Showing posts with label agroforestry. Show all posts
Showing posts with label agroforestry. Show all posts

Friday, December 3, 2021

Calophyllum Tree and Coconut Tree

Calophyllum trees and coconut trees have something in common, namely that they can grow well in coastal areas, all parts of the tree can be used and bear fruit throughout the year. With the length of the coastline of Indonesia reaching 99,093 km, it is very potential to develop these two plants. The calophyllum tree has non-edible oil but its productivity is almost the same as palm oil or crude palm oil (CPO), so it is very potential for biodiesel production. Whereas palm oil trees are the largest producer of vegetable oil. Why not biodiesel production from Jatropha ? For more detailed answers, read here. Meanwhile, coconut trees which are well known as multi-benefit plants are certainly very strategic and have the potential to be developed, especially now that the coconut tree population continues to decline due to the lack of replanting of old coconut plantations. Unlike the calophyllum tree, all the results are not food products, many processed coconut products are in the form of food products. The need for processed coconut food products continues to increase along with the increasing population. Issues of food and energy can also be overcome at the same time with these two plants.


The productivity of calophyllum is around 30 years, while coconut is longer, reaching around 80 years. Calophyllum tree wood has a high economic value as well as coconut trees. When the productive period of the two plants continues to produce fruit and when productivity decreases or stops, the wood becomes the ultimate product of high economic value. When compared to palm oil trees when their productive age runs out, the wood or trunk in general is still a problem, not even a few are just left in the plantation because it is not economical to process further, more details can be read here. Meanwhile, other forestry woods usually take decades before they can be harvested and there are no other products besides the wood. Of course, this is quite economically difficult and sometimes even not feasible.

Photo is taken from here

Calophyllum trees and coconut trees are also easy and inexpensive to care for, unlike palm oil trees which require a lot of water and fertilizer. Both also support agroforestry on the coast, as well as being a wind breaker. This encourages faster economic growth in coastal areas, and even becomes a tourist destination. Furthermore, for agroforestry systems, one of them can be distinguished based on its function, namely into a production function and a protection function. Production functions such as food production, feed, fuel such as biodiesel, fiber, wood and others. Meanwhile, protection functions such as prevention from damage to environmental resources as well as maintenance of production system such as hedges, water retention, fire prevention, soil and water conservation. 

The choice of plant species is very important in making agroforestry patterns, because mistakes that occur will have a long and detrimental impact. Species that are suitable not only in terms of growth, economic value and adaptability to a particular environment, but also their ability to form an ideal growth structure when growing together with other species on the same land. The choice of this type is very dependent on the wishes of the land owner, the conditions of the place to grow, the economic value and the ease of cultivation.

Friday, November 19, 2021

Calophyllum Inophyllum Plantation Don't Lose With Palm Oil Plantation

Calophyllum inophyllum has high commercial value wood. Forests in Indonesia contain around 4000 species of trees, with 267 of them being traded. Wood from trees of the family Dipterocarpaceae is the most important group such as meranti, keruing, kapur and mersawa. In addition, a number of tree species are also quite important, namely koompasia, palaquium, dyera, callophyllum inophyllum, octomeles sumatrana and gonystylus bancanus (ramin). Callophyllum inophyllum wood is rather light to medium and soft, but dense, wrinkled, to the point of not being able to split. Callophyllum inophyllum wood has two colors, namely gray or pseudo-yellow and brick red with finer veins and straighter fibers. Callophyllum inophyllum wood is classified as durable class II and very durable in sea water. Callophyllum inophyllum wood including commercial wood is often used as boards, beams, poles, flooring, boats, canoes, crates and tables, shipbuilding, railway sleepers, household furniture and so on. Fishing communities on the coast usually use the wood to make boats.

Until now, the potential for callophyllum inophyllum in Indonesia is still not known with certainty, but from the interpretation of Landsat7 ETM satellite imagery in 2003 on all coasts in Indonesia it is estimated that the natural stands of callophyllum inophyllum reach a total area of 480,000 hectares and most of it (about 60%) is in forest areas. Callophyllum inophyllum stands generally grow in mixed forest types, in natural forests with types of ketapang, malapari, waru laut, keben, pandan laut and others. While in planted forests, callophyllum inophyllum grows with acacia, mahogany, eucalyptus, melinjo, jackfruit, duku, durian and others. Callophyllum inophyllum grows closest at a position of 50-1000 meters from the shoreline with very variable tree densities. Nyamplung tree height can reach 25 meters and a trunk diameter of 1.5 meters.

