, Keyline can be seen as a collection of design principles, techniques and systems for development of rural and urban landscapes.

In a smooth grassy valley, a location called the keypoint can be found where the lower and flatter portion of a primary valley floor suddenly steepens. The keyline of this primary valley is revealed by pegging a contour line through the keypoint, within the valley shape. All the points on the line are at the same elevation as the keypoint. Contour plowing parallel to the Keyline, both above and below will automatically become "off-contour" but the developing pattern will tend to drift rainwater runoff away from the valley centre and incidentally, prevent erosion.

Keyline pattern cultivation on ridge shapes is done parallel to any suitable contour but only working on the upper side of the contour guide line. This automatically develops a pattern of off-contour cultivation in which all the rip marks left in the soil will slope down towards the centre of the ridge shape. This pattern of cultivation allows more time for water to soak in. Keyline pattern cultivation also enables controlled flood irrigation of undulating land, which further assists in the fast development of deep biologically fertile soil, which results in improving soil nutrition and health.

In many countries, including Australia, it is important to get optimum absorption of rainfall and keyline cultivation does this as well as delaying the potentially damaging concentration of runoff. Yeomans' technique differs from traditional contour plowing in several important respects. Random contour plowing also becomes off contour but usually with the opposite effect on runoff water causing it to quickly shed off ridge shapes and be concentrated in valleys. The limitations of the traditional system of soil conservation, with its "safe disposal" approach to farm water was an important motivational factor in the development of the keyline system.

https://en.wikipedia.org/wiki/Keyline_design


https://www.youtube.com/watch?v=gytyQS6cyjA .

"Why are there so few profitable Permaculture Farms?"

Overview of 10 hectare farm: "Ridgedale Permaculture"
https://www.youtube.com/watch?v=nr5bKpc0x2Q
Keyline design is a technique for maximizing beneficial use of water resources of a piece of land. The Keyline refers to a specific topographic feature linked to water flow. Beyond that however, Keyline can be seen as a collection of design principles, techniques and systems for development of rural and urban landscapes.
https://en.wikipedia.org/wiki/Keyline_design

"Starting a farm with no money"
https://www.youtube.com/watch?v=HXsANNfALus

"Is Regenerative Ag Profitable? Looking at Return on Investments ROI"
https://www.youtube.com/watch?v=-A0uNUN9UG0
https://youtu.be/-A0uNUN9UG0?t=8m39s

"Interview With Jack Spirko About Prepping, Permaculture, and Entrepreneurship"
https://www.youtube.com/watch?v=d_EtvsAS59s

Subtropics - Permaculture & Animal Systems ..

sī vīs pācem, parā bellum

igitur quī dēsīderat pācem praeparet bellum    therefore, he who desires peace, let him prepare for war sī vīs pācem, parā bellum if you wan...