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Transforming Animal Waste into ‘GOLD’-Case Study on Vermicompost

By : GSWMA

Environmental degradation is a major threat confronting the world, and the rampant use of chemical fertilizers contributes largely to the deterioration of the environment through depletion of fossil fuels, generation of carbon dioxide (CO2) and contamination of water resources. It leads to loss of soil fertility due to imbalanced use of fertilizers that has adversely impacted agricultural productivity and causes soil degradation. Now there is a growing realization that the adoption of ecological and sustainable farming practices can only reverse the declining trend in the global productivity and environment protection. On one hand tropical soils are deficient in all necessary plant nutrients and on the other hand large quantities of such nutrients contained in domestic wastes and agricultural by products are wasted. It is estimated that in cities and rural areas of India nearly 700 million ton organic wastes is generated annually which is either burned or land filled. Such large quantities of organic wastes generate also pose a problem for safe disposal. Most of these organic residues are burned currently or used as land fillings. In nature’s laboratory there are a number of organisms (micro and macro) that have the ability to convert organic waste into valuable resources containing plant nutrients and organic matter, which are critical for maintaining soil productivity. Microorganisms and earthworms are important biological organisms helping nature to maintain nutrient flows from one system to another and also minimize environmental degradation. The earthworm population is about 8–10 times higher in uncultivated area. This clearly indicates that earthworm population decreases with soil degradation and thus can be used as a sensitive indicator of soil degradation. In this report a simple biotechnological process, which could provide a ‘win-win’ solution to tackle the problem of safe disposal of waste as well as the most needed plant nutrients for sustainable productivity is described.

 

Background of Sabarkantha District 

Nearly 80% of the population of Sabarkantha District, Gujarat, resides in rural areas and earns their living through agriculture based activities, animal husbandry and dairying. These livelihood options result in the accumulation of large amount of recyclable organic wastes in the form of cow dung, agricultural crop residues etc. However the lack of waste segregation practices among villagers results in discarding of such organic and recyclable waste along with non-organic toxic waste. As a result, essential raw materials that can be used for preparing nutrient-rich natural manure for farming are lost and farmers are compelled to use chemical fertilizers that result in environmental degradation, are more expensive and increase artificial chemical levels in plants. Furthermore, the absence of a dedicated waste segregation and collection effort also results in the piling up of such waste near rural houses inviting growth of harmful insects and bacteria that affect human health.

Integrated Watershed Management Programme at Sabarkantha District 

Recognizing these opportunity in rural waste management practices of Sabarkantha, the District Watershed Development Unit (DWDU) has taken as a livelihood activity in various project of Batch I,II & III as (Individual or group SHG) for recycling agriculture and animal husbandry waste into nutritional organic manure through the method of vermi-composting.

Fig. 1 : Vermicompost Unit

Fig. 2 : Vermi compost unit with side net

 

Vermi-compost: 

Vermi-composting is a simple biotechnological process of composting, in which certain species of earthworms are used to enhance the process of waste conversion and produce a better end product. Vermi-composting differs from composting in several ways. It is a mesophilic process, utilizing microorganisms and earthworms that are active at 10–32°C (not ambient temperature but temperature within the pile of moist organic material). The process is faster than composting; because the material passes through the earthworm gut, a significant but not yet fully understood transformation takes place, whereby the resulting earthworm castings (worm manure) are rich in microbial activity and plant growth regulators, and fortified with pest repellence attributes as well! In short, earthworms, through a type of biological alchemy, are capable of transforming “animal wastes” into ‘gold’. 

Improved soil physical, chemical and biological properties 

Studies on vermin-compost indicate that it increases macrospore space ranging from 50 to 500µm, resulting in improved air-water relationship in the soil which favourably affect plant growth. The application of organic matter including vermin-compost favourably affects soil pH, microbial population and soil enzyme activities. It also reduces the proportion of water-soluble chemical species, which cause possible environmental contamination.

Process: 

Individuals/SHG beneficiaries has given HDPE bed for vermi-composting, organic waste is collected at a place and treated with adequate moisture. After this treatment, earthworms are mixed with the waste in order to allow them to feed on the matter. Over a short period of time (45 days) the worms break down the organic matter in the vermi-compost unit, and leave behind nutrient rich substance which provides many benefits, for the soil condition of sabarkantha districts which varies from Hilly area hard stony soil to black cotton soil, silty loam to morrhum soil from Khedbrahma to Prantij and Himmatnagar to Bayad.


