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Low temperature Anaerobic Digestion - Brewery/Malting Industry

Low temperature Anaerobic Digestion - Brewery/Malting Industry
低温厌氧消化 - 啤酒厂/麦芽工业
批准号:
971547
负责人:
金额:
$98.26万
依托单位:
依托单位国家:
英国
项目类别:
Small Business Research Initiative
财政年份:
2017
资助国家:
英国
项目状态:
已结题
起止时间:
2017 至 --

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中文摘要
翻译
NVP Energy开发了一项独特的技术,可以将废水WW净化到非常高的标准,同时回收有价值的高质量沼气,100%可重复使用。NVPES解决方案遍布全球,其创新的能量正‘低温厌氧消化LT ADD技术可在低于20摄氏度的温度下工作,这是厌氧消化的独特之处。NVPES解决方案将废水处理WWT从运营成本转变为食品饮料行业潜在客户的新收入来源,这些行业包括酿造、麦芽、蒸馏、装瓶、乳制品、肉类加工,平均提供3年的回报。LT AD提供了三重效果,大幅降低了60%以上的工商业污水费用,去除了产生沼气的污泥,这些沼气100%可供重复使用,在现场产生热量和/或电力。WWT在环境温度下发生,因此唯一不需要热量输入的微生物就能有效工作。较低的处理温度不会影响该技术的效率,允许LT AD在水力停留时间低于12小时的情况下工作。NVPES的创新使客户能够在现场处理大量低浓度的废水,该技术消除了废水中的化学需氧量COD总悬浮固体TSS浓度,使客户能够显著降低他们目前的工商业污水费用。与其他WWT技术不同,产生的污泥可以忽略不计,因此污泥处理处置成本最低。LT AD过程的一个副产品是沼气,因为沼气产生的能量大于系统运行所需的能量,它是碳中性正能量。沼气产生了80%以上的甲烷含量和非常低的硫化氢含量,这对AD来说是例外,可以通过锅炉或热电联产系统将10%的沼气用于现场供热和/或发电,这将成为客户持续的收入来源。NVPE将为在酿造麦芽应用中使用LT AD开发一个强有力的商业案例,由于低强度WW特性和现场产生的大量WW,这是一个关键的目标市场。对于这个商业案例,NVPE将选择最合适的最终用户,在他们的一个‘现场’运营地点部署一个全尺寸的演示器。NVPE已经与潜在客户进行了接触,他们得到的反馈是,在他们考虑进行全面商业部署之前,下一步是在他们的行业中建立一个持续运营的参考站点。在第一阶段,NVPE将根据一系列标准选择最终的第一采用者客户和选定的地点。NVPE第二阶段将在酿造麦芽生产现场设计、安装、调试和运行一个全尺寸的演示系统,每天处理500立方米,以全面验证这一目标市场的技术。最终结果将通过展示规模化WW污染物去除沼气质量容量的一致操作数据,证实NVPE在实验室和中试规模上已经实现的短期回报价值主张计算。这个旗舰参考网站将允许潜在客户第一手了解处理其特定WW流的技术,为NVPE创造真正的就业机会、收入和增长提供平台。英国有106多家工厂可以应用我们的技术,平均规模的工厂至少需要4个NVPE模块。使用RHI的回报是2.5年,没有RHI的回报不到3.2年,这为这一目标市场提供了一个令人信服的命题。
英文摘要
NVP Energy has developed a unique technology that cleans wastewater WW to a very high standard whilst recovering valuable high quality biogas that is 100 percent available for reuse. NVPEs solution has global reach, where their innovative energy positive ‘Low temperature Anaerobic Digestion Lt ADtechnology works at temperatures less than 20 degrees C unique for Anaerobic Digestion. NVPEs solution turns wastewater treatment WWT from being an operational cost into a new revenue stream for prospective customers in Food Drink Industries brewing, malting, distilling, bottling, dairy, meat processing, offering average paybacks of 3 years. Lt AD offers a triple effect of substantially reducing trade effluent charges by more than 60 percent, removing sludge creating biogas that is 100 percent available for reuse to generate heat and or electricity on site. WWT occurs at ambient temperatures, so uniquely no heat input is required for the microbes to work effectively. The low treatment temperatures do not affect the efficiency of the technology, allowing the Lt AD to work at Hydraulic retention times below 12 hours. NVPEs innovation enables customers to treat their the large volumes of low strength WW on site, the technology removes chemical oxygen demand COD total suspended solids TSS concentrations in their WW, allowing customers to significantly reduce their current trade effluent charges. Unlike other WWT technologies, negligible sludge is produced, so sludge treatment disposal costs are minimal. A by-product of the Lt AD process is biogas as the energy generated from the biogas is greater than the energy required to operate the system, it is carbon neutral energy positive. Biogas generated more than 80 percent CH4 content with very low H2S content, which is exceptional for AD can be 10 percent utilised on site for heat and or electricity production through Boiler or CHP systems, which will become an ongoing revenue stream for customers. NVPE will develop a strong business case for the use of Lt AD in a brewing malting application, a key target market due to the low strength WW characteristics and large volumes of WW generated on site. For this business case NVPE will choose the most suitable end-user to deploy a full scale demonstrator on one of their 'live' operational sites. NVPE has engaged with prospective customers and feedback has been that a consistently operating reference site in their industry is the next step before they would consider proceeding with a full scale commercial deployment. During Phase 1 NVPE will select a final first adopter customer and chosen site based on a number of criteria. Phase 2 NVPE will design, install, commission, operate a full scale demonstrator system, treating 500m3 per day, on a brewing malting site to fully validate the technology in this target market at full scale. The ultimate outcome will substantiate NVPEs short payback value proposition calculations already achieved at lab and pilot scale by demontrating consistent operational data for WW pollutant removal biogas quality volumes at scale. This flagship reference site will allow prospective customers to see first-hand the technology treating their specific WW stream providing a platform for NVPE to generate real jobs, revenue & growth. There are more than 106 UK plants where our technology is applicable with the average sized plant requiring 4 x NVPE modules minimum. The payback is 2.5 years with RHI and without RHI the payback is less than 3.2 years, offering a compelling proposition for this target market.
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