Abstract

<p><em>L</em><em>ighting is one of the human basic needs that must be fullfiled. Compact fluorescent lamps is the most used lamp as source of lighting. However, they contain mercury, which is classified as heavy metals, that can potentially harm the environment. Even as mercury container, many people didn't know that. Many people don't know the method to handle the broken or used compact fluorescent lamp. They just dispose the broken compact fluorescent lamp to trash without considering the effect of mercury contained.</em></p><p><em>Inverse Manufacturing concept is about designing product life cycle that aims to repair and reuse product components so that the negative impact can be reduced and minimized. In this research, the concept of Inverse Manufacturing is applied on handling the compact fluorescent lamp product in Bandung, West Java. The study is begun with designing the Inverse Manufacturing concept’s model by adding the step of collecting back (two scenarios), sorting, repairing, remanufacturing, and recycling into the life cycle of compact fluorescent lamp. The results of recycling rates of 15 Watt compact fluorescent lamp (about 234 grams) starts from the lowest value, and the maximum value are 27,51 % (64,366 grams), and 27,61 % (64,609 grams). By applying this concept, the result are the reduction on the amount of compact fluorescent lamp waste dumped into the environment and the achievement of the conservation of natural resources through the reuse of used components.</em></p>

Highlights

  • Inverse Manufacturing concept is about designing product life cycle that aims to repair and reuse product components so that the negative impact can be reduced and minimized

  • The concept of Inverse Manufacturing is applied on handling the compact fluorescent lamp product in Bandung, West Java

  • The study is begun with designing the Inverse Manufacturing concepts model by adding the step of collecting back, sorting, repairing, remanufacturing, and recycling into the life cycle of compact fluorescent lamp

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Summary

Total Massa

Sumber : diadaptasi dari Scholand & Dillon, 2012 rentang tingkat daur ulang lampu hemat energi antara 27,51% sampai 27,61%. Untuk keperluan evaluasi penerapan inverse manufacturing ini, dilakukan perhitungan tingkat daur ulang dengan menggunakan nilai minimum dan nilai maksimum. Diperoleh estimasi massa hasil daur ulang adalah 64.366 sampai dengan 64.609 gram per setiap lampu hemat energi yang melalui inverse manufacturing hasil penelitian ini. Nilai tingkat daur ulang dari produk lampu hemat energi ini merepresentasikan pengurangan jumlah sampah lampu yang dibuang ke lingkungan, dalam artian adanya proses pemanfaatan kembali dari komponen komponen pasca pakai untuk keperluan proses remanufaktur. Tujuan dari perhitungan tingkat daur ulang produk lampu hemat energi merupakan salah satu upaya dalam mencapai Zero Waste dalam konsep Inverse Manufacturing. Pengecekan dan pengawasan dari berjalannya rencana penanganan produk lampu hemat energi berdasarkan konsep Inverse Manufacturing dapat dilihat dari beberapa aspek. Kaca Yttrium Europium Polyethylene Terepthalate (PET) Cast Iron Kromium Aluminium Oksida Timbal Tembaga

Board Total Massa
Nikel Kuningan Semikonduktor Printed Wiring
Daftar Pustaka
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