Fig. 3 : Collection of vermicompost

Fig. 4 : Screening of compost

 

Intervention: 

There are 9 talukas and 23 IWMP projects are being implemented in Sabarkantha district. The vermi-compost units have been taken in all 23 IWMP projects. In Batch I & II projects production of vermicompost has started and utilised by the beneficiaries in their own field. Various trainings were conducted in coordination with KVK Khedbrahma and Maize Research centre Bhiloda to generate awareness among farmers.

 

Table No. 1 Details of Vermi-compost production in all Batches 

Sr.No
Name of Batch
Unit Installed (Individual or SHG groups)
Production of Vermi-Compost Unit from  Installed (Individual or SHG groups)
Total Production of Vermi- Compost (in Kg) for 1 cycles
Selling of Vermi-Compost in local market and village
Remark
1
Batch I
286
209
109934
0
All framers has used in own agricultural land
2
Batch II
180
118
69502
0
All are use the in own field
3
Batch III
57
0
0
0
Production not received

Total
523
327
179436
0



Total production from vermi-compost bed is 179436 kg from batch I & II batch and from batch III production is not yet received. Considering Rs 2 per kg market price of vermicompost, the total implicit income is Rs 3.5 lakh approximately.

 

Table No. 2 Details Crop Production 

Sr.No
Batch
Name of Crop
Nos. of beneficiaries
Total Area cropping (ha)
Approx. Production  (kg/ha)
1
Batch- I & II
Maize
50
22
1180
2
Vegetables
34
14
845


Total/average
84
36
1012


The use of vermicompost has increased soil fertility and reduces the cost of cultivation by substituting chemical fertilisers. With this intervention 84 farmers cultivated 36 ha of land using vermicompost.

Challenges: 

  • The production cycle increased from estimated 45 days to 60 days and in some cases it increased to 90 days. 
  • Less awareness among the community for small activities like sprinkling of water timely, turning of compost upside down to speed up the process of production. 
  • The package of practices given to the members required closer monitoring and identification of training needs. 
  • Less sensitivity towards practicing the package of practices in production during the first cycle resulting into to breakage of cycle, increased cycle period. 
  • Proper use of the vermi-compost and still used the chemical fertilizer along with it. 

 

Conclusion: 

Earthworm serves as “nature’s ploughman” and form nature’s gift to produce good humus, which is the most precious material to fulfil the nutritional needs of crops. The utilization of vermicompost results in several benefits to farmers, industries, environment and overall national economy.

To farmers:
  • Less reliance on purchased inputs of nutrients leading to lower cost of production. 
  • Increased soil productivity through improved soil quality. 
  • Better quantity and quality of crops There is huge scope of promotion of vermicompost in this District. 

DWDU is actively participating for promotion of this green technology and farmers are also gradually interested to convert their farming processes.

Contributors: Sidharth Sing Bisen (Technical Expert); Sunil Patel (MDT Agri)

Promoting Tissue culture in Navsari through IWMP

By : GSWMA

Knowing Tissue Culture: 

Tissue culture is a process that involves exposing plant tissue to a specific regimen of nutrients, hormones, and lights under sterile, in vitro conditions to produce many new plants, each a clone of the original mother plant, over a very short period of time. Tissue culture plants are characterised by disease free growth, a more fibrous, healthier root system, a bushier branching habit, and a higher survival rate.

There are three main steps to the tissue culture process:
  1. STAGE I is the initiation phase. It concerns the establishment of plant tissue in vitro by sterilising the material and initiating it into culture. 
  2. STAGE II is the multiplication phase. At this stage, the in vitro plant material is re-divided and placed in a medium with plant growth regulators that induce the proliferation of multiple shoots. This process is repeated many times until the number of plants desired is reached. 
  3. STAGE III is the root formation phase. It involves the introduction of hormones to induce rooting and the formation of complete plantlets. 

