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1

Ahmad, Tanveer, Sumathi Sethupathi, Jun Jie Lim, and Kantha Devi Arunachalam. "Production of Biochar using Oil Palm Fiber for Ammonia Removal: Process Description and Economic Analysis." Journal of Advanced Research in Micro and Nano Engineering 34, no. 1 (2025): 43–52. https://doi.org/10.37934/armne.34.1.4352.

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Oil palm fiber (OPF) derived biochar was feasible to be used as an adsorbent in removing pollutants from wastewater, especially ammonia. OPF had shown a significant performance in the removal of ammonia from aquaculture wastewater which is comparable to other studies and commercially available biochars. This study focuses on developing a process flow diagram for an up-scale production of OPF biochar and the economic analysis of the production plant. The process flow diagram includes the transportation, shredding, carbonization, sieving, cooling, and final storage of OPF biochar. Estimated cost
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Kaewtrakulchai, Napat, Masayoshi Fuji, and Apiluck Eiad-Ua. "Catalytic deoxygenation of palm oil over metal phosphides supported on palm fiber waste derived activated biochar for producing green diesel fuel." RSC Advances 12, no. 40 (2022): 26051–69. http://dx.doi.org/10.1039/d2ra03496d.

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Xia, Lu, Bingqin Zhao, Ting Luo, et al. "Effects of Polyacrylamide, Biochar, and Palm Fiber on Soil Erosion at the Early Stage of Vegetation Concrete Slope Construction." Sustainability 15, no. 7 (2023): 5744. http://dx.doi.org/10.3390/su15075744.

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The goal of this research is to investigate strategies to increase the erosion resistance of the slope surface during the early stages of vegetation concrete construction, as well as to offer a scientific foundation for improving vegetation concrete formulation. Simulated rainfall experiments were carried out at 2 different slope gradients (50° and 60°), 2 different rainfall intensities (60 and 120 mm·h−1), and 4 treatments (CK-no additive, 0.4% P-polyacrylamide, 4% C-biochar, and 0.4% F-palm fiber). PAM, palm fiber, and biochar significantly reduced the initial runoff time of the vegetation c
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Rahayu, Muji, Amalia Tetrani Sakya, Andriyana Setyawati, and Bayutama Rahmawan. "Growth of mint (Mentha spicata L.) on various biochar and liquid organic fertilizers." E3S Web of Conferences 467 (2023): 01017. http://dx.doi.org/10.1051/e3sconf/202346701017.

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Climate change has an impact on plant growth, including mint. Mint grows optimally in environments with low temperatures and high humidity. Erratic climate change has the potential to reduce mint growth. Biochar is a soil enhancer that can improve soil fertility and soil water availability. Liquid Organic Fertilizer (LOF) is able to provide the nutrients needed by plants so that it has the potential to increase mint growth. This research was conducted in August 2022 - June 2023 in the greenhouse of the Agriculture's Faculty, Sebelas Maret University, Surakarta. The study used a factorial Rando
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Mohamed, Mustakimah, and Suzana Yusup. "A review on sustainability and quality of biochar production from oil palm biomass in Malaysia using thermal conversion technology." E3S Web of Conferences 287 (2021): 04011. http://dx.doi.org/10.1051/e3sconf/202128704011.

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Oil palm empty fruit bunch (EFB), mesocarp fiber (MF), palm kernel shell (PKS), oil palm trunk (OPT) and oil palm frond (OPF) are the common solid lignocellulosic biomass generated from oil palm industries. A palm oil plantation was estimated to generate 36.5 ton of dry biomass in each hectare every year which suggesting the abundancy of these wastes. Feedstock feasibility and common properties as a carbon-rich material, have initiated an interest to utilize these biomass for biochar production. This paper provides a review on the developed thermal conversion technologies to synthesize biochar
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Samanhudi, Muji Rahayu, Amalia Tetrani Sakya, Gani Cahyo Handoyo, and Bramantyo Bagus Priambodo. "Growth and yields of some peanut varieties with application of palm fiber biochar." E3S Web of Conferences 467 (2023): 01018. http://dx.doi.org/10.1051/e3sconf/202346701018.

