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Effects of compost particle size, moisture content and binding agents on co-compost pellet properties

机译:堆肥粒径,水分含量和粘合剂对堆肥颗粒性质的影响

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摘要

Composting is one of the sustainable answers for the management of organic municipal waste. Bulky nature of loose compost is one of the main drawbacks in promoting compost in agriculture and pelletization of compost can offset these drawbacks. In this study, the optimum conditions in a die and roller pelletizer to form pellets with desirable properties; bulk density, compressive strength, pellet length and disintegration ability with compost particles of different mesh sizes (2.5, 3.5, 5 mm), moisture contents (25%, 30%, 35%, 40%, 45%), different amounts and types of binding agents (1%, 2%, 3% by weight of Rice Flour (RF), Lime, Rock Phosphate (RP)) were investigated. Pelletizing increased the bulk density of compost. Compost with ≤5 mm particles and 25% moisture content resulted pellets with the highest compressive strength and a higher percentage of long pellets. However, the tested properties varied with the type and the amount binding agents used with compost. Disintegration was not observed in pellets free of binding agents during the tested period but binding agents enhanced disintegration. Both machine efficiency and production efficiency decreased with increased moisture in compost and increased with increased compost particle size. However, increased amounts of binding agents in compost reduced the machine efficiency. This work shows that compost pelletizing with and without binding agents, enhanced properties of compost required in transportation, storage and application in agriculture.
机译:堆肥是有机城市垃圾管理的可持续解决方案之一。松散的堆肥的大体积性质是在农业中促进堆肥的主要缺点之一,而堆肥的颗粒化可以弥补这些缺点。在这项研究中,在模具和辊式造粒机中形成具有理想性能的粒料的最佳条件;堆积密度,抗压强度,颗粒长度和崩解能力,具有不同筛目尺寸(2.5、3.5、5 mm),含水量(25%,30%,35%,40%,45%),数量和类型不同的堆肥颗粒研究了粘合剂的量(分别为1%,2%,3%重量的米粉(RF),石灰,磷酸岩(RP))。造粒增加了堆肥的堆密度。 ≤5mm颗粒且水分含量为25%的堆肥产生的颗粒具有最高的抗压强度和较高的长颗粒百分比。但是,测试的性能随堆肥中粘合剂的类型和用量而变化。在测试期间,在不含粘合剂的颗粒中未观察到崩解,但是粘合剂增强了崩解。机器效率和生产效率都随着堆肥中水分的增加而降低,并随着堆肥颗粒尺寸的增加而增加。但是,堆肥中粘合剂数量的增加降低了机器效率。这项工作表明,有或没有粘合剂的堆肥造粒,都提高了运输,存储和农业应用中所需堆肥的性能。

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