Project Background: 

Kandha Project is located in Vansda Block, Navsari district of Gujarat State which has been sanctioned in the year of 2010-11 by Government of India. The project is a cluster of six micro-watersheds. The total project area of the watershed is about 6725.40 ha, of which 4000 ha has been undertaken to be treated under Integrated Watershed Management Programme (IWMP). The watershed Programme has covered seven villages namely Kandha, Bartad, Bedmal, Kamalzari, Anklachh, Khanpur and Satimal. Tribal communities are the primary inhabitants of the village.

Fig. 1 : Discussion with farmer

 Before intervention: 

Devjeebhai Jhuliabhai Deshmukh who is the beneficiary of Banana Demo Plot belongs to Bedmaal Village(Dungri Faliya). Earlier he was dependent on growing traditional crops like Paddy, Nagli, Pulses, Pigeon Pea using traditional methods. He also used to grow the traditional variety of Banana (Lokhandi variety) from which he was getting an income of Rs.30,000 to Rs.40,000 per annum. The production from one acre (o.4 ha) was nearly 4500-5000 kg. Due to non-uniform bunch formation the market price was nearly Rs 150 per mann (20kg). As a traditional banana farmer he is having a sound knowledge of banana cultivation. To make proper comparison between traditional and tissue culture farming Jhuliabhai was selected for demonstration plot.

 

IWMP intervention: 

A plot of 0.4 Ha. (one acre) was undertaken and then ploughing and levelling was done. Organic fertilizers were bought from Government Co-operative Society to increase soil fertility. Along with organic manure, chemical fertilizers were also used. The variety of Banana- Grane 9 has been planted. The cost of each plant including transportation cost is Rs.15. Thus a total of 750 Plants were bought from Gandevi Market at a total cost of Rs.11,250. These plants were planted in the month of Feb 2013. Drip Irrigation has also been installed in his field by converging with GGRC Department. The total cost of Drip was Rs.54296 out of which the contribution of Rs.19,864 was from IWMP and Rs.34,432 from GGRC respectively.

Monitoring on continuous basis was done by the project team and DWDU. MDT Agri and WDT Agri gave information on regular basis about the adoption of time to time practices. For proper cultivation of banana through tissue culture extreme care must be taken for initial three months of planting regarding timely irrigation and pesticides sprays, otherwise yield will be affected. The soils pH was also checked timely as pH more than 7.5 are not suitable for tissue culture.

Benefits of growing bananas through Tissue Culture Method to the Beneficiary:
  • Plants are absolutely free from diseases and pests, so there is less field mortality. 
  • Early maturity of crop- maximum land use is possible in low land holding areas. 
  • Increase in yield ( nearly 2 MT per acre) 
  • Produces are more uniform in shape and size, thus easily marketable with better price realisation   

 

Flow chart of processes involved:

 

After Watershed’s Intervention: 

After 9-10 months 325 mann (1 mann = 20 kg) of bananas were produced which were sold at a rate of Rs. 230 per mann. Thus after selling 325 mann he has received Rs. 74,750 as total revenue. Hence there is an increase of revenue of Rs.20000 to 25000 per acre for the farmer.

According to Devjeebhai Jhuliabhai Deshmukh, “growing bananas through tissue culture method had allowed efficient use of land and resources, realizing higher yield and net profit, easy practices, improvement in fruit quality, easy and good harvest which have ultimately lead to an increase in income”.  

Fig. 2 : Distribution of sapling

Fig. 3 : Planting of sapling


Fig. 4 : Growth stage of banana

Fig. 5 : Before harvesting

Way Forward: 

A tie-up with KVK Navsari is made to do some research on the stem part of banana for the purpose of making thread. Hence the plot is under direct supervision of KVK. With this successful intervention DWDU is now promoting tissue culture in other project areas. Various training are also being planned to generate awareness about tissue culture among the banana growers. There is a huge scope of tissue culture in near future and DWDU is acting as a dynamic partner for its promotion.

Contributors: Rashmi Sinku (Technical Expert); Rahul Vekariya (MDT Agri); Hardik Desai (MDT Agri); Rashik Ganvit (WDT Agri)

Cultivating the Difference - A Case of Crop Demonstration in Suraj Village

By : GSWMA

Basic village information: Suraj village is located in Becharaji taluka of Mehsana district of Gujarat. The total geographical area of the village is 1195.90 Ha. Generally the region experiences irregular rainfall with an average of 400 mm. The topography of the land is flat with medium black soil.

