Interactive map of the best practices

on the use of water, land and energy resources,
as well as the environment of Central Asia

Comparison of practices

Название практики Using drip irrigation systems in combination with soil mulching with polyethylene film Drip irrigation of corn in the Gissar Valley
Category Water resources Water resources
Tool Drip irrigation system Drip irrigation system
Field of application
  • Use of water resources
  • Use of land resources
  • Use of water resources
  • Use of land resources
Usability of practice for adaptation to climate change Moderate High
Implemented by K-DEN Farm
NPO “TajikNIIGiM” (“Research and Development Institute of Hydraulic Engineering and Reclamation of Tajikistan” Research and Manufacturing Association)
Used by

Country: Kazakhstan

Province: Almaty region

District: Alakol District

Other settlement: Yntaly Rural District (320 km away from Taldykorgan (region center))

Country: Tajikistan

Province: Districts of Republican Subordination

District: Rudaki

Other settlement: Radzhabov Farm

Local specifics

Foothill area

  • Located in the irrigated agriculture zone;
  • Ground water occurrence below 5 meters;
  • Typical gray soil, surface slope – 0.04.
Practice usage period

Start date: 01.01.2008

End date: 31.12.2010

Start date: 01.01.2000

End date: 31.12.2003

Problem solved through this practice

After disintegration of large agricultural enterprises (state farms), the maintenance of inter- and intra-farm irrigation systems – that were earlier on the balance of state farms – appeared to exceed the technical capacity of small-scale private and owner-operated farms.  Due to this reason, in the majority of agricultural districts the tray irrigation networks got out of order.  The wear of the lion’s share of hydraulic engineering facilities in Alakol District reached nearly 70% leading to water losses associated with crops watering – the analysis showed that 40% of water was lost to filtration and evaporation.  In its turn, that resulted in ineffective and irrational use of water resources and contraction of irrigated land area.  For example, whereas in 2003 water intake for irrigation amounted to 195 mln m3, in 2009 it decreased to 114.8 mln m3 (41.1% drop).

Issue: Low efficiency of irrigation water due to wear of hydraulic engineering facilities/installations (tray irrigation system).

Shortage of irrigation water;
Poor yields;
Low irrigation efficiency;
Eroded soil;
Low income of farmers.

Tools used in the practice

Drip irrigation in combination with soil mulching with polyethylene film

Corn drip irrigation system

Description of the practice and its results

Drip irrigation combined with filming has been widely adopted around the world in vegetable and cucurbits cultivation.  Thanks to long moisture preservation and proper thermal balance achieved under film, deployment of this technology allows reducing the overall need for irrigation water and receiving earlier and higher crop yields.

Actions:

The K-DEN Farm was offered to apply drip irrigation through film cover on the area of 5 hectares in Yntaly Rural District.  The technique was adapted for project site by Doctor of Engineering R.I. Vagapov. The recommended technology is the most available to local farmers and ensures significant saving of irrigation water.

Necessary resources:

1) seeds of vegetable and cucurbit crops;

2) polyethylene film;

3) equipment (DT-75 tractor, seeder, cultivator);

4) labor for preparatory works, sowing and harvest campaigns;

5) expert consultations and training.

Results:

Financial and economic:

The yield of vegetable and cucurbit crops increased twofold compared to two previous years allowing the farm to receive the profit of $12,000/ha in spite of the fact that the whole yield was sold at low price to the local population of Eastern Kazakhstan and Almaty Regions.  In particular, the productivity of vegetable crops amounted to 350-400 dt/ha, and cucurbits – 400 dt/ha.

Technical:

Water saving made 220,040 m3.

Actions:

  • Project design and budgeting, procurement of drip irrigation system;
  • Installation of drip irrigation system, corn planting and cultivation, crop care;
  • Accounting of water and resources.

Results:

Financial and economic:

increased labor productivity and farmer incomes, reduced production costs.

Ecological:

production of ecologically clean goods; prevention of water losses and soil erosion as well as improving soil ecological and reclamation condition.

Technical:

twofold (52%) increase of corn yields compared to furrow irrigation, 51% saving of irrigation water.

Social:

increased wellbeing of local residents due to better agricultural yields; reduced hard manual labor.

Lessons learnt and recommendations made

Lessons learnt:

The practice of drip irrigation in combination with the application of polyethylene film has increased the efficiency of water use and crops productivity as well as reduced labor needs.

Recommendations:

The widespread deployment of water-saving technologies requires the presence of effective financial incentives for at water consumers.

  • Domestic tools (outcomes of research by domestic R&D organizations),
  • Foreign tools (transfer of foreign experience)

Lessons learnt:

Application of drip irrigation ensures higher corn productivity and water saving as well as allows improving soil structure, watering efficiency, etc.

Recommendations:

It is necessary to widely introduce drip irrigation systems to build up the efficiency of water and land resources, reduce manual labor costs and save irrigation water.

Source of practice

Domestic tools (outcomes of research by domestic R&D organizations)

Readiness for implementation

1. Cost of implementation: High

2. Approximate cost of investment per 1 ha:

3. O&M costs: High

4. Expert support: Not needed

1. Cost of implementation: High

2. Approximate cost of investment per 1 ha: $3,500/ha

3. O&M costs: High

4. Expert support: Needed at implementation stage

Brief information on the project

Project title: Integrated preservation of globally significant wetlands as dwelling places of migrating birds.

Project duration: May 2008-Sept 2010.

Project goal and objectives: assessment of agro-economic and environmental efficiency of technology of sprinkling irrigation on vegetable crops; establishment of optimum watering regimes for vegetable crops based on mist sprinkling irrigation.

Project beneficiaries: peasants (farmers) and agricultural producers.

Project implementer: K-DEN Farm

Project title: Drip irrigation of corn in Gissar District.

Project duration: early 2000-late 2003.

Project goal and objectives: introduction of drip irrigation systems for corn; observance of optimal irrigation mode(s) and techniques ensuring 100 dt/ha and above corn yields with minimal energy consumption in the conditions of the Gissar Valley.

Project beneficiaries: land and water users of Yu. Radzhabov Farm

Project implementer: NPO “TajikNIIGiM”.

Funding source GEF/UNDP, K-DEN Farm National budget, NPO “TajikNIIGiM”
Information sources

K-DEN Farm,

Mr. Afrikan Konstantinovich Kim, farm head

(ph.: +7 701 227 27 49, +7 701 672 85 85)

Research report by NPO “TajikNIIGiM”, Dushanbe, 2003, 46 p.

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SIC ICWC

SIC ICWC

Form submission date 30.03.2018 02.04.2018

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