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Climate change negatively affects the growth of crops, including groundnuts. Groundnuts are susceptible to short-term weather changes, as well as climate change. Climate change can reduce groundnuts production because it affects soil fertility. Biochar is a kind of soil enhancer that can increase soil fertility. This study aims to determine the appropriate dose of palm fiber biochar for the growth and yield of various varieties of groundnuts. This research was conducted in July - December 2022 at the Experimental Field of the Faculty of Agriculture UNS Jumantono, Karanganyar. The study used a
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7

Ahmad, Tanveer, Sumathi Sethupathi, Mohammed J. K. Bashir, and Sin Ying Tan. "Evaluation of various preparation methods of oil palm fiber (OPF) biochar for ammonia-nitrogen (NH3-N) removal." IOP Conference Series: Earth and Environmental Science 945, no. 1 (2021): 012020. http://dx.doi.org/10.1088/1755-1315/945/1/012020.

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Abstract The aim of this study is to develop a oil palm based biochar for the selective removal of NH3-N in low concentration from aquaculture wastewater. In this study, three different preparation methods of biochar were evaluated for the adsorption of NH3-N from synthetic aquaculture wastewater. The three methods are pyrolysis, activation with acid before pyrolysis and activation after pyrolysis with numerous oxidizing agents. In the 1st method, various biochars have been prepared at different pyrolysis temperatures (300 – 500 °C) and holding time (0.5 – 2 hr). The maximum removal efficiency
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Marhani, Asmiaty Sahur, Sartika Laban, and Yunus Musa. "Characterization of Biochar Empty Fruit Bunches OPEFB at Various Temperatures and Burning Time." Journal of Experimental Biology and Agricultural Sciences 10, no. 3 (2022): 599–606. http://dx.doi.org/10.18006/2022.10(3).599.606.

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Oil palm waste (OPW), comprising mainly of empty fruit bunch, mesocarp fiber, frond, trunk, and palm kernel shell generated from the palm oil industry, was collected, characterized, and then pyrolyzed to evaluate their potential to be converted into biochar. Oil Palm Empty Fruit Bunches (OPEFB) are a source of organic material with abundant nutrients and are highly potentially useful as biochar. This article provides experimental data for the production of biochar at a temperature range of 100 to 300 °C at time of 4 to 8 hours. The chemical components examined are pH, CEC, C-Organic, N-total,
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9

Nasir, Mohammad Ibrahim Nasir, Md Zakir Hossain Hossain, and P. A. Charpentier Charprntier. "Synthesis and Characterization of Date Palm Fiber-Based Bio-Char and Activated Carbon and its Utilization for Environmental Remediation." Journal of Petroleum Research and Studies 8, no. 2 (2021): 209–22. http://dx.doi.org/10.52716/jprs.v8i2.245.

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Natural agricultural products have the potential to be a substitute for synthetic polymers absorbentsin environmental remediation and spill cleanup and recovery. One of these natural by-productswhich is available in many regions of the world is Date Palm Fibers (DPF). DPF (also known assurface fibers) is a natural sorbent that exhibits good sorption characteristics. In an attempt tovalorize this abundant, low cost byproduct, we have investigated the micro porosity of this rawmaterial by carrying out two procedures. First, hydrothermal pyrolysis using a scalable reactor withonly water as solven
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Bin Nur, Taufiq, Crishansen Supratman, Vincent Tibertiyo Buysang, Rulianda Purnomo Wibowo, Arif Nuryawan, and S. Syafiie. "Evaporator design for the hydrogen-rich syngas production process from palm oil mill solid waste using steam methane reformer." IOP Conference Series: Earth and Environmental Science 1510, no. 1 (2025): 012096. https://doi.org/10.1088/1755-1315/1510/1/012096.

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Abstract Biomass pyrolysis is the process of converting biomass into biochar, syngas, and bio-oil. This study analyses the simulation of a biomass pyrolysis system utilizing a mixture of empty palm oil fruit bunches (EFB) and empty palm oil fiber to produce biochar and hydrogen-rich syngas in the Aspen Plus simulation. Suppose the mass of the raw material used is a mixture of 4 kg EFB and 2 kg fiber, as well as an adjusted amount of water from twice the ratio of methane produced from the pyrolysis process with a mass of 0.939 kg. At a working temperature pyrolysis reactor of 400°C, the syngas
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11

Ebrahimi, Ghanbar. "Constituent Elements, pH and Electrical Conductivity Values of Feedstock, Ash and Slow Pyrolysis Derived Biochar of Date Palm Wastes." Drvna industrija 76, no. 2 (2025): 177–88. https://doi.org/10.5552/drvind.2025.0223.