Integrated Watershed Management Programme (IWMP) had started its interventions in the village in 2009-10 (i.e. Batch I Projects). In IWMP 2 (Becharaji Project), there are 6 villages in which Suraj village is one of them. The total geographical area of the watershed is 5681.70 Ha out of which 5000 Ha was proposed for treatment under IWMP.

Cash crops such as cotton and castor are cultivated approximately in an area of 80 Ha of the village. Here, the average yield of cotton is 500 kg./Ha against the average district production of 640 kg/Ha (source: agri.gujarat.gov.in as on 2009-10). Cotton yield had been declining in this village despite increasing dose of NPK fertilizers every year.

In absence of sufficient knowledge, farmers here were used to practice their own way of farming, which includes

  • Insufficient FYM (Farm Yard Manure) application 
  • Single tillage 
  • High rate of seed application (with the mindset of perceiving higher yields) 
  • Irregular sowing & fertilizer application (high basal dose)

In order to address this issue, an on-farm-trial was taken up in IWMP DPR to demonstrate the benefits of scientific farming of cotton. The agriculture staff of the Multi disciplinary team had organised several Gram Sabhas to motivate villagers to come forward for taking up the on-field-trial of cotton on his farm. The villagers then suggested the name of enthusiastic Shri Nadoda Jagmaal Bhai Juva bhai. He is a progressive farmer of this village having 1.06 Ha of agricultural land. Earlier Jagmaal bhai used to advocate heavy doses of fertilizers and pesticides to enhance crop productivity but did not achieve the required production.

Out of 1.06 Ha, 0.47 Ha of his agricultural land was used for crop demonstration of cotton on his field while leaving the other part for his regular farming. This was done to show the clear difference between the newly adopted scientific farming and the traditional one. He attended all the meetings and trainings related to scientific agriculture practices coordinated with the help of Krishi Vigyan Kendra (KVK), Kherva.

Initially the KVK gave the farmers a detail account about crop demonstration technique and sowing measures. The highlights of training are as follows
  1. During kharif season, deep tillage should be done
  2. 6 to 8 tractors of FYM to be applied on the fields
  3. After applying FYM, once again tillage should be done
  4. Sowing should be done at suitable time
The methodology of crop demonstration goes as follows: “Soil testing was done for major macro and micronutrients. Based on soil testing results fertilizer schedule was prepared (120:90:45 for demo plot & farmer applied 128: 92:45). With the help of a rotavator, crop residues were incorporated into the soil. Sowing was done in the 1st week of June 2012 with a spacing of 5 feet between the rows and 2.5 between plants and the seed rate was 0.3 kg/ha (therefore 0.6kg applied in 0.47 Ha). A basal dose of DAP was then applied to the demo plot (4.5:11.5:0) and farmers plot (36:92:0). The cost of fertilizer for demo plot accounted for Rs 8000/- ( FYM = Rs 6000/- & vermi compost = Rs 2000/-) whereas for farmer plot it was Rs 4000/- which accounts solely for FYM. The source of irrigation was kept same in both the plots.”

Fig. 1 : Shri Nadoda Jagmaal Bhai Juva bhai in front of demo plot

The post harvest comparison is mentioned below:

S. No
Particulars
Demonstration Plot (0.47 Ha)
Farmer’s Plot    (0.59 Ha)
1
Quantity of Seeds (gm)
600
900
1
Crop duration  (in days)
180
180
2
Cotton Balls (No.)
156
73
3
Average weight per cotton ball (gm)
7.17
6.23
4
Cost of cultivation (Rs)
22,010/-
20,670/-

Seed
1240/-
1860

FYM
6000/-
4000/-

Vermi Compost
2000/-
0

Fertillizer
1570/-
2210/-

Irrigation
11,200/-
12,600/-
5
Yield (Kg)
1962
1185
6
Gross return (Rs.)
 (Market Price Rs 63.5/kg)
104967/-
63398/-
7
Net Return (Rs.)
82957/-
42727/-
Comparing Net Return per ha. (Rs.)
176504/-
72419/-

The crop demonstration plot, although less area than its counterpart, not only gave better yield but also provide higher remunerative returns (almost more than double). Having witnessed the results, more and more farmers are coming forward to adopt scientific farming method. The increasing number of farmers query and participation in training also depict the indirect impact of crop demonstration. As of now approximately 25 farmers have shown their interest to adopt scientific farming in their own fields. Further training plan has been made in coordination with the KVK to provide technical input to the interested farmers.

