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Saturday, October 8, 2016

IRRI and German equipment company forge a win-win partnership

by Carlito Balingbing, Joseph Sandro, and Reianne Quilloy
Reposted from Rice Today online


In addition to water, fertilizer is also an important input in rice production on the irrigated lowlands of Asia. But, unlike water, which usually flows naturally for even distribution onto farmers’ fields, the uniform application of fertilizer is laborious and difficult.

Substituting fertilizer for salt and sand. In Europe, the POLARO is used to spread salt and sand for better road traction. In Asia, this lightweight machine can be attached to a four-wheel undercarriage for fertilizer and crop care application. (Photo: Isagani Serrano, IRRI)


Fertilizer boosts rice yield when applied in the right amount and at the right time. Applying it uniformly ensures an even distribution of nutrients to the rice crop. However, for years, uniform application has been a big obstacle for most rice farmers and even on the Zeigler Experiment Station of the International Rice Research Institute (IRRI) in the Philippines. Although fertilizer spreaders are commonly available, they usually are designed for use in large fields pulled by big tractors.

In 2014, an informal meeting between Walter Zwick, IRRI collaborator in Cambodia, and Helmut Lehner, owner and managing director of Lehner Agrar GmbH in Germany, led to a consultation with Martin Gummert, IRRI’s postharvest expert. during which Mr. Lehner made an offer to the IRRI postharvest team to test POLARO, a battery-operated mechanical spreader developed by the German company for applying sand and salt onto highways, but it works just as well for fertilizer distribution on small rice farms. Mr. Lehner donated one unit to IRRI to assess its performance against manual fertilizer application.

“We thought that this mechanical spreader had tremendous potential to help smallholder farmers obtain a uniform spread of granular-based fertilizers in the field,” Engr. Gummert said.
IRRI’s postharvest team measured up to 9% yield increase using POLARO to apply urea and complete fertilizer. (Photo: Miriam Gummert, IRRI)












After three cropping seasons, the postharvest team measured up to a 9% yield increase, with urea (46-0-0) and complete fertilizer (14-14-14), when the POLARO spreader was used. It also took less time to apply the fertilizer using the mechanical spreader. Manual application took approximately 2 hours per hectare, whereas mechanical application using a tractor, running at 2 kilometers per hour, took 1.3 hours per hectare. Another field trial was done for one cropping season in Battambang, Cambodia. Compared with manual application, there was a 5–6% yield increase with the POLARO spreader.

Sealing a win-win collaboration


Armed with the field results and suggestions for machine modifications, the IRRI postharvest team organized a roundtable discussion with Mr. Lehner and his team to tackle collaboration strategies. This led to Mr. Lehner’s commitment to improve the design to make the spreader more compatible for use by smallholder farmers. He also provided IRRI with funding for further adaptive testing of the new version of the POLARO spreader in the field.

Realizing that the utility of the machine could be further maximized, Mr. Lehner’s team developed an additional sprayer applicator for pesticides (herbicides and insecticides), which consisted of a spraying boom, a tank, and a pump that fits the modified frame of the POLARO. As with fertilizer application, the spraying of pesticides in Asia is mostly done manually, with very uneven distribution. This can lead to potential negative effects on the environment and the health of the operators.

Mr. Lehner then sent IRRI a free unit of the new spreader/sprayer, that is, a two-in-one system of a fertilizer spreader and pesticide applicator. This new version is being tested and will be used in field trials in 2016.


Precision farming for sustainability in Southeast Asia


Improved fertilizer and pesticide application reduces waste, emission, and pollution and protects the health of operators and consumers. These benefits are key to IRRI’s quest to develop rice production practices that are more environmentally sustainable than the current practices.

Collaborators in the Closing rice yield gaps in Asia with reduced environmental footprints project (CORIGAP) in Vietnam and Thailand quickly realized the tremendous potential of the fertilizer/pesticide spreader when briefed on the results from the IRRI farm. CORIGAP aims to close rice yield gaps through environmentally sustainable means.

“For the 2016 rainy season, we want to use the POLARO fertilizer spreader in our treatment fields and compare it with farmers’ fields that employ manual fertilizer application, and then observe its effect on yield and farmers’ income,” said Ladda Viriyangkura, expert on rice inspection and certification from the Thailand Rice Department. “We are also interested in its added use to improve herbicide application,” she continued.

Additional free units donated by Lehner GmbH to IRRI’s partners in these countries will enable further testing of the spreaders under smallholder farm conditions.


Partnership for sustainable rice production


The partnership between IRRI and Lehner GmbH also benefits IRRI’s partners, who are now able to verify another technology for mechanized rice production with their clients and other rice consumers through more sustainably produced rice.


Engr. Balingbing is a senior associate scientist, Ms. Quilloy is a communication specialist and facilitator of the Learning Alliance, and Engr. Sandro is an assistant scientist at IRRI.

Smallholder farmers develop business models for postharvest services

Reposted from: IRRI News

MAUBIN TOWNSHIP, Myanmar –Farmers from rice-based villages have developed business plans for the sustainable use of postharvest equipment and generating income by providing postharvest services to other farmers.

Eleven farmers, representing three farmer groups from Maubin and Daik-U Townships, created practical business frameworks for threshing, drying, and storage technologies developed by the International Rice Research Institute (IRRI). The plans were formed with assistance from the Department of Agriculture and IRRI's postharvest group.


Through the Learning Alliance (LA), IRRI will lend threshers, solar dryers, and hermetic storage technologies to the farmer groups that will provide postproduction-related services to other rice farmers. The LA is a platform supported by the project, Diversification and intensification of rice-based cropping systems in lower Myanmar (MyRice), and the Australian Centre for International Agricultural Research. The farmer groups will then use the earnings to pay for the equipment through MyRice.

 “If we can prove that the plans we developed are profitable for these farmers, we can use this model to help other smallholder farmers in other regions of Myanmar,” said Martin Gummert, IRRI’s postharvest expert. “MyRice has demonstrated effective postharvest technologies. This is an opportunity to sustain the use of technology that is already tested and found technically feasible. At the same time, this will help other farmers increase the value of their rice by providing access to the technologies.”

Using this approach, which is similar to leasing, IRRI can demonstrate the viability of the business model without the need for an upfront investment. Such an investment is an unrealistic requirement for farmers who have to take considerable risks when trying a new technology.

The farmer groups, which are also LA members, and Dr. Myo Aung Kyaw from the Pioneer Postharvest Development Group, discussed mechanisms to manage the equipment.This Group is one of IRRI’s key partners in Myanmar. They also formed groups to assign roles and responsibilities to ensure proper maintenance of the equipment as well as a practical business plan that provides services to potential clients.

The farmer groups will validate and fine tune the initial business model developed during the April 2016 harvesting season.

Through the LA, MyRice will provide the technical assistance and advice on managerial issues that might occur during the piloting.

“If we can fully develop a business model for at least for one technology, we can use the data as a benchmark to develop more business models for other postharvest technologies that will cater to other interested farmers or farmer groups in Myanmar,” Gummert said.

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