技术

Irrigation using a Californian network [马里]

Irrigation à partir d’un réseau californien (French)

technologies_1639 - 马里

完整性: 78%

1. 一般信息

1.2 参与该技术评估和文件编制的资源人员和机构的联系方式

关键资源人

SLM专业人员:
SLM专业人员:

Assarki Oumar

Agricultural Competitiveness and Diversification Programme (PCDA)

有助于对技术进行记录/评估的项目名称(如相关)
Good Practices in Soil and Water Conservation - A contribution to adaptation and farmers ́ resilience towards climate change in the Sahel (GIZ)
有助于对技术进行记录/评估的机构名称(如相关)
Deutsche Gesellschaft für Internationale Zusammenarbeit (GIZ) - 德国

1.3 关于使用通过WOCAT记录的数据的条件

编制者和关键资源人员接受有关使用通过WOCAT记录数据的条件。:

1.4 所述技术的可持续性声明

这里所描述的技术在土地退化方面是否存在问题,导致无法被认为是一种可持续的土地管理技术?:

1.5 参考关于SLM方法(使用WOCAT记录的SLM方法)的调查问卷

2. SLM技术的说明

2.1 技术简介

技术定义:

A micro-irrigation system to use water more efficiently and increase yields

2.2 技术的详细说明

说明:

A Californian network is a micro-irrigation system developed in California. The system, which is adapted to work with Malian irrigation systems, uses a pump unit that feeds in water from a river or borehole. The Californian system uses PVC sanitation piping with a diameter of 63 millimetres, sunk 50 centimetres underground.
Technical characteristics of the irrigation system: Pumping: a 3.5-horse-power pump unit with a lifespan of five years and throughput of 36 cubic metres per hour at an average height of 30 metres; fuel consumption: 1 to 1.3 litres of petrol per hour; PVC sanitation piping; two hydrants functioning as water intakes and equipped with Φ50 hose couplings; connection parts (tees, elbows, couplings, reducers); distribution using water jets.

The technical objective is to use water more efficiently and increase yields.
The technique is already used by other developers without the support of PCDA. Yields increase – for example, demonstration plots produce 15 tonnes of potato per hectare compared to 10 tonnes per hectare on control plots. Water consumption is reduced along with pumping costs. The system requires less person-hours and generates higher revenues.

Implementation: Identification of sites either by (i) identifying a demonstration plot in a controlled environment or (ii) identifying plots and developers in the rural environment. In a controlled environment: developers come and visit a demonstration scheme; interested parties submit applications to PCDA; applications are reviewed (conditions: be an actor in a relevant sector, be able to provide staff, have at least three years direct professional experience, and be keen to adopt the innovations put forward by PCDA); PCDA visits sites to assess whether the land is suitable; consultants (study and oversight structures) are contracted to draw up project plans (PCDA funds the consultancy); projects are submitted for approval to the Regional Committee for the Approval of Projects, comprising the governor, banks, consultants, interbranch organisations; following the Committee’s approval, SME or large company projects must then be approved by the National Committee for the Approval of Projects in Bamako – very small businesses are not affected by this step; selected developers are informed and must then pay their contribution; the individual plots are developed – for small projects (5 to 15 million CFA francs) 75% of the investment is given in the form of a PCDA grant; mid-size projects (15 to 50 million CFA francs) receive 50% of PCDA grant, the remainder is provided through bank loans. Large companies receive 75% of the consultancy work (maximum 30 million CFA francs) as PCDA subsidy; a partnership agreement is set up with the Regional Directorate of Agriculture and the Rural Economy Institute to monitor the project; the Rural Economy Institute draws up the demonstration protocols and conducts the monitoring of demonstrations (data collection); PCDA and the consultancies deliver training, provide support and carry out monitoring.
Operation: an agricultural calendar is drawn up; the consultancies provide support throughout the project; consultancies deliver their monitoring reports; local craftspeople are trained in upkeep and repair. The piping has a lifespan of five years.
PCDA promotes innovation, subsidises funding, provides support and conducts evaluation activities. Consultancies conduct studies, take charge of monitoring and reporting, and support developers. Banks/microfinance organisations provide co-financing and loans, and train up developers. Developers part-fund training activities and implement the project.

2.5 已应用该技术的、本评估所涵盖的国家/地区/地点

国家:

马里

区域/州/省:

Mali

有关地点的进一步说明:

Sikasso region (Bamadougou, N’Goroudougou, etc.)

