Showing posts with label Printer. Show all posts
Showing posts with label Printer. Show all posts
Monday, June 19, 2017
Android generate PDF using iText and print to Bluetooth printer example
Android generate PDF using iText and print to Bluetooth printer example
This is the ninth (and final) part of a much longer article published in the journal Science Progress, and which may be found here: http://stl.publisher.ingentaconnect.com/content/stl/sciprg/2014/00000097/00000002/art00001
24. How many people can the Earth support?
It is claimed78 that a population density of 6?10 people per acre might be supported through permaculture, and in excess of the number that our current cereal-based food economy can sustain. Since our ability to grow cereals, in the quantity we do, depends on industrialised agriculture, with its considerable inputs of oil- and gas-based fuels, fertilizers and pesticides, the practice is not sustainable and so the comparison is not strictly valid. We are then left with the question of how many people might be supported by the earth, if permaculture methods were widely introduced. If we assume the lower limit, this means that 15 people can be fed per hectare. Thus, to feed the human population of 7 billion, we would need 467 million hectares of land, or 4.7 million km2. Since we have 150 million km2 of dry land, and around 14 million km2 of arable land, it would appear there is no problem in sustaining the present global population, and that supporting even 9 billion by 2050, or 12 billion by 2100, is feasible. Toby Hemenway, regarded as one of the gurus of permaculture, is less optimistic, and believes that the maximum carrying capacity of the Earth is nearer 2 billion.79 [This is also the number arrived at by Pimentel et al.80, on the basis of the limited resources of energy, water and food available to us, and it seems most likely that it is failing supplies of these key inputs, particularly freshwater, that will reduce and finally limit our population. One is reminded of the four horsemen of the apocalypse: pestilence, war, famine and death, each rider being perceivable in a guise of resource shortages. Since the consequence of consumption is pollution, this too must prove a determinant to the numbers of humans that can live sustainably on Spaceship Earth, as the visionary Buckminster Fuller termed81 our existence].
Other permaculturists are far more sanguine than Hemenway about what might be achieved, in terms of sustaining the global population, and point out that predictions of food shortages are based on limits of the resources that are necessary for modern agriculture, whereas permaculture is based on the interacting and holistic mechanisms of nature, where nothing is wasted and everything is recycled, all elements being returned to the ecosystem, by death, and from which new life can flourish. David Blume claims to have fed up to 450 people on two acres (0.8 ha) of land for 9 years, by the end of which the soil contained 22% SOM, with a CEC of >25 (a measure of its humus content). This amounts to ca 18 m2/person, which might be understood to imply that the current world population of 7 billion could be fed on just 120,000 km2 of land. The key to this success is polyculture, which benefits from the growth of mycorrhizal fungi and less solar saturation82. Blume has described this technique as restorative agriculture, and he believes that there is, correspondingly, no immediate limit to the number that can be fed on Planet Earth, and that ethanol fuel, produced on the local scale could meet all our energy needs including electricity production and obviate the need for crude oil. Hemenway has spoken83 on the subject of: How Permaculture Can Save Humanity and the Earth, but Not Civilization, which may initially sound like an oxymoron. It is in fact a rather more subtle proposition, to the effect that while permaculture cannot sustain the present global economy and global civilization with a population of 7 billion people, it might support a lesser number of up to 2 billion, but, of necessity, its practices mean living in small communities. Thus, the civilization that permaculture could sustain is a globe of villages, not the global village. The principles of permaculture are central to the growing community-based Transition Towns movement59.
Conclusions.
As we have seen, the subject of land degradation is complex. A significant part of this complexity lies in establishing a clear link between the degree of degradation principally from soil erosion and declining crop yields, since the latter can be masked by the application of fertilizers to improve soil productivity, even in cases where the soil has been significantly degraded. Irrigation is a key factor too. Most determinations of the extent of land degradation (e.g. GLASOD) have been made on the basis of expert judgement and perceptions, as opposed to direct measurements of this multifactorial phenomenon. More recently, satellite-based remote sensing measurements have been used to provide some overview of the global situation. Globally, the amount of biomass was measured to increase by 3.8% during the years 1981?2003, which is thought due to the fertilization effect of rising atmospheric CO2 concentration. However, 24% of the global land area suffered some degree of degradation over the same period. Hence, there are regions of greening while elsewhere, browning has occurred. It appears that while long-term trends in NDVI derivatives are only broad indicators of land degradation, taken as a proxy, the NDVI/NPP trend is able to yield a benchmark that is globally consistent and to illuminate regions in which biologically significant changes are occurring. Thus attention may be directed to where investigation and action at the ground level is required, i.e. to potential hot spots of land degradation and/or erosion.
