Friday, 2 February 2018

In the past, breeders have slowly improved crop varieties by crossing pairs of plants that exhibit desirable qualities. Now this slow and labor-intensive method is getting a helping hand from molecular biology. Researchers are saving time by examining plant DNA for clues to predict which plant crosses are most likely to be successful in producing a given trait. Genetic modification is another tool used to improve seeds in such a way that they can produce the same or more yield with less water.

Today’s crop protection technologies can also help plants use water more efficiently. Some products have a beneficial effect on root systems, allowing plants to make the most of available water and cope better in dry periods. Plant regulator products are designed to help prevent crop loss when plants grow too tall and collapse. They also provide additional benefits by reducing water needed to grow crops. Other products are specifically designed to protect plants from moderate drought and other stresses by blocking the plant’s response to stress which increases the long-term health of plants and improves farmers’ yields.

Contact us  on +254746300055 / +254738690937 or on Sales@dripsol.com to get a customized drip irrigation

Thursday, 1 February 2018

Increasing water efficiency on the farm

Dripsol Company's best option is to implement solutions that have the potential of increasing the efficiency, equity and sustainability of water use. This will require a shift from the focus on pure “land productivity” without concern for water use to “water productivity,” that is, getting the highest yield out of every drop of water used in agriculture. Resource efficient methods and technology will allow farmers to grow more food with less water while protecting biodiversity.
In many parts of the world, mismanagement is depleting freshwater resources—the blue water in rivers, lakes and groundwater stores—which in turn has threatened freshwater biodiversity and permanently changed patterns of water flow. Agriculture utilizes on average 70 percent of the world’s available fresh water. But this is higher in areas such as the Middle East and northern Africa, where up to 90 percent of freshwater withdrawals are used to irrigate crops.

Through Dripsol company modern Drip Irrigation holds the most promise for increasing food productivity and security, provided it is managed efficiently. Steady irrigation combined with optimum delivery of fertilizers, seed care, crop enhancement and crop protection products can make fields more productive, even with a reliable supply of rain and is crucial to maintain productivity in times of drought. More efficient ways to   irrigate land will save tremendous amounts of water. About 40 percent of water used in irrigation is wasted through unsustainable practices such as field flooding. Modern irrigation systems can drastically reduce the amount of water used in farming by efficiently delivering water directly to plants. This reduces the amount of water lost through surface evaporation by 30 to 70 percent depending on crop and weather conditions.

The second part of the equation comes from the rainfall that infiltrates and remains in the soil, called green water. This is the largest fresh water resource and the basis of rain-fed agriculture. While farmers cannot control how much it rains, they can do a lot to retain rain in the soil. All rain-fed agriculture depends on the soil’s capacity to capture rain water. Heavy rain cannot penetrate parched and crusted soil and just runs off the surface.

Even with optimum soil and water management, farmers will still lose crops to drought and heat if they do not have the best seeds and crop protection to carry them through inevitable dry spells.  Researchers have developed new crop varieties which are more water efficient and tolerant to heat and drought through advances in breeding and biotechnology. Modest measures like conservation tillage practices that improve soil structure by avoiding plowing, mulching to prevent evaporation, and small-scale water harvesting can increase rain water infiltration by as much as 2-3 fold. However, the yields from irrigated farms are often higher than from solely rain-fed agriculture. Thus, farmers must integrate a combination of rain-fed and irrigated agricultural methods to optimize the yields of crops for the water used.

Wednesday, 31 January 2018


Water scarcity has a critical Impact on Food security!

Of the vast amount of water that covers the blue earth, 2.5 percent is fresh water, and only about a third of this resource can be economically available for human use. That is a mere teaspoon in a full bathtub when compared to the total amount of water on earth. Now think about the competing demands on this finite resource—drinking, hygiene, agriculture, energy, and industry in a world of 9 billion people by 2030. It quickly becomes clear that without better water management strategies today, the world is headed for a crisis that will affect every aspect of life.

Already, 80 countries suffer from water shortages that threaten health and economies while 40 percent of the world—more than 2 billion people—does not have access to clean water or sanitation . In some countries access to public water tanks is allowed only once every 45 days, often resulting in rural conflicts over water. Though the effects of water shortage are more severe in the developing world, the United States and Europe haven’t escaped unscathed.