It can be said that crop demonstration under IWMP project in the village has surely made some difference in the cropping practices of the farmers and will continue to inspire in the near future.


Contributors: Desai Iswarbhai (WDT- Agri), Pankaj Raval (WDT-CM), Shri Nadoda Jagmaal Bhai Juva bhai (Beneficiary Farmer), Deepali Solanki (Technical Expert)

Abject Poverty to Agricultural Prosperity in Navapura of Surendranagar

By : GSWMA

Area Profile 

Surendranagar is a Saurashtra region district with 10,489 square kilometers of area. Surendranagar is also known as the "Entrance gate of the Saurashtra region”. 8.63% of the total population of the district belongs to the Scheduled Tribes and 12% belongs to the scheduled Castes.

Navapura Village falls under the Dasada Taluka of the district. Navapura is around 71 Km away from the district town. There are total 54 households in the village and are mainly agriculturists and also have animal husbandry as there secondary occupation.

 

Scarcity of the lifeline 

The entire water requirement of the village from irrigation to drinking water for Human and animals is mainly supplied from the village pond. Due to the siltation and depreciation of the pond bund the storage capacity of the pond is reduced resulting into huge scarcity of the water available for the villagers. In arrival of the situation irrigation support from the pond water has been stopped and thus the farmers practices rainfed agriculture mainly. With this less availability of green fodder for the livestock of the village had affected the milk production of the village. Due to this single crop a year and with less milk production the economical situation of the villagers was also striking the bell slowly.


Intervention 

DWDU Surendranagar has been implementing Integrated Watershed Management Programme (IWMP) in the district and was acting as a district agency for the programme. Sanctioned in the year 2009-10 Navapura village was taken up as project village under IWMP-8 and Wild Ass Sanctuary, Dhrangadhra was appointed as the Project Implementation Agecy (PIA) for the project. IWMP has been working for Soil and Water conservation in a watershed area. As a part of participatory planning De-siltation of the village pond was taken on urgent basis under Entry Point Activity (EPA) head.

 

Outcome 

9193 CM de-siltation was done with in an expenditure of Rs. 3.56 lakhs from IWMP cost and the storage capacity of the village pond was increased to and the bund was strengthened with the excavation. Due to this the availability of water has irrigated near about 80 ha has increased and the total production of cumin were sought highest as near about 600 Qt. from the area the average productivity of the cumin is about 750 Kg/ha which is four times higher than average productivity of the village before the intervention. Out of total household 54 households practicing agriculture in the village and among them 26 farmer are getting irrigation water from the village pond. Before completion of the intervention the average income was near about Rs. 34,000/ ha. from cotton crop and after the availability of irrigation it went up to Rs. 43,500 and cropping pattern of the area has been changed due to availability of irrigation water. It also increased the milk production. Now the availability of fodder for the animal has gone up and it has been observed in increasing of milk production of the village. As per the villages survey, over three – forth of the farmers are found to be benefiting from this De-siltation of the village pond.




Conclusion 

In these two years the project has changed the whole of Navapura from one of abject poverty and underdevelopment to prosperity and on the development path. Today, Navapura is a success story and inspirational model for water conservation measures. These activities have had a major impact on the area; and have changed the face Navapura village. The lost flora and fauna are returning and even the villagers are reaping its benefit. The impact of this project has been manifolds. It has checked soil erosion and has helped the soil to retain its moisture. Also, Fodder and Fuel wood is available a plenty. In fact with each year the prodution has grown and so has the distribution.


“Assessment: The community participation has been the key to the success of Watershed Development Project in the Area. It was ensured all through the implementation of the project that the people’s enthusiasm and interest does not wane away after the initial euphoria. Most importantly, the project functionaries’ from the beginning was a distant spectator, only providing the technical inputs while actual nuisances of design, execution and management was left to the users committee. This micro-level planning has provided people with an opportunity of earning of managing the scheme and also given them the confidence that they can now do the government support. This project has truly been the project of the people, for the people and managed by the people. The project wasteland development project has raised hopes that wasteland can be made fertile and bring about prosperity to the area.”


Contributor: DWDU Surendranagar, Hariom Nirala (Technical Expert)

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