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Date palm wastes (rachis and dried stems) are feasible biomass to be treated and used for soil improvement and restoration purposes. Identified properties of processed forms of such biomass are required for their deliberated applications in compensating for any types of soil deficiencies. For this task constituent elements, pH and electrical conductivity (EC) values of fiber bundles, ash and slow pyrolysis derived biochar of these wastes were determined. Test materials were from two palm groves, differentiated by governing ecological conditions, named tropical and dry zones, to study climate i
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12

Adelodun, Adedeji A., Adewale G. Adeniyi, Joshua O. Ighalo, Damilola V. Onifade, and Lois T. Arowoyele. "Thermochemical conversion of oil palm Fiber‐LDPE hybrid waste into biochar." Biofuels, Bioproducts and Biorefining 14, no. 6 (2020): 1313–23. http://dx.doi.org/10.1002/bbb.2130.

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Rahayu, Muji, Bayutama Rahmawan, Amalia Tetrani Sakya, Andriyana Setyawati, Gani Cahyo Handoyo, and Rissa Kurnia Anggraini. "The effect of biochar and liquid organic fertilizer to Mentha spicata physiological activities." BIO Web of Conferences 155 (2025): 01030. https://doi.org/10.1051/bioconf/202515501030.

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Mint (Mentha spicata L.) is a medicinal plant that produces essential oils usually used in medicines, food, toothpaste, and cosmetics. Mint leaves are the primary organ taken as an essential oil production material. Increasing leaf production, which is studied through the physiological activity of mint, can be done by meeting plant nutrient needs. Biochar and liquid organic fertilizer (LOF) can be used as alternative soil conditioners and fertilizers to meet plant nutrient needs. This research was conducted in the Faculty of Agriculture’s Greenhouse using a factorial Randomized Complete Group
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14

Sakya, Amalia Tetrani, Muji Rahayu, Samanhudi, Gani Cahyo Handoyo, and Muhammad Dio Nugroho Anindra Putra. "Growth and yield of soybean varieties with biochar application." E3S Web of Conferences 467 (2023): 01020. http://dx.doi.org/10.1051/e3sconf/202346701020.

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Climate change cause a temperature increase, decreasing soil fertility and causing a reduced microbial and nutrient availability, and increased salinization, so it cannot support the growth of soybean plants. Soybeans are vulnerable to climate change, which can lead to lower yields. Biochar is an organic material that can improve soil's physical, chemical, and biological fertility. This study aims to obtain soybean varieties and biochar types that increase growth and yield in low soil fertility cultivation. This research was conducted in August 2022 – June 2023 at the Agricultural Faculty Expe
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15

Windiastuti, E., Suprihatin, Y. Bindar, and U. Hasanudin. "Identification of potential application of oil palm empty fruit bunches (EFB): a review." IOP Conference Series: Earth and Environmental Science 1063, no. 1 (2022): 012024. http://dx.doi.org/10.1088/1755-1315/1063/1/012024.

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Abstract The palm oil industry is one industry that significantly contributes to the Indonesian economy. Indonesia’s palm oil exports keep increasing every year. In addition to producing CPO, the palm industry also produces solid, liquid and gaseous waste. The resulting waste can pollute the environment. Solid waste from the palm industry consists of oil palm empty fruit bunches, fruit juice fiber, palm kernel cake, shells and other solid waste. Of the various types of solid waste produced, oil palm empty fruit bunches (EFB) is the largest waste. The comparison of EFB waste management is prese
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16

Hossain, Md Arafat, Poo Balan Ganesan, Shanti Chandran Sandaran, Shaifulazuar Bin Rozali, and Sivakumar Krishnasamy. "Catalytic microwave pyrolysis of oil palm fiber (OPF) for the biochar production." Environmental Science and Pollution Research 24, no. 34 (2017): 26521–33. http://dx.doi.org/10.1007/s11356-017-0241-6.

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Kaewtrakulchai, Napat, Araya Smuthkochorn, Kanit Manatura, Gasidit Panomsuwan, Masayoshi Fuji, and Apiluck Eiad-Ua. "Porous Biochar Supported Transition Metal Phosphide Catalysts for Hydrocracking of Palm Oil to Bio-Jet Fuel." Materials 15, no. 19 (2022): 6584. http://dx.doi.org/10.3390/ma15196584.

