化学处理对班巴拉坚果糠及其与某些废物混合产沼气的影响

A. Ofoefule, C. Ibeto
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引用次数: 5

摘要

化学处理对班巴拉坚果(Vigna Subterranea)糠和混糠产沼气效果的比较研究以KOH (50% w/v)处理的牛粪(BNC:CD)、猪粪(BNC:SD)、草地草(BNC:FG)和木薯皮(BNC:CP)为研究对象,分别按1∶1的比例进行处理。将处理后的不同菌种按水废比3∶1的比例装入50L金属原型生物沼气池中。在25°C - 41°C的温度范围内进行65天的厌氧消化。结果表明,BNC的累积产气量为186.9±2.6 dm3/TMS(浆料总质量),第5天出现闪点,第9天停止燃烧。混合和化学处理增加了牛粪和草地草混合物的累积产气量和持续气体可燃性,BNC: CD在第26天的累积产气量为223.80±2.7dm3/TMS和闪点,BNC: FG在第56天的累积产气量为207.70±2.0dm3/TMS和闪点。然而,BNC: SD和BNC: CP的累积产气量分别为130.80±2.3dm3/TMS和132.30±2.5 dm3/TMS,并且在整个保留期内两种系统均不产生可燃沼气,未观察到处理对BNC: SD和BNC: CP的积极影响。矿物离子含量的结果表明,虽然大多数矿物质的含量在要求的限度内,但Ca2+超过了限制,实际上处于能够抑制沼气产生的水平。综上所述,班巴拉果皮是一种极不稳定的废弃物,混合和化学处理都没有显著改善。
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Effect of chemical treatment on biogas production from Bambara nut (Vigna Subterranea) chaff and its blend with some wastes
A comparative study of the effect of chemical treatment on biogas production from Bambara nut (Vigna Subterranea) chaff and the chaff blended with; cow dung (BNC:CD), swine dung (BNC:SD), field grass (BNC:FG), and cassava peels (BNC:CP) in the ratio 1∶1, all treated with KOH (50% w/v) was investigated. The different variants from the treated wastes were charged into 50L metal prototype biodigesters in the ratio 3∶1 water to waste. They were all subjected to anaerobic digestion under a 65 day retention period and temperature range of 25°C–41°C. Results obtained showed that BNC had a cumulative gas yield of 186.9 ± 2.6 dm3/TMS (Total mass of slurry) with the flash point on the 5th day even though the flammability discontinued on the 9th day. Blending and chemical treatment increased the cumulative gas yields and sustained onset of gas flammability of the cow dung and field grass blends with the BNC: CD having cumulative gas yield of 223.80 ± 2.7dm3/TMS and flash point on the 26th day while BNC: FG had 207.70 ± 2.0dm3/TMS and flash point on the 56th day. However, there was no observed positive effect of the treatment on BNC: SD and BNC: CP with cumulative gas yields of 130.80 ± 2.3dm3/TMS and 132.30 ± 2.5 dm3/TMS respectively and with both systems not producing flammable biogas throughout the retention period. Results of mineral ions content showed that while most of the minerals were found in reasonable levels within the limits required, Ca2+ exceeded the limit and was actually at a level capable of inhibiting biogas production. Overall results showed that Bambara nut chaff is a highly unstable waste which blending and chemical treatment did not improve tremendously.
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