Showing posts with label soil health. Show all posts
Showing posts with label soil health. Show all posts

Wednesday, September 2, 2026

Biochar, Soil Health, and the Sustainability of Palm Oil Productivity

Healthy soil is invariably fertile, but fertile soil is not necessarily healthy. Healthy soil teems with life—such as earthworms and other organisms—that naturally provides nutrients. Continuous use of chemical fertilizers without a corresponding addition of organic matter depletes soil microorganism populations. Over the long term, this causes the soil to harden, reduces its nutrient-supplying capacity, and increases crop dependence on chemical fertilizers. Consequently, production costs rise while land quality steadily declines.

The future of the palm oil industry is no longer solely about increasing production; it is also required to demonstrate that productivity can go hand-in-hand with environmental protection and social acceptance. Palm oil plantations must be grounded in the three pillars of sustainability: generating economic profit, gaining social acceptance, and preserving the environment. These principles also guide the implementation of the Indonesia Sustainable Palm Oil (ISPO) standard. Balanced fertilization—combining chemical (inorganic) and organic fertilizers—serves as one such solution.

These two types of fertilizers serve complementary functions. Chemical or inorganic fertilizers provide nutrients rapidly, whereas organic fertilizers improve soil structure and health, thereby sustaining productivity over the long term. A well-balanced combination of the two can maintain high productivity while ensuring land sustainability. Another equally important factor is the use of superior-quality seedlings that are certified or come from reliable sources with proven quality; if the seedlings are unsuitable, the results will not be optimal, regardless of how well they are fertilized.

Biochar is not a fertilizer, so its nutrient content is very low. While some types of biochar do possess relatively high nutrient levels, these are exceptions or added bonuses. As an organic material, biochar is environmentally friendly and derived from renewable sources. Its use also enhances fertilization efficiency—specifically Nutrient Use Efficiency (NUE)—for both chemical (inorganic) and organic fertilizers. This is because biochar transforms fertilizers into slow-release products, allowing nutrient availability to better align with plant needs; read more details here.

Biochar significantly supports soil health due to its favorable physical, chemical, and biological properties. Physically, it features high porosity and low bulk density; chemically, it offers high cation exchange capacity (CEC), alkalinity (high pH), and high carbon stability; and biologically, it serves as a habitat for microorganisms and stimulates soil enzyme activity. Furthermore, biochar is capable of binding toxic substances. This is due to its strong adsorption capacity, which allows it to capture heavy metals (such as lead or cadmium) and chemical pesticide residues present in the soil. These harmful substances are trapped within the biochar's pores, preventing their uptake by plant roots. For more details on biochar quality parameters, read here.

Biochar application is also a climate solution. Biochar can store carbon for hundreds of years in the soil. Each ton of biochar can store up to 3 tons of carbon / CO2 equivalent. This makes it very possible to get carbon credits. For this reason, biochar producers must use methodologies created by carbon standard institutions such as Verra, Puro, CSI (Carbon Standard International), Isometric and so on. By using biochar, fertilizer application becomes optimal, environmentally friendly and improves social acceptance in the community. Economically, the use of biochar can also be very profitable. So regarding biochar, soil health and sustainable palm oil productivity, biochar is very suitable and relevant so its use needs to be widely socialized and increased.

When the soil is healthy, fertilizer use becomes more efficient. High dosages are not always necessary, yet productivity can still increase because the soil functions naturally. Shifting the paradigm to recognize that sustainable productivity depends on soil health is no longer merely an option, but a necessity. Global markets are increasingly scrutinizing production methods, making environmentally friendly cultivation practices a key factor in the competitiveness of Indonesian palm oil. A model that successfully boosts productivity while lowering production costs—all while preserving the environment for long-term sustainability—naturally serves as an exemplary standard.

Monday, May 18, 2026

The Role of Biochar in Increasing Palm Oil Productivity, Among the Use of Superior Seeds and Replanting

Palm oil productivity continues to be pushed to its most optimal point. This is because it is to meet the increasing needs, especially the mandatory B-50 biodiesel program. Of course, efforts to optimize productivity are not easy and instant. Although the key points for its realization have also been mapped, namely by replanting old palm oils, using superior seeds and intensification, the practice also requires the right method or approach and takes time. Replanting old palm oils is still very slow and has many obstacles, while the use of superior seeds has received more attention and continues to be encouraged. The analogy of using superior seeds is like comparing local cattle and superior breeds. So no matter how well the Javanese cow is cared for, its weight will not match that of the Limousin cow. Likewise with palm oil seeds.

Land intensification efforts through optimizing inputs, technology and modern cultivation methods also still need to be developed. Meanwhile, extensification or land expansion should be avoided or slowed down as much as possible, for more details, read here. Biochar can have an important role in this area of ​​intensification. Apart from the application of biochar it will improve soil health, which is an important prerequisite for plants to be able to produce optimally, it is also very environmentally friendly because the raw material for biochar is from renewable sources, namely biomass and increases fertilization efficiency (NUE = Nutrient Use Efficiency). And even the application of biochar is also a climate solution, namely as carbon sequestration. Optimizing productivity can be done by applying biochar plus using superior seeds using modern and environmentally friendly agricultural methods. So basically optimization is a comprehensive and measurable effort.

Indonesia contributes 25% to the world's vegetable oil supply, making it a key actor in the stability of the world's vegetable oil supply. With this position, any changes in production, export policies and Indonesia's domestic dynamics will directly impact prices and international market balance. Indonesia is currently the largest or number one producer of palm oil in the world, but it is not the best or most productive because its productivity is not yet optimal. Compared to neighboring countries, namely Malaysia, it is still inferior and slightly superior to Thailand, even though geographical factors, namely the climate in Indonesia, are much more supportive. Currently, Indonesia's CPO productivity is around 3.3 tons/hectare, while Malaysia's is around 3.8 tons/hectare, while Thailand's is around 3 tons/hectare.

Yield gap, namely the difference or gap between actual production and maximum production potential, is sometimes quite large. Several main factors that trigger yield gaps include non-optimal environmental factors such as drought conditions, to errors in cultivation practices such as errors in land clearing and planting, as well as inaccuracies in diagnosis and fertilizer recommendations. This yield gap must be minimized so that palm oil productivity can be maximized.

Sometimes the role of biochar cannot be found or seen directly in various efforts to increase palm oil productivity, but the application of biochar is very much in line with this goal. For example, the success of an palm oil replanting program depends, among other things, on the quality of seeds, fertilization, plant population and soil health. Soil health and fertilization factors can be closely related to biochar. And related to biofungicides to treat ganoderma fungus disorders, biochar can be used as a carrier formulated with other elements such as humus, amino acids, humates, hormones and so on. And because the only effective way to control the ganoderma fungus is to introduce its natural enemies in the form of biofungicides based on Trichoderma spp and arbuscular mycorrhizal fungi into the soil. However, there are still many parties who do not have adequate knowledge regarding the application of biochar.

Apart from boosting production, implementing best management practices is also important to meet sustainability standards amidst increasing pressure from environmental issues. And the application of biochar is very much in line with that point. In fact, regarding low carbon palm oil technology in the application of biochar, it is very relevant to the CECC (Controlled Emission Composting Chamber) and for more details on the application of biochar for composting, read here. Meanwhile, the trend of fertilization in palm oil plantations with the application of slow release fertilizer is also very relevant to biochar, for more details, read here

Biochar, Soil Health, and the Sustainability of Palm Oil Productivity

Healthy soil is invariably fertile, but fertile soil is not necessarily healthy. Healthy soil teems with life—such as earthworms and other o...