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The upgrading of plant-based oils to liquid transportation fuels through the hydrotreating process has become the most attractive and promising technical pathway for producing biofuels. This work produced bio-jet fuel (C9–C14 hydrocarbons) from palm olein oil through hydrocracking over varied metal phosphide supported on porous biochar catalysts. Relative metal phosphide catalysts were investigated for the highest performance for bio-jet fuel production. The palm oil’s fiber-derived porous biochar (PFC) revealed its high potential as a catalyst supporter. A series of PFC-supported cobalt, nick
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Mansour, Sameh, M. E. Basiouny, and O. A. Abosiada. "Activated carbon and biochar prepared from date palm fiber as adsorbents of phosphorus from wastewater." Desalination and Water Treatment 321 (January 2025): 100925. https://doi.org/10.1016/j.dwt.2024.100925.

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D., K. Sappor, A. Osei B., and R. Ahmed M. "Reclaiming Sodium Affected Soil: The Potential of Organic Amendments." International Journal of Plant & Soil Science 16, no. 2 (2017): 1–11. https://doi.org/10.9734/IJPSS/2017/33410.

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A study was conducted to evaluate the potential of organic amendments in managing sodic soils for crop production. In doing this, a pot experiment was conducted in which saw dust biochar (SDB), palm fiber biochar (PFB), poultry manure biochar (PMB) and poultry manure (PM) were applied to sodic soil sampled from an industrial area in Cape Coast, Ghana. Gypsum amendment and a control were included for the purpose of comparing results. All amendments were applied at the rate of 4.78 t ha<sup>-1</sup> which was the full gypsum requirement rate for the soil. Amended soils were incubated and weekly
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Chaves-Pabón, Saieth Baudilio, Hugo Alexander Rondón-Quintana, and Juan Gabriel Bastidas-Martínez. "Mechanical Performance of a Hot Mix Asphalt Modified with Biochar Obtained from Oil Palm Mesocarp Fiber." Infrastructures 9, no. 9 (2024): 156. http://dx.doi.org/10.3390/infrastructures9090156.

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A recently used material that shows environmental and technical advantages for use as an asphalt binder modifier is biochar (BC). Different biomasses can be converted into BC by pyrolysis. One agro-industrial biomass that is abundant in copious quantities is oil palm mesocarp fiber (OPMF) obtained from African palm cultivation. In the present study, the use of a BC obtained from OPMF (BC-OPMF) as a modifier of asphalt binder (AC type) to produce a hot mix asphalt (HMA) was evaluated. This type of BC has not been investigated or reported in the reference literature as a binder and/or asphalt mi
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Ahmad, Tanveer, Sumathi Sethupathi, Mohammed J. K. Bashir, and Sin Ying Tan. "The role of oxidation on oil palm fiber biochar for ammoniacal nitrogen recovery from aquaculture wastewater." Journal of Water Process Engineering 60 (April 2024): 105091. http://dx.doi.org/10.1016/j.jwpe.2024.105091.

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Lukman Hakim, Farouk Sumarli, Rafit Mahendra, and Siun. "Green Method: The Performance of Biochar in Water Filtration." Aptek 14, no. 2 (2022): 103–8. http://dx.doi.org/10.30606/aptek.v14i2.1297.

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Abstract: The results of measuring the power of Hydrogen (pH) of 5.5 mg/l and Total Dissolved Solid (TDS) of 3.20 mg/l level of water wells in a village, including in a school of Madrasah Tsanawiyah Negeri 5 in Tanjung Medan Rokan Hulu is considered not within permissible limit of World Health Organization (WHO) standards. For that reason, experimental research was conducted by firstly designing and making a water filtration device from Polyvinyl Chloride pipe of 4 inch in diameter, 100cm long, and 1 inch channel in and out. With the green method treatment, the biochar used are Coconut Shell C
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Arafat Hossain, Md, P. Ganesan, J. Jewaratnam, and K. Chinna. "Optimization of process parameters for microwave pyrolysis of oil palm fiber (OPF) for hydrogen and biochar production." Energy Conversion and Management 133 (February 2017): 349–62. http://dx.doi.org/10.1016/j.enconman.2016.10.046.

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Acelas, Nancy, Sandra M. Lopera, Jazmín Porras, and Ricardo A. Torres-Palma. "Evaluating the Removal of the Antibiotic Cephalexin from Aqueous Solutions Using an Adsorbent Obtained from Palm Oil Fiber." Molecules 26, no. 11 (2021): 3340. http://dx.doi.org/10.3390/molecules26113340.