The term sustainable agriculture has been described as an oxymoron, on the basis that by its very nature, agriculture is ultimately unsustainable84. It is not simply the degradation of the soil, or the loss of biodiversity that are at issue, but that the external energy inputs amount to perhaps ten times that actually consumed in the food itself. In the absence of a cheap and plentiful supply of crude oil (and the fuels, pesticides and herbicides that are derived from it), cheap natural gas (from which nitrogen fertilizers are made), and mined phosphate rock (used to make phosphorus fertilizers and mined using machinery powered by fuels refined from crude oil), the present industrialized global agricultural mechanism would be impossible, and it is only through the latter that the global human population has risen to its present number. Projections about future population numbers tacitly assume that these inputs will prevail into the future, when all evidence is that the age of cheap oil and gas is drawing to a close. It is very likely that the present system of large-scale industrialized agriculture will not survive, and humans will return to growing food on smaller areas, including the adoption of urban permaculture, as happened in Cuba when its bestowals of cheap fuels, and other agricultural inputs (pesticides, herbicides, fertilizers) from the Former Soviet Union were curtailed by the collapse of Communism2.While in principle, a permaculture approach can be applied on all scales (from the small plot to the full field), it cannot be adopted as a substitute for industrialized modern monoculture crop production since it is implicitly holistic. Accordingly it is not possible to separate our growing of food from other aspects of community, and so to adopt the design principles of permaculture for our food production, we must adapt all other lifestyle elements as an underpinning and simultaneous part of the process.
As fuel prices rise, and actual shortages of fuel ensue, long-distance mass transportation of food will no longer be economic or feasible, further driving food production at the local level, as a means to achieve food security and community resilience. The loss of soil organic matter (SOM) is a critical factor both in soil erosion and in the loss of soil productivity, the latter from the loss of soil (depth) per se, and a decline in the structure, level of nutrients and hence the innate fertility of the soil. Thus, by increasing the SOC, the structure of the soil is improved, which increases its holding capacity for water, and allows better drainage, hence there is more groundwater and less flooding, while droughts are mitigated. The agricultural productivity of the soil is heightened, enlarging crop yields, and soil erosion is attenuated, especially if the ground is also covered by mulching or with cover crops. Degraded lands may be restored in their production through increasing their SOC content, giving better soil, and water quality. The improved soil structure leads to a better retention of water and nutrients, and smaller inputs onto the farm of oil-based fuels, fertilizers, pesticides and herbicides, while biodiversity is enhanced. The term biodiversity does not only refer to what is visible above the ground, but also to the roots systems of plants, and their accompanying fungal rhizosphere which is an essential part of the soil food web. The importance of rebuilding the soil food web2 the ecosystem of microbes, and visible creatures that dwell in soil is central to maintaining food production in perpetuity, i.e. achieving a system that is truly sustainable.
The Chikukwa project shows that by using low tech methods, even highly degraded land, with severely eroded soil can be brought back to life - and with very little money, but a good design. This is not a quick-fix strategy, and has taken over two decades to come to achieve; however, it is a sustainable landscape, which is the more important element. In part it may appear that the case for catastrophic land degradation through soil erosion, and an according threat to the survival of humanity has been overstated, although the rising human population will increase demand inexorably for what the soil can provide. It must be stressed, that the productivity of much agricultural land is maintained only through those inputs, of oil and natural gas (from which fuels, pesticides, herbicides and fertilizers are sourced), and irrigation water, which are vital organs of current industrial food production. Therefore, on grounds of stabilising the climate, preserving the environment, and ensuring the robustness of the global food supply, maintaining and building good soil, in particular improving its SOM content and hence its structure, is highly desirable. In particular, those regions of the world that are significantly degraded are unlikely to support an appreciable population increase (e.g. Africa, whose population is predicted70 to grow from its present1.1 billion to 4.2 billion by 2100) in which case a die-off or mass migration might be expected, if population limitations are not included in future plans to achieve sustainability and food security.
