Department of Civil Engineering, Regional Campus of Anna University, Tirunelveli, India.
Department of Civil Engineering, Regional Campus of Anna University, Tirunelveli, India.
Bioresour Technol. 2017 May;232:235-246. doi: 10.1016/j.biortech.2017.02.042. Epub 2017 Feb 12.
Physiochemical disintegration of waste activated biosolids (WAB) through thermochemical (TC) pretreatment requires high energy and cost for efficient energy generation. Therefore in the present study, an attempt has been made to enhance the biodegrdability and to minimize the operational cost of TC pretreatment by combining it with ozonation. A higher solubilization of about 30.4% was achieved at lesser energy input of about 141.02kJ/kgTS and a ozone dosage of about 0.0012mgO/mgSS through this combined thermo chemo ozone (TCO) pretreatment. The methane production potential (0.32gCOD/gCOD) of TCO pretreatment was comparatively higher than the (0.19gCOD/gCOD) TC pretreatment. The energetic analysis and economic assessment of the proposed method of pretreatment can possibly reduces the energy requirement of TC pretreatment with a positive net profit of about 35.49$/ton of biosolids.
通过热化学(TC)预处理使废活性生物污泥(WAB)物理化学解体需要大量的能源和成本才能有效地发电。因此,在本研究中,尝试通过结合臭氧氧化来提高可生物降解性并将 TC 预处理的运行成本降至最低。通过这种组合式热化学臭氧(TCO)预处理,在输入较少的能量(约 141.02kJ/kgTS)和臭氧剂量(约 0.0012mgO/mgSS)的情况下,可实现约 30.4%的更高溶解率。TCO 预处理的甲烷生成潜力(0.32gCOD/gCOD)高于 TC 预处理(0.19gCOD/gCOD)。预处理方法的能量分析和经济评估可以降低 TC 预处理的能源需求,并带来约 35.49 美元/吨生物污泥的正净收益。