Calophyllum inophyllum oil production, especially for biofuel production, can be done while waiting for wood production. This biofuel production has even become the main activity of this callophyllum inophyllum cultivation because it can be done for decades until finally the productivity of plants decreases, trees are cut down and replaced by new plants. The yield of calophyllum inophyllum oil, which is almost the same as crude palm oil or CPO, which is 5 tons/hectare and does not compete with edible oil, makes calophyllum inophyllum oil very potential to be developed. Biodiesel from calophyllum inophyllum oil also provides an answer to the failure of the jatropha biodiesel program some time ago, for more details read here. With Indonesia's coastline reaching 99,093 km, the production of biofuel from calophyllum inophyllum will be very large as will wood and its processed products. If we compare it with palm oil plantation, when their productive period is over, logging and utilization of palm oil trunks cause many problems, even many are just left in the plantation. Leaving oil palm trunks in the plantation until they are rotten turns out to also cause its own problems, namely as a place for growing larvae that damage coconut trees, read in more detail here. This is of course very different from the calophyllum inophyllum tree, which when the tree is old, the quality of the wood gets better, as well as the selling price. 

In addition, various agroforestry practices can be carried out on the calophyllum inophyllum plantation because it can be mixed-culture and other functions as wind breaker so that other plants will also be protected. The practice of mixed plantation or mixed culture can hardly be done on palm oil plantations so that the output is only one kind, namely fresh fruit bunches (FFB). Meanwhile, with mixed plantations, the output can also vary from food crops such as fruits, tubers and so on. The maintenance costs, especially fertilization, are also very large in palm oil plantations and this is the highest cost component in palm oil plantation operations. To continue to maintain its level of performance, of course, the need for fertilizer for oil palm plantations is very large, while in calophyllum inophyllum plantations it is smaller. The need for water for palm oil plantations is also very large, while in calophyllum inophyllum plantations it can even remain productive on dry soils. 

Of course all efforts depend on the goals to be achieved. Likewise with this calophyllum inophyllum cultivation. In addition to having many advantages compared to palm oil plantations as described above, the calophyllum inophyllum tree also has a number of advantages compared to other wood-producing trees. For wood-producing trees, such as teak, it takes a minimum of 20 years and during that time there is almost no income, so it is economically difficult. While in calophyllum inophyllum seeds are produced throughout the year as the raw material for the biofuel. Palm oil plantations are currently estimated to have reached around 15 million hectares with one of the oil being allocated for biofuel or especially biodiesel, so that if the calophyllum inophyllum plantation is developed, all biodiesel from calophyllum inophyllum oil can be made so that the palm oil plantation does not need to be expanded anymore. The existing calophyllum inophyllum plantations were developed and intensified so that they were sufficient for the required biodiesel production. In addition, the need for wood for various purposes can also be met from the calophyllum inophyllum plantation.

The Failure of Jatropha Biodiesel and the Opportunity of Calophyllum

Experience is the best teacher as the saying goes. And this also applies to biofuels. Don't let failures in the past happen again, because only fools fall into the same hole twice. The production of biodiesel from Jatropha (jatropha curcas) has been widely campaigned to become a national trending topic at that time, but in fact biodiesel from Jatropha is not economical or is still too expensive so the program stops automatically. One of these factors is the low oil yield from Jatropha seeds which is only around 25%, while calophyllum (Calophyllum inophyllum L) reaches an average of 50%. Moreover, the average productivity per hectare of Jatropha curcas is on average less than 10 tons/hectare, while calophyllum averages 10 tons/hectare. With the 50% yield with a productivity per hectare of more than 10 tons/hectare, the resulting calophyllum oil 5 tons of oil per hectare is more or less the same as crude palm oil CPO, making it more economical to produce. With a yield of about 25% with an average productivity of 20 tons/hectare of fresh fruit bunches (FFB), 5 tons of CPO will be produced, the same as calophyllum. Whereas palm oil is also the largest vegetable oil producing plant, so calophyllum oil is also not far from this condition.

 

Biofuel and especially biofuel from vegetable oils are classified as carbon neutral fuels, because they come from plants as a product of photosynthesis that requires CO2, so when burned it will also return the same amount of CO2 to the atmosphere. The use of carbon neutral fuels is very beneficial for the earth's atmosphere, thereby increasing greenhouse gases that increase the earth's temperature. Judging from the oil composition between jatropha oil, calophyllum oil and palm oil, it is also almost the same as the table above. Indeed, the two sources of biodiesel, both Jatropha and calophyllum, will both be carbon neutral fuels or more correctly carbon neutral liquid fuels, but the economic factor will ultimately determine the commercial production. Meanwhile, from the carbon neutral solid fuel group, we can find for example in wood chips, wood pellets, and palm kernel shells (PKS).