The latter figure should be placed in the context of a total70 world population of almost 11 billion by 2100, nearly 40% of which would therefore be African. It is more likely, however, that a constraint on the size of future populations will be imposed by an insufficiency of oil, gas and therefore food, to sustain the growing multitude. Indeed, rather than the number of humans on Earth increasing throughout the present century and probably beyond, there are various analyses which indicate instead that the population will peak at some stage before 2100. It is probable that industrial populations will soon peak85, with the developing nations following suit around 40 years later as they try to emulate their current industrial counterparts. The population of Europe has been estimated85 to peak in 2025, with the world population peaking at around 8.5 billion around the year 2050. However, a critical loss in the global oil (and hence, food) supply could precipitate a more immediate and rapid decline in human numbers.
References.
(1) http://www.gutenberg.org/files/37957/37957-h/37957-h.htm
(2) Rhodes, C.J. (2012) Feeding and healing the world: through regenerative agriculture and permaculture. Sci. Prog., 95(4), 345-446.
(3) Bai, Z.G. et al. (2008) Proxy assessment of land degradation. Soil Use and Management. 24, 223-234.
(4) Bai, Z.G. et al. (2008) Global assessment of land degradation and
improvement 1. Identification by remote sensing. Report 2008/01, ISRIC, Wageningen.
(5) Adams, C.R. and Eswaran, H. (2000) Global land resources in the context of food and environmental security. In: Gawande SP, editor. Advances in Land Resources Management for the 20th Century. New Delhi: Soil Conservation Society of India, 35-50.
(6) UNEP (2008) Africa: atlas of our changing environment. Division of early warning and assessment (DEWA) United Nations Environment Programme (UNEP). Nairobi 00100, Kenya.
(7) Snel, M.and Bot, A. (2003) Draft paper: suggested indicators for land degradation assessment of drylands. FAO, Rome.
(8) Agro-ecological zoning and GIS application in Asia with special emphasis on land degradation assessment in drylands (LADA). Proceedings of a Regional Workshop, Bangkok, Thailand1014 November 2003. FAO, internet website: ftp://ftp.fao.org/agl/agll/docs/misc38e.pdf, accessed July 1, 2008.
(9) Dobie, P. (2001) Poverty and the drylands. United Nations Development Programme, Dryland Development Centre. Nairobi, Kenya.
(10) Kapalanga, T.S. A review of land degradation assessment methods. http://www.unulrt.is/static/fellows/document/taimi-1-.pdf
(11) Eswaran, H., Lal, R. And Reich, P.F. Land degradation: an overview. http://soils.usda.gov/use/worldsoils/papers/land-degradation-overview.html
(12) http://www.fao.org/nr/land/degradation/en/
(13) Stocking, M. (2001) A handbook for the field assessment of land degradation. Earthscan Publications U.K.
(14) Rhodes, C.J. (2008) The oil question: nature and prognosis. Sci Prog. 91(4), 317-375.
(15) Rhodes, C.J. (2013) Peak phosphorus peak food? The need to close the phosphorus cycle. Sci Prog. 96(4), 109-152.
(16) Blanco, H. and Lal. R. (2010) Tillage erosion. principles of soil conservation and management. New York: Springer. ISBN 978-90-481-8529-0.
(17) Committee on 21st Century Systems Agriculture. Toward Sustainable Agricultural Systems in the 21st Century. National Academies Press; 2010 ISBN 978-0-309-14896-2.
(18) Nîr D. M. (1983) A geomorphological agent: an introduction to anthropic geomorphology. New York: Springer. p. 121122. ISBN 978-90-277-1401-5.
(19) Intergovernmental Panel on Climate Change (IPCC) (1995). Second Assessment Synthesis of Scientific-Technical Information relevant to interpreting Article 2 of the UN Framework Convention on Climate Change, p. 5.
(20) Pruski, F. F. and Nearing, M..A. (2002) Runoff and soil loss responses
Available link for download
Sunday, November 29, 2015
Epson R290 Printer Blink Reset
Did you know that Cartridge original R290 chips have a system that calculates the number of print-outs that we have done?, After reaching the maximum limit of the printer cartridge will require replacement.
It also happens in R290 infusion systems, infusion systems are implemented combine chips, which are equipped with switches / switch on top of the cartridge.
It also happens in R290 infusion systems, infusion systems are implemented combine chips, which are equipped with switches / switch on top of the cartridge.
The function of this switch is to reset the print cartridges if volume requires replacement cartridges, meaning we deceive R290 printer as if we had to replace with a new cartridge.
Note: almost all Epson printers using the latest type of chip that was hardly to be modified, in contrast to previous types such as R230, R250, C67, etc., which reset it can be done autonomously, for the newest types reset is performed with the help of user / the user.
Maybe you've experienced while printing, it suddenly stopped and two printer indicator light blinks alternately lit (blinking).