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This study aimed to understand the adsorption process of cephalexin (CPX) from aqueous solution by a biochar produced from the fiber residue of palm oil. Scanning electron microscopy, Fourier transform infrared spectroscopy, Boehm titration, and the point of zero charge were used to characterize the morphology and surface functional groups of the adsorbent. Batch tests were carried out to evaluate the effects of the solution pH, temperature, and antibiotic structure. The adsorption behavior followed the Langmuir model and pseudo-second-order model with a maximum CPX adsorption capacity of 57.4
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Grisales-Cifuentes, Claudia M., Efraím A. Serna-Galvis, Nancy Acelas, Jazmín Porras, Elizabeth Flórez, and Ricardo A. Torres-Palma. "Biochar from palm fiber wastes as an activator of different oxidants for the elimination of pharmaceuticals from diverse classes in aqueous samples." Journal of Environmental Management 323 (December 2022): 116148. http://dx.doi.org/10.1016/j.jenvman.2022.116148.

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Jabar, Jamiu Mosebolatan, and Yisau Adelaja Odusote. "Removal of cibacron blue 3G-A (CB) dye from aqueous solution using chemo-physically activated biochar from oil palm empty fruit bunch fiber." Arabian Journal of Chemistry 13, no. 5 (2020): 5417–29. http://dx.doi.org/10.1016/j.arabjc.2020.03.020.

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Grisales-Cifuentes, Claudia M., Efraím A. Serna Galvis, Jazmín Porras, Elizabeth Flórez, Ricardo A. Torres-Palma, and Nancy Acelas. "Kinetics, isotherms, effect of structure, and computational analysis during the removal of three representative pharmaceuticals from water by adsorption using a biochar obtained from oil palm fiber." Bioresource Technology 326 (April 2021): 124753. http://dx.doi.org/10.1016/j.biortech.2021.124753.

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Abdullah, Nurhayati, Aminu Aliyu Safana, Fauziah Sulaiman, and Ibrahim Inuwa Abdullahi. "A Comparative Analysis of Physical and Chemical Properties of Biochars and Bio-Oils Obtained from Pyrolytic Process of Mesocarp Fibre and Empty Fruit Bunch." Solid State Phenomena 268 (October 2017): 387–92. http://dx.doi.org/10.4028/www.scientific.net/ssp.268.387.

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The fundamental objectives of this study is to analyzed and compare the physical and chemical properties of pyrolysis products (biochar and bio-oil) derived from two oil palm wastes. Empty fruit bunch (EFB) and mesocarp fibre (MF) were subjected to pyrolysis at a temperature of 400 °C for 2 hours holding time at 10 °C/min heating rate and with nitrogen flow rate of 2 L/min. The result obtained from raw material showed that MF contains a high quantity of hemicellulose and lignin which led to a high yield of bio-oil and biochar respectively, whereby, EFB contained a high content of cellulose. Th
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da Silva Almeida, Flávia Bartira Pedro, Karla Patrícia Santos Oliveira Rodriguez Esquerre, João Inácio Soletti, Carlos Eduardo de Farias Silva, Ithalo José da Silva, and Brígida Maria Villar da Gama. "Sequential and continuous processes of coalescence and adsorption in produced water treatment by coupling a vegetal fiber coalescer and a fixed bed with biochar produced by vacuum pyrolysis of ouricury palm (Syagrus coronata)." Journal of Water Process Engineering 66 (September 2024): 106034. http://dx.doi.org/10.1016/j.jwpe.2024.106034.

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Fahmi, Alaa Hasan, Abd Wahid Samsuri, Hamdan Jol, and Daljit Singh. "Bioavailability and leaching of Cd and Pb from contaminated soil amended with different sizes of biochar." Royal Society Open Science 5, no. 11 (2018): 181328. http://dx.doi.org/10.1098/rsos.181328.

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Biochars have been successfully used to reduce bioavailability and leaching of heavy metals in contaminated soils. The efficiency of biochar to immobilize heavy metals can be increased by reducing the particle size, which can increase the surface area and the cation exchange capacity (CEC). In this study, the empty fruit bunch biochar (EFBB) of oil palm was separated into two particle sizes, namely, fine (F-EFBB &lt; 50 µm) and coarse (C-EFBB &gt; 2 mm), to treat the contaminated soil with Cd and Pb. Results revealed that the addition of C-EFBB and F-EFBB increased the pH, electrical conductiv
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Aliyu, Aminu Safana, Nurhayati Abdullah, Fauziah Sulaiman, and Sadik Umar. "Combustion characteristics of palm pressed fibres biochar and sub-bituminous Malaysian coal." Malaysian Journal of Fundamental and Applied Sciences 14, no. 3 (2018): 334–37. http://dx.doi.org/10.11113/mjfas.v14n3.937.

