用沸石催化剂热解椰子壳、稻壳和玉米芯

Khalimatus Sa’diyah, Christyfani Sindhuwati, Profiyanti Hermin Suharti, Fatkhur Rohman, Cucuk Evi Lusiani
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引用次数: 0

摘要

利用热解技术回收垃圾来制造液态烟雾是利用生物废料的一种方法。由于液态烟雾中含有有助于食品保鲜的乙酸和苯酚,因此可用于食品。这项研究的目的是研究沸石催化剂在利用各种生物质催化热解生产液态烟雾中的应用。椰子壳、玉米棒和稻壳被用作生物质。研究首先从沸石催化剂的活化开始,目的是清除催化剂中的杂质,并通过打开孔隙提高催化剂的活性。然后,催化热解过程在 350°C 下进行 2 小时,同时调整催化剂添加量(4%、5% 和 6%)。收集并评估催化热解液烟。作为防腐剂,所研究的液态烟雾被用于鲣鱼。根据商用液态烟雾的质量,结果表明添加 6% 沸石的椰壳液态烟雾是最理想的液态烟雾。6.5% 的产量、黄棕色的色调、略带刺激性的香气、pH 值 2、密度 1.132 克/毫升、酸含量 24%、粘度 1.3090 cP 是 6% 沸石椰壳液体烟雾的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coconut Shell, Rice Husk, and Corn Cob Pyrolysis with Zeolite Catalyst
Recycling garbage with the pyrolysis technique to make liquid smoke is one effort to utilize biomass waste. Because it includes acetic acid and phenol, which aid in food preservation, liquid smoke can be used on foods. The goal of this research was to look into the usage of zeolite catalysts in the production of liquid smoke from various types of biomass via catalytic pyrolysis. Coconut shells, corn cobs, and rice husks are used as biomass. The investigation began with the activation of the zeolite catalyst, with the goal of cleansing the catalyst of impurities and boosting its activity by opening the pores. The catalytic pyrolysis process was then carried out at 350°C for 2 hours while adjusting the quantity of catalyst addition (4%, 5%, and 6%). Catalytic pyrolysis liquid smoke is collected and evaluated. As a preservative, studied liquid smoke is applied to skipjack tuna. Based on the quality of commercial liquid smoke, the results showed that coconut shell liquid smoke with a percentage of 6% zeolite added was the most optimal liquid smoke. 6.5% yield, yellowish brown hue, slightly pungent aroma, pH value 2, density 1.132 g/ml, acid content 24%, and viscosity 1.3090 cP were the features of 6% zeolite coconut shell liquid smoke.
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