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Fauzi Ashari
Politeknik ATK Yogyakarta

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Design and construction of a 25 kg plastic waste incinerator Suharyanto; Fauzi Ashari; Fala Putrama; Abimanyu Awang Putra Nugroho
Industrial Innovation Vol. 2 No. 2 (2025): Industrial Innovation
Publisher : Politeknik ATK Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58533/wjn35g62

Abstract

The management of non-recyclable plastic waste in various Waste Banks and 3R Waste Transfer Stations (TPS 3R) in the Sleman Regency serves as the background for the development of this waste processing incinerator. This research aims to design and construct an incinerator prototype as a waste processing tool suitable for application at Waste Banks or TPS 3R facilities. The results are expected to provide crucial insights for improving combustion efficiency and reducing exhaust emissions, thereby making the plastic waste combustion process more environmentally friendly and efficient. The designed waste processing capacity has a volume of 1 m³, equipped with a wet scrubber to eliminate exhaust pollutants before release into the atmosphere. The incinerator dimensions are designed to measure 900 mm x 900 mm x 1000 mm. Combustion test results indicated a duration of 30 minutes for the waste to burn thoroughly and turn into ash. From an initial 25 kg of waste, the remaining mass after combustion was 4.05 kg. The design and construction of the incinerator required a budget of Rp 37,373,200.00. This plastic waste incinerator design is expected to serve as a waste processing solution for both TPS 3R facilities and Waste Banks.
Evaluation of the Physical and Mechanical Characteristics of Box Leather for Footwear Upper Applications Based on SNI 0234:2009: Implications for Industrial Ergonomics Himawan Santoso; Wahyu Fajar Winata; Fauzi Ashari
Industrial Innovation Vol. 3 No. 1 (2026): Industrial Innovation
Publisher : Politeknik ATK Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58533/cxbdy494

Abstract

Box leather is one of the most widely used chrome-tanned leathers for footwear upper applications due to its excellent combination of mechanical strength, flexibility, and surface quality. This study aimed to evaluate the physical and mechanical characteristics of box leather for footwear upper applications based on the requirements of SNI 0234:2009 and to discuss their implications from the perspective of industrial ergonomics. A descriptive research approach was employed through laboratory testing, including organoleptic assessment, thickness, tear strength, tanning maturity, finish rub fastness, water absorption, tensile strength, elongation at break, softness, crack resistance, burst resistance, and flex resistance, following the procedures specified in SNI 0234:2009. The results showed that most of the evaluated parameters complied with the standard requirements. The leather exhibited a thickness of 1.30 mm, tear strength of 52.38 kg/cm, tensile strength of 1653.26 kg/cm², elongation at break of 60.49%, and satisfactory crack resistance, burst resistance, and flex resistance, all of which fulfilled the requirements of SNI 0234:2009. However, water absorption after 2 h (89.69%) and 24 h (100.35%), grain adhesion (nerf), and wet finish rub fastness did not fully satisfy the standard and therefore require further improvement. From an industrial ergonomics perspective, the excellent mechanical performance indicates that the evaluated box leather possesses sufficient flexibility, structural stability, and resistance to repetitive loading, making it suitable for footwear upper applications that demand long-term comfort and durability. Conversely, the relatively high water absorption may reduce user comfort by increasing moisture retention and footwear weight during prolonged use. Overall, the evaluated box leather demonstrated good conformity with SNI 0234:2009, with future improvements recommended for moisture resistance, grain adhesion, and finishing performance through optimization of the retanning and finishing processes