Here's How to reset cartridge R290:
- Download Resetter Tool for Epson R290 here
- Open the Printer Cover
- Remove the power cable and USB printer cable
- Change the date of your PC into a dated April 1, 2008
- Run Resetter Tool for Epson R290
- Begin reset your printer with Resetter Tool for Epson R290
Good luck
Saturday, November 28, 2015
How to Fix Canon MP258 error P10
This time we will be sharing about How to Fix Canon MP258 error P10. Perhaps your friends all there have been many who come across this damage. Letus look at How to Fix Canon MP258 error P10.
How to Fix Canon MP258 error P10:
Erroron MP258 Canon P10 can usually be resolved by replacing one or more of the following: spare part
CartridgePG810 or CL811 (both).
CartridgeUnit complete withcablehead. (House ofCartridge)
LogicBoard. (the printermainboard)
Reviewof the easiestfirststartingfrom the last cartridge to the logic board. So a littlesharingof usaboutCanonMP258errorP10
May be useful.
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Printer
Repair Clog Epson Printer Head
Head clog or writing does not come out when the print is a common problem faced by all users of the printer includes all of us. One of the printers that often have problems head is clogged Epson head. And this time we will discuss on How to Repair clogged on Epson Printer Head.
Causes of Clogged Head on Epson Printers:
1. Epson printers are rarely in use.
2. Epson Printer maintenance is rarely done (for example, the print head cleaning).
3. Frequently changing dressing types and brands of ink epson
4. Too late to refill the ink, resulting in overheating / heat on epson printer head.
Tools for Addressing Head Buntu on Epson Printers:
1. Cleaning fluid head (head cleaner), the brand is up to you.
2. Injections are equipped with a hose to the nozzle head epson
3. Tissue
Here's How to Repair Clogged Head on Epson Printer:
1. Prepare injection containing 5ml head cleaning fluid and tissue that has been in the fold, and insert the rubber nozzle on the injection.
1. Epson printers are rarely in use.
2. Epson Printer maintenance is rarely done (for example, the print head cleaning).
3. Frequently changing dressing types and brands of ink epson
4. Too late to refill the ink, resulting in overheating / heat on epson printer head.
Tools for Addressing Head Buntu on Epson Printers:
1. Cleaning fluid head (head cleaner), the brand is up to you.
2. Injections are equipped with a hose to the nozzle head epson
3. Tissue
Here's How to Repair Clogged Head on Epson Printer:
1. Prepare injection containing 5ml head cleaning fluid and tissue that has been in the fold, and insert the rubber nozzle on the injection.
2. Set the head unit position into the printer with the software or manual, then take the cartridge and unplug the printer power.
3. Slide Head to the edge, then put a tissue paper roll evenly in front of the printer.
4. Plug the hose nozzle on a pole that headnya dead-end Epson printers, and then pull inject up to 10ml, injection press slowly until the liquid runs out.
3. Slide Head to the edge, then put a tissue paper roll evenly in front of the printer.
4. Plug the hose nozzle on a pole that headnya dead-end Epson printers, and then pull inject up to 10ml, injection press slowly until the liquid runs out.
5. If the clog ink resulting frozen head stuck in the nozzle was out on the tissue, then the nozzle cleaning process has been successful.
6. Replace the cartridge epson ink already loaded, Perform head cleaning and print Nozzle check pattern in software / manual. And the head stuck on epson been resolved.
Similarly, an explanation of How to Cope Head Buntu on Epson Printer, may be useful!
6. Replace the cartridge epson ink already loaded, Perform head cleaning and print Nozzle check pattern in software / manual. And the head stuck on epson been resolved.
Similarly, an explanation of How to Cope Head Buntu on Epson Printer, may be useful!
Goodluck
Friday, November 27, 2015
Epson R230 Printer Blink Reset
This time I will explain step by step how to reset printer Epson R220 and R330 type. because both types above possessed the same software and how to reset the blinking on both printers.
The steps to reset printer Epson R220 and R230 follow below:
- Download R220/R230 Adjustment reset tool here or with dropbox here.
- After successfully downloaded "Extract" the downloaded file, it is suggested you disable the antivirus, because there are some anti-virus program that detects when the program is not dangerous.
- Extract in a folder, first open the file "PC DATE SETTING" adjust the computer date as shown as "12/01/2006"
- After the PC has a date be set in a state of the printer connected to pc and alive, run the program resetter "APSPR220230_Ver12" which is in the folder.
