Bioelectrochemistry auxiliary anaerobic composting device capable of improving putrescibility of dewatered sludge and startup operation method thereof
A technology of bioelectrochemical and anaerobic composting, which is applied in the field of bioelectrochemical assisted anaerobic composting device and its start-up operation to improve the maturity of dewatered sludge, and can solve the problems of slow composting progress, long cycle, and poor decomposition effect. Achieve the effect of increasing the degree of decomposition, accelerating the process of anaerobic composting, and shortening the cycle of anaerobic composting
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specific Embodiment approach 1
[0010] Specific embodiment 1: The bioelectrochemical assisted anaerobic composting device for improving the maturity of dewatered sludge in this embodiment includes anaerobic composting chamber 1, electrochemical electrode chamber 2, electricity storage or electrical appliance 3, and anaerobic composting chamber 1 Located in the center, it is formed by the space surrounded by the inner shell 1-1, and the electrochemical electrode chamber 2 is formed by the space between the outer shell 2-1 and the inner shell 1-1; the inner shell 1-1 of the anaerobic composting chamber 1 The side wall is a proton exchange membrane. In the anaerobic composting chamber 1, the first graphite brush electrode 1-2 is set as an auxiliary anaerobic composting electrode. Electrochemically active bacteria are attached to the first graphite brush electrode 1-2. 1 is also provided with a reference electrode 1-3 and a temperature measuring probe 1-4, and a gas collection port 1-5 is provided on the top of t...
specific Embodiment approach 2
[0012] Embodiment 2: The difference between this embodiment and Embodiment 1 is that the second graphite brush electrodes 2-2 can be provided with 2-5 pieces and used in parallel. Others are the same as in the first embodiment.
[0013] The setting of parallel electrodes is beneficial to improve the electron transfer efficiency of the annular electrochemical electrode chamber 2 and improve the electricity production capacity of the bioelectrochemical assisted anaerobic composting device.
specific Embodiment approach 3
[0014] Embodiment 3: This embodiment differs from Embodiment 1 or Embodiment 2 in that the heating cable 4 is fixed around the outer casing 2 - 1 and placed in an incubator 5 . Others are the same as those in Embodiment 1 or 2.
[0015] According to the temperature control requirements of the system, the temperature control of the system is facilitated by using the heating cable 4 and the incubator 5 .
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