注释:

Five schemes in place in Sikasso town and ten more in the vicinity

2.6 实施日期

如果不知道确切的年份,请说明大概的日期:
  • 不到10年前(最近)

2.7 技术介绍

详细说明该技术是如何引入的:
  • 通过项目/外部干预
注释(项目类型等):

Since 2005

3. SLM技术的分类

3.1 该技术的主要目的

  • 改良生产

3.2 应用该技术的当前土地利用类型

同一土地单元内混合使用的土地::

具体说明混合土地使用(作物/放牧/树木):
  • 农牧业(包括农牧结合)

农田

农田

  • 一年一作
每年的生长季节数:
  • 1
具体说明:

Longest growing period in days: 120; Longest growing period from month to month: August-November

牧场

牧场

注释:

Major land use problems (compiler’s opinion): inefficient use of irrigation water
Livestock density: 1-10 LU /km2

3.4 供水

该技术所应用土地的供水:
  • 混合雨水灌溉

3.5 该技术所属的SLM组

  • 灌溉管理(包括供水、排水)

3.6 包含该技术的可持续土地管理措施

结构措施

结构措施

  • S11:其它
注释:

Specification of other structural measures: micro-irrigation system

3.7 该技术强调的主要土地退化类型

化学性土壤退化

化学性土壤退化

  • Cn:肥力下降和有机质含量下降(非侵蚀所致)
生物性退化

生物性退化

  • Bc:植被覆盖的减少
水质恶化

水质恶化

  • Ha:干旱化
注释:

Main causes of degradation: over abstraction / excessive withdrawal of water (for irrigation, industry, etc.)

3.8 防止、减少或恢复土地退化

具体数量名该技术与土地退化有关的目标:
  • 修复/恢复严重退化的土地

4. 技术规范、实施活动、投入和成本

4.1 该技术的技术图纸

技术规范(与技术图纸相关):

Technical knowledge required for field staff / advisors: high
Technical knowledge required for land users: low
Main technical functions: increase / maintain water stored in soil, water harvesting / increase water supply, promotion of vegetation species and varieties (quality, eg palatable fodder)
Secondary technical functions: increase of groundwater level / recharge of groundwater, increase of biomass (quantity)
Structural measure: micro-irrigation system

4.2 有关投入和成本计算的一般信息

其它/国家货币(具体说明):

CFA Franc

如相关,注明美元与当地货币的汇率(例如1美元=79.9巴西雷亚尔):1美元=:

517.0

4.3 技术建立活动

活动 时间(季度)
1. Identification of sites
2. developers come and visit a demonstration scheme
3. consultants are contracted to draw up project plans
4. approval of projects
5. selected developers are informed and must then pay their contribution; the individual plots are developed
6. an agricultural calendar is drawn up

4.4 技术建立所需要的费用和投入

对投入进行具体说明 单位 数量 单位成本 每项投入的总成本 土地使用者承担的成本%
其它 Total construction 1.0 313049.0 313049.0 100.0
技术建立所需总成本 313049.0
技术建立总成本,美元 605.51

4.5 维护/经常性活动

活动 时间/频率
1. local people are trained in upkeep and repair

4.7 影响成本的最重要因素

描述影响成本的最决定性因素:

Costs and cost effectiveness of the good practice
Potato: production value – 300,000 CFA francs (582 Dollar); cost of production – 161,125,000 CFA francs (313'049 Dollar); profit – 146,125 CFA francs (283 Dollar)

5. 自然和人文环境

5.1 气候

年降雨量
  • < 250毫米
  • 251-500毫米
  • 501-750毫米
  • 751-1,000毫米
  • 1,001-1,500毫米
  • 1,501-2,000毫米
  • 2,001-3,000毫米
  • 3,001-4,000毫米
  • > 4,000毫米
农业气候带
  • 半干旱

Thermal climate class: tropics

5.2 地形

平均坡度:
  • 水平(0-2%)
  • 缓降(3-5%)
  • 平缓(6-10%)
  • 滚坡(11-15%)
  • 崎岖(16-30%)
  • 陡峭(31-60%)
  • 非常陡峭(>60%)
地形:
  • 高原/平原
  • 山脊
  • 山坡
  • 山地斜坡
  • 麓坡
  • 谷底
垂直分布带:
  • 0-100 m a.s.l.
  • 101-500 m a.s.l.
  • 501-1,000 m a.s.l.
  • 1,001-1,500 m a.s.l.
  • 1,501-2,000 m a.s.l.
  • 2,001-2,500 m a.s.l.
  • 2,501-3,000 m a.s.l.
  • 3,001-4,000 m a.s.l.
  • > 4,000 m a.s.l.