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In this research, the combustion properties of coal and biochar were investigated and compared to identify the potentiality of biochar for coal replacement application. Biochar is derived from the pyrolysis of palm pressed fibre (PPF) at 400 oC. Thermogravimetric analysis (TGA) was used to study the combustion profiles of the materials. The biochar and coal were combusted via thermogravimetric analysis from ambient temperature to 800 oC at 10 oCmin-1 of heating rate. From the results, biochar showed the high calorific value of 27.30 MJkg-1compared to that of coal 26.21 MJkg-1. Furthermore, bio
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Nugroho, Fairuz Gianirfan, Abu Saad Ansari, Nurul Taufiqu Rochman, et al. "Utilizing Indonesian Empty Palm Fruit Bunches: Biochar Synthesis via Temperatures Dependent Pyrolysis." Nanomaterials 15, no. 1 (2024): 50. https://doi.org/10.3390/nano15010050.

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Biomass, though a major energy source, remains underutilized. Biochar from biomass pyrolysis, with its high porosity and surface area, is especially useful as catalyst support, enhancing catalytic activity and reducing electron recombination in photocatalysis. Indonesia, the world’s top palm oil producer, generated around 12 million tons of empty fruit bunches (EFBs) in 2023, making EFBs a promising biochar source. This study synthesizes biochar from leftover EFB fibers at 500, 800, and 1000 °C, analyzing structural changes via infrared and Raman spectroscopy, along with particle size and surf
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Akachukwu, Doris, Michael Gbadegesin, Philippa Ojimelukwe, and Christopher Atkinson. "Biochar Remediation Improves the Leaf Mineral Composition of Telfairia occidentalis Grown on Gas Flared Soil." Plants 7, no. 3 (2018): 57. http://dx.doi.org/10.3390/plants7030057.

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This study evaluates the effects of remediation of gas flared soil by biochar on the nutritional composition of cultivated Telfairia occidentalis leaves, relative to non-gas flared soil. Gas flared soils are degraded due to the presence of heavy metals, noxious gases, carbon soot and acidic rain. Biochar produced from oil palm fibre was applied at five different amounts: 0 t ha−1, 7.1 t ha−1, 13.9 t ha−1, 20.9 t ha−1 and 28.0 t ha−1 to containerized soils (both gas flared and control soil), inside a greenhouse, which were allowed to mineralize for two weeks. Two viable seeds of T. occidentalis
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Arumugasamy, Senthil Kumar, Anurita Selvarajoo, and Mohammad Asad Tariq. "Artificial neural networks modelling: Gasification behaviour of palm fibre biochar." Materials Science for Energy Technologies 3 (2020): 868–78. http://dx.doi.org/10.1016/j.mset.2020.10.010.

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Rezaei Kahkha, Mohammad Reza, Mahdi Rezaei Kahkha Zhaleh, Batool Rezaei Kahkha, Maryam Khodadadi, and Mohsen Faghihi-Zarandi. "Removal of polypropylene nanoplastics from aqueous solution by biochar derived from Date palm fibers: Kinetics and isotherms studies." Analytical Methods in Environmental Chemistry Journal 6, no. 04 (2023): 65–75. http://dx.doi.org/10.24200/amecj.v6.i04.314.

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In this work, activated carbon (AC) derived from powder of date palm fibers (DPF) was examined as an adsorbent for removing polypropylene nanoplastics (PPNPs) from aqueous solutions. The adsorbent was characterized using XRD, FT-IR, and SEM analyses. Affecting parameters on removal efficiency in a batch reactor, such as contact time, concentration of PPNPs and amount of adsorbent, were evaluated and optimized. Equilibrium and kinetic studies are performed to understand adsorption mechanisms. In the batch system, 30 mL of polypropylene suspension (5-40 mgL-1) was added to Erlenmeyer flask. Firs
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Selvarajoo, Anurita, and Dooshyantsingh Oochit. "Effect of pyrolysis temperature on product yields of palm fibre and its biochar characteristics." Materials Science for Energy Technologies 3 (2020): 575–83. http://dx.doi.org/10.1016/j.mset.2020.06.003.

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Aliyu, Aminu Safana, Abdullah N, and Tasiu Zangina. "A Comparative Study On The Heat Release During The Combustion Of Coal And Oil Palm Biomass Charcoal Briquette Via Thermogravimetric Analysis (TGA)." International Journal of Biomass and Renewables 8, no. 2 (2019): 1. http://dx.doi.org/10.61762/ijbrvol8iss2art6244.

