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1. Activation Temperature and Particle Size of Palm Kernel Shell vs. the Surface Properties of Activated Carbon

2. Starch-Based Polymer Materials as Advanced Adsorbents for Sustainable Water Treatment: Current Status, Challenges, and Future Perspectives

3. Characterisation of Polypropylene Composite Reinforced with Chemi-Thermomechanical Pulp from Oil Palm Trunk via Injection Moulding Process

4. Exploring the Biocontrol Efficacy of Trichoderma spp. against Rigidoporus microporus, the Causal Agent of White Root Rot Disease in Rubber Trees (Hevea brasiliensis)

5. Influence of Chrysoporthe deuterocubensis Canker Disease on the Chemical Properties and Durability of Eucalyptus urograndis against Wood Rotting Fungi and Termite Infestation

6. Valorisation of Underutilized Grass Fibre (Stem) as a Potential Material for Paper Production

7. Production and Potential Application of Pyroligneous Acids from Rubberwood and Oil Palm Trunk as Wood Preservatives through Vacuum-Pressure Impregnation Treatment

8. Application strategies by selective medium treated with entomopathogenic bacteria Serratia marcescens and Pseudomonas aeruginosa as potential biocontrol against Coptotermes curvignathus

9. Septicaemia of subterranean termites Coptotermes curvignathus caused by disturbance of bacteria isolated from termite gut and its foraging pathways

10. Effect of Glue Spreads on the Structural Properties of Laminated Veneer Lumber from Spindleless Rotary Veneers Recovered from Short Rotation Hevea Plantation Logs

11. Fabrication of Highly Microporous Structure Activated Carbon via Surface Modification with Sodium Hydroxide

12. Virulence of Rigidoporus microporus Isolates Causing White Root Rot Disease on Rubber Trees (Hevea brasiliensis) in Malaysia

13. Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N2 and air

16. Enhanced properties of single-layer particleboard made from oil palm empty fruit bunch fibre with additional water-soluble additives

17. Contributors

19. Refining micropore capacity of activated carbon derived from coconut shell via deashing post-treatment

20. Laminated veneer lumber from spindleless rotary-peeled veneers produced from short rotation, small Hevea plantation logs: Effects of lamination pressure

21. Valorization of Lignocellulosic Food Industry Waste in Malaysia by Accelerated Co-composting Method: Changes in Physicochemical and Microbial Community

22. Virulence of Rigidoporus microporus Isolates Causing White Root Rot Disease on Rubber Trees (Hevea brasiliensis) in Malaysia

23. Fabrication of Highly Microporous Structure Activated Carbon via Surface Modification with Sodium Hydroxide

24. Effect of Glue Spreads on the Structural Properties of Laminated Veneer Lumber from Spindleless Rotary Veneers Recovered from Short Rotation

25. Application strategies by selective medium treated with entomopathogenic bacteria Coptotermes curvignathus

26. Additional additives to reduce ash related operation problems of solid biofuel from oil palm biomass upon combustion

27. Durability of Superheated Steam-Treated Light Red Meranti (Shorea spp.) and Kedondong (Canarium spp.) Wood against White Rot Fungus and Subterranean Termite

28. Physical properties and bonding quality of laminated veneer lumber produced with veneers peeled from small-diameter rubberwood logs

29. Evolution of Organic Matter Within Sixty Days of Composting of Lignocellulosic Food Industry Waste in Malaysia

30. Effect of Reaction Time and Temperature on the Properties of Carbon Black Made from Palm Kernel and Coconut Shell

31. Effect of pretreatment conditions on the chemical–structural characteristics of coconut and palm kernel shell: A potentially valuable precursor for eco-efficient activated carbon production

32. Enhanced Properties of Single-Layer Particleboard Made from Oil Palm Empty Fruit Bunch Fibre with Additional Water-Soluble Additives.

33. Production of bioadsorbent from phosphoric acid pretreated palm kernel shell and coconut shell by two-stage continuous physical activation via N 2 and air

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