Matkowski Patryk, Lisowski Aleksander, Świętochowski Adam
Department of Biosystems Engineering, Institute of Mechanical Engineering, Warsaw University of Life Sciences, Nowoursynowska 166, 02-787 Warsaw, Poland.
Materials (Basel). 2020 Oct 1;13(19):4375. doi: 10.3390/ma13194375.
This study aimed to optimise the production conditions of wheat straw (WS) pellets and pellets with the additives of cassava starch (CS) or calcium carbonate (CC) based on the criteria of pellet strength and water absorption by crushed pellets. The pellets produced using a 2-10%-wt/wt additive ratio, material moisture of 10-30% w.b., die height of 66-86 mm, and material temperature of 78-108 °C were tested. The influence these factors on the strength parameters of pellets was different than on the water absorption by the crushed pellets. The pellets made of WS blended with CC additive were characterised by better strength parameters and the compressed pellets were characterised by better water absorption than those with CS. High and positive correlation among specific pellet compression work, elasticity modulus for pellet compression, and tensile strength values were observed. As the strength parameters of pellets showed high correlation with single pellet density, for the consistency of conclusions, the optimal conditions for pellet production were assumed based on the density. For optimal conditions at 4% wt/wt additive ratio, 23% w.b. material moisture, 78 mm die height, and 80 °C material temperature, the specific pellet compression work was 3.22 mJ·mm, elasticity modulus was 5.78 MPa, and maximum tensile strength of the pellets was 2.68 MPa; moreover, the water absorption by crushed pellets amounted to 2.60 g HO·g of dry matter.
本研究旨在基于颗粒强度和破碎颗粒吸水率标准,优化小麦秸秆(WS)颗粒以及添加木薯淀粉(CS)或碳酸钙(CC)的颗粒的生产条件。对使用2 - 10%(重量/重量)添加剂比例、10 - 30%(湿基)物料水分、66 - 86毫米模头高度以及78 - 108°C物料温度生产的颗粒进行了测试。这些因素对颗粒强度参数的影响与对破碎颗粒吸水率的影响不同。与添加CS的颗粒相比,添加CC添加剂的WS制成的颗粒具有更好的强度参数,而压缩颗粒具有更好的吸水率。观察到颗粒比压缩功、颗粒压缩弹性模量和拉伸强度值之间存在高度正相关。由于颗粒强度参数与单个颗粒密度高度相关,为使结论具有一致性,基于密度确定颗粒生产的最佳条件。在4%(重量/重量)添加剂比例、23%(湿基)物料水分、78毫米模头高度和80°C物料温度的最佳条件下,颗粒比压缩功为3.22 mJ·mm,弹性模量为5.78 MPa,颗粒最大拉伸强度为2.68 MPa;此外,破碎颗粒的吸水率为2.60 g H₂O·g干物质。