The advantages of calophyllum specifically as biodiesel raw material are first, calophyllum oil does not compete with food oil, secondly, this calophyllum plant grows and spreads evenly naturally in Indonesia, regenerates easily, bears fruit throughout the year and shows high survival power to the environment including with high-salinity soils along the coast. Third, the plant are relatively easy to cultivate, either monoculture or mixed culture, this makes a number of agroforestry practices possible. In palm oil plantation this is very difficult to do, so that we find today almost all palm oil plantations are monoculture or plantation of similar plant. Fourth, almost all parts of the plant can be utilized and have economic value, and fifth, the calophyllum plant stand can be useful as a wind breaker and conservation along the coast. Under these conditions, the opportunity for the development of calophyllum for biofuel is getting bigger.

Friday, July 10, 2020

Calophyllum Biodiesel : A New Hope


As a continuation of the previous article entitled "Overcoming Fuel Scarcity in Remote Areas (Indonesian version)", there is another potential that can be a new hope, namely from the Calophyllum inophyllum L. tree. Calophyllum tree produces seeds that can be further processed into biodiesel. Calophyllum biodiesel can be used mainly in remote areas such as used by fishermen and various activities in the area. On a national scale it can also be a diesel oil mixture, as is the case now which uses a mixture of biodiesel from palm oil and diesel oil with the term biosolar (B30 with 30% biodiesel palm oil and 70% diesel oil). A number of advantages of this calophyllum biodiesel are high oil productivity, even equivalent to palm oil which is a vegetable oil-producing crop today (6 tons / hectare / year), can be agroforestry with a number of food crops - which also cannot be done in palm oil plantations, it can be planted on the coast to prevent abrasion and as a wind breaker, the oil produced does not compete with edible oils or food products, and is easier and cheaper to maintain.
 Some time ago the Jatropha tree was also promoted for biodiesel production, but with low productivity and oil yields make biodiesel from Jatropha seeds unable to compete with the price of diesel oil at that time or it would require a very large land area to produce its biodiesel volume target, so that its development stalled. Jatropha is a plant that is programmed as a source of biodiesel other than palm oil, which was programmed at that time. The liquid fuel in the form of biodiesel is indeed easier to use and the processing route is simpler than the production of liquid fuels via (fast) pyrolysis or gasification. But indeed the production of liquid fuels via the pyrolysis and gasification routes can utilize almost all biomass waste, not fixated from certain fruits or seeds.

The biodiesel produced can also be used for electricity generation. Electricity also encourages economic growth in the area, especially the utilization of natural resources around. Utilization of by-products from biodiesel production is also attractive for example for animal feed, briquette or charcoal production, even activated carbon, drugs and textile dyes and glycerol. The use of glycerol is very extensive, for example in the food industry. It is used as a humectant, solvent and sweetener, and can help preserve food. Glycerol is also used as a filler in commercially prepared low-fat foods (for example: cookies) and as a thickening agent in drinks. Glycerol is also widely used in the pharmaceutical and beauty industry.
Based on the Indonesia National Energy Policy in accordance with PP No.5 / 2006, the renewable energy of biofuel groups including biodiesel is targeted to reach a portion of 5% in the national energy mix by 2025. Although it is still low compared to other countries but it certainly has become a good entry point to be continuously improved. Oil wastes from palm oil mills that have high levels of free fatty acids such as PAO (palm acid oil) can also be used for biodiesel production because they are not suitable for food products. As a reference RED II (Renewable Energy Directive) in Europe even targets that almost 30% of the energy sources they use are targeted to come from renewable energy in 2030 and around 80% come from biomass. RED II replaces RED I which ended this year with a target of 20-20-20, namely the use of 20% renewable energy, an increase in energy efficiency of 20% achieved in 2020. Of the 20% renewable energy, biomass also gets a share of approximately 80% . This indicates that renewable energy, especially from biomass such as calophyllum fruit or seeds, will increasingly increase in the coming eras.
Even the history of this plant has been planted since 50 years ago, with its natural distribution on the beach for wind breakers so that crops can be cultivated in the area. Although this plant can still grow well at an altitude of 0-500 meters above sea level with rainfall of 700 mm / year to a very high rainfall area of ​​5000 mm / year. With this reality, calophyllum cultivation on the beach can be encouraged again. With an Indonesian coastline of 99,093 km and many residents living in coastal areas and living as fishermen, biodiesel and agroforestry in calophyllum plantation is a new hope. Even livestock business can be developed because the waste from the oil press or its crude oil can be used for animal feed. And when the tree is no longer productive, the wood can be used as a high-quality shipbuilding material. When calophyllum is expected to be the main source of biodiesel replacing the current position of palm oil biodiesel, so that palm oil can be maximized for edible oil (food products), then there are other plant species namely malapari (Pongamia pinnata L.) projected to be bioavtur as aircraft fuel.

Reject (Non-Standard) Coconut Fruit for Bioavtur / SAF Production

The international civil aviation organization (ICAO) has included non-standard coconuts on the ICAO positive list – ICAO document – ​​CORSIA...