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The world is seriously searching for an alternative to fossil fuels due to their tremendous environmental effect. However, renewable energy sources such as solar, wind, hydropower, and biomass were anticipated to be alternative energies. In this study, the amount of heat generated from the combustion of coal and charcoal briquettes derived from oil palm biomass was investigated and compared. Charcoal briquettes were made from the biochar obtained after the pyrolysis of empty fruit bunches (EFB) and mesocarp fibre (MF). Coal and charcoal briquettes were subjected to combustion via thermogravime
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Zhou, Xiaohui, Jianjun Zhou, Yaochi Liu, Yang He, Jialin Ren, and Jing Guo. "Adsorption of endocrine disrupting ethylparaben from aqueous solution by chemically activated biochar developed from oil palm fibre." Separation Science and Technology 54, no. 5 (2018): 683–95. http://dx.doi.org/10.1080/01496395.2018.1520723.

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Lekrine, Abdelaziz, Ahmed Belaadi, Isma Dembri, et al. "Thermomechanical and structural analysis of green hybrid composites based on polylactic acid/biochar/treated W. filifera palm fibers." Journal of Materials Research and Technology 30 (May 2024): 9656–67. http://dx.doi.org/10.1016/j.jmrt.2024.06.033.

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Natrayan, L., Neelima Devi Chinta, Nalla Bhanu Teja, et al. "Evaluating mechanical, thermal, and water absorption properties of biocomposites with Opuntia cladode fiber and palm flower biochar for industrial applications." Discover Applied Sciences 6, no. 2 (2024). http://dx.doi.org/10.1007/s42452-024-05660-4.

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AbstractThis study addresses the development of environmentally friendly biocomposites using Opuntia cladode fiber and palm flower biochar for industrial applications. Derived sustainably, these materials significantly enhance mechanical properties, exemplified by Composite C3 (Resin 57wt.%, Fiber 40 wt%, Biochar 3 wt%) with notable flexural strength (217 MPa), tensile strength (178 MPa), impact strength (7.2 J), and hardness (92 Shore-D). However, a 5% biochar concentration led to a slight property decline. Thermal conductivity increased proportionally with biochar concentration, ranging from
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Abas, Fatimatul Zaharah, and Farid Nasir Ani. "Comparing Characteristics of Oil Palm Biochar Using Conventional and Microwave Heating." Jurnal Teknologi 68, no. 3 (2014). http://dx.doi.org/10.11113/jt.v68.2926.

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Microwave heating technique is one of the most attractive alternative applications in the thermal conversion process. In addition, microwave pyrolysis is one of the thermochemical technologies using microwave irradiation heating in order to obtain biofuels and materials from biomass. Microwave pyrolysis not only overcomes the disadvantages of conventional pyrolysis methods such as slow heating, but also improves the quality of final pyrolysis products. Recently, the biomass from oil palm wastes (empty fruit bunch, oil palm shell and oil palm fiber) has been gaining more attention in order to p
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Van Limbergen, Thessa, Inez Henriette Roegiers, Robin Bonné, et al. "Characterisation of Two Wood-Waste and Coffee Bean Husk Biochars for the Removal of Micropollutants from Water." Frontiers in Environmental Science 10 (March 29, 2022). http://dx.doi.org/10.3389/fenvs.2022.814267.

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The inclusion of bioaugmented low-cost biochar in current wastewater treatment technologies is a promising way to enhance the removal and degradation of emerging contaminants. In this paper, the properties of two wood waste biochars (wood waste mix - AB, and date palm fiber wood - PDF), and coffee bean husks (COF), produced at four temperatures (350, 450, 500, 550°C) were compared, and investigated in the presence of Geobacter sulfurreducens or a mixed freshwater stream bacterial culture to understand their potential for the adsorption and biotransformation of two types of pesticides (thiaclop
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Iberahim, Nursashabila, Sumathi Sethupathi, Mohammed J. K. Bashir, Ramesh Kanthasamy, and Tanveer Ahmad. "Evaluation of oil palm fiber biochar and activated biochar for sulphur dioxide adsorption." Science of The Total Environment, September 2021, 150421. http://dx.doi.org/10.1016/j.scitotenv.2021.150421.

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Lotfy, Vivian F., Altaf H. Basta, and Emad S. Shafik. "Assessment the performance of chemical constituents of agro wastes in production safety alternative carbon black filler in rubber composite purpose." Scientific Reports 15, no. 1 (2025). https://doi.org/10.1038/s41598-025-92404-y.

