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Poultry litter and switchgrass blending and pelletizing characteristics for biochar production

机译:生物炭生产的家禽垃圾和切换灌浆和造粒特性

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Biochar characteristics for both soil and energy applications have been documented to be affected by both the parent feedstock and pyrolysis production temperature. Controlling these two variables may yield an ideal product with engineered properties—"A Designer Biochar." Manure-based biochars are known to be extremely alkaline with high ash contents while lignocellulosic biochars are known to be carbon-rich with more neutral to acidic pH. Poultry litter and switchgrass feedstocks were blended at different ratios, pelletized, and then underwent slow pyrolysis at different temperatures to determine the effect that blend ratio and pyrolysis temperature had on the final biochar's energetic, pellet durability, and proximate composition characteristics.Comparing pure poultry litter biochars to the blended poultry litter and switchgrass biochars, the high pH, EC, and ash contents were mediated suggesting a more appropriate biochar for soil application. Blending poultry litter and switchgrass increasedboth the energy content (HHV) and the rate of mass loss largely due to the increase of biochar C; but blending decreased the end temperature of combustion suggesting more labile C in the blends.Structurafly, pure poultry litter pellets, regardless of pyrolysis temperature, were more resistant to degradation and less dustier than pure switchgrass pellets. Even though a blended biochar pellet will become more prone to degradation with constant handling, a manure-plant blended pellet alleviates some of theother application issues when using pure manure-based biochars.
机译:已经记录了土壤和能量应用的生物炭特性,受母原料和热解产生温度的影响。控制这两个变量可以产生具有工程特性的理想产品 - “设计师BioChar”。已知粪便的生物脉,具有高灰分含量的极其碱性,而众所周知,木质纤维素生物齿轮富含碳纤维素的生物藻酸含量与酸性pH值较高。家禽垃圾和切换紫色原料被混合在不同的比例,造粒,然后在不同温度下进行缓慢的热解,以确定混合比和热解温度对最终生物炭的能量,颗粒耐久性和邻近的组成特征进行了效果..纯粹的家禽垃圾介导的Biochars到混合家禽凋落物,高pH,EC和灰分含量,提出了一种用于土壤应用的更合适的生物炭。混合家禽垃圾和切换液增加能量含量(HHV)和大众损失的速度主要是由于生物炭C的增加;但混合减少了燃烧的最终温度,表明混合物中的更加不稳定。结构,无论热解温,纯禽类凋落物颗粒如何更具抗性,比纯开关颗粒更少。尽管混合的生物炭颗粒将更容易导致持续处理的降解,但粪便植物混合颗粒在使用纯净的粪便的生物班时减轻了一些其他申请问题。

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