Roughly, a liter of water is required to produce every calorie, so an adequate daily diet requires more than 2,000 liters of water to produce enough food for one person. Of this, 40 percent on global average can come from irrigated agriculture. New factors such as increasing world population and improved affluence will further strain water resources. In addition, the uncertain effects of climate change on drought, floods, and agricultural productivity will exacerbate the situation.The public usually associates water shortages with a lack of drinking water. But global water scarcity has a critical impact on food security. Water is the biggest limiting factor in the world’s ability to feed a growing population and the link between food, energy, climate, economic growth, and human security challenges.

If we continue to apply current water management practices, by 2030 the global agricultural sector will need to double the amount of water used to feed the world With finite freshwater resources on the one hand, and increasing demand, both in quantity and variety of uses, on the other, the need for water resources protection and management has never been greater. The question is how do we meet this challenge without increasing fresh water withdrawal to feed the world? Stay alert with Dripsol Company  as we discuss about water in the Farm in the next Article. Get ion touch with us through sales@dripsol.com / info@Dripsol.com +254(0)746-300055 / +254(0)738-690937.  

Monday, 29 January 2018


                converting to drips.
Converting a conventional spray system to drip can provide a quick return on investment in terms of dollars and drips. Plus, it is the responsible thing to do.  There are a few important concepts you have to keep in mind when converting an existing irrigation system to a drip irrigation system. First, calculate the amount of water you will be using with your new system. You can do this by counting the number of emitters and multiply by the volume of water each is rated at. Convert this number into G.P.M. (Gallons Per Minute); most emitters are rated in G.P.H. (Gallons Per Hour) so divide the number you get above by sixty. For Example: number of emitter’s × flow rate ÷ 60. This will give you the flow of your drip system; now compare this value to the minimum flow your valve will function at. Remote control valves need a certain volume of water to seat themselves so check with the manufacturer. Now that you have checked your valve, select a filter that has the correct screen size for the drip emitters you will be using. It is common to find a pre assembled “Control Zone” that takes care of the filter and the valve. However, it is still important to do your hydraulic calculations; this will help you select the proper control zone. Make sure that you have enough water pressure at the end of the line, this is necessary for the emitter’s to work properly. Most Drip Irrigation manufactures have this data readily available. For most pressure compensated emitters you need a minimum of 10 PSI at the end of the line. After you have pressure tested and flushed your system, it is time to install the emitters. It is a very good idea to use a hole punch that is matched to your emitters. Obviously, a hole that is too large will leak, a hole too small will make installation difficult. It would be smart to check with the manufacture to get specific installation instructions; this will help you install the product more efficiently and save you from any headaches that may occur.

Get in Touch with us on sales@dripsol.com  contacts: +254746300055 / +254738690937

Thursday, 25 January 2018

    PROTECTING OUR WATER THROUGH EFFECTIVE DRIP IRRIGATION METHOD!

While implementing and managing a drip irrigation system to replace less efficient flooding practices and sprinkler applications presents a host of opportunities, farmers are also concerned. It should be noted that a drip irrigation system that manages only water is less complicated to implement than a solution that combines water and plant protection products. For the latter, some concerns are: Will I get the mix of water distribution and application of the plant protection products right? Will I have an even distribution of products throughout my system? Will I cause leakages into the ground water?

“The water scarcity is reflected in the business figures, because any major drought is accompanied by a corresponding reduction in the cultivation areas that we manage,” says customer, there were some droughts, and we reduced our cultivation area by 30 percent. “Without a drip irrigation system, we would have had to reduce our cultivation areas by 60 to 70 percent instead of 30 percent during the droughts. That would have been a catastrophe.”

In fact, drip irrigation provides water-use efficiency of more than 95 percent. That translates to a water-use reduction of more than 60 percent over traditional flooding methods. It’s more efficient, can be automated and is less labor-intensive.

Additionally, these innovative crop solutions could include critical pest control measures such as root-knot nematode or white fly control, as well as effectively managing a range of suitable plant-disease products. By connecting all the right technology and solutions, we reduce incidence and spread of viruses while boosting phytogenic effects. What is the next result? Drip irrigation systems  have the capacity to provide increased crop/fruit size, improved yields and longer shelf life – all of which contributes to a stronger bottom line for Farmers.