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Abstract Recently, minimizing petroleum resources as well as safely disposing of agro-wastes are essential for the production process to comply with environmental legislation. Bio-filler as an alternative to non-safety carbon black (CB) from petroleum resources in the production of rubber composites is investigated by many researchers, but unfortunately it leads to deterioration of the properties of rubber composites. To avoid this drawback, different agro-wastes (rice straw, date palm fiber, and reed (Arundo donax L.) with different chemical constituents as precursors of biofillers (biochars)
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Aziz, Muhammad Fakhrul Syukri Abd, Nur Fashya Musa, Ulises Sedran, Richard Pujro, and Zainul Akmar Zakaria. "Microwave‐assisted production of biochar from oil palm mesocarp fiber and its dye removal properties." Environmental Quality Management, October 11, 2021. http://dx.doi.org/10.1002/tqem.21813.

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Sambo, God’swill Nathan, Adedapo Oluwasanu Adeola, and Syahidah Akmal Muhammad. "Oil palm waste-derived adsorbents for the sequestration of selected polycyclic aromatic hydrocarbon in contaminated aqueous medium." Applied Water Science 14, no. 6 (2024). http://dx.doi.org/10.1007/s13201-024-02171-w.

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AbstractCarbonaceous adsorbents were synthesized from palm kernel shell and palm mesocarp fiber for the adsorption of phenanthrene (PHE) and the highly carcinogenic-benzo(a)pyrene (BaP). The structure and properties of the activated biochar were characterized using standardized analytical tools. The microscopic examinations carried out with SEM and BET results revealed mesoporous structures and interstitial spaces in the activated samples (AB-PKS and AB-PMS). Powder X-ray diffraction (PXRD) results showed that prepared sorbents are amorphous and that activation affected the amorphous cellulose
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Ahmad, Tanveer, Sumathi Sethupathi, Mohammed J. K. Bashir, and Sin Ying Tan. "Appraising the Performance of Oil Palm Fiber Biochar for Low Concentration Ammoniacal Nitrogen Recovery from Aquaculture Wastewater." Environmental Technology, November 25, 2022, 1–36. http://dx.doi.org/10.1080/09593330.2022.2152735.

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Khalifa, Al Isaee, Laila M. Alshandoudi, Asaad F. Hassan, and Amany G. Braish. "Effective removal of As5+ from aqueous medium using date palm fiber biochar/chitosan/glutamine nanocomposite: kinetic and thermodynamic studies." Environmental Science and Pollution Research, January 20, 2025. https://doi.org/10.1007/s11356-025-35896-5.

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Aliyu, Aminu Safana, Nurhayati Abdullahi, and Fauziah Sulaiman. "Pyrolysis of torrefied oil palm wastes for better biochar." Malaysian Journal of Fundamental and Applied Sciences 13, no. 2 (2017). http://dx.doi.org/10.11113/mjfas.v13n2.636.

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The objective of this research work is to investigate the effect of torrefaction on the pyrolysis product. Biomass materials such as empty fruit bunch (EFB), mesocarp fibre (MF) and palm shell (PKS) were torrefied and pyrolyzed. The experiment conditions were set to be respectively at 220 o C of temperature, 10 o C/min of heating rate and 30 minutes holding time for torrefaction and at 650 oC of temperature, 20 o C/min heating rate and 2 hours holding time for pyrolysis. Nitrogen flow rate of 2L/min was maintained for both experiments. The torrefied biomass contains high carbon content and low
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Segala, Bibiane Nardes, Bruna Clarissa Steffens, Cristiano Augusto Ballus, Daniel Assumpção Bertuol та Eduardo Hiromitsu Tanabe. "Biochar produced from pressed palm fibre to removal β‐carotene from crude palm oil". Canadian Journal of Chemical Engineering, 15 січня 2025. https://doi.org/10.1002/cjce.25595.

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AbstractAdsorbents produced from the reuse of pressed palm fibres, a residue derived from the palm oil extraction process, are an alternative to commercial adsorbents for the removal of β‐carotene from crude palm oil. Two adsorbents produced by the pyrolysis of pressed palm fibres were analyzed, where one was chemically activated with phosphoric acid and the other was not activated. Under the conditions studied, biochar activated with phosphoric acid presented an adsorption capacity of 2.99 mg g−1 and 86% β‐carotene removal. The results of kinetic tests indicated that the pseudo‐second order (
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