アイスクリーム廃棄物中の脂肪を経済的にリサイクル可能とする研究(Fat in ice cream waste can be economically recycled, study suggests)

2026-09-23 ペンシルベニア州立大学(Penn State)

ペンシルベニア州立大学の研究チームは、アイスクリーム製造で発生する廃棄物から乳脂肪を回収し、再利用する技術の経済性を評価した。アイスクリーム製造では原料の約5%が品質問題や設備洗浄、アレルゲン交差汚染対策などによって廃棄される。研究では、酵素によるタンパク質分解、pH調整、遠心分離を比較した結果、複雑な前処理を行わず遠心分離するだけでも約95%の脂肪を回収でき、回収脂肪の純度も改善することを確認した。さらに技術経済分析から、回収脂肪の最低販売価格は1kg当たり約40セントと推定され、脂肪含有量が高い廃棄物や大規模処理ほど採算性が高まることが示された。回収脂肪は飼料用油脂の代替や医薬品・化粧品原料などへの利用が期待され、タンパク質や糖類を含む副産物の有効利用も今後の課題となっている。

<関連情報>

工業用アイスクリーム廃棄物からの低コスト脂肪回収:分離メカニズム、プロセスモデリング、および技術経済的実現可能性 Low-cost fat recovery from industrial ice cream waste: Separation mechanisms, process modeling, and techno-economic feasibility

Fuad Ale-Enriquez, Farhad Zaker Hosseiny, Zhe Xu, Rui Shi, Brian Perry, Robert F. Roberts, Yi Zhang
Cleaner Engineering and Technology  Available online: 1 July 2026
DOI:https://doi.org/10.1016/j.clet.2026.101270

アイスクリーム廃棄物中の脂肪を経済的にリサイクル可能とする研究(Fat in ice cream waste can be economically recycled, study suggests)

Highlights

  • Authentic industrial ice cream waste was used for fat-recovery evaluation.
  • Protease addition did not improve fat recovery over no-protease controls.
  • Alkaline pH treatment improved fat-to-total-solids ratio in recovered fat.
  • Aspen Plus modeling supported techno-economic assessment of fat recovery.

Abstract

Ice cream waste (ICW) is an emerging high-volume dairy byproduct that is largely discarded despite containing recoverable fats suited for high-value applications. This study evaluated proteolytic hydrolysis and pH-shift treatments as strategies to alter ICW emulsions and enhance fat separation. The techno-economic analysis (TEA) was conducted for feasibility of an industrial fat-recovery process. Authentic industrial ICW from four production batches (1.8–10.3% fat) was treated with pepsin, trypsin, or bromelain, respectively, at 37 °C or 60 °C for up to 24 h, or exposed to pH 2, 4, or 11 for 5 h, followed by centrifugation. Fat recovery, fat purity, and top-layer composition were quantified and analyzed, multivariate statistics, and regression, and were used to parameterize an Aspen Plus process model and TEA. Short-time proteolytic hydrolysis (1–2 h) at moderate temperatures improved fat recovery. The control without proteases achieved high fat recovery (∼95%) and increased fat purity relative to the untreated baseline, whereas proteolysis and high-temperature treatments did not significantly increase total recoverable fat and reduced fat purity. The pH-shift experiments showed that alkaline treatment (pH 11) favored fat separation compared with acidic conditions. The model estimated a minimum selling price of $0.40 kg−1 (±7%) for the recovered fat product, with variations driven primarily by differences in the initial fat content of the ICW. Increasing the processing scale can further improve profitability. These results demonstrate a simple, economically viable route to recover fat from ICW, supporting the transition toward a circular bioeconomy.

1103廃棄物管理
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