We continue to enjoy meeting and working with so many of today’s Farmers, sharing how a strategic Drip Irrigation systems provide a long-term positive return on investment while we also help address the water scarcity problem. It’s a scenario Dripsol Company is proud to share! Happy Farming 2018

For you get get a customized drip irrigation Kit for your Farm, Company's Project or for your green house Don't Hesitate to get in touch with Us. #

CONTACT US ON :sales@dripsol.com / Office Lines +254746300055 or 0738690937





Wednesday, 24 January 2018

2018 Drip irrigation: what you should know

As many readers may already know, drip irrigation is a form of irrigation that uses a system of tubes and emitters to drip water slowly onto the soil surface, or directly into the soil. Although methods of slowly applying water to plants have been around since ancient times, modern drip irrigation using plastic tubes and emitters was developed and patented in Israel by Simcha Blass in conjunction with Kibbutz Hatzerim in 1959.

The most important advantage to drip irrigation is that it is more efficient than traditional irrigation methods. Drip emitters can be placed to deliver water only where it is needed, so water isn't wasted on unplanted areas. By applying water slowly, drip irrigation also allows water to be absorbed quickly into the soil instead of standing on the soil surface. This means that far less water is lost to evaporation than with flood irrigation or sprinklers. Additionally, because water sinks into the soil rather than puddling, there is less loss due to runoff, which makes drip irrigation a good choice for steep terrain. Another way in which drip systems can conserve water is by installing them under a layer of mulch, promoting even greater water savings by further reducing evaporation from the soil. Last but not least, it should be noted that by saving water, drip irrigation also saves the homeowner money.


Drip irrigation has several other advantages. In addition to water, plant roots also need air and when soil pores are completely flooded, roots can actually “suffocate.” The slow application of water by drip systems virtually guarantees a good soil/water environment with a balance of water and oxygen in the soil. Next, weeds don't grow if they don't have water, so they become far less of a problem when water is efficiently targeted to desirable plants by using drip irrigation. As a bonus, this means that herbicide use can be cut back or eliminated, which is better for both the environment and the pocketbook. A final advantage of drip irrigation is its flexibility. It can be installed in a variety of landscapes and, at a relatively low cost, it can be altered and changed as plants grow.

There are disadvantages to drip irrigation systems that should be considered as well. Sediment or bugs that find their way into the tubing can clog drip emitters. In-line filters can be installed to eliminate most of this clogging, but mineral deposits can also clog emitters. There is really no easy way for homeowners to eliminate this, but clogging due to mineral deposits can be delayed by using emitters with a greater flow rate. For example use a 2-gallon per hour (2gph) emitter rather than a 0.5gph emitter, but run it for a shorter time. The faster flow discourages mineral buildup which can cause clogging.

In addition to problems with clogging, drip irrigation systems, with their softer tubing and plastic emitters, are more easily damaged by animals than irrigation systems made of sturdier PVC or metal components. Some dogs seem to delight in chewing on drip tubing, and drip systems also make tempting targets for thirsty rabbits or squirrels. On the plus side, buying drip tubes in shallow trenches or under mulch seems to be effective in mitigating this sort of damage.


If you are considering installing a drip system, putting it on an automatic timer is recommended. An automatic timer provides a consistent watering schedule. With a timer, you provide the exact amount of water you want and there is no forgetting to turn the system on or off.

Something else to consider when planning a drip system is planting zones. Simply put, this means that the same valve should service plants with similar watering needs. You wouldn't want a drip line that waters a vegetable garden to also serve a cactus garden, because their water needs are so different. A simple, inexpensive pressure regulator is also necessary because drip systems require far less water pressure than normal house pressure. Most emitters cannot withstand pressures greater than 40psi and micro-sprinklers cannot function below 10psi (psi stands for “pounds per square inch,” the measurement standard for water pressure).

Don't be left out when people are Planting, Contact us Dripsol Company to get a fully customized drip irrigation for your farm on +2547 4630 0055 / +2547 3869 0937 or on sales@dripsol.com

Tuesday, 23 January 2018


Do you use drip irrigation system on your Farm? Call us today to place your order  for all your drip irrigation solutions.

0746-300-055 or 0738-690-937

Write to us; Info@dripsol.com                                                                                                                                      ; sales@dripsol.com


                           #Happy Farming
                       with  Dripsol Company


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