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Anaerobic technology harnessed fully by using different techniques: Review

机译:通过使用不同的技术来充分利用厌氧技术:回顾

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In today's energy demanding life style, there is need for new sources of energy which are renewable as well as eco-friendly because the climate change is one of the biggest challenges for mankind. Many countries initiated production and distribution of several renewable energy technologies to solve the energy problem in rural areas. In India, the per capita energy consumption is 400 KWH per annum, while 350 kgoe per capita primary commercial energy consumption and about 80% of total rural energy consumption comes from non-commercial energy like firewood, agricultural waste, dry cow dung cakes. Among several technologies the anaerobic digestion technology, has been proved to be viable and emerged as a promising technology because biomass is available as domestic resources in India (biomass availability in India is of 150 million MT per annum), require less capital investment and per unit production cost as compare to other renewable energies. The another major issue is to reduce the emission of greenhouse gasses and this could be solved by anaerobic digestion technology (1 kg biomethane is equivalent to the reduction of 25 kg CO2) with various advantages like; replace the fossil fuels, reduce or eliminate the energy footprint of waste treatment plants, reduce methane emission from landfills, replace the industrially produced chemical fertilizers etc. Recent life cycle assessment studies have demonstrated that biogas derived methane (biomethane) is one of the most energy efficient and environmentally sustainable way of replacement of fossil fuels in both heat and power generation. In anaerobic digestion other than its merits, certain constraints are also associated with it. Most common among these are the low gas production in winter, low gas production from agricultural residues, large hydraulic retention time and digester design etc. Therefore, need of different techniques to remove its various limitations to achieve optimized gas production and helpful --for rural areas. This paper reviews the various techniques, which could be used to solve the constraints occur during the gas production and harnessed fully anaerobic technology.
机译:在当今对能源的苛刻生活方式中,由于气候变化是人类面临的最大挑战之一,因此需要可再生和生态友好的新能源。许多国家开始生产和分销几种可再生能源技术,以解决农村地区的能源问题。在印度,人均年能源消耗量为400千瓦时,而人均主要商业能源消耗量为350千克油当量,约占农村能源总消耗量的80%来自非商业能源,例如柴火,农业废料,牛粪饼。在多种技术中,厌氧消化技术已被证明是可行的,并成为有前途的技术,因为生物质可作为印度的国内资源(印度的生物质年产量为1.5亿吨),需要较少的资本投资和每单位与其他可再生能源相比的生产成本。另一个主要问题是减少温室气体的排放,这可以通过厌氧消化技术解决(1千克生物甲烷相当于减少25千克CO 2 ),具有各种优势,例如;替代化石燃料,减少或消除废物处理厂的能源足迹,减少垃圾填埋场的甲烷排放,替代工业生产的化肥等。最近的生命周期评估研究表明,沼气衍生的甲烷(生物甲烷)是最主要的能源之一在热力和发电中高效,环保的替代化石燃料的方式。在厌氧消化中,除其优点外,还与之相关联。其中最常见的是冬季的天然气产量低,农业残留物的天然气产量低,水力停留时间长和沼气池设计等等。因此,需要各种技术来消除其各种局限性以实现最优的天然气产量,并且对- -- 对于农村地区。本文对各种技术进行了综述,这些技术可用于解决天然气生产过程中出现的制约因素,并充分利用完全厌氧技术。

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