5.3 土壤

平均土层深度:
  • 非常浅(0-20厘米)
  • 浅(21-50厘米)
  • 中等深度(51-80厘米)
  • 深(81-120厘米)
  • 非常深(> 120厘米)
土壤质地(表土):
  • 中粒(壤土、粉土)
  • 细粒/重质(粘土)
表土有机质:
  • 中(1-3%)
  • 低(<1%)

5.4 水资源可用性和质量

地下水位表:

5-50米

地表水的可用性:

中等

水质(未处理):

仅供农业使用(灌溉)

5.5 生物多样性

物种多样性:
  • 中等

5.6 应用该技术的土地使用者的特征

生产系统的市场定位:
  • 混合(生计/商业)
非农收入:
  • 收入的10-50%
相对财富水平:
  • 贫瘠
  • 平均水平
机械化水平:
  • 手工作业
性别:
  • 男人
说明土地使用者的其他有关特征:

Population density: < 10 persons/km2
Annual population growth: 2% - 3%
10% of the land users are rich.
50% of the land users are average wealthy.
30% of the land users are poor.
10% of the land users are very poor.

5.7 应用该技术的土地使用者使用的平均土地面积

  • < 0.5 公顷
  • 0.5-1 公顷
  • 1-2 公顷
  • 2-5公顷
  • 5-15公顷
  • 15-50公顷
  • 50-100公顷
  • 100-500公顷
  • 500-1,000公顷
  • 1,000-10,000公顷
  • > 10,000公顷
这被认为是小规模、中规模还是大规模的(参照当地实际情况)?:
  • 小规模的

5.8 土地所有权、土地使用权和水使用权

注释:

The irrigated land is allocated by the chief

5.9 进入服务和基础设施的通道

健康:
  • 贫瘠
  • 适度的
教育:
  • 贫瘠
  • 适度的
技术援助:
  • 贫瘠
  • 适度的
就业(例如非农):
  • 贫瘠
  • 适度的
市场:
  • 贫瘠
  • 适度的
能源:
  • 贫瘠
  • 适度的
道路和交通:
  • 贫瘠
  • 适度的
饮用水和卫生设施:
  • 贫瘠
  • 适度的
金融服务:
  • 贫瘠
  • 适度的

6. 影响和结论性说明

6.1 该技术的现场影响

社会经济效应

生产

作物生产

降低
增加

生产故障风险

增加
降低

生产区域

降低
增加
收入和成本

农业收入

降低
增加

社会文化影响

食品安全/自给自足

减少
改良

冲突缓解

恶化
改良

Contribution to human well-being

decreased
increased
注释/具体说明:

Yields increase. Demonstration plots produce 15 tonnes of potato per hectare compared to 10 tonnes per hectare on control plots. Water consumption is reduced along with pumping costs. The system requires less person-hours and generates higher revenues.

生态影响

水循环/径流

水量

降低
增加

地下水位/含水层

下降
补水
土壤

土壤水分

降低
增加

6.3 技术对渐变气候以及与气候相关的极端情况/灾害的暴露和敏感性(土地使用者认为的极端情况/灾害)

渐变气候

渐变气候
季节 增加或减少 该技术是如何应对的?
年温度 增加

气候有关的极端情况(灾害)

气象灾害
该技术是如何应对的?
局地暴雨
局地风暴
气候灾害
该技术是如何应对的?
干旱
水文灾害
该技术是如何应对的?
比较和缓的(河道)洪水

其他气候相关的后果

其他气候相关的后果
该技术是如何应对的?
缩短生长期

6.4 成本效益分析

技术收益与技术建立成本相比如何(从土地使用者的角度看)?
短期回报:

积极

长期回报:

积极

技术收益与技术维护成本/经常性成本相比如何(从土地使用者的角度看)?
短期回报:

积极

长期回报:

积极

6.5 技术采用

注释:

There is a moderate trend towards spontaneous adoption of the Technology
There has been a good level of replication of the Californian network.

6.7 该技术的优点/长处/机会

编制者或其他关键资源人员认为的长处/优势/机会
Yields increase–demonstration plots produce 15 tonnes of potato per hectare compared to 10 tonnes per hectare on control plots. Water consumption is reduced along with pumping costs. The system requires less person-hours and generates higher revenues.
The technique is already used by other developers without the support of PCDA.

6.8 技术的弱点/缺点/风险及其克服方法

编制者或其他关键资源人员认为的弱点/缺点/风险 如何克服它们?
It is essential for developers to have funds available for their contribution. The cost of projects is often underestimated, which leads to delays in implementation.

7. 参考和链接

7.1 信息的方法/来源

  • 实地考察、实地调查
  • 与土地使用者的访谈
(现场)数据是什么时候汇编的?:

01/07/2012

7.2 参考可用出版物

标题、作者、年份、ISBN:

Manual of Good Practices in Small Scale Irrigation in the Sahel. Experiences from Mali. Published by GIZ in 2014.

可以从哪里获得?成本如何?

http://star-www.giz.de/starweb/giz/pub/servlet.starweb

标题、作者、年份、ISBN:

Technical and economic reference document: Irrigation de la pomme de terre par aspersion à partir d’un réseau californien [Irrigating potato crops using sprinklers fed by a Californian Network], April 2009

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