- Click "accept", on the available options select the appropriate printer model of your printer type eg "R230". The second box select "Auto Selection". In the third box select "Asia" click "ok"
- After the new window opens click on the tab "Maintenance" under it select the "Waste Ink Pad Counter" and on the right click button "Reset" notice to turn off the printer. turn off the printer and click OK.
- Turn on the printer and press the "Check" when successfully blinking on the printer will die on the computer screen appears as shown below.
- Once successful, return the setting your computer date to normal .... good luck and good luck
Epson R230 Printer Blink Reset
Hopefully this tutorial helpful and useful for you all. If you have any questions please leave a comment in the box.
Good luck
Epson R230 Printer Blink Reset
Good luck
Epson R230 Printer Blink Reset
How to fix Canon MP258 Printer
How to fix Canon MP258 Printer Error E16 - Here's More Reviews on How to Fix E16 Error Printer Canon MP258. These events may be quite confusing for who has never experienced it. OK just see How to Cope with E16 Error On Canon MP258 printer belowEarly indications:
When the printer is turned on the LCD panel shows the number 1 and looks OK, but after the print command, it will display the E16 error on this MP258. Here are pictures that appear on the screen:
When the printer is turned on the LCD panel shows the number 1 and looks OK, but after the print command, it will display the E16 error on this MP258. Here are pictures that appear on the screen:
How to Cope with Error E16 MP258:
If the E16 error appeared in the picture above, or is usually accompanied by light blinking of alarm and indicator light colors.
Mean color cartridge need reset (having run out).
How to overcome them:
press the STOP / RESET along with COLOR / STAR button for a long time (5-15 sec) to rotate the LCD panel, then release.
If the error appears again E13 / 16, meaning the black cartridge also need to be reset (having run out), and the picture is as follows and is usually accompanied by alarm and indicator lights blink black cartridge:
Mean color cartridge need reset (having run out).
How to overcome them:
press the STOP / RESET along with COLOR / STAR button for a long time (5-15 sec) to rotate the LCD panel, then release.
If the error appears again E13 / 16, meaning the black cartridge also need to be reset (having run out), and the picture is as follows and is usually accompanied by alarm and indicator lights blink black cartridge:
Same way: press the STOP / RESET along with BLACK / STAR bottom for a long time to turn the LCD panel, then release.
Completed, MP258 printer error E16 which will be normal again.
Note:
This often occurs when the cartridge runs out and then installed again finished refilled. Any new printer especially for small new Catridge, will definitely have a problem or error such as this. It is based on the experience that I have experienced
Thus How to Fix E16 Error Printer Canon MP258 Hopefully useful.
Thus How to Fix E16 Error Printer Canon MP258 Hopefully useful.
Thursday, November 26, 2015
Epson L110, L210, L300, L350 and L355 Ink Level Reset
You are the user of Epson L110, L210, L300, L350 and L355? We trick this time you should try. Experience this time is about How to Reset Ink Level Epson L110, L210, L300, L350 and L355 without SN ID Inks. Let's read this the post.
Epson Printer Series L110, L210, L300, L350 and L355 are an official of the vendor printer Epson infusion. If the Ink Level Epson L110, L210, L300, L350 and L355 show the position vacant / empty, then usually you have to enter SN ID listed at Epson Ink bottle.
Now the trick is about How to Reset Ink Level Epson L110, L210, L300, L350 and L355 without SN ID Inks. So you no longer need to buy some ink when the SN ID Ink Epson Ink Level L110, L210, L300, L350 and L355 show the position vacant / empty.
How to Reset Ink Level Epson L110, L210, L300, L350 and L355 without SN ID Ink:
- Download Program Ink Level Reset Epson L110, L210, L300, L350 and L355 by google drive link here, dropbox link here.
- Ink level reset program is called WIC Reset Utility. Install the program on your computer. The trick: double click on WIC (x32). Exe => Next 4x => Install => Finish.
- After Reset Utility Run WIC you have installed. Do not forget your printer should be switched ON and connected to the computer.
- Keep in mind: WIC Program can only be reset Utility Epson Ink Level L110, L210, L300, L350 and L355 the empty marked with "FUN".
- After the WIC Reset Utility in the open, select the type of your Epson printer. Then click Reset Inks ==> Continue: click YES ==> Click Done.
- After that, Turn off the Epson L110, L210, L300, L350 and L355 you. And then turn it back on, then you'll Epson Ink Level reset and ink level full again without having to enter the ID code SN Epson Original Ink.
Good luck
Epson L110, L210, L300, L350 and L355 Ink Level Reset
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